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Tomato locus EIX receptor 1
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases
Links to external databases
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| Registry name: | None | [Associate registry name] |
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Notes and figures (0)
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Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (1)
Associated loci (1)
| [Associate new locus] |
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Associated loci - graphical view
Associated loci - graphical view
| View EIX receptor 1 relationships in the stand-alone network browser |
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SolCyc links
SolCyc links
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Sequence annotations
Sequence annotations
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Genome features
Genome features
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Genomic sequence
Genomic sequence
| unprocessed genomic sequence region underlying this gene |
>Solyc07g008620.1 SL2.50ch07:3572666..3569571 (sequence from reverse strand)
ATGGACAAATGGAAATATGCAAGATTAGCACAGTTCCTTTTCACTTTGTCTCTACTGTTCCTAGAGACATCTTTTGGATTAGGTGGTAACAAGACCCTATGTTTAGATAAGGAGAGAGATGCTCTTCTTGAGTTCAAAAGAGGTCTTACTGATTCTTTTGATCATTTATCTACATGGGGTGATGAAGAAGATAAACAAGAATGCTGCAAATGGAAGGGTATTGAATGTGACAGAAGAACAGGTCATGTAACTGTTATTGATCTACACAATAAGTTTACTTGTTCTGCTGGTGCCAGTGCTTGTTTTGCTCCTAGATTGACAGGTAAACTTAGCCCTTCTCTGCTTGAGTTGGAGTACTTGAATTACTTGGACCTCAGTGTTAATGAATTTGAAAGAAGTGAAATACCAAGATTCATAGGCTCACTTAAGAGACTAGAGTACTTGAACCTGTCAGCTTCTTTTTTTTCTGGTGTAATTCCAATACAGTTCCAGAATCTAACTTCTTTAAGGACTCTTGATCTTGGAGAAAATAATCTTATAGTAAAGGACCTTAGATGGCTTTCTCATCTGTCTTCTCTAGAGTTTTTGAGTCTGAGTTCTAGCAACTTCCAAGTAAACAATTGGTTTCAAGAGATAACTAAGGTCCCTTCATTGAAAGAACTGGACTTGAGTGGTTGTGGACTCTCTAAGTTGGTTCCATCTCAAGCTGATTTAGCCAATTCTTCTTTAATATCTCTTTCTGTTCTTCATTTATGTTGTAATGAGTTTTCTTCTTCATCTGAATATAGCTGGGTATTCAATTTGACCACAAGCCTAACTAGCATTGACCTCCTTTATAATCAACTCAGCGGTCAAATTGATGATCGCTTTGGGACCTTGATGTATCTTGAACATCTTGATCTTGCTAATAACTTAAAGATTGAAGGTGGGGTTCCCAGTTCTTTTGGGAATTTGACACGTTTACGTCATCTGGACATGTCTAATACTCAGACAGTCCAATGGCTTCCTGAGTTGTTTCTCAGGTTATCAGGCAGTAGGAAATCACTTGAGGTTTTGGGGTTGAACGAAAACTCATTGTTTGGTTCAATTGTTAATGCAACAAGATTTTCATCCTTAAAGAAATTATACCTGCAGAAGAATATGCTGAATGGTTCTTTTATGGAAAGTGCGGGACAAGTTTCTACCCTTGAGTATCTGGATTTGTCTGAAAACCAAATGAGAGGGGCATTACCAGATTTAGCATTGTTTCCATCATTGAGAGAGTTGCATCTTGGCTCTAATCAATTTCGAGGGAGGATACCACAAGGTATCGGAAAACTTTCACAGCTTAGAATTTTGGATGTCTCGTCCAATAGACTGGAAGGACTACCAGAAAGTATGGGGCAACTATCTAATCTGGAAAGTTTTGATGCCTCTTACAATGTCCTGAAGGGAACAATTACTGAGTCCCACCTTTCAAACCTCTCCAGTTTAGTGGATTTGGACTTGTCATTCAACTCATTGGCTCTGAAGACGAGCTTCAATTGGCTTCCTCCTTTTCAGCTACAAGTTATAAGCCTGCCGTCTTGCAATTTGGGACCTTCTTTCCCAAAATGGCTTCAAAATCAGAACAACTATACTGTTCTTGATATCTCTCTTGCGAGTATTTCAGACACGCTTCCAAGTTGGTTCTCTAGCTTCCCCCCCGATCTAAAGATTTTGAATCTCTCAAACAACCAAATCAGTGGAAGAGTGTCTGACTTAATAGAGAATACATATGGGTACAGGGTTATAGATTTAAGCTATAACAACTTTTCAGGGGCTTTGCCACTAGTCCCTACCAATGTCCAAATATTTTACCTGCATAAAAATCAGTTTTTTGGATCCATCTCTTCAATTTGTCGAAGTAGAACATCTCCCACTTCTCTAGACTTGTCACACAATCAATTCTCAGGAGAACTTCCAGATTGTTGGATGAACATGACAAGTCTAGCTGTTCTTAATCTAGCTTATAACAATTTCTCTGGAGAAATTCCACATTCATTGGGTTCCTTGACAAATTTGAAGGCGTTATACATACGCCAAAACAGTTTAAGTGGAATGTTGCCTTCTTTTTCACAATGTCAGGGGTTGCAAATCTTGGATCTTGGAGGGAATAAGTTGACAGGAAGTATCCCTGGATGGATAGGGACTGATCTACTCAACTTGCGAATTCTAAGCCTGCGGTTCAACAGATTGCATGGCAGCATACCATCCATAATCTGTCAGCTTCAATTTCTTCAGATACTGGACCTTTCAGCGAATGGATTATCAGGGAAAATTCCACATTGCTTCAACAATTTCACCTTATTGTATCAAGATAATAATTCTGGTGAGCCAATGGAATTTATAGTTCAAGGTTTCTATGGTAAATTTCCTCGTCGTTACTTGTATATTGGTGACCTATTGGTTCAATGGAAAAATCAAGAGTCTGAGTACAAGAATCCTTTATTATATCTGAAGACTATTGATCTTTCAAGTAATGAATTAATTGGAGGTGTTCCTAAAGAAATAGCTGATATGAGAGGATTGAAATCTTTGAACCTCTCAAGAAATGAGCTGAATGGAACTGTCATTGAAGGAATAGGTCAAATGAGGATGTTGGAGTCTCTTGACATGTCAAGAAACCAGCTTTCTGGTGTGATACCGCAAGATCTTGCTAATTTGACTTTTCTTAGTGTGTTGGACTTGTCGAACAACCAGTTATCAGGGAGAATTCCATCAAGCACTCAACTGCAAAGTTTTGATAGATCATCCTACAGTGATAATGCTCAACTCTGTGGGCCTCCTCTTCAGGAGTGTCCTGGATATGCTCCTCCTAGCCCCCTTATTGATCATGGCAGCAACAACAATCCACAAGAACATGATGAGGAGGAGGAGTTTCCATCTCTGGAGTTTTATATATCAATGGTGCTAAGCTTTTTTGTTGCATTTTGGGGAATTTTGGGCTGTTTAATTGTCAATAGTTCTTGGAGGAATGCCTACTTCAAATTCTTGACGGACACGACAAGTTGGCTCGATATGATATCAAGAGTCTGGTTTGCAAGACTCAAGAAAAAGCTGAGGAGGGCCCGATGA
ATGGACAAATGGAAATATGCAAGATTAGCACAGTTCCTTTTCACTTTGTCTCTACTGTTCCTAGAGACATCTTTTGGATTAGGTGGTAACAAGACCCTATGTTTAGATAAGGAGAGAGATGCTCTTCTTGAGTTCAAAAGAGGTCTTACTGATTCTTTTGATCATTTATCTACATGGGGTGATGAAGAAGATAAACAAGAATGCTGCAAATGGAAGGGTATTGAATGTGACAGAAGAACAGGTCATGTAACTGTTATTGATCTACACAATAAGTTTACTTGTTCTGCTGGTGCCAGTGCTTGTTTTGCTCCTAGATTGACAGGTAAACTTAGCCCTTCTCTGCTTGAGTTGGAGTACTTGAATTACTTGGACCTCAGTGTTAATGAATTTGAAAGAAGTGAAATACCAAGATTCATAGGCTCACTTAAGAGACTAGAGTACTTGAACCTGTCAGCTTCTTTTTTTTCTGGTGTAATTCCAATACAGTTCCAGAATCTAACTTCTTTAAGGACTCTTGATCTTGGAGAAAATAATCTTATAGTAAAGGACCTTAGATGGCTTTCTCATCTGTCTTCTCTAGAGTTTTTGAGTCTGAGTTCTAGCAACTTCCAAGTAAACAATTGGTTTCAAGAGATAACTAAGGTCCCTTCATTGAAAGAACTGGACTTGAGTGGTTGTGGACTCTCTAAGTTGGTTCCATCTCAAGCTGATTTAGCCAATTCTTCTTTAATATCTCTTTCTGTTCTTCATTTATGTTGTAATGAGTTTTCTTCTTCATCTGAATATAGCTGGGTATTCAATTTGACCACAAGCCTAACTAGCATTGACCTCCTTTATAATCAACTCAGCGGTCAAATTGATGATCGCTTTGGGACCTTGATGTATCTTGAACATCTTGATCTTGCTAATAACTTAAAGATTGAAGGTGGGGTTCCCAGTTCTTTTGGGAATTTGACACGTTTACGTCATCTGGACATGTCTAATACTCAGACAGTCCAATGGCTTCCTGAGTTGTTTCTCAGGTTATCAGGCAGTAGGAAATCACTTGAGGTTTTGGGGTTGAACGAAAACTCATTGTTTGGTTCAATTGTTAATGCAACAAGATTTTCATCCTTAAAGAAATTATACCTGCAGAAGAATATGCTGAATGGTTCTTTTATGGAAAGTGCGGGACAAGTTTCTACCCTTGAGTATCTGGATTTGTCTGAAAACCAAATGAGAGGGGCATTACCAGATTTAGCATTGTTTCCATCATTGAGAGAGTTGCATCTTGGCTCTAATCAATTTCGAGGGAGGATACCACAAGGTATCGGAAAACTTTCACAGCTTAGAATTTTGGATGTCTCGTCCAATAGACTGGAAGGACTACCAGAAAGTATGGGGCAACTATCTAATCTGGAAAGTTTTGATGCCTCTTACAATGTCCTGAAGGGAACAATTACTGAGTCCCACCTTTCAAACCTCTCCAGTTTAGTGGATTTGGACTTGTCATTCAACTCATTGGCTCTGAAGACGAGCTTCAATTGGCTTCCTCCTTTTCAGCTACAAGTTATAAGCCTGCCGTCTTGCAATTTGGGACCTTCTTTCCCAAAATGGCTTCAAAATCAGAACAACTATACTGTTCTTGATATCTCTCTTGCGAGTATTTCAGACACGCTTCCAAGTTGGTTCTCTAGCTTCCCCCCCGATCTAAAGATTTTGAATCTCTCAAACAACCAAATCAGTGGAAGAGTGTCTGACTTAATAGAGAATACATATGGGTACAGGGTTATAGATTTAAGCTATAACAACTTTTCAGGGGCTTTGCCACTAGTCCCTACCAATGTCCAAATATTTTACCTGCATAAAAATCAGTTTTTTGGATCCATCTCTTCAATTTGTCGAAGTAGAACATCTCCCACTTCTCTAGACTTGTCACACAATCAATTCTCAGGAGAACTTCCAGATTGTTGGATGAACATGACAAGTCTAGCTGTTCTTAATCTAGCTTATAACAATTTCTCTGGAGAAATTCCACATTCATTGGGTTCCTTGACAAATTTGAAGGCGTTATACATACGCCAAAACAGTTTAAGTGGAATGTTGCCTTCTTTTTCACAATGTCAGGGGTTGCAAATCTTGGATCTTGGAGGGAATAAGTTGACAGGAAGTATCCCTGGATGGATAGGGACTGATCTACTCAACTTGCGAATTCTAAGCCTGCGGTTCAACAGATTGCATGGCAGCATACCATCCATAATCTGTCAGCTTCAATTTCTTCAGATACTGGACCTTTCAGCGAATGGATTATCAGGGAAAATTCCACATTGCTTCAACAATTTCACCTTATTGTATCAAGATAATAATTCTGGTGAGCCAATGGAATTTATAGTTCAAGGTTTCTATGGTAAATTTCCTCGTCGTTACTTGTATATTGGTGACCTATTGGTTCAATGGAAAAATCAAGAGTCTGAGTACAAGAATCCTTTATTATATCTGAAGACTATTGATCTTTCAAGTAATGAATTAATTGGAGGTGTTCCTAAAGAAATAGCTGATATGAGAGGATTGAAATCTTTGAACCTCTCAAGAAATGAGCTGAATGGAACTGTCATTGAAGGAATAGGTCAAATGAGGATGTTGGAGTCTCTTGACATGTCAAGAAACCAGCTTTCTGGTGTGATACCGCAAGATCTTGCTAATTTGACTTTTCTTAGTGTGTTGGACTTGTCGAACAACCAGTTATCAGGGAGAATTCCATCAAGCACTCAACTGCAAAGTTTTGATAGATCATCCTACAGTGATAATGCTCAACTCTGTGGGCCTCCTCTTCAGGAGTGTCCTGGATATGCTCCTCCTAGCCCCCTTATTGATCATGGCAGCAACAACAATCCACAAGAACATGATGAGGAGGAGGAGTTTCCATCTCTGGAGTTTTATATATCAATGGTGCTAAGCTTTTTTGTTGCATTTTGGGGAATTTTGGGCTGTTTAATTGTCAATAGTTCTTGGAGGAATGCCTACTTCAAATTCTTGACGGACACGACAAGTTGGCTCGATATGATATCAAGAGTCTGGTTTGCAAGACTCAAGAAAAAGCTGAGGAGGGCCCGATGA
| Download sequence region |
Get flanking sequences on SL2.50ch07
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mRNA Solyc07g008620.1.1
mRNA Solyc07g008620.1.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc07g008620.1.1 LRR receptor-like serine/threonine-protein kinase, RLP
ATGGACAAATGGAAATATGCAAGATTAGCACAGTTCCTTTTCACTTTGTCTCTACTGTTCCTAGAGACATCTTTTGGATTAGGTGGTAACAAGACCCTATGTTTAGATAAGGAGAGAGATGCTCTTCTTGAGTTCAAAAGAGGTCTTACTGATTCTTTTGATCATTTATCTACATGGGGTGATGAAGAAGATAAACAAGAATGCTGCAAATGGAAGGGTATTGAATGTGACAGAAGAACAGGTCATGTAACTGTTATTGATCTACACAATAAGTTTACTTGTTCTGCTGGTGCCAGTGCTTGTTTTGCTCCTAGATTGACAGGTAAACTTAGCCCTTCTCTGCTTGAGTTGGAGTACTTGAATTACTTGGACCTCAGTGTTAATGAATTTGAAAGAAGTGAAATACCAAGATTCATAGGCTCACTTAAGAGACTAGAGTACTTGAACCTGTCAGCTTCTTTTTTTTCTGGTGTAATTCCAATACAGTTCCAGAATCTAACTTCTTTAAGGACTCTTGATCTTGGAGAAAATAATCTTATAGTAAAGGACCTTAGATGGCTTTCTCATCTGTCTTCTCTAGAGTTTTTGAGTCTGAGTTCTAGCAACTTCCAAGTAAACAATTGGTTTCAAGAGATAACTAAGGTCCCTTCATTGAAAGAACTGGACTTGAGTGGTTGTGGACTCTCTAAGTTGGTTCCATCTCAAGCTGATTTAGCCAATTCTTCTTTAATATCTCTTTCTGTTCTTCATTTATGTTGTAATGAGTTTTCTTCTTCATCTGAATATAGCTGGGTATTCAATTTGACCACAAGCCTAACTAGCATTGACCTCCTTTATAATCAACTCAGCGGTCAAATTGATGATCGCTTTGGGACCTTGATGTATCTTGAACATCTTGATCTTGCTAATAACTTAAAGATTGAAGGTGGGGTTCCCAGTTCTTTTGGGAATTTGACACGTTTACGTCATCTGGACATGTCTAATACTCAGACAGTCCAATGGCTTCCTGAGTTGTTTCTCAGGTTATCAGGCAGTAGGAAATCACTTGAGGTTTTGGGGTTGAACGAAAACTCATTGTTTGGTTCAATTGTTAATGCAACAAGATTTTCATCCTTAAAGAAATTATACCTGCAGAAGAATATGCTGAATGGTTCTTTTATGGAAAGTGCGGGACAAGTTTCTACCCTTGAGTATCTGGATTTGTCTGAAAACCAAATGAGAGGGGCATTACCAGATTTAGCATTGTTTCCATCATTGAGAGAGTTGCATCTTGGCTCTAATCAATTTCGAGGGAGGATACCACAAGGTATCGGAAAACTTTCACAGCTTAGAATTTTGGATGTCTCGTCCAATAGACTGGAAGGACTACCAGAAAGTATGGGGCAACTATCTAATCTGGAAAGTTTTGATGCCTCTTACAATGTCCTGAAGGGAACAATTACTGAGTCCCACCTTTCAAACCTCTCCAGTTTAGTGGATTTGGACTTGTCATTCAACTCATTGGCTCTGAAGACGAGCTTCAATTGGCTTCCTCCTTTTCAGCTACAAGTTATAAGCCTGCCGTCTTGCAATTTGGGACCTTCTTTCCCAAAATGGCTTCAAAATCAGAACAACTATACTGTTCTTGATATCTCTCTTGCGAGTATTTCAGACACGCTTCCAAGTTGGTTCTCTAGCTTCCCCCCCGATCTAAAGATTTTGAATCTCTCAAACAACCAAATCAGTGGAAGAGTGTCTGACTTAATAGAGAATACATATGGGTACAGGGTTATAGATTTAAGCTATAACAACTTTTCAGGGGCTTTGCCACTAGTCCCTACCAATGTCCAAATATTTTACCTGCATAAAAATCAGTTTTTTGGATCCATCTCTTCAATTTGTCGAAGTAGAACATCTCCCACTTCTCTAGACTTGTCACACAATCAATTCTCAGGAGAACTTCCAGATTGTTGGATGAACATGACAAGTCTAGCTGTTCTTAATCTAGCTTATAACAATTTCTCTGGAGAAATTCCACATTCATTGGGTTCCTTGACAAATTTGAAGGCGTTATACATACGCCAAAACAGTTTAAGTGGAATGTTGCCTTCTTTTTCACAATGTCAGGGGTTGCAAATCTTGGATCTTGGAGGGAATAAGTTGACAGGAAGTATCCCTGGATGGATAGGGACTGATCTACTCAACTTGCGAATTCTAAGCCTGCGGTTCAACAGATTGCATGGCAGCATACCATCCATAATCTGTCAGCTTCAATTTCTTCAGATACTGGACCTTTCAGCGAATGGATTATCAGGGAAAATTCCACATTGCTTCAACAATTTCACCTTATTGTATCAAGATAATAATTCTGGTGAGCCAATGGAATTTATAGTTCAAGGTTTCTATGGTAAATTTCCTCGTCGTTACTTGTATATTGGTGACCTATTGGTTCAATGGAAAAATCAAGAGTCTGAGTACAAGAATCCTTTATTATATCTGAAGACTATTGATCTTTCAAGTAATGAATTAATTGGAGGTGTTCCTAAAGAAATAGCTGATATGAGAGGATTGAAATCTTTGAACCTCTCAAGAAATGAGCTGAATGGAACTGTCATTGAAGGAATAGGTCAAATGAGGATGTTGGAGTCTCTTGACATGTCAAGAAACCAGCTTTCTGGTGTGATACCGCAAGATCTTGCTAATTTGACTTTTCTTAGTGTGTTGGACTTGTCGAACAACCAGTTATCAGGGAGAATTCCATCAAGCACTCAACTGCAAAGTTTTGATAGATCATCCTACAGTGATAATGCTCAACTCTGTGGGCCTCCTCTTCAGGAGTGTCCTGGATATGCTCCTCCTAGCCCCCTTATTGATCATGGCAGCAACAACAATCCACAAGAACATGATGAGGAGGAGGAGTTTCCATCTCTGGAGTTTTATATATCAATGGTGCTAAGCTTTTTTGTTGCATTTTGGGGAATTTTGGGCTGTTTAATTGTCAATAGTTCTTGGAGGAATGCCTACTTCAAATTCTTGACGGACACGACAAGTTGGCTCGATATGATATCAAGAGTCTGGTTTGCAAGACTCAAGAAAAAGCTGAGGAGGGCCCGATGA
ATGGACAAATGGAAATATGCAAGATTAGCACAGTTCCTTTTCACTTTGTCTCTACTGTTCCTAGAGACATCTTTTGGATTAGGTGGTAACAAGACCCTATGTTTAGATAAGGAGAGAGATGCTCTTCTTGAGTTCAAAAGAGGTCTTACTGATTCTTTTGATCATTTATCTACATGGGGTGATGAAGAAGATAAACAAGAATGCTGCAAATGGAAGGGTATTGAATGTGACAGAAGAACAGGTCATGTAACTGTTATTGATCTACACAATAAGTTTACTTGTTCTGCTGGTGCCAGTGCTTGTTTTGCTCCTAGATTGACAGGTAAACTTAGCCCTTCTCTGCTTGAGTTGGAGTACTTGAATTACTTGGACCTCAGTGTTAATGAATTTGAAAGAAGTGAAATACCAAGATTCATAGGCTCACTTAAGAGACTAGAGTACTTGAACCTGTCAGCTTCTTTTTTTTCTGGTGTAATTCCAATACAGTTCCAGAATCTAACTTCTTTAAGGACTCTTGATCTTGGAGAAAATAATCTTATAGTAAAGGACCTTAGATGGCTTTCTCATCTGTCTTCTCTAGAGTTTTTGAGTCTGAGTTCTAGCAACTTCCAAGTAAACAATTGGTTTCAAGAGATAACTAAGGTCCCTTCATTGAAAGAACTGGACTTGAGTGGTTGTGGACTCTCTAAGTTGGTTCCATCTCAAGCTGATTTAGCCAATTCTTCTTTAATATCTCTTTCTGTTCTTCATTTATGTTGTAATGAGTTTTCTTCTTCATCTGAATATAGCTGGGTATTCAATTTGACCACAAGCCTAACTAGCATTGACCTCCTTTATAATCAACTCAGCGGTCAAATTGATGATCGCTTTGGGACCTTGATGTATCTTGAACATCTTGATCTTGCTAATAACTTAAAGATTGAAGGTGGGGTTCCCAGTTCTTTTGGGAATTTGACACGTTTACGTCATCTGGACATGTCTAATACTCAGACAGTCCAATGGCTTCCTGAGTTGTTTCTCAGGTTATCAGGCAGTAGGAAATCACTTGAGGTTTTGGGGTTGAACGAAAACTCATTGTTTGGTTCAATTGTTAATGCAACAAGATTTTCATCCTTAAAGAAATTATACCTGCAGAAGAATATGCTGAATGGTTCTTTTATGGAAAGTGCGGGACAAGTTTCTACCCTTGAGTATCTGGATTTGTCTGAAAACCAAATGAGAGGGGCATTACCAGATTTAGCATTGTTTCCATCATTGAGAGAGTTGCATCTTGGCTCTAATCAATTTCGAGGGAGGATACCACAAGGTATCGGAAAACTTTCACAGCTTAGAATTTTGGATGTCTCGTCCAATAGACTGGAAGGACTACCAGAAAGTATGGGGCAACTATCTAATCTGGAAAGTTTTGATGCCTCTTACAATGTCCTGAAGGGAACAATTACTGAGTCCCACCTTTCAAACCTCTCCAGTTTAGTGGATTTGGACTTGTCATTCAACTCATTGGCTCTGAAGACGAGCTTCAATTGGCTTCCTCCTTTTCAGCTACAAGTTATAAGCCTGCCGTCTTGCAATTTGGGACCTTCTTTCCCAAAATGGCTTCAAAATCAGAACAACTATACTGTTCTTGATATCTCTCTTGCGAGTATTTCAGACACGCTTCCAAGTTGGTTCTCTAGCTTCCCCCCCGATCTAAAGATTTTGAATCTCTCAAACAACCAAATCAGTGGAAGAGTGTCTGACTTAATAGAGAATACATATGGGTACAGGGTTATAGATTTAAGCTATAACAACTTTTCAGGGGCTTTGCCACTAGTCCCTACCAATGTCCAAATATTTTACCTGCATAAAAATCAGTTTTTTGGATCCATCTCTTCAATTTGTCGAAGTAGAACATCTCCCACTTCTCTAGACTTGTCACACAATCAATTCTCAGGAGAACTTCCAGATTGTTGGATGAACATGACAAGTCTAGCTGTTCTTAATCTAGCTTATAACAATTTCTCTGGAGAAATTCCACATTCATTGGGTTCCTTGACAAATTTGAAGGCGTTATACATACGCCAAAACAGTTTAAGTGGAATGTTGCCTTCTTTTTCACAATGTCAGGGGTTGCAAATCTTGGATCTTGGAGGGAATAAGTTGACAGGAAGTATCCCTGGATGGATAGGGACTGATCTACTCAACTTGCGAATTCTAAGCCTGCGGTTCAACAGATTGCATGGCAGCATACCATCCATAATCTGTCAGCTTCAATTTCTTCAGATACTGGACCTTTCAGCGAATGGATTATCAGGGAAAATTCCACATTGCTTCAACAATTTCACCTTATTGTATCAAGATAATAATTCTGGTGAGCCAATGGAATTTATAGTTCAAGGTTTCTATGGTAAATTTCCTCGTCGTTACTTGTATATTGGTGACCTATTGGTTCAATGGAAAAATCAAGAGTCTGAGTACAAGAATCCTTTATTATATCTGAAGACTATTGATCTTTCAAGTAATGAATTAATTGGAGGTGTTCCTAAAGAAATAGCTGATATGAGAGGATTGAAATCTTTGAACCTCTCAAGAAATGAGCTGAATGGAACTGTCATTGAAGGAATAGGTCAAATGAGGATGTTGGAGTCTCTTGACATGTCAAGAAACCAGCTTTCTGGTGTGATACCGCAAGATCTTGCTAATTTGACTTTTCTTAGTGTGTTGGACTTGTCGAACAACCAGTTATCAGGGAGAATTCCATCAAGCACTCAACTGCAAAGTTTTGATAGATCATCCTACAGTGATAATGCTCAACTCTGTGGGCCTCCTCTTCAGGAGTGTCCTGGATATGCTCCTCCTAGCCCCCTTATTGATCATGGCAGCAACAACAATCCACAAGAACATGATGAGGAGGAGGAGTTTCCATCTCTGGAGTTTTATATATCAATGGTGCTAAGCTTTTTTGTTGCATTTTGGGGAATTTTGGGCTGTTTAATTGTCAATAGTTCTTGGAGGAATGCCTACTTCAAATTCTTGACGGACACGACAAGTTGGCTCGATATGATATCAAGAGTCTGGTTTGCAAGACTCAAGAAAAAGCTGAGGAGGGCCCGATGA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc07g008620.1.1 LRR receptor-like serine/threonine-protein kinase, RLP
MDKWKYARLAQFLFTLSLLFLETSFGLGGNKTLCLDKERDALLEFKRGLTDSFDHLSTWGDEEDKQECCKWKGIECDRRTGHVTVIDLHNKFTCSAGASACFAPRLTGKLSPSLLELEYLNYLDLSVNEFERSEIPRFIGSLKRLEYLNLSASFFSGVIPIQFQNLTSLRTLDLGENNLIVKDLRWLSHLSSLEFLSLSSSNFQVNNWFQEITKVPSLKELDLSGCGLSKLVPSQADLANSSLISLSVLHLCCNEFSSSSEYSWVFNLTTSLTSIDLLYNQLSGQIDDRFGTLMYLEHLDLANNLKIEGGVPSSFGNLTRLRHLDMSNTQTVQWLPELFLRLSGSRKSLEVLGLNENSLFGSIVNATRFSSLKKLYLQKNMLNGSFMESAGQVSTLEYLDLSENQMRGALPDLALFPSLRELHLGSNQFRGRIPQGIGKLSQLRILDVSSNRLEGLPESMGQLSNLESFDASYNVLKGTITESHLSNLSSLVDLDLSFNSLALKTSFNWLPPFQLQVISLPSCNLGPSFPKWLQNQNNYTVLDISLASISDTLPSWFSSFPPDLKILNLSNNQISGRVSDLIENTYGYRVIDLSYNNFSGALPLVPTNVQIFYLHKNQFFGSISSICRSRTSPTSLDLSHNQFSGELPDCWMNMTSLAVLNLAYNNFSGEIPHSLGSLTNLKALYIRQNSLSGMLPSFSQCQGLQILDLGGNKLTGSIPGWIGTDLLNLRILSLRFNRLHGSIPSIICQLQFLQILDLSANGLSGKIPHCFNNFTLLYQDNNSGEPMEFIVQGFYGKFPRRYLYIGDLLVQWKNQESEYKNPLLYLKTIDLSSNELIGGVPKEIADMRGLKSLNLSRNELNGTVIEGIGQMRMLESLDMSRNQLSGVIPQDLANLTFLSVLDLSNNQLSGRIPSSTQLQSFDRSSYSDNAQLCGPPLQECPGYAPPSPLIDHGSNNNPQEHDEEEEFPSLEFYISMVLSFFVAFWGILGCLIVNSSWRNAYFKFLTDTTSWLDMISRVWFARLKKKLRRAR*
MDKWKYARLAQFLFTLSLLFLETSFGLGGNKTLCLDKERDALLEFKRGLTDSFDHLSTWGDEEDKQECCKWKGIECDRRTGHVTVIDLHNKFTCSAGASACFAPRLTGKLSPSLLELEYLNYLDLSVNEFERSEIPRFIGSLKRLEYLNLSASFFSGVIPIQFQNLTSLRTLDLGENNLIVKDLRWLSHLSSLEFLSLSSSNFQVNNWFQEITKVPSLKELDLSGCGLSKLVPSQADLANSSLISLSVLHLCCNEFSSSSEYSWVFNLTTSLTSIDLLYNQLSGQIDDRFGTLMYLEHLDLANNLKIEGGVPSSFGNLTRLRHLDMSNTQTVQWLPELFLRLSGSRKSLEVLGLNENSLFGSIVNATRFSSLKKLYLQKNMLNGSFMESAGQVSTLEYLDLSENQMRGALPDLALFPSLRELHLGSNQFRGRIPQGIGKLSQLRILDVSSNRLEGLPESMGQLSNLESFDASYNVLKGTITESHLSNLSSLVDLDLSFNSLALKTSFNWLPPFQLQVISLPSCNLGPSFPKWLQNQNNYTVLDISLASISDTLPSWFSSFPPDLKILNLSNNQISGRVSDLIENTYGYRVIDLSYNNFSGALPLVPTNVQIFYLHKNQFFGSISSICRSRTSPTSLDLSHNQFSGELPDCWMNMTSLAVLNLAYNNFSGEIPHSLGSLTNLKALYIRQNSLSGMLPSFSQCQGLQILDLGGNKLTGSIPGWIGTDLLNLRILSLRFNRLHGSIPSIICQLQFLQILDLSANGLSGKIPHCFNNFTLLYQDNNSGEPMEFIVQGFYGKFPRRYLYIGDLLVQWKNQESEYKNPLLYLKTIDLSSNELIGGVPKEIADMRGLKSLNLSRNELNGTVIEGIGQMRMLESLDMSRNQLSGVIPQDLANLTFLSVLDLSNNQLSGRIPSSTQLQSFDRSSYSDNAQLCGPPLQECPGYAPPSPLIDHGSNNNPQEHDEEEEFPSLEFYISMVLSFFVAFWGILGCLIVNSSWRNAYFKFLTDTTSWLDMISRVWFARLKKKLRRAR*
Gene model matches
Gene model matches
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SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
[loading...]
GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
AY359965 Lycopersicon esculentum EIX receptor 1 (Eix1) mRNA, complete cds.
| Other genome matches | None |
Literature annotations [2]
Literature annotations [2]
| [Associate publication] [Matching publications] |
Identification of an essential component of the elicitation active site of the EIX protein elicitor.
The Plant journal : for cell and molecular biology (2002)
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Defense mechanisms of plants against pathogens often entail cell wall strengthening, ethylene biosynthesis, expression of pathogen-related proteins and hypersensitive responses (HR). Pathogen-derived elicitors trigger these defense responses. The Elicitor Ethylene-inducing Xylanase (EIX) elicits HR and other plant defense responses in some tobacco and tomato cultivars independently of its xylan degradation activity. The elicitation epitope on the EIX protein responsible for inducing the HR response has been elucidated. Through the generation of EIX-specific polyclonal antibodies and screening of combinatorial phage display peptide libraries an essential sequence of the EIX elicitation activity has been identified. This sequence consists of the pentapeptide TKLGE mapped to an exposed beta-strand of the EIX protein. Substitution of the pentapeptide TKLGE to VKGT inhibited the elicitation activity but not the beta-1-4-endoxylanase activity of the EIX protein further demonstrating that elicitation and enzyme activity are independent properties. Elucidation of a peptide sequence that is essential for elicitation of HR creates the opportunity to understand the control and signaling of plant defense.
Rotblat, B. Enshell-Seijffers, D. Gershoni, JM. Schuster, S. Avni, A.
The Plant journal : for cell and molecular biology.
2002.
32(6).
1049-55.
The receptor for the fungal elicitor ethylene-inducing xylanase is a member of a resistance-like gene family in tomato.
The Plant cell (2004)
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An ethylene-inducing xylanase (EIX) is a potent elicitor of plant defense responses in specific cultivars of tobacco (Nicotiana tabacum) and tomato (Lycopersicon esculentum). The LeEix locus in tomatoes was characterized by map-based cloning, which led to the identification of a novel gene cluster from which two members (LeEix1 and LeEix2) were isolated. Similar to the tomato Ve resistance genes in tomato plants, the deduced amino acid sequences encoded by LeEix1 and LeEix2 contain a Leu zipper, an extracellular Leu-rich repeat domain with glycosylation signals, a transmembrane domain, and a C-terminal domain with a mammalian endocytosis signal. Silencing expression of the LeEix genes prevented the binding of EIX to cells of an EIX-responsive plant and thus inhibited the hypersensitive response. Overexpression of either LeEix1 or LeEix2 genes in EIX-nonresponsive tobacco plants enabled the binding of EIX, although only LeEix2 could transmit the signal that induced the hypersensitive response. Overexpressing LeEix2 in mammalian COS-7 cells enables binding of EIX, indicating physical interaction between the EIX elicitor and LeEix2 gene product. Structural analysis of the LeEix proteins suggests that they belong to a class of cell-surface glycoproteins with a signal for receptor-mediated endocytosis. Mutating the endocytosis signal in LeEix2 (Tyr 993 to Ala) abolished its ability to induce the hypersensitive response, suggesting that endocytosis plays a key role in the signal transduction pathway.
Ron, M. Avni, A.
The Plant cell.
2004.
16(6).
1604-15.
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