<?xml version="1.0" encoding="ISO-8859-1"?>
<GTH_output xmlns="http://www.genomethreader.org/GTH_output/" GTH_XML_version="1.1">
  <header xmlns="http://www.genomethreader.org/GTH_output/header/">
    <source program="GenomeThreader" version="0.9.54" build_date="2006-07-28 11:55:15" run_date="2009-12-01 08:26:21"/>
    <gDNA_template_files>
      <temp_name>/tmp/bac-submission-temp-C02HBa0032J10-OH2MM/GenomeThreader_SGN_markers/un_xed_seqs</temp_name>
    </gDNA_template_files>
    <reference_files>
      <file ref_name="/tmp/bac-submission-temp-C02HBa0032J10-OH2MM/gth_cdna_fileCXGN::TomatoGenome::BACSubmission::Analysis::GenomeThreader::SGN_markers" type="ESTcDNA"/>
    </reference_files>
    <splice_site_parameters parameter_type="Bayesian" species="arabidopsis"/>
    <parameters>
      <parameter name="bssmfile" value="arabidopsis"/>
      <parameter name="scorematrixfile" value="BLOSUM62"/>
      <parameter name="searchmode" value="forward=True,reverse=True)"/>
      <parameter name="translationtable" value="1"/>
      <parameter name="frompos" value="0"/>
      <parameter name="topos" value="0"/>
      <parameter name="width" value="0"/>
      <parameter name="verbose" value="False"/>
      <parameter name="skipalignmentout" value="False"/>
      <parameter name="showintronmaxlen" value="120"/>
      <parameter name="minorflen" value="64"/>
      <parameter name="showseqnums" value="False"/>
      <parameter name="gs2out" value="False"/>
      <parameter name="maskpolyatails" value="False"/>
      <parameter name="noautoindex" value="False"/>
      <parameter name="minmatchlen" value="20"/>
      <parameter name="seedlength" value="16"/>
      <parameter name="exdrop" value="2"/>
      <parameter name="online" value="False"/>
      <parameter name="inverse" value="False"/>
      <parameter name="exact" value="False"/>
      <parameter name="chainwf" value="0.500000"/>
      <parameter name="gcmaxgapwidth" value="1000000"/>
      <parameter name="gcmincoverage" value="50"/>
      <parameter name="introncutout" value="False"/>
      <parameter name="autointroncutout" value="0"/>
      <parameter name="icinitialdelta" value="50"/>
      <parameter name="iciterations" value="2"/>
      <parameter name="icdeltaincrease" value="50"/>
      <parameter name="icminremintronlen" value="10"/>
      <parameter name="nou12intronmodel" value="False"/>
      <parameter name="u12donorprob" value="0.990000"/>
      <parameter name="u12donorprob1mism" value="0.900000"/>
      <parameter name="probies" value="0.500000"/>
      <parameter name="probdelgen" value="0.030000"/>
      <parameter name="identityweight" value="2.000000"/>
      <parameter name="mismatchweight" value="-2.000000"/>
      <parameter name="undetcharweight" value="0.000000"/>
      <parameter name="deletionweight" value="-4.000000"/>
      <parameter name="dpminexonlen" value="5"/>
      <parameter name="dpminintronlen" value="50"/>
      <parameter name="shortexonpenal" value="100"/>
      <parameter name="shortintronpenal" value="100"/>
      <parameter name="wzerotransition" value="80"/>
      <parameter name="wdecreasedoutput" value="80"/>
      <parameter name="leadcutoffsmode" value="RELAXED"/>
      <parameter name="termcutoffsmode" value="STRICT"/>
      <parameter name="cutoffsminexonlen" value="5"/>
      <parameter name="scoreminexonlen" value="50"/>
      <parameter name="minaveragessp" value="0.500000"/>
      <parameter name="minalignmentscore" value="0.900000"/>
      <parameter name="maxalignmentscore" value="1.000000"/>
      <parameter name="mincoverage" value="0.900000"/>
      <parameter name="maxcoverage" value="100.000000"/>
      <parameter name="intermediate" value="False"/>
      <parameter name="sortags" value="False"/>
      <parameter name="sortagswf" value="1.000000"/>
      <parameter name="first" value="0"/>
      <parameter name="exondistri" value="False"/>
      <parameter name="introndistri" value="False"/>
      <parameter name="refseqcovdistri" value="False"/>
    </parameters>
    <overall_reference_type>ESTcDNA</overall_reference_type>
  </header>
  <alignment_module>
  <spliced_alignment xmlns="http://www.genomethreader.org/GTH_output/alignment_module/spliced_alignment/">
    <reference ref_file="/tmp/bac-submission-temp-C02HBa0032J10-OH2MM/gth_cdna_fileCXGN::TomatoGenome::BACSubmission::Analysis::GenomeThreader::SGN_markers" ref_id="C2_At3g02060" ref_strand="+" ref_description="C2_At3g02060">
      <seq>tttcgagggaatagataatgtggcaaacccgacgttccattgaagctctgctttgagaaattagaacaagtttgctcttacaagtttatccatccatggccgctgcaaaggcctccctcttcttctctccctcggagtgctttctcacaactcgtctctgcaaactcttctccactactcaaaaaccctcttttccctctccctcctcctcttctattaccttaaccaatgtcctcaatgccgatgctgtacataccaaattgcctccccgactacggaatgcaagacaggagcaagagcgagacgccatttctctactcaacgagcgaattcgccgggagcatgctaagagagatcactcccctcttagaccggccatggattccgaggaggctgataagtacattcagctcgtgaaagagcagcagcaaaggggccttcagaagctcaaaagcgacagagccagacaaggtgctccacatgatgcagctcaacctacctttagttacaaggtggacccttacactctccgttccggcgattacgtggtccacaggaaagttggaattggtcgattcgttggcatcaaatttgacgttccaaaggattccaaagagcctattgaatacgtctttattgagtacgctgacggtatggctaaattacccgtcaagcaggcatctcgtttgctctaccgttacaacctccctaatgaaaccaaaaggccacggactttgagcaagttaagcgatactagtgcatgggagaggagaaggatgaagggaaaagttgcagttcagaaaatggttgtggatctaatggagctatacctacacaggttaaaacaaaaaaggcctccataccccaagactccagctatggctgaatttgcatctcagtttccttttgaacccacaccggatcagaaacaggcattctcagatgtagaaagggacttgacagagagtgaaaatccaatggacagattaatttgcggagatgttggttttggtaaaactgaggttgcactgcgtgccatcttctgtgtagtctctgcagggaagcaagctatggttctagcgccaacaatagttttagctaagcaacattttgatgttatctcagagagattttcaagatatcctaacataagagttggacttcttagcaggtttcagaccaagtcagagaaagaggagtacttgagtatgattaaagacggccatgtggacattattgttgggactcattcactacttggcaatcgggttgaatataataatctgggtctacttgtggttgatgaggaacagaggtttggtgtaaaacagaaggagaggattgcttcatttaaacttcagtggatgtactcacactttcagcaacgcctattccgagaactctatatttagcattaactggatttcgtgacgctagtttgatctcaacaccgcctcctgagagagttccaataagaacacatctttcagcttacagtaaggacaaagtaatatcagctatcaagcatgaattggaccgtggtggtcgagttttttatgtcttgccccgcattaaaggtcttgaggatgttatggaattcttagaactggcatttccacatgttgaaatagctattgctcatggaaagcaatactcaaaacagcttgaggaaactatggaaagatttgcacggggagacattagaattcttatatgtacaaatatagtagaaagtggccttgatattcaaaacgcaaacacaatcatcattcaagatgttcagcaatttggacttgcacaattgtatcagttgcgtggaagggtcggacgggcggataaggaagctcatgcacatttattctatcctgacaaatcacttctttcagaccatgcactagagagacttgctgctcttgaagagtgctgtgaacttggtcaaggttttcagcttgcagaaagagacatggctattagaggatttggcaatatttttggtgagcaacagacgggggatgtcggcaatgtgggcattgatctattctttgagatgttgtttgaaagcttgtctaaggttgatgagcatcgtgtaatatcagttccttaccctgcaatggagcttgatatcaatataaaccctcatcttccttctgagtacataaaccatttggagaaccccatgcaaatcatcaatagcgctgaaaaagcagctgaaaaggacattttcaacctgatgcaatttacggaaaatctgaggcgtcagtatggcaaagaaccttactctatggaaatcctattgaaaaagctttatgtcagaagaatggcagcagatttaggaattaccagcatttatgcttcatgaaagatggttggcatgaaaacaaacatgtcaaaaaaggttttcaagttgataacggattcagcaact</seq>
    </reference>
    <gDNA_segment>
      <template temp_file="/tmp/bac-submission-temp-C02HBa0032J10-OH2MM/GenomeThreader_SGN_markers/un_xed_seqs" temp_id="C02HBa0032J10.4" temp_strand="-" temp_description="C02HBa0032J10.4  AC215366.1 htgs_phase:3 submitted_to_sgn_as:C02HBa0032J10 sequenced_by:kribb upload_account_name:korea">
        <position start="95455" stop="78083"/>
      </template>
    </gDNA_segment>
    <predicted_gene_structure xmlns="http://www.genomethreader.org/GTH_output/alignment_module/spliced_alignment/">
      <exon-intron_info>
        <exon e_serial="1">
          <gDNA_exon_boundary g_start="95155" g_stop="94450" g_length="706"/>
          <reference_exon_boundary r_type="cDNA" r_start="1" r_stop="706" r_length="706" r_score="1.000"/>
        </exon>
        <intron i_serial="1">
          <gDNA_intron_boundary i_start="94449" i_stop="93606" i_length="844">
            <donor d_prob="0.999" d_score="1.00"/>
            <acceptor a_prob="0.966" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="2">
          <gDNA_exon_boundary g_start="93605" g_stop="93380" g_length="226"/>
          <reference_exon_boundary r_type="cDNA" r_start="707" r_stop="932" r_length="226" r_score="1.000"/>
        </exon>
        <intron i_serial="2">
          <gDNA_intron_boundary i_start="93379" i_stop="93020" i_length="360">
            <donor d_prob="0.995" d_score="1.00"/>
            <acceptor a_prob="0.997" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="3">
          <gDNA_exon_boundary g_start="93019" g_stop="92774" g_length="246"/>
          <reference_exon_boundary r_type="cDNA" r_start="933" r_stop="1178" r_length="246" r_score="1.000"/>
        </exon>
        <intron i_serial="3">
          <gDNA_intron_boundary i_start="92773" i_stop="91966" i_length="808">
            <donor d_prob="0.662" d_score="1.00"/>
            <acceptor a_prob="0.000" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="4">
          <gDNA_exon_boundary g_start="91965" g_stop="91831" g_length="135"/>
          <reference_exon_boundary r_type="cDNA" r_start="1179" r_stop="1313" r_length="135" r_score="1.000"/>
        </exon>
        <intron i_serial="4">
          <gDNA_intron_boundary i_start="91830" i_stop="90859" i_length="972">
            <donor d_prob="0.996" d_score="1.00"/>
            <acceptor a_prob="0.877" a_score="0.98"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="5">
          <gDNA_exon_boundary g_start="90858" g_stop="90734" g_length="125"/>
          <reference_exon_boundary r_type="cDNA" r_start="1314" r_stop="1437" r_length="124" r_score="0.992"/>
        </exon>
        <intron i_serial="5">
          <gDNA_intron_boundary i_start="90733" i_stop="90499" i_length="235">
            <donor d_prob="0.943" d_score="1.00"/>
            <acceptor a_prob="0.993" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="6">
          <gDNA_exon_boundary g_start="90498" g_stop="90359" g_length="140"/>
          <reference_exon_boundary r_type="cDNA" r_start="1438" r_stop="1577" r_length="140" r_score="1.000"/>
        </exon>
        <intron i_serial="6">
          <gDNA_intron_boundary i_start="90358" i_stop="90223" i_length="136">
            <donor d_prob="0.997" d_score="1.00"/>
            <acceptor a_prob="1.000" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="7">
          <gDNA_exon_boundary g_start="90222" g_stop="90152" g_length="71"/>
          <reference_exon_boundary r_type="cDNA" r_start="1578" r_stop="1648" r_length="71" r_score="1.000"/>
        </exon>
        <intron i_serial="7">
          <gDNA_intron_boundary i_start="90151" i_stop="88295" i_length="1857">
            <donor d_prob="0.920" d_score="1.00"/>
            <acceptor a_prob="0.983" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="8">
          <gDNA_exon_boundary g_start="88294" g_stop="88133" g_length="162"/>
          <reference_exon_boundary r_type="cDNA" r_start="1649" r_stop="1810" r_length="162" r_score="1.000"/>
        </exon>
        <intron i_serial="8">
          <gDNA_intron_boundary i_start="88132" i_stop="81348" i_length="6785">
            <donor d_prob="0.957" d_score="1.00"/>
            <acceptor a_prob="0.996" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="9">
          <gDNA_exon_boundary g_start="81347" g_stop="81261" g_length="87"/>
          <reference_exon_boundary r_type="cDNA" r_start="1811" r_stop="1897" r_length="87" r_score="1.000"/>
        </exon>
        <intron i_serial="9">
          <gDNA_intron_boundary i_start="81260" i_stop="81037" i_length="224">
            <donor d_prob="0.814" d_score="1.00"/>
            <acceptor a_prob="0.904" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="10">
          <gDNA_exon_boundary g_start="81036" g_stop="80863" g_length="174"/>
          <reference_exon_boundary r_type="cDNA" r_start="1898" r_stop="2071" r_length="174" r_score="1.000"/>
        </exon>
        <intron i_serial="10">
          <gDNA_intron_boundary i_start="80862" i_stop="80675" i_length="188">
            <donor d_prob="0.984" d_score="1.00"/>
            <acceptor a_prob="0.997" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="11">
          <gDNA_exon_boundary g_start="80674" g_stop="80630" g_length="45"/>
          <reference_exon_boundary r_type="cDNA" r_start="2072" r_stop="2116" r_length="45" r_score="1.000"/>
        </exon>
        <intron i_serial="11">
          <gDNA_intron_boundary i_start="80629" i_stop="78692" i_length="1938">
            <donor d_prob="0.999" d_score="1.00"/>
            <acceptor a_prob="0.232" a_score="1.00"/>
          </gDNA_intron_boundary>
        </intron>
        <exon e_serial="12">
          <gDNA_exon_boundary g_start="78691" g_stop="78383" g_length="309"/>
          <reference_exon_boundary r_type="cDNA" r_start="2117" r_stop="2425" r_length="309" r_score="0.997"/>
        </exon>
      </exon-intron_info>
      <MATCH_line gen_id="C02HBa0032J10.4" gen_strand="-" ref_id="C2_At3g02060" ref_strand="+">
        <total_alignment_score>0.999</total_alignment_score>
        <cumulative_length_of_scored_exons>2426</cumulative_length_of_scored_exons>
        <coverage percentage="1.000" high_type="C"/>
      </MATCH_line>
      <PGS_line>
        <gDNA gen_id="C02HBa0032J10.4" gen_strand="-"/>
        <rDNA rDNA_id="C2_At3g02060" rDNA_strand="+"/>
        <gDNA_exon_coordinates>
          <exon e_start="95155" e_stop="94450"/>
          <exon e_start="93605" e_stop="93380"/>
          <exon e_start="93019" e_stop="92774"/>
          <exon e_start="91965" e_stop="91831"/>
          <exon e_start="90858" e_stop="90734"/>
          <exon e_start="90498" e_stop="90359"/>
          <exon e_start="90222" e_stop="90152"/>
          <exon e_start="88294" e_stop="88133"/>
          <exon e_start="81347" e_stop="81261"/>
          <exon e_start="81036" e_stop="80863"/>
          <exon e_start="80674" e_stop="80630"/>
          <exon e_start="78691" e_stop="78383"/>
        </gDNA_exon_coordinates>
      </PGS_line>
      <alignment>
        <genome_strand>TTTCGAGGGAATAGATAATGTGGCAAACCCGACGTTCCATTGAAGCTCTGCTTTGAGAAATTAGAACAAGTTTGCTCTTACAAGTTTATCCATCCATGGCCGCTGCAAAGGCCTCCCTCTTCTTCTCTCCCTCGGAGTGCTTTCTCACAACTCGTCTCTGCAAACTCTTCTCCACTACTCAAAAACCCTCTTTTCCCTCTCCCTCCTCCTCTTCTATTACCTTAACCAATGTCCTCAATGCCGATGCTGTACATACCAAATTGCCTCCCCGACTACGGAATGCAAGACAGGAGCAAGAGCGAGACGCCATTTCTCTACTCAACGAGCGAATTCGCCGGGAGCATGCTAAGAGAGATCACTCCCCTCTTAGACCGGCCATGGATTCCGAGGAGGCTGATAAGTACATTCAGCTCGTGAAAGAGCAGCAGCAAAGGGGCCTTCAGAAGCTCAAAAGCGACAGAGCCAGACAAGGTGCTCCACATGATGCAGCTCAACCTACCTTTAGTTACAAGGTGGACCCTTACACTCTCCGTTCCGGCGATTACGTGGTCCACAGGAAAGTTGGAATTGGTCGATTCGTTGGCATCAAATTTGACGTTCCAAAGGATTCCAAAGAGCCTATTGAATACGTCTTTATTGAGTACGCTGACGGTATGGCTAAATTACCCGTCAAGCAGGCATCTCGTTTGCTCTACCGTTACAACCTGTAAGTGCAACACTCCTTTATTTACCACCTTGTTGTAGATTTGTATGCAGACTGCAATACTTGTAATTCATTGCAAAACTACTCTTAATTACCGGTTGGGTTCACTGTCCCAAGCTCCTGAGCTTATTGAGCCACAACTTATTACACTGCTGGTCAATTCCCCCTTTTGGTATTTAAAAATTAAAAATTATGCAGAAGTGGAGAAGATCTTTACATACTCACCAATACAAATACTGCTTCAATCTCCAATACAACTCGAAGGGCCTTCTTTTCAGTTCCTAATAGAGGGCATAGCTCTGACAAAGAATCATGTCCTGTCCAGTTCTCTTGTCATGAATTCCCAGCAATAGACAAATCCTCCCCCCCAAAAAACAAACACACAATAGGCAAATTTCCTTAATACTAAAGGAATTTTAATTTTTCAATTATAAACTTGCGTTGCACCTCTCGATCTAAACAATTTCTTGAATTAACATTTTTTCTGGTTAGGATGACACTTCCTCAGATCACTTAAAATGCATTTCCCATTCAAGTTAGCCTCTTTTCCTTAGTCACGAGCTACCTGCTTTCCATCCCTTGTTAGTCCAGCATGCTTCTTCGTGCCAAGGAAGTAGGCATCTAGCGGTGAGATAGGGATCTGATTCTCGTTTTGAAAGAAATAAAATTATTGATAGAGGGATACAGGCTTTGCCTTTTATTATCCTTTATCACCACCGTTGGAAAGATTCTCTTGAGTTATTGACTGTGGAGCCAAGGGAAACCTGGAAATGTCATTTATTAACAATTCGTGTGCCAGAGAGATAGTCTAGATTACTATTTGATTAATGCCTTTTTAATTATTCAGCCCTAATGAAACCAAAAGGCCACGGACTTTGAGCAAGTTAAGCGATACTAGTGCATGGGAGAGGAGAAGGATGAAGGGAAAAGTTGCAGTTCAGAAAATGGTTGTGGATCTAATGGAGCTATACCTACACAGGTTAAAACAAAAAAGGCCTCCATACCCCAAGACTCCAGCTATGGCTGAATTTGCATCTCAGTTTCCTTTTGAACCCACACCGGATCAGAAACAGGTTTTTAATTGTCTATTCTGTATCATTTAAATTCTGATGTCCACCTGCATGGCTTTTTCCGCAAAATATCAGCTGTTGTTGGTTCCTTCCATGTGTATAGTTTAGCTGCAATTGTTGTTTTTCATCCAGTTGGTTCAGCAAGACATGTATGAAAATTTTAACAACCAAAAAAGTAACAGTGTTGTTGTCTTGCCACATTCTATTAAGAATAACTTATTGCTTCTCATTGTGCGTAAAGTGTAGTTATCTTGGCACATTTTAGTCAGAGTAACCTATTGCCTGAAAAGTTCAATCATTTTTACTACTTAACCTATAATGGAAAACTTTTCTGTTTCTTACAGTATTGAATTCCAATGACAGGCATTCTCAGATGTAGAAAGGGACTTGACAGAGAGTGAAAATCCAATGGACAGATTAATTTGCGGAGATGTTGGTTTTGGTAAAACTGAGGTTGCACTGCGTGCCATCTTCTGTGTAGTCTCTGCAGGGAAGCAAGCTATGGTTCTAGCGCCAACAATAGTTTTAGCTAAGCAACATTTTGATGTTATCTCAGAGAGATTTTCAAGATATCCTAACATAAGAGTTGGACTTCTTAGCAGGTTTCAGGTGCATAACTTGATTTTTATCAATATGCTGCTGATGCCTAAGAAGCACTTTCTACTTGAATTCTACTCTTTATCATTTAAATTTTAGGTGGTTTTGTAAAAGAATGTGGTTGCTTCTGACCTTCAATGTTAAATATTTGCTCATAGTGTTTTCTTGCAAAACCTAACTTCTCACATCTCATGATTTCTTAAGATTAGCTTTCTTGACAATAGGTCCATGGCAAGAAAACATATCTTAAGTTCATCGGAGTGCCTTATAATAAGGGATTCTGTTGATGTACTTCCATGAAACTTAAGCTGACATAGACACGTTAAATCTTATGTCCATTGAGGATTTTATGCAGTTTGAGATTGTTTCACAAGTCATGCTTAATTGATTCTTTTTTTCTATAAGGGTAACTTGTATTCATATTAAAAAAAGACTTCAAACAGGTTCTTTGTTGATTGTTATTTATTTCGAACTCACATAAATTAAAAAAAAGTCACCTTGTTGAAATGGTTTAATATTATTTAATATATTTATATATACTTCTCTTAAATATTGTCTACCTCTTTGATTATTAAGAAGACCATTTAAATATGCAAGGAAGTGCACCAAACTAGAAATGATATCTTCTTCTCTTTCTTTTTAGTATTTTCCTTCCAAAATCTGAGTGATTATGGTTCCCAATATGAACTTCTTAAATATGTTATTTTAGTTTTAGTTCTTTGGTGTTGGCACTGTTGTTCACCTTGTCTAAGTAAACACCATATTTTTATTCGAAGTCCTAATTTTAGTTTTCTTTGCCACCGACTTTTGCTCACTCAAGACCAAGTCAGAGAAAGAGGAGTACTTGAGTATGATTAAAGACGGCCATGTGGACATTATTGTTGGGACTCATTCACTACTTGGCAATCGGGTTGAATATAATAATCTGGGTCTACTTGTGGTTGATGAGGAACAGGTATTTACAGATATCTAAATGCCATTATATTTTGGATTTTCTTTATACAACCATGGTATCGTGACCAACTTGCGTGCACCTTGACTAATCCCACGAGATGCCACCTCCCACCAGCAACAAGAACTATATACCAGGTAATCCCATGAGATGCCACCTCCCACTAGCAACAAGAACCATATACCAGGTAACTTTATCCACCCAGGCTTGGACAAATGGGAAGACCTAGTGTTCCGGTCTCTGTTGGGATTTGAACTTAAACTCATCATTCTTAACCCAGTACATTGACCACTAGGCCACACACCTGGGTGCCATCGTATTTTTTGATTATTTTCTTGTCATTTGCATCGAAAGGAAGTAATGTTTGGAATTTAGTCATGGATGAAATAGGTTGGTTACTTGAGTGAGTAAGACCTTATAAGGAGGAAAAAGTATGCGTAAACTCATTGATCTAAACCTGATAATGCATTCTTGGTTTGATCTATAATAAGCCCAACTATGACTATTTTTTCTTATTATCCCGTGTTTATAAAAAGCTCAAAAGAAACTTCATCCAAAACCCAAAAATGAAAAAAGGTATATTAGCTCGAATAAAACCATGAAGAATCCAGGGAAAGGTGTATTAGCTTATTAGATGGGGCAAGCGTAGGGTACTGTTTCTTTTTTCTTTTGATAGGGTCCATGATGAAATGGAGACTTACGGCCTAGCTGGTGTTCATTTATTCATGGTACTAAGTTTTCTCGTTATCACTTAAATGAATAGTAAATTGAATTTATTGAAGAAGATAGTCAACCTCAGTTTCAAAAAAGAAGAAGAAGATAGTCAACCCTTAACCTTCCCCTGTTAGTGTGTGTGTGTGTGAGAGAGAGAGAGAGAGAGAGAGAGTTTGTGTGTGTCTCTTTTGGACATCCTTCATACCTATAGCCCGATTCATCATATTTGATCTCCCTCTGAATTACTCTTTGTCCTTTCAGAGGTTTGGTGTAAAACAGAAGGAGAGGATTGCTTCATTTAAAACTTCAGTGGATGTACTCACACTTTCAGCAACGCCTATTCCGAGAACTCTATATTTAGCATTAACTGGATTTCGTGACGCTAGGTAATACCACCGAGTTTGTTTCAATTTATCCAAGCCCTGGATGGCTGTGATGAAGTATCCACTGTACTGTTGGGCAGTCCAACAGCTGAATTGTGCATCATTCATTCAGCTGTGTCAATGTTGGCTAGATTTGACTAATTGTGAAGTTACCTTCAACAAGTCAATGTTTTGCCTGCTCAATCTTTTTGTCTGTTTTGCTTTTTGTCTGCCTTCATTTTCTTTTCCACTCTAACAGTTTGATCTCAACACCGCCTCCTGAGAGAGTTCCAATAAGAACACATCTTTCAGCTTACAGTAAGGACAAAGTAATATCAGCTATCAAGCATGAATTGGACCGTGGTGGTCGAGTTTTTTATGTCTTGCCCCGCATTAAAGGTAATGCATTCTGTGCCTTTTATTTACATTAATTGTGAGTAGCATTATGTAATTTGGTGGCCAGGCTGTAGAGGAGTTTGCTGAAGTTCATCCATTGTACTCGTTGTAGTTACATGGGTTTGTCTTTTACTTGCAGGTCTTGAGGATGTTATGGAATTCTTAGAACTGGCATTTCCACATGTTGAAATAGCTATTGCTCATGGAAAGGTAATTATGGGATTTAATGAGTTGGCTTTAAGTTCTGCTATTGAACGTCAATCAATCAATCATTTGATCAATCAACTGTGTGATACCCTGTGACTTAAGCTGTTATGGGACTCTTTAAGCTTTCTTCTATAGCTTCTGCATTTACTAATCCTTGTTCTTCATTGGAGTTCTCTTCTGGACTGTCTGATGCCTTTTGACCAAGCATACATGAATCTAGGAAACTTTATGAGGCAGAGCACCATAAGAGAGGAATTGAGAATTGATTTATCATATGGGAGTAAAATTTTTCGGGTATGAAAATCAAACGCTTATTGTTCATAGGTCTTATGTTTAGTGGTACAGTTGGATGAAGGGTATATTAGACCTTTTGAGATAATCCAGGCCCTTCTCCTTACAACTTATTGAGATTAAACTAGTCACTGCAAATTATTTAGTATTGGAGTGAAATGGGACTGAATAGAGAAGAATAAATGATTCATGTATCCAACTCCAATTGACTTGGAACTGAAACGGGGTTGATTGATAGATTAATTATTCTGGTGGGACTATATGTTGAAAATTACTTTCAGTTACTGTAATAATTTTTAGCATAATAAGTTGTTAGGTTTAGGATAAATTTGAAATTTAAATTTCTATTAGGTTGTTGAGTTTATTTAGCTTTTTTGAATTTTTGTTATGAAGATTTTCTACGGATTATGTTTTCAAGTTGACTGTTCAAAAGCCCTTGTAAAATTATGGAGAGACATTTTCAACTTAAAAAAAAAAAAAACCAACAGTGATATCAAGAGCCTCATTGATCTTCCGTGATCTATGAGTTTATTTTAAAGAACTATTTTTCACCCGTTAGGTCTAGTTTTAACCCTTCAAGGCTAATTTCAACCCGTGCTTATTTTCTACGCGTCGACTATTTTCAACCTATACCAATTTTTAACCTATTTTCAACCATGACAAGCAACAATCTCTTTTTCAATACCCCAGAAATTTTCACCAACAAATATTATCAAATTTGGTCTGTGAGAATGAACTCATATTTTGAAACCTATGATTTATTATATGTTGTAATGGAAGAAAGATCCTTACAAACTCTCCTTGCAAATCCTATCACTGTCCAGATGAAAGCACTTTCAAAAGAGTTCTCAGACAAGATAAGATTATTGAGGGTGTTTTTTAAGGACAAAACCAAAAGAAGAAAAAGAAAGAAGAAGAGGAAGATCAATATAAAAATTGTGCAAGTTTAAAATAATCAAAAGAATTCAGCACCAATTGCCAAACAGAAATTGAGGAGGAGCAATTTTTTAAAATTGCAGTAACTAAAGCCAAGGAGGATTGTTGAAAATTGCTTTCAGTTACTGTAGTAATTTTTAGCATAGTAAGTTGTCTGATGTCTATTACATTGTTGTAGTGGTTAATATTACTTAGCCTCTTTGAATTTTTGTTATGCAACGTTCTTGTAGATTATGTAATCAAGTTGGTTAGTTGAATCCCTTCTATGCTTGATAAAATTATGGATAGATGTTTTCAACCCTTTTTTTTTGCACCATATTTTAAAAAAAAAACAACACAATAATGAGAGCAAATTTCTTTAAAGAGTCATGTCGCCTTGTTGCAACAGCAATGGTGGCTGATATTACATATTCAGTATTACTGGTACTAAAGTAGAATTTAAGTTATTGGTGCATTTGTTCTTGCTATTGCTCTAAAAAGTTTATGCTTTTTCAGAGCATTAAACTTTGATAGAATACTTATGTTCATTCAGTCTTTAGACATAATCTAAGATATGAACACATATTTACATAGCATCTACACTGCATTATTCAGTTCTAGTGGTCTCACATGCCATTTCATCTTTTTTGGCAGCAATACTCAAAACAGCTTGAGGAAACTATGGAAAGATTTGCACGGGGAGACATTAGAATTCTTATATGTACAAATATAGTAGAAAGTGGCCTTGATATTCAAAACGCAAACACAATCATCATTCAAGATGTTCAGCAATTTGGACTTGCACAATTGTATCAGGTTTTTACATTCTCTTGCCTAAACGAACAGCAAGATTTTGGTGTCATGTTTTTTTCCATCCCTATTGGTAGTTTTTTCCTCCACTGTTTCAGTTACATTAAAGCAGGAAGCAAATCATTTCTTTTTATCTGTTGAATTTTCTTCGGCATAAGTGATAGAAACATAGTTTATTTTGACGCAGCCTTTTGTTCAATTTTACATGAATTTGATGTTCCTTGACAGCATTTGCTGTTTTCCCAGCTCTGAGTTATATAGAATCTCTCTGCTTCCTTAATATACCTGATTAGCAACCAGCTTTTGACAAAAAAAATGTTCTCTACTTTTTCTCTCTCTTGAAGAATGTGCCTAGAAGTCTTCCCACCTTTTCCGGTTAATTCCGAGGCTCTTTCCGGTGATAATCATGGTCAGAAACATTTATTTCACTGCTGGGAAAAAATCTTTTGAGGTAGTAGACATTAGCGAAGACCATTCACGATGGTTTCTGTGGATCAAGCGGAACAGAAGATTTACAAGAAGAATTAAAATAGACGAAAATAACTTAATATGGGTCTGCGAAGCGATGAAACAAGCATCAAGGGGAACAGGCTGTCTATGTAGGAGATGGCGGAGGAAAGTTGAGGCATACCTCTACAGAGTTGTACAAAATTTCAACATGTATGGTCGTTTTGTCAGGATCGAAGCAGTGCTTGGTGACCGAAAATCTTCAGTGATTATCCCAGAAATAATCTGCAATGGCGGATGGGCTGAAATAGCAGAAAAAATTCTAGGTCAGCTGCGTAGCACTTCAAAGCCTCCTAGGGTTCCGCTGGCAAGAACATTCAGGGAGGCGGCTTCTCCTTCTGACTAGCCAGTTCATACTAAAACCGCAGCCATTGAAGTTCAAAACTCCATCAAAATCAGCCACGCAGCAGAGTTGGATAGTTCCAAATTCCTCTCACTATACTTGATTGGAATATTCAACGATCCTTTCCACTCAAATCCCAACACCGACATCATCCAGAAGTGGTTCTTAAACAGGTGGAAAATCACGGCGGGCCTGAAAATCACTCCTCTCTCACACAATCAGTTTCTATTCGAAATGCCTTCACGACAGGAGGCAGCGCGGATTATGGCAGGAGAATGGTTTTGGAATGGTCGAAAATTGACTCTCAAGTGGTGGTCGCCAGTGGTCGGAACTGAAATTGACACACCAATCTCAGAATTTCAATGGGTTAAGGCCTTGGGCATTCCCCTACATGCTTGGTCAGAAAGCACTTTTAAGGTTATTGGTGATATGTGTGGGGGATTTTGTGGATACAGATGAAGATACAAAAAGGAGGAATCATCTGTATTGGGCTCTGATCTGTGTCAAGAAGTCGGGAACAGTCCTTCCAAACAAGATTAAGCTGGAAGTAGGAGACCGAAACATTGAAATCACGATTATAATTGACACCCATGCAAAATTTTGGGTGGCCGGAAATAGTAAAAGCAGTGCCGGAGATAGCAACGCGACAAACGATGGCAAAAGGGAAGCATCGAGTCTCGCACCGCTAAAGTTTGCTGACAGGCAGGTGGGGCAGCACGTGATTTGTCCAGAAATTTCAAAATTCTGCGATGGAGTGGGACCCTCAGCATATAAAGGTAAAATTGCAAAGCTCAACAATGTTTAATGGCCGCTGGAGTATCACAAACATGGGCCAAAAAGAAGACAACATACTAAAACATTCTGGAAATCAAAAGGGTTAGCCCAAAATAAATATGTTGGCACTGCACCTCCCAGCCTCATCGTGTCTAACACTTTTGACCCTTTAACGAAGGACACAGAAATTTCAAGTCTCAACCAGGAGGCTGAAATTAGTGAAGCATTGGCTGGGTACATGTCAGAACAACTCGATGCAGATGATGAGAGTGAAAAGATCCGAATCCCCAAGGCACCACGAATCACTCCTCAGAATAATCAATCAATCTTGGCAAGTGCATCAGATTCATAATACTCTTCCCAGAATTTCTGTGACTCTTCATCTCTATCATGCAACGATGAAGTCAACCTCACCTCAACAGTCATTGAAACCTCCAAATGGACCAAGCTTGTGATGGTGAAAGCTTGCAAGGCTTTCGGGGTAAACGTTGCTGGATTTGAACACGAACTCCTAAATATGGTGTATAGATTGGAACAACAAAAACAACTGCAGTTACAACAAAAACAAGTAATTCAGGGGCAGGACAACCCAAAAAGGAAGAAGAAGGGAGAGAATGAACTAAAGAAGCTTCTTTGTGACCTGATACAACATAATGGCGGTTAGGGGTAGGAAATACAAAGCCTTCTCTGGATGAAAGTTAAAATCTTGAGTTGGAATGTCAGGGGGCTCAACGAGATCAATAAAAGGAGCACAATAAAGTCCTTAATCAGACAGTGGAATCCCGATGTAATATGTTGCAGGAAACCAAACTAGATGAATTGTCGAGCTTGATCAGTGGGCAGTTATGAGGAAACAGATGGGCCAGCTGGGCAGAACTAAAAGAAAATGGTACAAGGGGAGGCATCATCGTTCTATGGGACAAGCGGAACTGGGTAAATATTAGCACACATCAGGGGATCTACACAGTCTTATGTATGCTGGAAAGTGTGCAGGTTAATTTTCGATGGTGTTTCACTGGAGTTTATGGGCCTCATACTAACATTGAAAGAGAAGATCTTTGGTATGAGCTTGCAGCAATAAGAGGATTGTGGGATGACAGTTGGGTCATAGGAGGCGACTTCAATGTTTGTCGCGTTGAAAGTGAGAGATACAATTGCATAAGAAGGTCCAAGGCTATGAGTAGCTTCAATGACACCATCTCGGACCTTGGCCTCATGGATTTGCCTTTGCAGGGGGCATTCTATACCTGGACTAGAGGAGATGATCCAATTCAAGCATCAAGAATTGATCGGTTCTTGATATCCCCAGAATGGAATGATTGTTTTAACGCAATCAATCAATTAGCACTCCCTAGTGTAGTCTCCGATCACAGGCCTATACTCTTGAAATGTGGGGTTGGGAGTCTAGTTCATCTTAATTCAAGTTCGAAAATATGTGGCTAGAGGAAGAAGGCTTCTTGGAGAAGGTCAAAACATGGTTGCAAAGTTACTCTGTGAATGGGACACCAGATTTTATTTTATACTAGAAGTCAGATACCTGAAGAAAGATATCTCAAATTGGAATAGAGAGGTATTTGGCAAAATTGACACTAACAGAAACAGGGCACTGGAAGAATTAACTGCTATCGAATATGCTTCAGAGAATAGAGCGCAGACTCCAGAAGAGAATCCAAAGTTCTATGTCTCAAGTTGGAATTGAAGAAGTATCTTGGAGGCAAAAATCAAGATGCTTATGGCTTAAGGAGGGTGATAGGAACACAAAATATTTTCAGAAAGTTTCCAATGGCCGTAGGAGGAACAATACCATCGATAAACTCAAAGTAGGTGAAGTCATAGTGGATGATAAAGCTGTAATCAAAGAAGAAATTTTGAGTTTTTACCAGCAACTATACACTGAAAATGAACCTTGGAGGCCCACTGTTAGCTTTGAAAGTATGACATCCATCTCCCTGGATGAAAGAGACTGGCTGGAAAGAAATTTCGAGGAGGAAATTCATGCTACCATCAAGACTTGTGCACCTGCCAAAGCCCCATGACCGGACGGATTCAGAATGGCCTTTTCCCAGAAGGCATGGGATGTCATTAAATATGAAGTAATCGGGGCCCTAAACCACTTTCACCATAACTGTCATATGGTCAAGTCCTATAATGCTTCCTTTATTGCCCTTATTCCTAAAAAGAAAGGGGCAATAGAATTAAAAGATTACAGACCCATCAGTCTTATTGGGAGTGTGTACAAGTTAACATCAAAGATTCTTGCGGAGAGACTTAAATCTGTAATTGGGAAGTTGGTATCAGGCTACCAAAATGCATTTGTTAAGGGTAGACACATCTCAGATGCTGTATTGATAGCAAATGAGGTGCTGGATTGGAAGCAGAAATCAGGAGACGCAGGGTTGTTGTTTAAACTTGACATAGAGAAAGCTTTTGACAAGCTTAATTGGGCTTATCTGTTCACAATTTTGAGAAGGATAGGATTCGGGAGTAGGTGGATCAAATACAGCTTGACAACGGTAAAATACTCTGCTCATTAACAGAGAGCCTGTAGGTTTTTTCTCTCCTCAAAAAGGGTTGAGGCAAGGAGATCCCCTCTCTCCCTTCTCTTCATCCTCGCTATGGAAGGCCTTAGTAAGATGCTCCAAAAAGCATGTCAACTACAATGGATTGAAGGCTTCAACGTAGGCAGCCCCACGGGAAACAATGTCACAGTTTCACATTTGCTGTATGCGGATGATACTCTGCTATTTTGTGGGGCAGATAGATCACAAGTTATTAAGCTAAACTTGATTTTGCACATCTTTGAAGCTGTCTCTGGACTACACACATATGTCAAAAAGCATTATCTATCCAGTAAACTCAGTGCAGAATTTGGTAGAGCTAGCTGGAATCATGTCCTGCAACATAGGGTCCTTCCCAACAACTTATCTTGGGTTGCCCTTAGGTGCAAATTTCAATGCTAACGAGATATGGTTGGGAATAATTGAGAAGTTAGAAAAAAGACTAGCAACATGGCAAATGCAGTATCTTTCTTTTGGAGGAAGAGTTACATTGATTAATAGTGTAATGGACAACATCCCAACATATCACATGTTTCTTTTCCCTATACCATCAAAAGTTCTCAAGAAGCTCGATAGAATGAGAAGGAATTTTCTATGGGAAGGAAACAACAAGGATCACAAGTTTCACTTGGTTAAATGGGAAAAAGTGACAACCTAAATCTCAAGGGGGTTTGGGCATCAAAGATCGTGTAGCTAACAACAAAGGCATGATGATGAAATGGTTATGGAGGTACGGAACTGAAGACATTGGTTTGTGGAAAGAGGTGATCAAAGCTAAACATGGTGAGCTTACTCACTGGTCCACAAATGTCTCAACAGATGCATATGGAGTTGGTCTATGGAAAAGCATCAGTAAACTTTGGCCAGAGTTTGCTGGGAACGTCACATTTAGAGTTGGCGATGGATCTCACATCAAATTTTGGAAGGACATATGGTTGGGAGACAACTTTGGGTGAGGAATTTCCAAGTTTGCACCTCATTGCAATTGAACCAAATCTACCATTGCATCCAACAGATCAGACGACAGTTGGGACCTAAGGTTCAGGAGAAACCTAAATGACTGGGAACTTAATGACATATTTGCCTCTTTGCCAAATTGCAGCCCTGCTCCTTTTCACCCCAAGAGCCTGATAGATTGAAATGGGGTAACTCAAGAAAAGGTCACTACACAGTCAAGGAAGGATATCACAGCTTATGCTCAAGGAACTCAATGATTGACAAATGGCCATGGAAGCATATATGGAAGACAAAATTACCTACCAAAGTGATCTGTTTCAGTTGGACTGCACTACATAACTCATGCCTCACACATGATAATCTCTCCAAAAGGAAATTCCAGCTTGCTAACCGATGCTATTTATGCCACAAGCACACAGAAAGTGTCAACCACTTGCTACTACACTGCCCAGCTGCCTCACACCTATGGAATATGTTTTGTTGTTTTTCTGGCCTTTCTTGGGTCATGTTTTTCTCTGTTACGGATACTCTTGAAAGTTGGAATTCACGGGATGTTGACAAAGCCACCAAGAGTATGTCGATGATGATCCCTGGTGTTATCTTCTGGTGTTTATGGACAGAGAGGAACAAAAAATGTTTCGATGGAATTTCAACTTCTAGAGATCTCTGGCGAGGAAGATGTCTAGTTAGCCTTTTTAGTTGGTCCAAACTGACCCCTGTAAATAATTTAGAACTCTTCTTGGATTTTGTTAGCTCTATAGCTCAGGAAGAGGCTACAAATCCTTTTTTGTGAGCTTAAATGATCTATCCTTCTAAAGCTTGCATCTTCTTGATGCCTTGAAATGAATCTACTTACTTCATCAAAAAAAAAAAATACCTGATTAATCACACGAGACGGTTAATGGTGCTAAAGGAGAAAATTTACCTCTTGGGATAACTTAGGTAGCGGGGGTTTAGTGTAGCAAGTATTTGTTACATTCAAAAACTCATTGTAGTCTTGGGATTACTTGAAGTTCAATAGCATTTATAGTATTATTTTCCTTTTAGTGGCATTACAGTCAAGCTCAGATTTTTATGAGACAAGGAATTGTTACAGAGAGAACAAATGTCGTTGAACCAGCCTTTCTGTGATATTTGTGAAGTCTTCCCTTGTTTCTTTCATAAGGAGTTTCTGGGGTTTGGTTCTCTTGTGATGTTAACCATGGGAAAACACTGACCTGCTATGCAGCTGTGGTAATGAAGTCAATCAATTGTCTTCTACTTAATGTAGTGATTTCAAACTCCTATGAAGAAGCATCTTTTCTATCTTTCCCAGTTTTTTTTTTCACTGTATTGACTACTAAAGTTGATTGGTCAAAGATTTTCAGCCCTTAATTTCTAAACTTGGCCCCTGCCGCTGTTAGCTAAATCATTAACTTGTCTCTTAATAGCTTATGGTCAACACTGTAGATTTTGCAGTTAGATATCTTTTAGCAGATTTTATGAGACTCGTATTATGACCATTGGCTAATCTGGACATGATGATGTGTTTCTGACAGTTCCATATCTTTACTTTTCAGATTCTTCTCTATTGTTGTTATTGATTGTTATAATTTCAATTGCTGTGACTTCTATACTCTTTCTAATTCCTACTCCCTCTTTGATTATTGTAGTTGCGTGGAAGGGTCGGACGGGCGGATAAGGAAGCTCATGCACATTTATTCTATCCTGACAAATCACTTCTTTCAGACCATGCACTAGTATGCTCTTTTTCCTCTATATTTTTCTAATGACAGGATATGTAGGAGATGGTTCATATATTCTGTCTTCTTGCCTTTATTCTGGTAATGTTGTGGTATTTTCCAACAGAATAGAGGTTCTAATTTATCAAGGATGAATTTCATTATATGCATGTTGTGTGAAGTTATTTGCAGAAGATTGATCTTTATTATGTCTCTAATATAGCATTCATTTGACAATTTAGGAGAGACTTGCTGCTCTTGAAGAGTGCTGTGAACTTGGTCAAGGTTTTCAGCTTGCAGAAAGAGACATGGCTATTAGAGGATTTGGCAATATTTTTGGTGAGCAACAGACGGGGGATGTCGGCAATGTGGGCATTGATCTATTCTTTGAGATGTTGTTTGAAAGCTTGTCTAAGGTCTGTTTGCATCATCCTTTTATTTCATTATTACTGGTTACAAAGATAAAATTCACTGGTATGTGCCTAAGATAGGATTGGTTTCTGCATGCTATCCTCCCTTAGTTGAGATTATGATATTTGTATGCATCGATTATGTACCTTTCAAAATAAAAGGTAATGAGATCTGTTATCTTGTGTTATTCCAGGTTGATGAGCATCGTGTAATATCAGTTCCTTACCCTGCAATGGAGGTATTTAGTGCTCTCTATATTTTCTATAAGTTGATACATTAATCTAGTACAAAATCCATTTTACGTCTGTGCTTGTGTCCCATTCTCTAATACCTAATCCGTGCTGCTTTTTTAAGGAACTATCATTAATTGATTTTTTAGATGATTGGTTAGAATGTCAACTAGAGAAATTCGGATCTTAAATAGGAAAAATTTTGGGACACTATTTTGAATTAGTAAATGTTGAGTCATGTACGACCAGAATTTGCCTATCTACCTACTATAGTGAATTATGAGCTTTTCATTAGCACACCCAATTAAGCTTTGATTATGCTTTGATTATCATTGAAAGATATACTAGTCTTCTACAGACAAGAATCACAAACTAGACTTGACAATCGAGATGCATATGCACGATCATGTTTTTTTTTCTTTGTTCTTTCGGTAATTATGTATAAGTTGCAGTTATAAAGAACATATAAACAAGTTCTCTCACTATTATTTCAAAATTAAAGGGAGTCTTCTTGAGATTAGCTATTAAATATGTGAAAAGTTCTTAAAGTGTAGTTACGAAAGTATTCGATTTTCAGAGTGGGATGAAATTTCTCAAAAAAATTCATTCCATCTCAATATATATGACCTGACTTTGTTACCAGTTTCAAAAAAAGTATATATGACCTGACTTGATGTATGTCGACTGTTAGGAGTTGAGTATTTGATCAATTAGTACTTTGGGTTTTGATAAAAGAGTGTTGAAAAAAATAGTTTTAACACTACGTGATTTTTTCTAATCTTGTTAAGTCTTGATGGACAGAGTTACCCGATACCTGTGCTAGTGGGAGGTAGCAGGTACCTCTTCAAATTAGTCTATGTACATGAAAGCTGACCTCGAACACCTCGGTTAAAAAAAGAAGTATGGAAAAGTGAAGTTGTTAGTTTAAACGATGTGGTGTCAAGTTTGAATTATCTAGGATAGCATCAATTATACTATTTCATTTTGTTGGAGGAGAGGATTTTCAAGATTGTGAAAGTTGTCAACTATTTTATGTCGCTCCAAAAAAGAAAAGTACGTCAAGTTTTTTGGTTATATGGAGGACTAATTAGAAGTGAAAAAATAGCTAATAATCTAGAGGGTTTTTAAGTAACTGGGCAATTATACGTCTTATATGAAACATTAAAGGTATAAATCACTACTTCATTGCATGAAGTTTAAATAATTGTTAAAAAGGCACAAGAAAGAATGCAAGGAAACAACGACGAAGATAAGAAACTATACAGTAATAAATTATCGATTGGAAGACTGGAAGTCACGCATTATCTAGTTTCTTCAGTTGAGTCTCTAATTTACTGCCTTATCATCGTCTCTTGCTTCGGAACATGTAATAAGAGTACTAGGTAGAAAAATAAAGACAAAATGCTTGGAATTGGGATGCATGATCAGGGAATTAAGCTGGGTTAGTTATCTAAATGTTGAGCATGACCTCACTTGTCCGCTAGGCATGTGACATGTGGAAACGGCTTCGTATAGGAAACTATAGACTGGTGGTTCTACAAATAGCTTGTTAGAATTTGTGTCTCCTGTTAAAGTTATTCTGCTTTCACATCCAATGTGAATGATATAGCTTATAGTTTATCTGCTGAACTAATTTCATTGGCAATTACATATACCATTGTGAAAGATATAGCTTATAGTTTATCTGCTGAACTAATTCCATTGGCAATTGCAAATACCATTGTGATAGATATAGCTTATAGTTTATCTGCTGAACTAATTCCATTGGCAATTGCAAATACCATTGTGAAAGATATAGCTTATAGTTTATCTGCTGAACTAATTCCATTGGCAATTGCAAATACCAGTGAAAGATATAGCTTATAATTTATCTGCAGAACTAATTCCATTGACAATTGCACATAATGGGGGTATAACCTTTCAAAATTCTCTCACTTCCTCTTCAGCTTGATATCAATATAAACCCTCATCTTCCTTCTGAGTACATAAACCATTTGGAGAACCCCATGCAAATCATCAATAGCGCTGAAAAAGCAGCTGAAAAGGACATTTTCAACCTGATGCAATTTACGGAAAATCTGAGGCGTCAGTATGGCAAAGAACCTTACTCTATGGAAATCCTATTGAAAAAGCTTTATGTCAGAAGAATGGCAGCAGATTTAGGAATTACCAGCATTTATGCTTCAGGAAAGATGGTTGGCATGAAAACAAACATGTCAAAAAAGGTTTTCAAGTTGATAACGGATTCAGCAACT</genome_strand>
        <mrna_strand>TTTCGAGGGAATAGATAATGTGGCAAACCCGACGTTCCATTGAAGCTCTGCTTTGAGAAATTAGAACAAGTTTGCTCTTACAAGTTTATCCATCCATGGCCGCTGCAAAGGCCTCCCTCTTCTTCTCTCCCTCGGAGTGCTTTCTCACAACTCGTCTCTGCAAACTCTTCTCCACTACTCAAAAACCCTCTTTTCCCTCTCCCTCCTCCTCTTCTATTACCTTAACCAATGTCCTCAATGCCGATGCTGTACATACCAAATTGCCTCCCCGACTACGGAATGCAAGACAGGAGCAAGAGCGAGACGCCATTTCTCTACTCAACGAGCGAATTCGCCGGGAGCATGCTAAGAGAGATCACTCCCCTCTTAGACCGGCCATGGATTCCGAGGAGGCTGATAAGTACATTCAGCTCGTGAAAGAGCAGCAGCAAAGGGGCCTTCAGAAGCTCAAAAGCGACAGAGCCAGACAAGGTGCTCCACATGATGCAGCTCAACCTACCTTTAGTTACAAGGTGGACCCTTACACTCTCCGTTCCGGCGATTACGTGGTCCACAGGAAAGTTGGAATTGGTCGATTCGTTGGCATCAAATTTGACGTTCCAAAGGATTCCAAAGAGCCTATTGAATACGTCTTTATTGAGTACGCTGACGGTATGGCTAAATTACCCGTCAAGCAGGCATCTCGTTTGCTCTACCGTTACAACCT............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................CCCTAATGAAACCAAAAGGCCACGGACTTTGAGCAAGTTAAGCGATACTAGTGCATGGGAGAGGAGAAGGATGAAGGGAAAAGTTGCAGTTCAGAAAATGGTTGTGGATCTAATGGAGCTATACCTACACAGGTTAAAACAAAAAAGGCCTCCATACCCCAAGACTCCAGCTATGGCTGAATTTGCATCTCAGTTTCCTTTTGAACCCACACCGGATCAGAAACAG........................................................................................................................................................................................................................................................................................................................................................................GCATTCTCAGATGTAGAAAGGGACTTGACAGAGAGTGAAAATCCAATGGACAGATTAATTTGCGGAGATGTTGGTTTTGGTAAAACTGAGGTTGCACTGCGTGCCATCTTCTGTGTAGTCTCTGCAGGGAAGCAAGCTATGGTTCTAGCGCCAACAATAGTTTTAGCTAAGCAACATTTTGATGTTATCTCAGAGAGATTTTCAAGATATCCTAACATAAGAGTTGGACTTCTTAGCAGGTTTCAG........................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................ACCAAGTCAGAGAAAGAGGAGTACTTGAGTATGATTAAAGACGGCCATGTGGACATTATTGTTGGGACTCATTCACTACTTGGCAATCGGGTTGAATATAATAATCTGGGTCTACTTGTGGTTGATGAGGAACAG............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................AGGTTTGGTGTAAAACAGAAGGAGAGGATTGCTTCATTT-AAACTTCAGTGGATGTACTCACACTTTCAGCAACGCCTATTCCGAGAACTCTATATTTAGCATTAACTGGATTTCGTGACGCTAG...........................................................................................................................................................................................................................................TTTGATCTCAACACCGCCTCCTGAGAGAGTTCCAATAAGAACACATCTTTCAGCTTACAGTAAGGACAAAGTAATATCAGCTATCAAGCATGAATTGGACCGTGGTGGTCGAGTTTTTTATGTCTTGCCCCGCATTAAAG........................................................................................................................................GTCTTGAGGATGTTATGGAATTCTTAGAACTGGCATTTCCACATGTTGAAATAGCTATTGCTCATGGAAAG.................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................CAATACTCAAAACAGCTTGAGGAAACTATGGAAAGATTTGCACGGGGAGACATTAGAATTCTTATATGTACAAATATAGTAGAAAGTGGCCTTGATATTCAAAACGCAAACACAATCATCATTCAAGATGTTCAGCAATTTGGACTTGCACAATTGTATCAG....................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................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.....................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................CTTGATATCAATATAAACCCTCATCTTCCTTCTGAGTACATAAACCATTTGGAGAACCCCATGCAAATCATCAATAGCGCTGAAAAAGCAGCTGAAAAGGACATTTTCAACCTGATGCAATTTACGGAAAATCTGAGGCGTCAGTATGGCAAAGAACCTTACTCTATGGAAATCCTATTGAAAAAGCTTTATGTCAGAAGAATGGCAGCAGATTTAGGAATTACCAGCATTTATGCTTCATGAAAGATGGTTGGCATGAAAACAAACATGTCAAAAAAGGTTTTCAAGTTGATAACGGATTCAGCAACT</mrna_strand>
      </alignment>
    </predicted_gene_structure>
  </spliced_alignment>
    <total_number_ESTs_reported>1</total_number_ESTs_reported>
    </alignment_module>
  <PGL_module xmlns="http://www.genomethreader.org/GTH_output/PGL_module/">
    <predicted_gene_location>
      <PGL_line PGL_serial="1" PGL_strand="-" PGL_start="95155" PGL_stop="78383"/>
      <AGS_information>
        <AGS_line AGS_serial="1">
          <exon_coordinates>
            <exon e_start="95155" e_stop="94450"/>
            <exon e_start="93605" e_stop="93380"/>
            <exon e_start="93019" e_stop="92774"/>
            <exon e_start="91965" e_stop="91831"/>
            <exon e_start="90858" e_stop="90734"/>
            <exon e_start="90498" e_stop="90359"/>
            <exon e_start="90222" e_stop="90152"/>
            <exon e_start="88294" e_stop="88133"/>
            <exon e_start="81347" e_stop="81261"/>
            <exon e_start="81036" e_stop="80863"/>
            <exon e_start="80674" e_stop="80630"/>
            <exon e_start="78691" e_stop="78383"/>
          </exon_coordinates>
        </AGS_line>
        <SCR_line>
          <exon-intron don_prob="0.999" acc_prob="0.966" e_score="1.000"/>
          <exon-intron don_prob="0.995" acc_prob="0.997" e_score="1.000"/>
          <exon-intron don_prob="0.662" acc_prob="0.000" e_score="1.000"/>
          <exon-intron don_prob="0.996" acc_prob="0.877" e_score="1.000"/>
          <exon-intron don_prob="0.943" acc_prob="0.993" e_score="0.992"/>
          <exon-intron don_prob="0.997" acc_prob="1.000" e_score="1.000"/>
          <exon-intron don_prob="0.920" acc_prob="0.983" e_score="1.000"/>
          <exon-intron don_prob="0.957" acc_prob="0.996" e_score="1.000"/>
          <exon-intron don_prob="0.814" acc_prob="0.904" e_score="1.000"/>
          <exon-intron don_prob="0.984" acc_prob="0.997" e_score="1.000"/>
          <exon-intron don_prob="0.999" acc_prob="0.232" e_score="1.000"/>
          <exon-only e_score="0.997"/>
        </SCR_line>
        <exon-intron_info xmlns="http://www.genomethreader.org/GTH_output/PGL_module/predicted_gene_location/AGS_information/exon-intron_info/">
          <exon e_serial="1" e_score="1.000">
            <gDNA_exon_boundary e_start="95155" e_stop="94450" e_length="706"/>
          </exon>
          <intron i_serial="1" don_prob="0.999" acc_prob="0.966">
            <gDNA_intron_boundary i_start="94449" i_stop="93606" i_length="844"/>
          </intron>
          <exon e_serial="2" e_score="1.000">
            <gDNA_exon_boundary e_start="93605" e_stop="93380" e_length="226"/>
          </exon>
          <intron i_serial="2" don_prob="0.995" acc_prob="0.997">
            <gDNA_intron_boundary i_start="93379" i_stop="93020" i_length="360"/>
          </intron>
          <exon e_serial="3" e_score="1.000">
            <gDNA_exon_boundary e_start="93019" e_stop="92774" e_length="246"/>
          </exon>
          <intron i_serial="3" don_prob="0.662" acc_prob="0.000">
            <gDNA_intron_boundary i_start="92773" i_stop="91966" i_length="808"/>
          </intron>
          <exon e_serial="4" e_score="1.000">
            <gDNA_exon_boundary e_start="91965" e_stop="91831" e_length="135"/>
          </exon>
          <intron i_serial="4" don_prob="0.996" acc_prob="0.877">
            <gDNA_intron_boundary i_start="91830" i_stop="90859" i_length="972"/>
          </intron>
          <exon e_serial="5" e_score="0.992">
            <gDNA_exon_boundary e_start="90858" e_stop="90734" e_length="125"/>
          </exon>
          <intron i_serial="5" don_prob="0.943" acc_prob="0.993">
            <gDNA_intron_boundary i_start="90733" i_stop="90499" i_length="235"/>
          </intron>
          <exon e_serial="6" e_score="1.000">
            <gDNA_exon_boundary e_start="90498" e_stop="90359" e_length="140"/>
          </exon>
          <intron i_serial="6" don_prob="0.997" acc_prob="1.000">
            <gDNA_intron_boundary i_start="90358" i_stop="90223" i_length="136"/>
          </intron>
          <exon e_serial="7" e_score="1.000">
            <gDNA_exon_boundary e_start="90222" e_stop="90152" e_length="71"/>
          </exon>
          <intron i_serial="7" don_prob="0.920" acc_prob="0.983">
            <gDNA_intron_boundary i_start="90151" i_stop="88295" i_length="1857"/>
          </intron>
          <exon e_serial="8" e_score="1.000">
            <gDNA_exon_boundary e_start="88294" e_stop="88133" e_length="162"/>
          </exon>
          <intron i_serial="8" don_prob="0.957" acc_prob="0.996">
            <gDNA_intron_boundary i_start="88132" i_stop="81348" i_length="6785"/>
          </intron>
          <exon e_serial="9" e_score="1.000">
            <gDNA_exon_boundary e_start="81347" e_stop="81261" e_length="87"/>
          </exon>
          <intron i_serial="9" don_prob="0.814" acc_prob="0.904">
            <gDNA_intron_boundary i_start="81260" i_stop="81037" i_length="224"/>
          </intron>
          <exon e_serial="10" e_score="1.000">
            <gDNA_exon_boundary e_start="81036" e_stop="80863" e_length="174"/>
          </exon>
          <intron i_serial="10" don_prob="0.984" acc_prob="0.997">
            <gDNA_intron_boundary i_start="80862" i_stop="80675" i_length="188"/>
          </intron>
          <exon e_serial="11" e_score="1.000">
            <gDNA_exon_boundary e_start="80674" e_stop="80630" e_length="45"/>
          </exon>
          <intron i_serial="11" don_prob="0.999" acc_prob="0.232">
            <gDNA_intron_boundary i_start="80629" i_stop="78692" i_length="1938"/>
          </intron>
          <exon e_serial="12" e_score="0.997">
            <gDNA_exon_boundary e_start="78691" e_stop="78383" e_length="309"/>
          </exon>
        </exon-intron_info>
        <supporting_evidence xmlns="http://www.genomethreader.org/GTH_output/PGL_module/predicted_gene_location/AGS_information/supporting_evidence/">
          <PGS_line>
            <gDNA_exon_coordinates>
              <exon start="95155" stop="94450"/>
              <exon start="93605" stop="93380"/>
              <exon start="93019" stop="92774"/>
              <exon start="91965" stop="91831"/>
              <exon start="90858" stop="90734"/>
              <exon start="90498" stop="90359"/>
              <exon start="90222" stop="90152"/>
              <exon start="88294" stop="88133"/>
              <exon start="81347" stop="81261"/>
              <exon start="81036" stop="80863"/>
              <exon start="80674" stop="80630"/>
              <exon start="78691" stop="78383"/>
            </gDNA_exon_coordinates>
            <referenceDNA id="C2_At3g02060" strand="+"/>
          </PGS_line>
        </supporting_evidence>
        <three_phase_translation xmlns="http://www.genomethreader.org/GTH_output/PGL_module/predicted_gene_location/AGS_information/three_phase_translation/">
          <description PGL_serial="1" AGS_serial="1" gDNA_strand="-"/>
          <translation>
            <gDNA_template>TTTCGAGGGAATAGATAATGTGGCAAACCCGACGTTCCATTGAAGCTCTGCTTTGAGAAATTAGAACAAGTTTGCTCTTACAAGTTTATCCATCCATGGCCGCTGCAAAGGCCTCCCTCTTCTTCTCTCCCTCGGAGTGCTTTCTCACAACTCGTCTCTGCAAACTCTTCTCCACTACTCAAAAACCCTCTTTTCCCTCTCCCTCCTCCTCTTCTATTACCTTAACCAATGTCCTCAATGCCGATGCTGTACATACCAAATTGCCTCCCCGACTACGGAATGCAAGACAGGAGCAAGAGCGAGACGCCATTTCTCTACTCAACGAGCGAATTCGCCGGGAGCATGCTAAGAGAGATCACTCCCCTCTTAGACCGGCCATGGATTCCGAGGAGGCTGATAAGTACATTCAGCTCGTGAAAGAGCAGCAGCAAAGGGGCCTTCAGAAGCTCAAAAGCGACAGAGCCAGACAAGGTGCTCCACATGATGCAGCTCAACCTACCTTTAGTTACAAGGTGGACCCTTACACTCTCCGTTCCGGCGATTACGTGGTCCACAGGAAAGTTGGAATTGGTCGATTCGTTGGCATCAAATTTGACGTTCCAAAGGATTCCAAAGAGCCTATTGAATACGTCTTTATTGAGTACGCTGACGGTATGGCTAAATTACCCGTCAAGCAGGCATCTCGTTTGCTCTACCGTTACAACCT : CCCTAATGAAACCAAAAGGCCACGGACTTTGAGCAAGTTAAGCGATACTAGTGCATGGGAGAGGAGAAGGATGAAGGGAAAAGTTGCAGTTCAGAAAATGGTTGTGGATCTAATGGAGCTATACCTACACAGGTTAAAACAAAAAAGGCCTCCATACCCCAAGACTCCAGCTATGGCTGAATTTGCATCTCAGTTTCCTTTTGAACCCACACCGGATCAGAAACAG : GCATTCTCAGATGTAGAAAGGGACTTGACAGAGAGTGAAAATCCAATGGACAGATTAATTTGCGGAGATGTTGGTTTTGGTAAAACTGAGGTTGCACTGCGTGCCATCTTCTGTGTAGTCTCTGCAGGGAAGCAAGCTATGGTTCTAGCGCCAACAATAGTTTTAGCTAAGCAACATTTTGATGTTATCTCAGAGAGATTTTCAAGATATCCTAACATAAGAGTTGGACTTCTTAGCAGGTTTCAG : ACCAAGTCAGAGAAAGAGGAGTACTTGAGTATGATTAAAGACGGCCATGTGGACATTATTGTTGGGACTCATTCACTACTTGGCAATCGGGTTGAATATAATAATCTGGGTCTACTTGTGGTTGATGAGGAACAG : AGGTTTGGTGTAAAACAGAAGGAGAGGATTGCTTCATTTAAAACTTCAGTGGATGTACTCACACTTTCAGCAACGCCTATTCCGAGAACTCTATATTTAGCATTAACTGGATTTCGTGACGCTAG : TTTGATCTCAACACCGCCTCCTGAGAGAGTTCCAATAAGAACACATCTTTCAGCTTACAGTAAGGACAAAGTAATATCAGCTATCAAGCATGAATTGGACCGTGGTGGTCGAGTTTTTTATGTCTTGCCCCGCATTAAAG : GTCTTGAGGATGTTATGGAATTCTTAGAACTGGCATTTCCACATGTTGAAATAGCTATTGCTCATGGAAAG : CAATACTCAAAACAGCTTGAGGAAACTATGGAAAGATTTGCACGGGGAGACATTAGAATTCTTATATGTACAAATATAGTAGAAAGTGGCCTTGATATTCAAAACGCAAACACAATCATCATTCAAGATGTTCAGCAATTTGGACTTGCACAATTGTATCAG : TTGCGTGGAAGGGTCGGACGGGCGGATAAGGAAGCTCATGCACATTTATTCTATCCTGACAAATCACTTCTTTCAGACCATGCACTA : GAGAGACTTGCTGCTCTTGAAGAGTGCTGTGAACTTGGTCAAGGTTTTCAGCTTGCAGAAAGAGACATGGCTATTAGAGGATTTGGCAATATTTTTGGTGAGCAACAGACGGGGGATGTCGGCAATGTGGGCATTGATCTATTCTTTGAGATGTTGTTTGAAAGCTTGTCTAAG : GTTGATGAGCATCGTGTAATATCAGTTCCTTACCCTGCAATGGAG : CTTGATATCAATATAAACCCTCATCTTCCTTCTGAGTACATAAACCATTTGGAGAACCCCATGCAAATCATCAATAGCGCTGAAAAAGCAGCTGAAAAGGACATTTTCAACCTGATGCAATTTACGGAAAATCTGAGGCGTCAGTATGGCAAAGAACCTTACTCTATGGAAATCCTATTGAAAAAGCTTTATGTCAGAAGAATGGCAGCAGATTTAGGAATTACCAGCATTTATGCTTCAGGAAAGATGGTTGGCATGAAAACAAACATGTCAAAAAAGGTTTTCAAGTTGATAACGGATTCAGCAACT</gDNA_template>
            <first_frame> F  R  G  N  R  *  C  G  K  P  D  V  P  L  K  L  C  F  E  K  L  E  Q  V  C  S  Y  K  F  I  H  P  W  P  L  Q  R  P  P  S  S  S  L  P  R  S  A  F  S  Q  L  V  S  A  N  S  S  P  L  L  K  N  P  L  F  P  L  P  P  P  L  L  L  P  *  P  M  S  S  M  P  M  L  Y  I  P  N  C  L  P  D  Y  G  M  Q  D  R  S  K  S  E  T  P  F  L  Y  S  T  S  E  F  A  G  S  M  L  R  E  I  T  P  L  L  D  R  P  W  I  P  R  R  L  I  S  T  F  S  S  *  K  S  S  S  K  G  A  F  R  S  S  K  A  T  E  P  D  K  V  L  H  M  M  Q  L  N  L  P  L  V  T  R  W  T  L  T  L  S  V  P  A  I  T  W  S  T  G  K  L  E  L  V  D  S  L  A  S  N  L  T  F  Q  R  I  P  K  S  L  L  N  T  S  L  L  S  T  L  T  V  W  L  N  Y  P  S  S  R  H  L  V  C  S  T  V  T  T   : S  L  M  K  P  K  G  H  G  L  *  A  S  *  A  I  L  V  H  G  R  G  E  G  *  R  E  K  L  Q  F  R  K  W  L  W  I  *  W  S  Y  T  Y  T  G  *  N  K  K  G  L  H  T  P  R  L  Q  L  W  L  N  L  H  L  S  F  L  L  N  P  H  R  I  R  N  R :   H  S  Q  M  *  K  G  T  *  Q  R  V  K  I  Q  W  T  D  *  F  A  E  M  L  V  L  V  K  L  R  L  H  C  V  P  S  S  V  *  S  L  Q  G  S  K  L  W  F  *  R  Q  Q  *  F  *  L  S  N  I  L  M  L  S  Q  R  D  F  Q  D  I  L  T  *  E  L  D  F  L  A  G  F  R :   P  S  Q  R  K  R  S  T  *  V  *  L  K  T  A  M  W  T  L  L  L  G  L  I  H  Y  L  A  I  G  L  N  I  I  I  W  V  Y  L  W  L  M  R  N  R :   G  L  V  *  N  R  R  R  G  L  L  H  L  K  L  Q  W  M  Y  S  H  F  Q  Q  R  L  F  R  E  L  Y  I  *  H  *  L  D  F  V  T  L   : V  *  S  Q  H  R  L  L  R  E  F  Q  *  E  H  I  F  Q  L  T  V  R  T  K  *  Y  Q  L  S  S  M  N  W  T  V  V  V  E  F  F  M  S  C  P  A  L  K  :  V  L  R  M  L  W  N  S  *  N  W  H  F  H  M  L  K  *  L  L  L  M  E  S :   N  T  Q  N  S  L  R  K  L  W  K  D  L  H  G  E  T  L  E  F  L  Y  V  Q  I  *  *  K  V  A  L  I  F  K  T  Q  T  Q  S  S  F  K  M  F  S  N  L  D  L  H  N  C  I  S :   C  V  E  G  S  D  G  R  I  R  K  L  M  H  I  Y  S  I  L  T  N  H  F  F  Q  T  M  H  * :   R  D  L  L  L  L  K  S  A  V  N  L  V  K  V  F  S  L  Q  K  E  T  W  L  L  E  D  L  A  I  F  L  V  S  N  R  R  G  M  S  A  M  W  A  L  I  Y  S  L  R  C  C  L  K  A  C  L  R :   L  M  S  I  V  *  Y  Q  F  L  T  L  Q  W  S :   L  I  S  I  *  T  L  I  F  L  L  S  T  *  T  I  W  R  T  P  C  K  S  S  I  A  L  K  K  Q  L  K  R  T  F  S  T  *  C  N  L  R  K  I  *  G  V  S  M  A  K  N  L  T  L  W  K  S  Y  *  K  S  F  M  S  E  E  W  Q  Q  I  *  E  L  P  A  F  M  L  Q  E  R  W  L  A  *  K  Q  T  C  Q  K  R  F  S  S  *  *  R  I  Q  Q   </first_frame>
            <second_frame>  F  E  G  I  D  N  V  A  N  P  T  F  H  *  S  S  A  L  R  N  *  N  K  F  A  L  T  S  L  S  I  H  G  R  C  K  G  L  P  L  L  L  S  L  G  V  L  S  H  N  S  S  L  Q  T  L  L  H  Y  S  K  T  L  F  S  L  S  L  L  L  F  Y  Y  L  N  Q  C  P  Q  C  R  C  C  T  Y  Q  I  A  S  P  T  T  E  C  K  T  G  A  R  A  R  R  H  F  S  T  Q  R  A  N  S  P  G  A  C  *  E  R  S  L  P  S  *  T  G  H  G  F  R  G  G  *  *  V  H  S  A  R  E  R  A  A  A  K  G  P  S  E  A  Q  K  R  Q  S  Q  T  R  C  S  T  *  C  S  S  T  Y  L  *  L  Q  G  G  P  L  H  S  P  F  R  R  L  R  G  P  Q  E  S  W  N  W  S  I  R  W  H  Q  I  *  R  S  K  G  F  Q  R  A  Y  *  I  R  L  Y  *  V  R  *  R  Y  G  *  I  T  R  Q  A  G  I  S  F  A  L  P  L  Q  P  :  P  *  *  N  Q  K  A  T  D  F  E  Q  V  K  R  Y  *  C  M  G  E  E  K  D  E  G  K  S  C  S  S  E  N  G  C  G  S  N  G  A  I  P  T  Q  V  K  T  K  K  A  S  I  P  Q  D  S  S  Y  G  *  I  C  I  S  V  S  F  *  T  H  T  G  S  E  T   : G  I  L  R  C  R  K  G  L  D  R  E  *  K  S  N  G  Q  I  N  L  R  R  C  W  F  W  *  N  *  G  C  T  A  C  H  L  L  C  S  L  C  R  E  A  S  Y  G  S  S  A  N  N  S  F  S  *  A  T  F  *  C  Y  L  R  E  I  F  K  I  S  *  H  K  S  W  T  S  *  Q  V  S   : D  Q  V  R  E  R  G  V  L  E  Y  D  *  R  R  P  C  G  H  Y  C  W  D  S  F  T  T  W  Q  S  G  *  I  *  *  S  G  S  T  C  G  *  *  G  T   : E  V  W  C  K  T  E  G  E  D  C  F  I  *  N  F  S  G  C  T  H  T  F  S  N  A  Y  S  E  N  S  I  F  S  I  N  W  I  S  *  R  *  :  F  D  L  N  T  A  S  *  E  S  S  N  K  N  T  S  F  S  L  Q  *  G  Q  S  N  I  S  Y  Q  A  *  I  G  P  W  W  S  S  F  L  C  L  A  P  H  *  R :   S  *  G  C  Y  G  I  L  R  T  G  I  S  T  C  *  N  S  Y  C  S  W  K   : A  I  L  K  T  A  *  G  N  Y  G  K  I  C  T  G  R  H  *  N  S  Y  M  Y  K  Y  S  R  K  W  P  *  Y  S  K  R  K  H  N  H  H  S  R  C  S  A  I  W  T  C  T  I  V  S   : V  A  W  K  G  R  T  G  G  *  G  S  S  C  T  F  I  L  S  *  Q  I  T  S  F  R  P  C  T   : R  E  T  C  C  S  *  R  V  L  *  T  W  S  R  F  S  A  C  R  K  R  H  G  Y  *  R  I  W  Q  Y  F  W  *  A  T  D  G  G  C  R  Q  C  G  H  *  S  I  L  *  D  V  V  *  K  L  V  *   : G  *  *  A  S  C  N  I  S  S  L  P  C  N  G   : A  *  Y  Q  Y  K  P  S  S  S  F  *  V  H  K  P  F  G  E  P  H  A  N  H  Q  *  R  *  K  S  S  *  K  G  H  F  Q  P  D  A  I  Y  G  K  S  E  A  S  V  W  Q  R  T  L  L  Y  G  N  P  I  E  K  A  L  C  Q  K  N  G  S  R  F  R  N  Y  Q  H  L  C  F  R  K  D  G  W  H  E  N  K  H  V  K  K  G  F  Q  V  D  N  G  F  S  N  </second_frame>
            <third_frame>   S  R  E  *  I  M  W  Q  T  R  R  S  I  E  A  L  L  *  E  I  R  T  S  L  L  L  Q  V  Y  P  S  M  A  A  A  K  A  S  L  F  F  S  P  S  E  C  F  L  T  T  R  L  C  K  L  F  S  T  T  Q  K  P  S  F  P  S  P  S  S  S  S  I  T  L  T  N  V  L  N  A  D  A  V  H  T  K  L  P  P  R  L  R  N  A  R  Q  E  Q  E  R  D  A  I  S  L  L  N  E  R  I  R  R  E  H  A  K  R  D  H  S  P  L  R  P  A  M  D  S  E  E  A  D  K  Y  I  Q  L  V  K  E  Q  Q  Q  R  G  L  Q  K  L  K  S  D  R  A  R  Q  G  A  P  H  D  A  A  Q  P  T  F  S  Y  K  V  D  P  Y  T  L  R  S  G  D  Y  V  V  H  R  K  V  G  I  G  R  F  V  G  I  K  F  D  V  P  K  D  S  K  E  P  I  E  Y  V  F  I  E  Y  A  D  G  M  A  K  L  P  V  K  Q  A  S  R  L  L  Y  R  Y  N  L :   P  N  E  T  K  R  P  R  T  L  S  K  L  S  D  T  S  A  W  E  R  R  R  M  K  G  K  V  A  V  Q  K  M  V  V  D  L  M  E  L  Y  L  H  R  L  K  Q  K  R  P  P  Y  P  K  T  P  A  M  A  E  F  A  S  Q  F  P  F  E  P  T  P  D  Q  K  Q  :  A  F  S  D  V  E  R  D  L  T  E  S  E  N  P  M  D  R  L  I  C  G  D  V  G  F  G  K  T  E  V  A  L  R  A  I  F  C  V  V  S  A  G  K  Q  A  M  V  L  A  P  T  I  V  L  A  K  Q  H  F  D  V  I  S  E  R  F  S  R  Y  P  N  I  R  V  G  L  L  S  R  F  Q  :  T  K  S  E  K  E  E  Y  L  S  M  I  K  D  G  H  V  D  I  I  V  G  T  H  S  L  L  G  N  R  V  E  Y  N  N  L  G  L  L  V  V  D  E  E  Q  :  R  F  G  V  K  Q  K  E  R  I  A  S  F  K  T  S  V  D  V  L  T  L  S  A  T  P  I  P  R  T  L  Y  L  A  L  T  G  F  R  D  A  S :   L  I  S  T  P  P  P  E  R  V  P  I  R  T  H  L  S  A  Y  S  K  D  K  V  I  S  A  I  K  H  E  L  D  R  G  G  R  V  F  Y  V  L  P  R  I  K   : G  L  E  D  V  M  E  F  L  E  L  A  F  P  H  V  E  I  A  I  A  H  G  K  :  Q  Y  S  K  Q  L  E  E  T  M  E  R  F  A  R  G  D  I  R  I  L  I  C  T  N  I  V  E  S  G  L  D  I  Q  N  A  N  T  I  I  I  Q  D  V  Q  Q  F  G  L  A  Q  L  Y  Q  :  L  R  G  R  V  G  R  A  D  K  E  A  H  A  H  L  F  Y  P  D  K  S  L  L  S  D  H  A  L  :  E  R  L  A  A  L  E  E  C  C  E  L  G  Q  G  F  Q  L  A  E  R  D  M  A  I  R  G  F  G  N  I  F  G  E  Q  Q  T  G  D  V  G  N  V  G  I  D  L  F  F  E  M  L  F  E  S  L  S  K  :  V  D  E  H  R  V  I  S  V  P  Y  P  A  M  E  :  L  D  I  N  I  N  P  H  L  P  S  E  Y  I  N  H  L  E  N  P  M  Q  I  I  N  S  A  E  K  A  A  E  K  D  I  F  N  L  M  Q  F  T  E  N  L  R  R  Q  Y  G  K  E  P  Y  S  M  E  I  L  L  K  K  L  Y  V  R  R  M  A  A  D  L  G  I  T  S  I  Y  A  S  G  K  M  V  G  M  K  T  N  M  S  K  K  V  F  K  L  I  T  D  S  A  T </third_frame>
          </translation>
          <probable_ORFs xmlns="http://www.genomethreader.org/GTH_output/PGL_module/predicted_gene_location/AGS_information/three_phase_translation/probable_ORFs/">
            <orf_entry>
              <id_line>
                <gDNA id="C02HBa0032J10.4" strand="-"/>
                <serials PGL_serial="1" AGS_serial="1" PPS_serial="1"/>
                <orf_info>
                  <exon_boundaries>
                    <exon start="95099" stop="94450"/>
                    <exon start="93605" stop="93380"/>
                    <exon start="93019" stop="92774"/>
                    <exon start="91965" stop="91831"/>
                    <exon start="90858" stop="90734"/>
                    <exon start="90498" stop="90359"/>
                    <exon start="90222" stop="90152"/>
                    <exon start="88294" stop="88133"/>
                    <exon start="81347" stop="81261"/>
                    <exon start="81036" stop="80863"/>
                    <exon start="80674" stop="80630"/>
                    <exon start="78691" stop="78383"/>
                  </exon_boundaries>
                  <frame>2</frame>
                  <number_coding_nucleotides>2370</number_coding_nucleotides>
                  <number_encoded_amino_acids>790</number_encoded_amino_acids>
                </orf_info>
              </id_line>
              <predicted_protein_sequence>EIRTSLLLQVYPSMAAAKASLFFSPSECFLTTRLCKLFSTTQKPSFPSPSSSSITLTNVLNADAVHTKLPPRLRNARQEQERDAISLLNERIRREHAKRDHSPLRPAMDSEEADKYIQLVKEQQQRGLQKLKSDRARQGAPHDAAQPTFSYKVDPYTLRSGDYVVHRKVGIGRFVGIKFDVPKDSKEPIEYVFIEYADGMAKLPVKQASRLLYRYNLPNETKRPRTLSKLSDTSAWERRRMKGKVAVQKMVVDLMELYLHRLKQKRPPYPKTPAMAEFASQFPFEPTPDQKQAFSDVERDLTESENPMDRLICGDVGFGKTEVALRAIFCVVSAGKQAMVLAPTIVLAKQHFDVISERFSRYPNIRVGLLSRFQTKSEKEEYLSMIKDGHVDIIVGTHSLLGNRVEYNNLGLLVVDEEQRFGVKQKERIASFKTSVDVLTLSATPIPRTLYLALTGFRDASLISTPPPERVPIRTHLSAYSKDKVISAIKHELDRGGRVFYVLPRIKGLEDVMEFLELAFPHVEIAIAHGKQYSKQLEETMERFARGDIRILICTNIVESGLDIQNANTIIIQDVQQFGLAQLYQLRGRVGRADKEAHAHLFYPDKSLLSDHALERLAALEECCELGQGFQLAERDMAIRGFGNIFGEQQTGDVGNVGIDLFFEMLFESLSKVDEHRVISVPYPAMELDININPHLPSEYINHLENPMQIINSAEKAAEKDIFNLMQFTENLRRQYGKEPYSMEILLKKLYVRRMAADLGITSIYASGKMVGMKTNMSKKVFKLITDSAT</predicted_protein_sequence>
            </orf_entry>
          </probable_ORFs>
        </three_phase_translation>
      </AGS_information>
    </predicted_gene_location>
  </PGL_module>
</GTH_output>
<!--
$ general statistics:
$ 225 chains have been computed
$ 
$ memory statistics:
$ 2920 bytes spliced alignments in total
$ 1 spliced alignments have been stored
$ 2920 bytes was the average size of a spliced alignment
$ 5880 bytes predicted gene locations in total
$ 1 predicted gene locations have been stored
$ 5880 bytes was the average size of a predicted gene location
$ 0 megabytes was the average size of the backtrace matrix
$ 226 backtrace matrices have been allocated
$ 
$ date finished: 2009-12-01 08:26:28
-->
