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Tomato locus Argonaute7
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Argonaute7 is a TGRC gene
Argonaute7 is on PhyloGenes
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch01, position: 6615888
Please cite Razifard et al.
Registry name: | None | [Associate registry name] |
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Image | Description | Type |
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![]() ![]() | [Associate accession] |
Accession name:
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![]() ![]() | [Associate new locus] |
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![]() ![]() | View Argonaute7 relationships in the stand-alone network browser |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc01g010970.2 SL2.50ch01:6612318..6616335
ATGGAACATACTGAAAACTCCAACAAATGCAACTCTAAATCAACAACTGCCAAAATATGTCCAAATAACAACAACAACAACAACAATAATCACTATATTGCTTTTGGTTTTCATCACAATACTAATAATAATCAATATCATGAAACTTACCCTCCTCTTCTCCCTTTACCTCCTCTACTACCTCCTCTTCAACTACCTTTTCCTCAAAATCACAACTTCAGATCAAGAACCCATCTCCATAAACCTTCATTTAACCAGAATCATCCTTTTCTTGCCACCCCTTCTGATTTCAAGATTCAACAAATCTCAGGTAATCAAGAATTGAGAACCCCTTTTACTTCTTTTAACACTTTTATGAAAAAAGATTGGATTTTTATGTAGAGAGTTTAATTAGAGTCTTTTTGGTATTCAGTTTATGTATATGATAAAAAAAAAGATTACCTTTTTTTTCTGCAGAAAGTTGAGGATTGGCGTTTAATTAAGACTTCTTTTTTAGTATATGGTAAAAAGCATGATAACAGTAACCTTCTGTTAGTTCTTTTATTAGTTTAAGTATTAAGTACCTTTTTCTTTTTGTCATGTTCTGTTTGTTCAAAGTTTATTGTCAAGATTGAAGCTTTAATTTATGACATCAATATTGTGCTTTTGATATTGTATCTGTAGTCTCTCTATGTCAAATGCAGAAAAAAGAATCAGTTTTTTTTTCTGCAGAAAGTAGAAAGATTAGGCTTCTTTTTTACTATAATATATGCTAAAGCATGAGAACAATAGTCTACTGTTACTTCTTTATTAGTGGAGTACAACTTTTCATCATGTTTTGTTTTGTTCATTGTTTGTTGTCTTCATTTAATCCACTAGTTGATATCCTTTAGTTAGAGTATTAATGGAACTATGTTGCTCGAACTCTCGAAAATGTTCTCGTACCTATGTTAGATCCTCTAGAATTACACTACTTTTGAACGATCCAACATGCACCCGTTGATGTTAAAGACTTCATTACATTAACATTGTGCTTGATGTGTTTTTTTGCTTTTGATGTCACTTACTAAACAGCCTCAAAGGTGCTCCAAAGGCAAAATGATGTGTCCAAACAGAAATATGGAAGGAGGGTCAGGGCTGCTGCAACCACCACAGAATCTGTTGTGGTGGCAAGAAGACCAGATTCTGGTGGTGTTGAAGGACCAGTAATATCACTTCTTGCTAATCATTTCCTTGTCCAGTTTGATCCTTCACAGAGAATATTCCATTATGATGTTGAAATTTCACCTCATCCATCGAAGGATATTGCTAGGCTAATCAAGAAAAAACTTGTGGAGGACCATTCTGTTATGCTATCAGGTGCTCTTCCAGTTTATGATGGTGGAAGGACTATATATAGCCCTATTGAATTTCAAAACAATAAGATTGAATTTTACATTAGCTTGCCAATTCCTAGTAGTGGCAGCAACAAGTCTGGAGAAATAGTTAAGTTGCAGAAAGAAGGACAGCAGATTAAGCTTTTCCGCGTTAACATCAAACTTATATCTAAATTTGATGGGAAAGAACTAAATAGCTACTTGAATAAAGAAGGAGATGATGGTGGGAGTCCACTTCCTCAGGAATATCTGCATGCATTAGATGTTGTGTTGCGCGAGAGCCCAACGGAGAAGTGTATAACGGCTGGGAGATCATTTTACTCGAGTTGTATGGGAGGACAAAAAGATATTGGGGGTGGAGCCGTGGCGCTAAGGGGTTTCTTTCAGAGTCTTAGACCAACACAACAAGGACTTGCTCTCAATGTTGATTTCTCAGTGACTGCTTTCCACGAGAGTATCGGAGTGATCACCTACTTGGAAAAACGCCTGGACTTCCTCCATGACATTTCTCACAGGAAAACAAGAGGCTTGACGAATGAAGAGAAAAAAGAGGTTGAGAAAGCACTGAAGAACATCAGGGTCTTCGTTTGCCACAGAGAGACTGTTCAGAGATATCGTATTTATAGCTTAACCGAGGAGGTTACAGAGAACCTCTGCTTTCAGGATAGGGATGGAAAAATCCTAAGAATAGTGAGCTACTTCAAGGATCATTACAACTATGATATACTATATAGGAACTTGCCGTGCTTGCAGATTAGCAGAAGTAAACCTTGTTATCTTCCAATGGAACTTTGTATGATTTGTGAAGGACAGAAGTTTCTTGGGAAGCTTTCGGATGATCAGACTGCAAGAATACTCAAAATGGGATGTCAAAGACCAAGGGAAAGAAAGGCAATTATAGACAGAGTCGTGACAGGACTGGTTGGACCAACAAGGTAATTTCTGCCTTCGCCATGCTACCTCCTTTGTTTTATTTTTGCTTACACTTCCATTTTGTTAGTGCCTACGTATTAAGATTGTTTCATTACCTGACAGTGGCAATCATGCGAGTGACTTCAAACTCCAAATCTCGAAAGAAATGACTCAATTGTATGGGAGAATTCTTCAGCCTCCTAAGCTTAAACTAGGTGATCGTGGTCAGGTTAGAAATCTTATTCCTTCCCGGCATGATAGGCAGTGGAATTTTCTGGACAGCCATGTCTTCGAAAGTACTCGAGTTGAGAGATGGGCACTGATGAGTTTTGGTGGAACCTCTGATCAGAAGTCCCACGTACCAAAATTCATAAACCAGTTATGTCAAAGGTGTGAGCAATTAGGCATCTTTCTGAACAAGAATACAGTACTTAATCCTCAGTTTGAACCCTTGCATTTGCTCAACAATGTTAAAAACTTAGAAAGCAAACTCAACAAGTTACATAGAGCTTCATTTAACAATCTCCAACTTGTTATTTGTGTGATGGAGAGAAAACACAAAGGATACGCGGACTTGAAAAGAATCGCTGAGACAAGCATCGGGATTGTAACACAATGCTGTTTGTACCCAAACCTTGGCAAAATTAGCTCACAGTTTTTGGCAAATTTGGCTCTCAAGATCAATGCCAAAGTCGGGGGATGCACAGTTGCATTGTACAATTCATTGCCTTCTCAAATACCACGGCTCTTCAAACATGACGGTCCAGTCATTTTTATGGGTGCGGATGTGACTCATCCGCACCCTCTTGATGATTTTAGCCCCTCCGTCGCTGCTGTAGTTGGTAGTGTAAATTGGCCAGCAGCCAACAAGTATGTCTCCAGGATGAGATCCCAAACGCATAGGCAGGAGATCATTCAAGATCTCAGCGCGATGGTTGGGGAGATTATTGATGATTTTTATGAGGAGCTGCTAAAACTCCCTGAAAGAATAATCTTCTTCAGGGACGGAGTAAGTGAAACACAATTCCTGAAAGTACTTAAAGAGGAGCTCCAAGCAATTCGGCTGGCATGTTCGAGATTTCCAGGTTACAAACCTCCCATTACTTTTGTGGTAGTTCAGAAAAGACACCATACTAGGCTATTTCCATGTGAACTTGATCCATCAACAACTAAAAACACGCTCTTCAACGAAAACATCCTACCAGGTACAGTTGTAGATACAGTGATCACTCATCCAAGTGAATTCGACTTCTATCTATGCAGCCATTGGGGTGTAAAAGGAACAAGTAGACCAATCCATTACCATGTTCTATGGGATGAAAACCAGTTCACTTCTGATGAGCTACAAAAATTGGTATACAACCTTTGCTACACATTTGTGAGATGCACCAAGCCTATTTCACTGGTGCCACCGGTTTATTACGCCCATTTAGCTGCATATAGAGGCAGACTGTATCTTGAACGTTCCGATTTGTCTACTCTAACAAGAAGTTCTAACATATCTCGCGCTGCTCCACCGAAGACAACTCCTTTACCTAAACTCACTGAGAACATTAAAAGGCTTATGTTTTATTGCTGAGTGCTGAAGTTATGGCAACTGCATGCACAGTCTTCTCTATATTGACAGTTTAGCGGTTTGATTTCATTGTAACCATTTTAGTTCTTTCTAGCTAGTCTTCTATATGTGCAGTTTGATCTCATGTACATACTAATTTTTATTAATATTTGTTTCTTTTATGATCCAATATTAT
ATGGAACATACTGAAAACTCCAACAAATGCAACTCTAAATCAACAACTGCCAAAATATGTCCAAATAACAACAACAACAACAACAATAATCACTATATTGCTTTTGGTTTTCATCACAATACTAATAATAATCAATATCATGAAACTTACCCTCCTCTTCTCCCTTTACCTCCTCTACTACCTCCTCTTCAACTACCTTTTCCTCAAAATCACAACTTCAGATCAAGAACCCATCTCCATAAACCTTCATTTAACCAGAATCATCCTTTTCTTGCCACCCCTTCTGATTTCAAGATTCAACAAATCTCAGGTAATCAAGAATTGAGAACCCCTTTTACTTCTTTTAACACTTTTATGAAAAAAGATTGGATTTTTATGTAGAGAGTTTAATTAGAGTCTTTTTGGTATTCAGTTTATGTATATGATAAAAAAAAAGATTACCTTTTTTTTCTGCAGAAAGTTGAGGATTGGCGTTTAATTAAGACTTCTTTTTTAGTATATGGTAAAAAGCATGATAACAGTAACCTTCTGTTAGTTCTTTTATTAGTTTAAGTATTAAGTACCTTTTTCTTTTTGTCATGTTCTGTTTGTTCAAAGTTTATTGTCAAGATTGAAGCTTTAATTTATGACATCAATATTGTGCTTTTGATATTGTATCTGTAGTCTCTCTATGTCAAATGCAGAAAAAAGAATCAGTTTTTTTTTCTGCAGAAAGTAGAAAGATTAGGCTTCTTTTTTACTATAATATATGCTAAAGCATGAGAACAATAGTCTACTGTTACTTCTTTATTAGTGGAGTACAACTTTTCATCATGTTTTGTTTTGTTCATTGTTTGTTGTCTTCATTTAATCCACTAGTTGATATCCTTTAGTTAGAGTATTAATGGAACTATGTTGCTCGAACTCTCGAAAATGTTCTCGTACCTATGTTAGATCCTCTAGAATTACACTACTTTTGAACGATCCAACATGCACCCGTTGATGTTAAAGACTTCATTACATTAACATTGTGCTTGATGTGTTTTTTTGCTTTTGATGTCACTTACTAAACAGCCTCAAAGGTGCTCCAAAGGCAAAATGATGTGTCCAAACAGAAATATGGAAGGAGGGTCAGGGCTGCTGCAACCACCACAGAATCTGTTGTGGTGGCAAGAAGACCAGATTCTGGTGGTGTTGAAGGACCAGTAATATCACTTCTTGCTAATCATTTCCTTGTCCAGTTTGATCCTTCACAGAGAATATTCCATTATGATGTTGAAATTTCACCTCATCCATCGAAGGATATTGCTAGGCTAATCAAGAAAAAACTTGTGGAGGACCATTCTGTTATGCTATCAGGTGCTCTTCCAGTTTATGATGGTGGAAGGACTATATATAGCCCTATTGAATTTCAAAACAATAAGATTGAATTTTACATTAGCTTGCCAATTCCTAGTAGTGGCAGCAACAAGTCTGGAGAAATAGTTAAGTTGCAGAAAGAAGGACAGCAGATTAAGCTTTTCCGCGTTAACATCAAACTTATATCTAAATTTGATGGGAAAGAACTAAATAGCTACTTGAATAAAGAAGGAGATGATGGTGGGAGTCCACTTCCTCAGGAATATCTGCATGCATTAGATGTTGTGTTGCGCGAGAGCCCAACGGAGAAGTGTATAACGGCTGGGAGATCATTTTACTCGAGTTGTATGGGAGGACAAAAAGATATTGGGGGTGGAGCCGTGGCGCTAAGGGGTTTCTTTCAGAGTCTTAGACCAACACAACAAGGACTTGCTCTCAATGTTGATTTCTCAGTGACTGCTTTCCACGAGAGTATCGGAGTGATCACCTACTTGGAAAAACGCCTGGACTTCCTCCATGACATTTCTCACAGGAAAACAAGAGGCTTGACGAATGAAGAGAAAAAAGAGGTTGAGAAAGCACTGAAGAACATCAGGGTCTTCGTTTGCCACAGAGAGACTGTTCAGAGATATCGTATTTATAGCTTAACCGAGGAGGTTACAGAGAACCTCTGCTTTCAGGATAGGGATGGAAAAATCCTAAGAATAGTGAGCTACTTCAAGGATCATTACAACTATGATATACTATATAGGAACTTGCCGTGCTTGCAGATTAGCAGAAGTAAACCTTGTTATCTTCCAATGGAACTTTGTATGATTTGTGAAGGACAGAAGTTTCTTGGGAAGCTTTCGGATGATCAGACTGCAAGAATACTCAAAATGGGATGTCAAAGACCAAGGGAAAGAAAGGCAATTATAGACAGAGTCGTGACAGGACTGGTTGGACCAACAAGGTAATTTCTGCCTTCGCCATGCTACCTCCTTTGTTTTATTTTTGCTTACACTTCCATTTTGTTAGTGCCTACGTATTAAGATTGTTTCATTACCTGACAGTGGCAATCATGCGAGTGACTTCAAACTCCAAATCTCGAAAGAAATGACTCAATTGTATGGGAGAATTCTTCAGCCTCCTAAGCTTAAACTAGGTGATCGTGGTCAGGTTAGAAATCTTATTCCTTCCCGGCATGATAGGCAGTGGAATTTTCTGGACAGCCATGTCTTCGAAAGTACTCGAGTTGAGAGATGGGCACTGATGAGTTTTGGTGGAACCTCTGATCAGAAGTCCCACGTACCAAAATTCATAAACCAGTTATGTCAAAGGTGTGAGCAATTAGGCATCTTTCTGAACAAGAATACAGTACTTAATCCTCAGTTTGAACCCTTGCATTTGCTCAACAATGTTAAAAACTTAGAAAGCAAACTCAACAAGTTACATAGAGCTTCATTTAACAATCTCCAACTTGTTATTTGTGTGATGGAGAGAAAACACAAAGGATACGCGGACTTGAAAAGAATCGCTGAGACAAGCATCGGGATTGTAACACAATGCTGTTTGTACCCAAACCTTGGCAAAATTAGCTCACAGTTTTTGGCAAATTTGGCTCTCAAGATCAATGCCAAAGTCGGGGGATGCACAGTTGCATTGTACAATTCATTGCCTTCTCAAATACCACGGCTCTTCAAACATGACGGTCCAGTCATTTTTATGGGTGCGGATGTGACTCATCCGCACCCTCTTGATGATTTTAGCCCCTCCGTCGCTGCTGTAGTTGGTAGTGTAAATTGGCCAGCAGCCAACAAGTATGTCTCCAGGATGAGATCCCAAACGCATAGGCAGGAGATCATTCAAGATCTCAGCGCGATGGTTGGGGAGATTATTGATGATTTTTATGAGGAGCTGCTAAAACTCCCTGAAAGAATAATCTTCTTCAGGGACGGAGTAAGTGAAACACAATTCCTGAAAGTACTTAAAGAGGAGCTCCAAGCAATTCGGCTGGCATGTTCGAGATTTCCAGGTTACAAACCTCCCATTACTTTTGTGGTAGTTCAGAAAAGACACCATACTAGGCTATTTCCATGTGAACTTGATCCATCAACAACTAAAAACACGCTCTTCAACGAAAACATCCTACCAGGTACAGTTGTAGATACAGTGATCACTCATCCAAGTGAATTCGACTTCTATCTATGCAGCCATTGGGGTGTAAAAGGAACAAGTAGACCAATCCATTACCATGTTCTATGGGATGAAAACCAGTTCACTTCTGATGAGCTACAAAAATTGGTATACAACCTTTGCTACACATTTGTGAGATGCACCAAGCCTATTTCACTGGTGCCACCGGTTTATTACGCCCATTTAGCTGCATATAGAGGCAGACTGTATCTTGAACGTTCCGATTTGTCTACTCTAACAAGAAGTTCTAACATATCTCGCGCTGCTCCACCGAAGACAACTCCTTTACCTAAACTCACTGAGAACATTAAAAGGCTTATGTTTTATTGCTGAGTGCTGAAGTTATGGCAACTGCATGCACAGTCTTCTCTATATTGACAGTTTAGCGGTTTGATTTCATTGTAACCATTTTAGTTCTTTCTAGCTAGTCTTCTATATGTGCAGTTTGATCTCATGTACATACTAATTTTTATTAATATTTGTTTCTTTTATGATCCAATATTAT
Download sequence region |
Get flanking sequences on SL2.50ch01
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc01g010970.2.1 ARGONAUTE 1 (AHRD V1 ***- D6RUV9_TOBAC); contains Interpro domain(s) IPR003165 Stem cell self-renewal protein Piwi
ATGGAACATACTGAAAACTCCAACAAATGCAACTCTAAATCAACAACTGCCAAAATATGTCCAAATAACAACAACAACAACAACAATAATCACTATATTGCTTTTGGTTTTCATCACAATACTAATAATAATCAATATCATGAAACTTACCCTCCTCTTCTCCCTTTACCTCCTCTACTACCTCCTCTTCAACTACCTTTTCCTCAAAATCACAACTTCAGATCAAGAACCCATCTCCATAAACCTTCATTTAACCAGAATCATCCTTTTCTTGCCACCCCTTCTGATTTCAAGATTCAACAAATCTCAGCCTCAAAGGTGCTCCAAAGGCAAAATGATGTGTCCAAACAGAAATATGGAAGGAGGGTCAGGGCTGCTGCAACCACCACAGAATCTGTTGTGGTGGCAAGAAGACCAGATTCTGGTGGTGTTGAAGGACCAGTAATATCACTTCTTGCTAATCATTTCCTTGTCCAGTTTGATCCTTCACAGAGAATATTCCATTATGATGTTGAAATTTCACCTCATCCATCGAAGGATATTGCTAGGCTAATCAAGAAAAAACTTGTGGAGGACCATTCTGTTATGCTATCAGGTGCTCTTCCAGTTTATGATGGTGGAAGGACTATATATAGCCCTATTGAATTTCAAAACAATAAGATTGAATTTTACATTAGCTTGCCAATTCCTAGTAGTGGCAGCAACAAGTCTGGAGAAATAGTTAAGTTGCAGAAAGAAGGACAGCAGATTAAGCTTTTCCGCGTTAACATCAAACTTATATCTAAATTTGATGGGAAAGAACTAAATAGCTACTTGAATAAAGAAGGAGATGATGGTGGGAGTCCACTTCCTCAGGAATATCTGCATGCATTAGATGTTGTGTTGCGCGAGAGCCCAACGGAGAAGTGTATAACGGCTGGGAGATCATTTTACTCGAGTTGTATGGGAGGACAAAAAGATATTGGGGGTGGAGCCGTGGCGCTAAGGGGTTTCTTTCAGAGTCTTAGACCAACACAACAAGGACTTGCTCTCAATGTTGATTTCTCAGTGACTGCTTTCCACGAGAGTATCGGAGTGATCACCTACTTGGAAAAACGCCTGGACTTCCTCCATGACATTTCTCACAGGAAAACAAGAGGCTTGACGAATGAAGAGAAAAAAGAGGTTGAGAAAGCACTGAAGAACATCAGGGTCTTCGTTTGCCACAGAGAGACTGTTCAGAGATATCGTATTTATAGCTTAACCGAGGAGGTTACAGAGAACCTCTGCTTTCAGGATAGGGATGGAAAAATCCTAAGAATAGTGAGCTACTTCAAGGATCATTACAACTATGATATACTATATAGGAACTTGCCGTGCTTGCAGATTAGCAGAAGTAAACCTTGTTATCTTCCAATGGAACTTTGTATGATTTGTGAAGGACAGAAGTTTCTTGGGAAGCTTTCGGATGATCAGACTGCAAGAATACTCAAAATGGGATGTCAAAGACCAAGGGAAAGAAAGGCAATTATAGACAGAGTCGTGACAGGACTGGTTGGACCAACAAGTGGCAATCATGCGAGTGACTTCAAACTCCAAATCTCGAAAGAAATGACTCAATTGTATGGGAGAATTCTTCAGCCTCCTAAGCTTAAACTAGGTGATCGTGGTCAGGTTAGAAATCTTATTCCTTCCCGGCATGATAGGCAGTGGAATTTTCTGGACAGCCATGTCTTCGAAAGTACTCGAGTTGAGAGATGGGCACTGATGAGTTTTGGTGGAACCTCTGATCAGAAGTCCCACGTACCAAAATTCATAAACCAGTTATGTCAAAGGTGTGAGCAATTAGGCATCTTTCTGAACAAGAATACAGTACTTAATCCTCAGTTTGAACCCTTGCATTTGCTCAACAATGTTAAAAACTTAGAAAGCAAACTCAACAAGTTACATAGAGCTTCATTTAACAATCTCCAACTTGTTATTTGTGTGATGGAGAGAAAACACAAAGGATACGCGGACTTGAAAAGAATCGCTGAGACAAGCATCGGGATTGTAACACAATGCTGTTTGTACCCAAACCTTGGCAAAATTAGCTCACAGTTTTTGGCAAATTTGGCTCTCAAGATCAATGCCAAAGTCGGGGGATGCACAGTTGCATTGTACAATTCATTGCCTTCTCAAATACCACGGCTCTTCAAACATGACGGTCCAGTCATTTTTATGGGTGCGGATGTGACTCATCCGCACCCTCTTGATGATTTTAGCCCCTCCGTCGCTGCTGTAGTTGGTAGTGTAAATTGGCCAGCAGCCAACAAGTATGTCTCCAGGATGAGATCCCAAACGCATAGGCAGGAGATCATTCAAGATCTCAGCGCGATGGTTGGGGAGATTATTGATGATTTTTATGAGGAGCTGCTAAAACTCCCTGAAAGAATAATCTTCTTCAGGGACGGAGTAAGTGAAACACAATTCCTGAAAGTACTTAAAGAGGAGCTCCAAGCAATTCGGCTGGCATGTTCGAGATTTCCAGGTTACAAACCTCCCATTACTTTTGTGGTAGTTCAGAAAAGACACCATACTAGGCTATTTCCATGTGAACTTGATCCATCAACAACTAAAAACACGCTCTTCAACGAAAACATCCTACCAGGTACAGTTGTAGATACAGTGATCACTCATCCAAGTGAATTCGACTTCTATCTATGCAGCCATTGGGGTGTAAAAGGAACAAGTAGACCAATCCATTACCATGTTCTATGGGATGAAAACCAGTTCACTTCTGATGAGCTACAAAAATTGGTATACAACCTTTGCTACACATTTGTGAGATGCACCAAGCCTATTTCACTGGTGCCACCGGTTTATTACGCCCATTTAGCTGCATATAGAGGCAGACTGTATCTTGAACGTTCCGATTTGTCTACTCTAACAAGAAGTTCTAACATATCTCGCGCTGCTCCACCGAAGACAACTCCTTTACCTAAACTCACTGAGAACATTAAAAGGCTTATGTTTTATTGCTGAGTGCTGAAGTTATGGCAACTGCATGCACAGTCTTCTCTATATTGACAGTTTAGCGGTTTGATTTCATTGTAACCATTTTAGTTCTTTCTAGCTAGTCTTCTATATGTGCAGTTTGATCTCATGTACATACTAATTTTTATTAATATTTGTTTCTTTTATGATCCAATATTAT
ATGGAACATACTGAAAACTCCAACAAATGCAACTCTAAATCAACAACTGCCAAAATATGTCCAAATAACAACAACAACAACAACAATAATCACTATATTGCTTTTGGTTTTCATCACAATACTAATAATAATCAATATCATGAAACTTACCCTCCTCTTCTCCCTTTACCTCCTCTACTACCTCCTCTTCAACTACCTTTTCCTCAAAATCACAACTTCAGATCAAGAACCCATCTCCATAAACCTTCATTTAACCAGAATCATCCTTTTCTTGCCACCCCTTCTGATTTCAAGATTCAACAAATCTCAGCCTCAAAGGTGCTCCAAAGGCAAAATGATGTGTCCAAACAGAAATATGGAAGGAGGGTCAGGGCTGCTGCAACCACCACAGAATCTGTTGTGGTGGCAAGAAGACCAGATTCTGGTGGTGTTGAAGGACCAGTAATATCACTTCTTGCTAATCATTTCCTTGTCCAGTTTGATCCTTCACAGAGAATATTCCATTATGATGTTGAAATTTCACCTCATCCATCGAAGGATATTGCTAGGCTAATCAAGAAAAAACTTGTGGAGGACCATTCTGTTATGCTATCAGGTGCTCTTCCAGTTTATGATGGTGGAAGGACTATATATAGCCCTATTGAATTTCAAAACAATAAGATTGAATTTTACATTAGCTTGCCAATTCCTAGTAGTGGCAGCAACAAGTCTGGAGAAATAGTTAAGTTGCAGAAAGAAGGACAGCAGATTAAGCTTTTCCGCGTTAACATCAAACTTATATCTAAATTTGATGGGAAAGAACTAAATAGCTACTTGAATAAAGAAGGAGATGATGGTGGGAGTCCACTTCCTCAGGAATATCTGCATGCATTAGATGTTGTGTTGCGCGAGAGCCCAACGGAGAAGTGTATAACGGCTGGGAGATCATTTTACTCGAGTTGTATGGGAGGACAAAAAGATATTGGGGGTGGAGCCGTGGCGCTAAGGGGTTTCTTTCAGAGTCTTAGACCAACACAACAAGGACTTGCTCTCAATGTTGATTTCTCAGTGACTGCTTTCCACGAGAGTATCGGAGTGATCACCTACTTGGAAAAACGCCTGGACTTCCTCCATGACATTTCTCACAGGAAAACAAGAGGCTTGACGAATGAAGAGAAAAAAGAGGTTGAGAAAGCACTGAAGAACATCAGGGTCTTCGTTTGCCACAGAGAGACTGTTCAGAGATATCGTATTTATAGCTTAACCGAGGAGGTTACAGAGAACCTCTGCTTTCAGGATAGGGATGGAAAAATCCTAAGAATAGTGAGCTACTTCAAGGATCATTACAACTATGATATACTATATAGGAACTTGCCGTGCTTGCAGATTAGCAGAAGTAAACCTTGTTATCTTCCAATGGAACTTTGTATGATTTGTGAAGGACAGAAGTTTCTTGGGAAGCTTTCGGATGATCAGACTGCAAGAATACTCAAAATGGGATGTCAAAGACCAAGGGAAAGAAAGGCAATTATAGACAGAGTCGTGACAGGACTGGTTGGACCAACAAGTGGCAATCATGCGAGTGACTTCAAACTCCAAATCTCGAAAGAAATGACTCAATTGTATGGGAGAATTCTTCAGCCTCCTAAGCTTAAACTAGGTGATCGTGGTCAGGTTAGAAATCTTATTCCTTCCCGGCATGATAGGCAGTGGAATTTTCTGGACAGCCATGTCTTCGAAAGTACTCGAGTTGAGAGATGGGCACTGATGAGTTTTGGTGGAACCTCTGATCAGAAGTCCCACGTACCAAAATTCATAAACCAGTTATGTCAAAGGTGTGAGCAATTAGGCATCTTTCTGAACAAGAATACAGTACTTAATCCTCAGTTTGAACCCTTGCATTTGCTCAACAATGTTAAAAACTTAGAAAGCAAACTCAACAAGTTACATAGAGCTTCATTTAACAATCTCCAACTTGTTATTTGTGTGATGGAGAGAAAACACAAAGGATACGCGGACTTGAAAAGAATCGCTGAGACAAGCATCGGGATTGTAACACAATGCTGTTTGTACCCAAACCTTGGCAAAATTAGCTCACAGTTTTTGGCAAATTTGGCTCTCAAGATCAATGCCAAAGTCGGGGGATGCACAGTTGCATTGTACAATTCATTGCCTTCTCAAATACCACGGCTCTTCAAACATGACGGTCCAGTCATTTTTATGGGTGCGGATGTGACTCATCCGCACCCTCTTGATGATTTTAGCCCCTCCGTCGCTGCTGTAGTTGGTAGTGTAAATTGGCCAGCAGCCAACAAGTATGTCTCCAGGATGAGATCCCAAACGCATAGGCAGGAGATCATTCAAGATCTCAGCGCGATGGTTGGGGAGATTATTGATGATTTTTATGAGGAGCTGCTAAAACTCCCTGAAAGAATAATCTTCTTCAGGGACGGAGTAAGTGAAACACAATTCCTGAAAGTACTTAAAGAGGAGCTCCAAGCAATTCGGCTGGCATGTTCGAGATTTCCAGGTTACAAACCTCCCATTACTTTTGTGGTAGTTCAGAAAAGACACCATACTAGGCTATTTCCATGTGAACTTGATCCATCAACAACTAAAAACACGCTCTTCAACGAAAACATCCTACCAGGTACAGTTGTAGATACAGTGATCACTCATCCAAGTGAATTCGACTTCTATCTATGCAGCCATTGGGGTGTAAAAGGAACAAGTAGACCAATCCATTACCATGTTCTATGGGATGAAAACCAGTTCACTTCTGATGAGCTACAAAAATTGGTATACAACCTTTGCTACACATTTGTGAGATGCACCAAGCCTATTTCACTGGTGCCACCGGTTTATTACGCCCATTTAGCTGCATATAGAGGCAGACTGTATCTTGAACGTTCCGATTTGTCTACTCTAACAAGAAGTTCTAACATATCTCGCGCTGCTCCACCGAAGACAACTCCTTTACCTAAACTCACTGAGAACATTAAAAGGCTTATGTTTTATTGCTGAGTGCTGAAGTTATGGCAACTGCATGCACAGTCTTCTCTATATTGACAGTTTAGCGGTTTGATTTCATTGTAACCATTTTAGTTCTTTCTAGCTAGTCTTCTATATGTGCAGTTTGATCTCATGTACATACTAATTTTTATTAATATTTGTTTCTTTTATGATCCAATATTAT
![]() ![]() | translated polypeptide sequence |
>Solyc01g010970.2.1 ARGONAUTE 1 (AHRD V1 ***- D6RUV9_TOBAC); contains Interpro domain(s) IPR003165 Stem cell self-renewal protein Piwi
MEHTENSNKCNSKSTTAKICPNNNNNNNNNHYIAFGFHHNTNNNQYHETYPPLLPLPPLLPPLQLPFPQNHNFRSRTHLHKPSFNQNHPFLATPSDFKIQQISASKVLQRQNDVSKQKYGRRVRAAATTTESVVVARRPDSGGVEGPVISLLANHFLVQFDPSQRIFHYDVEISPHPSKDIARLIKKKLVEDHSVMLSGALPVYDGGRTIYSPIEFQNNKIEFYISLPIPSSGSNKSGEIVKLQKEGQQIKLFRVNIKLISKFDGKELNSYLNKEGDDGGSPLPQEYLHALDVVLRESPTEKCITAGRSFYSSCMGGQKDIGGGAVALRGFFQSLRPTQQGLALNVDFSVTAFHESIGVITYLEKRLDFLHDISHRKTRGLTNEEKKEVEKALKNIRVFVCHRETVQRYRIYSLTEEVTENLCFQDRDGKILRIVSYFKDHYNYDILYRNLPCLQISRSKPCYLPMELCMICEGQKFLGKLSDDQTARILKMGCQRPRERKAIIDRVVTGLVGPTSGNHASDFKLQISKEMTQLYGRILQPPKLKLGDRGQVRNLIPSRHDRQWNFLDSHVFESTRVERWALMSFGGTSDQKSHVPKFINQLCQRCEQLGIFLNKNTVLNPQFEPLHLLNNVKNLESKLNKLHRASFNNLQLVICVMERKHKGYADLKRIAETSIGIVTQCCLYPNLGKISSQFLANLALKINAKVGGCTVALYNSLPSQIPRLFKHDGPVIFMGADVTHPHPLDDFSPSVAAVVGSVNWPAANKYVSRMRSQTHRQEIIQDLSAMVGEIIDDFYEELLKLPERIIFFRDGVSETQFLKVLKEELQAIRLACSRFPGYKPPITFVVVQKRHHTRLFPCELDPSTTKNTLFNENILPGTVVDTVITHPSEFDFYLCSHWGVKGTSRPIHYHVLWDENQFTSDELQKLVYNLCYTFVRCTKPISLVPPVYYAHLAAYRGRLYLERSDLSTLTRSSNISRAAPPKTTPLPKLTENIKRLMFYC*
MEHTENSNKCNSKSTTAKICPNNNNNNNNNHYIAFGFHHNTNNNQYHETYPPLLPLPPLLPPLQLPFPQNHNFRSRTHLHKPSFNQNHPFLATPSDFKIQQISASKVLQRQNDVSKQKYGRRVRAAATTTESVVVARRPDSGGVEGPVISLLANHFLVQFDPSQRIFHYDVEISPHPSKDIARLIKKKLVEDHSVMLSGALPVYDGGRTIYSPIEFQNNKIEFYISLPIPSSGSNKSGEIVKLQKEGQQIKLFRVNIKLISKFDGKELNSYLNKEGDDGGSPLPQEYLHALDVVLRESPTEKCITAGRSFYSSCMGGQKDIGGGAVALRGFFQSLRPTQQGLALNVDFSVTAFHESIGVITYLEKRLDFLHDISHRKTRGLTNEEKKEVEKALKNIRVFVCHRETVQRYRIYSLTEEVTENLCFQDRDGKILRIVSYFKDHYNYDILYRNLPCLQISRSKPCYLPMELCMICEGQKFLGKLSDDQTARILKMGCQRPRERKAIIDRVVTGLVGPTSGNHASDFKLQISKEMTQLYGRILQPPKLKLGDRGQVRNLIPSRHDRQWNFLDSHVFESTRVERWALMSFGGTSDQKSHVPKFINQLCQRCEQLGIFLNKNTVLNPQFEPLHLLNNVKNLESKLNKLHRASFNNLQLVICVMERKHKGYADLKRIAETSIGIVTQCCLYPNLGKISSQFLANLALKINAKVGGCTVALYNSLPSQIPRLFKHDGPVIFMGADVTHPHPLDDFSPSVAAVVGSVNWPAANKYVSRMRSQTHRQEIIQDLSAMVGEIIDDFYEELLKLPERIIFFRDGVSETQFLKVLKEELQAIRLACSRFPGYKPPITFVVVQKRHHTRLFPCELDPSTTKNTLFNENILPGTVVDTVITHPSEFDFYLCSHWGVKGTSRPIHYHVLWDENQFTSDELQKLVYNLCYTFVRCTKPISLVPPVYYAHLAAYRGRLYLERSDLSTLTRSSNISRAAPPKTTPLPKLTENIKRLMFYC*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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GenBank accessions | None | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Genome-wide identification of Dicer-like, Argonaute and RNA-dependent RNA polymerase gene families and their expression analyses in response to viral infection and abiotic stresses in Solanum lycopersicum.
Gene (2012)
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Dicer, Argonaute and RNA-dependent RNA polymerase form the core components to trigger RNA silencing. Although tomato (Solanum lycopersicum) is a dicotyledon model plant, no systematic analysis and expression profiling of these genes in tomato has been undertaken previously. In this study, seven Dicer-like (SlDCLs), 15 Argonaute (SlAGOs) and six RNA-dependent RNA polymerase (SlRDRs) genes were identified in tomato. These genes were categorized into four subgroups based on phylogenetic analyses. Comprehensive analyses of gene structure, genomic localization and similarity among these genes were performed. Their expression patterns were investigated by means of expression models in different tissues and organs using online data and semi-quantitative RT-PCR. Many of the candidate genes were up-regulated in response to Tomato yellow leaf curl virus infection and abiotic stresses. The expression models of tandem gene duplications among SlDCL2s indicated the DCL2 family plays an important role in the evolution of tomato.
Bai, M. Yang, GS. Chen, WT. Mao, ZC. Kang, HX. Chen, GH. Yang, YH. Xie, BY.
Gene.
2012.
().
.
Failure of the Tomato Trans-Acting Short Interfering RNA Program to Regulate AUXIN RESPONSE FACTOR3 and ARF4 Underlies the Wiry Leaf Syndrome.
The Plant cell (2012)
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Interfering with small RNA production is a common strategy of plant viruses. A unique class of small RNAs that require microRNA and short interfering (siRNA) biogenesis for their production is termed trans-acting short interfering RNAs (ta-siRNAs). Tomato (Solanum lycopersicum) wiry mutants represent a class of phenotype that mimics viral infection symptoms, including shoestring leaves that lack leaf blade expansion. Here, we show that four WIRY genes are involved in siRNA biogenesis, and in their corresponding mutants, levels of ta-siRNAs that regulate AUXIN RESPONSE FACTOR3 (ARF3) and ARF4 are reduced, while levels of their target ARFs are elevated. Reducing activity of both ARF3 and ARF4 can rescue the wiry leaf lamina, and increased activity of either can phenocopy wiry leaves. Thus, a failure to negatively regulate these ARFs underlies tomato shoestring leaves. Overexpression of these ARFs in Arabidopsis thaliana, tobacco (Nicotiana tabacum), and potato (Solanum tuberosum) failed to produce wiry leaves, suggesting that the dramatic response in tomato is exceptional. As negative regulation of orthologs of these ARFs by ta-siRNA is common to land plants, we propose that ta-siRNA levels serve as universal sensors for interference with small RNA biogenesis, and changes in their levels direct species-specific responses.
Yifhar, T. Pekker, I. Peled, D. Friedlander, G. Pistunov, A. Sabban, M. Wachsman, G. Alvarez, JP. Amsellem, Z. Eshed, Y.
The Plant cell.
2012.
24(9).
3575-89.
Transcriptome profiling of cytokinin and auxin regulation in tomato root.
Journal of experimental botany (2013)
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Tomato is a model and economically important crop plant with little information available about gene expression in roots. Currently, there have only been a few studies that examine hormonal responses in tomato roots and none at a genome-wide level. This study examined the transcriptome atlas of tomato root regions (root tip, lateral roots, and whole roots) and the transcriptional regulation of each root region in response to the plant hormones cytokinin and auxin using Illumina RNA sequencing. More than 165 million 1×54 base pair reads were mapped onto the Solanum lycopersicum reference genome and differential expression patterns in each root region in response to each hormone were assessed. Many novel cytokinin- and auxin-induced and -repressed genes were identified as significantly differentially expressed and the expression levels of several were confirmed by qPCR. A number of these regulated genes represent tomato orthologues of cytokinin- or auxin-regulated genes identified in other species, including CKXs, type-A RRs, Aux/IAAs, and ARFs. Additionally, the data confirm some of the hormone regulation studies for recently examined genes in tomato such as SlIAAs and SlGH3s. Moreover, genes expressed abundantly in each root region were identified which provide a spatial distribution of many classes of genes, including plant defence, secondary metabolite production, and general metabolism across the root. Overall this study presents the first global expression patterns of hormone-regulated transcripts in tomato roots, which will be functionally relevant for future studies directed towards tomato root growth and development.
Gupta, S. Shi, X. Lindquist, IE. Devitt, N. Mudge, J. Rashotte, AM.
Journal of experimental botany.
2013.
64(2).
695-704.
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