This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Tomato locus Immunity to Fusarium wilt race 3
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
[loading edit links...]
|
[loading...]
|
|
Links to external databases Links to external databases |
Immunity to Fusarium wilt race 3 is a TGRC gene
Immunity to Fusarium wilt race 3 is on PhyloGenes
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch07, position: 63601308
Please cite Razifard et al.
Registry name: | None | [Associate registry name] |
Notes and figures (0) Notes and figures (0) | [Add notes, figures or images] |
Image | Description | Type |
---|
Accessions and images (9) Accessions and images (9) | [Associate accession] |
Alleles (1) Alleles (1) | [Add new Allele] |
Associated loci (0) Associated loci (0) | [Associate new locus] |
[loading...]
|
Associated loci - graphical view | None |
SolCyc links SolCyc links |
[loading...]
Sequence annotations Sequence annotations |
Genome features Genome features |
Genomic sequence Genomic sequence | unprocessed genomic sequence region underlying this gene |
>Solyc07g055640.1 SL2.50ch07:63597005..63603617
ATGGGAAATCTTGTGCTCTTCGATAAGAGAAAGCGCACAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAGAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGGTTTGTTTGCTCTTACTGTTCTCAAAGGAAGTTGGGCTGCTTACACGGATACTAATCCGCCTCAATATTACTACACTTCATACTATGCTGATAGTTCTTATTACAGTTTTAATGGTCAAACCTTTACTGTTTTACACTATCCTACTAATTCGACAGCTCAATTCATGAAGATTGGGCCTGATGGACATATAAAGGTATTCCAATGGTCTGTAGTTGATTGGAATGAAGTATCTGACATTTTGTCGCCAAATGTAGATAACTGTGCGTACCCAATGGTATGTGGAAGTTATAGCATTTGTACGAATAATGGGCAATGTACTTGTCCGTCACATCAGAACTTCTTCAGGCCATTTTCTGAGAGGAAACCAGATCTTGGATGTTCACAGCTGACTTCCGTTAACTGCAACTCTTCGCAGTATCATAGTTTCACAGAACTCAAGAATACTACATATTTTTCATTTAACATTGATCAGGAACTAAATTCGACTAAATTGTGGCTTGGGCAGAAAAAGTTGGAAGATTGCAAAAGGGCCTGTCTGAGTAACTGTTCTTGCAAAGCTGCTGTTTTTGAATATAATTGGAATGGGGATCGAAGAGGTAACTGTTTGTTACTGAATGAAGTTTTCTCTCTCAAAGACAGCGAAGAAGGAAGAGGCGAGACAGTGTTTCTTAAGGTGCAGAATACCTCAAAGGCGCAGACTCAGTCTCTAATCATTCCTGGAGGAAAGAAATCAAGACCTTTCAAAGTGATAATAGGATCTACTCTTGCATCTTTCTTTGGGATAATTTTAAGCATAGCTACTTGCTTTGTTATTTTCAGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCAACAATCTTACCGGGAATCCTAACTCGATTCTCTTACAATGAGCTGAAAGTAATTACAGATGATTTCAGCAGTAAGCTTGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAAGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTTGATAGGTGGATTACAATGAAAAACCGAGAAAATGGGCTTACATGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTGGATCAATATCTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTCGTGACTAGAATGAGAGGAACACGGGGTTATTTAGCCCCTGAATGGTTGAGCTCGGTAATCACTGAGAAAGTTGATGTGTATGCTTTTGGAATTGTCCTCTTGGAAATTCTCTGTGGGCGGAAGAATTTGGACTGGTCCCAAGCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAACTCATTGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTACAGGGTGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGGTTTGGTCACTGTTGAAACCAACTTGAATTATGATTTCACACATGTACCTGAGGTTGGGGCAGGCAACCAAGAGAGGGAAGTCATTATCAGTTCAATATTTCCTTCAATTTTATCAGGACCTAGGTAAACAAATCCATAGGTTTTTGTCTTTGAAGCAACCAATTATTGCTGCATAATGTCAAATATCCAACATTTTCAATTCTAGCATAACTTTTTTACAGTGTATGAGATTATAATTCATAATGTTCAGTAACTTCTATATTAAATTTTTGAGCTTCATGTTACTATCGTGTAGAGGGATCTCAATTCATGTGCGAGTATAAGTATGCTGTCAGCTTTATTGTGTTATGCTATCGGAAAATCTTTATTTCTCTTCATCTAATCTTAGAACATTTAATTTTCCAAAAGCTTCCGTGCTGTCATTTCTGTTGAGTTGTAAGTTGTAACACTCTTTCCAGCAATCATTTTCCAAATCCACAATTTAATTTCACGTTTTACCACTGAACTCATTATATTTTAGTAGTTAAAAGTTTACACAAACCAGATGAACTATTAGTGGATCTTTAGTTACTAACATTCAACTTGGAATTATTGGGCACTTTCCACTGAATGGGATGTGCCATAAATTCCAAAGTCTAAGTCAATACAGAGAGGGGCCTCAAACAAACTTCTTCAATGTGCTATCTTTTTTCAAACTTTAATAATGGGGCCGGGTTCTATCTTTCCACTAACGGGACCATTTGACCATTTCCAAGTTATAATTTTCGTTATTGCAGACAAATCAAGGTCACTACGACTTTCATTTACTTCATGTTATGCTTCTTATCCTCACTCCTCTGCATTTGAGGTGCATGGATTTGATGATTTTAACGTAGGCTAGTACATCGTATGTGTGTTAAACTATTTAGTTTAGAATTATTCTTCAGCACCTATATAGACTCCCTAGTAATGTGATTATGTAAGAGTGGAGTTATTTTAATGCTATGAAATGTATCTCGATCCCTCTTCCATCCTCTTCATAACCTAGCTGTGATGATATTATCAAGGGTCCGCCTTAGATATTTCTAACAAGACTTGTTTTTTTTTTTCCTTAATCAATGAATAGTGACTTATTTATCTCCATCTTCCATCTTTTTCAATCTTTGCCTAATCAATACAAAAACAAAAAAAAATCTTCCTCATGCTATCATTTTCCAAGTTAATTTCACTATTTCGGAACTTTCCTCCTCATTAACTATGAGTCTTCCATAAGAACCATTCCCATATTGATATACGATGACTTCCAATCAAGCAGATGTTATCTTCCAATTGGTTAAGTGAGACGTGTGATTTGGGAAACATTTCCTTTTGACTTGACAGTAAATGATTCACAAAATTGGGCATAACTGAACTCCACACGTTTCAAAAGTATTCCTAGCCACAGCATTCATTATGAACTACTGGAAGATGCTAGCTGACCTACATGTAAAATACAGTTTGGTTCGAAAGCTAGCAGGATACTGTTTAACGCTAGATACTTAGCTCGAATATGACTACCTCAGCTTTCAATAAATAACAATTGAACCAAATTGTTATGTAGCAGCCAACAGTAACAAATTAAAGATAATAAATAGAAGAATATAGGAAAATGCAGTCTCTTTTCTTCCTAAAGGAAACCAAAGCAAATATAAATATCAATGTCACAATCTTTACACTGATGGGACCATTTTGACCATTTCTAAGTTACAATTCCGTTGTTGTTCAACCTTGCAGACAAGTCGAAGTCACTAGGACTTTCATTTACTTTGTGGATTGGACGTGAGGAAAGCTTATCATCCGATTGTTATGGTTAATGTGAACTGATTTATGGAGAAAATTACAATTACAGATATCACTTTGGATATTCTGTATGCTCATATCTTTCTTCAACTATACACAAAAAAAATCCATATATTTTATTGATTTTGATTAGGAAACAATGTTTGCAGAAGAGAGAATGTGTTTTCCTATCCTTCTCTTCATTTATCTCCTCTTATCTTTGTCTCGATTTGTTATATCACAATCTTTCCTACACTACAACATCAGTCTTCCGAATTCTACTGCAGGGCATGCCGGACTTTCCTCTTTATGGATCAATAGGCCGTCTCTTATTATTAATTCCACCACCGATGGCTTCTCAATGCCCATACTTCAGCGGGGAAATGCTGGCCCACGATTCCTCTATGGCTTCTACTGCAGGTACAATGCCACAGAATGCCTTCTTGGTATCGTTTTGTATCACAACAAATACAACGAGCAGGACGGTATAGTAAATGAACCCCAGTTAGTTTGGTCTGCTAACAGGAACCGTCCAGTGAAATTCAATGCAACCTTGGAACTAGGCCAAGATGGCAACTTGGTCTTGACAGACTCTGATGGCACTCTTGTTTGGTCCACTGATACAATTGGGAAATCTGTTTCTGGCTTAAACTTAACAGAAATGGGAAATCTTGTGCTCTTTGATAAGAGAAAGCGCATAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAAAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGGTTTGTTTGCTCTTACTGTTCTCAATGGAAGCTGGGCTGCTTACATGGATACTAATCCGCCTCAATATTACTACACTTCATACTATGCTGATAGTTCTTATTACAGTTTTAATGGTCAAACCTTTACTATTTTACACTATCCTACTAACTCGACAGCTCAATTCATGAAGATTGGTCCTGATGGACATATAAAGGTATACCAATGGTCTGAAGTTGTATCTGACCTTTTGCCGCGATTTGTAGATAAATGTGCATACCCAATGGTATGTGGAAGTTATAGCATTTGTACAAATAACGGGCAATGTACTTGTCCGTCACAGGAAAACTTCTTCAGGCCATTTTCTGAGAGGAAACCAGATCTTGGATGTTCACAGCTGACTTCCGTTAACTGCAACTCCTCGCAGTATCATAGTTTCGTAGAGCTCAAGAATACTACATATTTTTCATTTTACATTGATCAGGAACTAAATTCGAGCAAATTATGGCTTGGGCAGACAAAGTTGGAAGATTGCAAAAGGGCCTGTCTGAGTAACTGTTCTTGCAAAGCTGCTGTTTTTAGATATGGTTGGAATGGGACTCGAAGAGGAAACTGTTTGTTACTGAATGAAGTTTTCTCTCTCAGAGACAGCGATGAAGGAAGAGGCAATACAGTGTTTCTTAAGGTGCAGAATTCCTCAAAGGCGCAGACTCAGTCTCTAATCATTCCTGGAGGAAAGAAATCAAGACCTTTCAAAGTGATAATAGGATCTACTCTTGCAGCTTTCTTTGGGATAATTTTAAGCATAGCTACTTGCTTTGTTATTTTCAGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCACCAATCTTACCCGGAATCCTAACTCGATTTTCTTACAATGAGCTAAAAATAATTACAGAAGATTTCAGTAGAAAGCTGGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAGGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTGGATAGGTGGATTACACATGAAAACCGACAAAATGGGCTTACGTGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTAGATCAGTACTTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTTGTGACTAGAATGAGAGGCACACCGGGTTATTTAGCCCCTGAATGGTTGAGCTCAGTAATCACTGAGAAAGTTGATGTTTATGCTTTTGGAATTGTCCTCTTGGAAATTCTGTGTGGGCGAAAGAATTTGGATTGGTCCCAACCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAGCTCATGGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTGCAGGGCGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGGTTTGGTGACTGTTGAACCCAACTTGAATTATGATTTCACACATCTACCTGAGGTTGGGGCAGGCAACCAACAGAGGGAAGTCATTAGCAGTTCAAAATTTCCTTCAATTTTATCGGGACCAAGGTAAACAAGATGCTTAAGATTTTGTCTTTGAAGGAACCAACATACATATGGTTGTGTAATATCAAATATTGCAACATATCCTATTCTAGCATAACTTTTTATAATTCATGAAATGTATTGTTCAGTAACTTCTATATTGATTTTTCGAGCTTCATGTTACTATCAGATAGAGGCTTCACAGTTCATGTTAACTCAATATTGTACGCGGTGGTGCAGCTACTGAATTCAAAATGGTAGTATGCTGTAAGCTTTATTCAAAATGGTAG
ATGGGAAATCTTGTGCTCTTCGATAAGAGAAAGCGCACAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAGAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGGTTTGTTTGCTCTTACTGTTCTCAAAGGAAGTTGGGCTGCTTACACGGATACTAATCCGCCTCAATATTACTACACTTCATACTATGCTGATAGTTCTTATTACAGTTTTAATGGTCAAACCTTTACTGTTTTACACTATCCTACTAATTCGACAGCTCAATTCATGAAGATTGGGCCTGATGGACATATAAAGGTATTCCAATGGTCTGTAGTTGATTGGAATGAAGTATCTGACATTTTGTCGCCAAATGTAGATAACTGTGCGTACCCAATGGTATGTGGAAGTTATAGCATTTGTACGAATAATGGGCAATGTACTTGTCCGTCACATCAGAACTTCTTCAGGCCATTTTCTGAGAGGAAACCAGATCTTGGATGTTCACAGCTGACTTCCGTTAACTGCAACTCTTCGCAGTATCATAGTTTCACAGAACTCAAGAATACTACATATTTTTCATTTAACATTGATCAGGAACTAAATTCGACTAAATTGTGGCTTGGGCAGAAAAAGTTGGAAGATTGCAAAAGGGCCTGTCTGAGTAACTGTTCTTGCAAAGCTGCTGTTTTTGAATATAATTGGAATGGGGATCGAAGAGGTAACTGTTTGTTACTGAATGAAGTTTTCTCTCTCAAAGACAGCGAAGAAGGAAGAGGCGAGACAGTGTTTCTTAAGGTGCAGAATACCTCAAAGGCGCAGACTCAGTCTCTAATCATTCCTGGAGGAAAGAAATCAAGACCTTTCAAAGTGATAATAGGATCTACTCTTGCATCTTTCTTTGGGATAATTTTAAGCATAGCTACTTGCTTTGTTATTTTCAGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCAACAATCTTACCGGGAATCCTAACTCGATTCTCTTACAATGAGCTGAAAGTAATTACAGATGATTTCAGCAGTAAGCTTGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAAGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTTGATAGGTGGATTACAATGAAAAACCGAGAAAATGGGCTTACATGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTGGATCAATATCTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTCGTGACTAGAATGAGAGGAACACGGGGTTATTTAGCCCCTGAATGGTTGAGCTCGGTAATCACTGAGAAAGTTGATGTGTATGCTTTTGGAATTGTCCTCTTGGAAATTCTCTGTGGGCGGAAGAATTTGGACTGGTCCCAAGCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAACTCATTGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTACAGGGTGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGGTTTGGTCACTGTTGAAACCAACTTGAATTATGATTTCACACATGTACCTGAGGTTGGGGCAGGCAACCAAGAGAGGGAAGTCATTATCAGTTCAATATTTCCTTCAATTTTATCAGGACCTAGGTAAACAAATCCATAGGTTTTTGTCTTTGAAGCAACCAATTATTGCTGCATAATGTCAAATATCCAACATTTTCAATTCTAGCATAACTTTTTTACAGTGTATGAGATTATAATTCATAATGTTCAGTAACTTCTATATTAAATTTTTGAGCTTCATGTTACTATCGTGTAGAGGGATCTCAATTCATGTGCGAGTATAAGTATGCTGTCAGCTTTATTGTGTTATGCTATCGGAAAATCTTTATTTCTCTTCATCTAATCTTAGAACATTTAATTTTCCAAAAGCTTCCGTGCTGTCATTTCTGTTGAGTTGTAAGTTGTAACACTCTTTCCAGCAATCATTTTCCAAATCCACAATTTAATTTCACGTTTTACCACTGAACTCATTATATTTTAGTAGTTAAAAGTTTACACAAACCAGATGAACTATTAGTGGATCTTTAGTTACTAACATTCAACTTGGAATTATTGGGCACTTTCCACTGAATGGGATGTGCCATAAATTCCAAAGTCTAAGTCAATACAGAGAGGGGCCTCAAACAAACTTCTTCAATGTGCTATCTTTTTTCAAACTTTAATAATGGGGCCGGGTTCTATCTTTCCACTAACGGGACCATTTGACCATTTCCAAGTTATAATTTTCGTTATTGCAGACAAATCAAGGTCACTACGACTTTCATTTACTTCATGTTATGCTTCTTATCCTCACTCCTCTGCATTTGAGGTGCATGGATTTGATGATTTTAACGTAGGCTAGTACATCGTATGTGTGTTAAACTATTTAGTTTAGAATTATTCTTCAGCACCTATATAGACTCCCTAGTAATGTGATTATGTAAGAGTGGAGTTATTTTAATGCTATGAAATGTATCTCGATCCCTCTTCCATCCTCTTCATAACCTAGCTGTGATGATATTATCAAGGGTCCGCCTTAGATATTTCTAACAAGACTTGTTTTTTTTTTTCCTTAATCAATGAATAGTGACTTATTTATCTCCATCTTCCATCTTTTTCAATCTTTGCCTAATCAATACAAAAACAAAAAAAAATCTTCCTCATGCTATCATTTTCCAAGTTAATTTCACTATTTCGGAACTTTCCTCCTCATTAACTATGAGTCTTCCATAAGAACCATTCCCATATTGATATACGATGACTTCCAATCAAGCAGATGTTATCTTCCAATTGGTTAAGTGAGACGTGTGATTTGGGAAACATTTCCTTTTGACTTGACAGTAAATGATTCACAAAATTGGGCATAACTGAACTCCACACGTTTCAAAAGTATTCCTAGCCACAGCATTCATTATGAACTACTGGAAGATGCTAGCTGACCTACATGTAAAATACAGTTTGGTTCGAAAGCTAGCAGGATACTGTTTAACGCTAGATACTTAGCTCGAATATGACTACCTCAGCTTTCAATAAATAACAATTGAACCAAATTGTTATGTAGCAGCCAACAGTAACAAATTAAAGATAATAAATAGAAGAATATAGGAAAATGCAGTCTCTTTTCTTCCTAAAGGAAACCAAAGCAAATATAAATATCAATGTCACAATCTTTACACTGATGGGACCATTTTGACCATTTCTAAGTTACAATTCCGTTGTTGTTCAACCTTGCAGACAAGTCGAAGTCACTAGGACTTTCATTTACTTTGTGGATTGGACGTGAGGAAAGCTTATCATCCGATTGTTATGGTTAATGTGAACTGATTTATGGAGAAAATTACAATTACAGATATCACTTTGGATATTCTGTATGCTCATATCTTTCTTCAACTATACACAAAAAAAATCCATATATTTTATTGATTTTGATTAGGAAACAATGTTTGCAGAAGAGAGAATGTGTTTTCCTATCCTTCTCTTCATTTATCTCCTCTTATCTTTGTCTCGATTTGTTATATCACAATCTTTCCTACACTACAACATCAGTCTTCCGAATTCTACTGCAGGGCATGCCGGACTTTCCTCTTTATGGATCAATAGGCCGTCTCTTATTATTAATTCCACCACCGATGGCTTCTCAATGCCCATACTTCAGCGGGGAAATGCTGGCCCACGATTCCTCTATGGCTTCTACTGCAGGTACAATGCCACAGAATGCCTTCTTGGTATCGTTTTGTATCACAACAAATACAACGAGCAGGACGGTATAGTAAATGAACCCCAGTTAGTTTGGTCTGCTAACAGGAACCGTCCAGTGAAATTCAATGCAACCTTGGAACTAGGCCAAGATGGCAACTTGGTCTTGACAGACTCTGATGGCACTCTTGTTTGGTCCACTGATACAATTGGGAAATCTGTTTCTGGCTTAAACTTAACAGAAATGGGAAATCTTGTGCTCTTTGATAAGAGAAAGCGCATAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAAAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGGTTTGTTTGCTCTTACTGTTCTCAATGGAAGCTGGGCTGCTTACATGGATACTAATCCGCCTCAATATTACTACACTTCATACTATGCTGATAGTTCTTATTACAGTTTTAATGGTCAAACCTTTACTATTTTACACTATCCTACTAACTCGACAGCTCAATTCATGAAGATTGGTCCTGATGGACATATAAAGGTATACCAATGGTCTGAAGTTGTATCTGACCTTTTGCCGCGATTTGTAGATAAATGTGCATACCCAATGGTATGTGGAAGTTATAGCATTTGTACAAATAACGGGCAATGTACTTGTCCGTCACAGGAAAACTTCTTCAGGCCATTTTCTGAGAGGAAACCAGATCTTGGATGTTCACAGCTGACTTCCGTTAACTGCAACTCCTCGCAGTATCATAGTTTCGTAGAGCTCAAGAATACTACATATTTTTCATTTTACATTGATCAGGAACTAAATTCGAGCAAATTATGGCTTGGGCAGACAAAGTTGGAAGATTGCAAAAGGGCCTGTCTGAGTAACTGTTCTTGCAAAGCTGCTGTTTTTAGATATGGTTGGAATGGGACTCGAAGAGGAAACTGTTTGTTACTGAATGAAGTTTTCTCTCTCAGAGACAGCGATGAAGGAAGAGGCAATACAGTGTTTCTTAAGGTGCAGAATTCCTCAAAGGCGCAGACTCAGTCTCTAATCATTCCTGGAGGAAAGAAATCAAGACCTTTCAAAGTGATAATAGGATCTACTCTTGCAGCTTTCTTTGGGATAATTTTAAGCATAGCTACTTGCTTTGTTATTTTCAGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCACCAATCTTACCCGGAATCCTAACTCGATTTTCTTACAATGAGCTAAAAATAATTACAGAAGATTTCAGTAGAAAGCTGGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAGGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTGGATAGGTGGATTACACATGAAAACCGACAAAATGGGCTTACGTGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTAGATCAGTACTTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTTGTGACTAGAATGAGAGGCACACCGGGTTATTTAGCCCCTGAATGGTTGAGCTCAGTAATCACTGAGAAAGTTGATGTTTATGCTTTTGGAATTGTCCTCTTGGAAATTCTGTGTGGGCGAAAGAATTTGGATTGGTCCCAACCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAGCTCATGGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTGCAGGGCGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGGTTTGGTGACTGTTGAACCCAACTTGAATTATGATTTCACACATCTACCTGAGGTTGGGGCAGGCAACCAACAGAGGGAAGTCATTAGCAGTTCAAAATTTCCTTCAATTTTATCGGGACCAAGGTAAACAAGATGCTTAAGATTTTGTCTTTGAAGGAACCAACATACATATGGTTGTGTAATATCAAATATTGCAACATATCCTATTCTAGCATAACTTTTTATAATTCATGAAATGTATTGTTCAGTAACTTCTATATTGATTTTTCGAGCTTCATGTTACTATCAGATAGAGGCTTCACAGTTCATGTTAACTCAATATTGTACGCGGTGGTGCAGCTACTGAATTCAAAATGGTAGTATGCTGTAAGCTTTATTCAAAATGGTAG
Download sequence region |
Get flanking sequences on SL2.50ch07
|
mRNA Solyc07g055640.1.1 mRNA Solyc07g055640.1.1 |
Ontology terms Ontology terms | terms associated with this mRNA |
cDNA sequence cDNA sequence | spliced cDNA sequence, including UTRs |
>Solyc07g055640.1.1 Receptor-like kinase (AHRD V1 *-*- B6EB06_NICGU); contains Interpro domain(s) IPR002290 Serine/threonine protein kinase
ATGGGAAATCTTGTGCTCTTCGATAAGAGAAAGCGCACAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAGAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGCAACAATCTTACCGGGAATCCTAACTCGATTCTCTTACAATGAGCTGAAAGTAATTACAGATGATTTCAGCAGTAAGCTTGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAAGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTTGATAGGTGGATTACAATGAAAAACCGAGAAAATGGGCTTACATGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTGGATCAATATCTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTCGTGACTAGAATGAGAGGAACACGGGGTTATTTAGCCCCTGAATGGTTGAGCTCGGTAATCACTGAGAAAGTTGATGTGTATGCTTTTGGAATTGTCCTCTTGGAAATTCTCTGTGGGCGGAAGAATTTGGACTGGTCCCAAGCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAACTCATTGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTACAGGGTGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGACAAGTCGAAGTCACTAGGACTTTCATTTACTTTGTGGATTGGACGTGAGAACCGTCCAGTGAAATTCAATGCAACCTTGGAACTAGGCCAAGATGGCAACTTGGTCTTGACAGACTCTGATGGCACTCTTGTTTGGTCCACTGATACAATTGGGAAATCTGTTTCTGGCTTAAACTTAACAGAAATGGGAAATCTTGTGCTCTTTGATAAGAGAAAGCGCATAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAAAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGCTCAATTCATGAAGATTGGTCCTGATGGACATATAAAGGTATACCAATGGTCTGAAGTTGTATCTGACCTTTTGCCGCGATTTGTAGATAAATGTGCATACCCAATGGTATGTGGAAGTTATAGCATTTGTACAAATAACGGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCACCAATCTTACCCGGAATCCTAACTCGATTTTCTTACAATGAGCTAAAAATAATTACAGAAGATTTCAGTAGAAAGCTGGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAGGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTGGATAGGTGGATTACACATGAAAACCGACAAAATGGGCTTACGTGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTAGATCAGTACTTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTTGTGACTAGAATGAGAGGCACACCGGGTTATTTAGCCCCTGAATGGTTGAGCTCAGTAATCACTGAGAAAGTTGATGTTTATGCTTTTGGAATTGTCCTCTTGGAAATTCTGTGTGGGCGAAAGAATTTGGATTGGTCCCAACCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAGCTCATGGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTGCAGGGCGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGCTACTGAATTCAAAATGGTAGTATGCTGTAAGCTTTATTCAAAATGGTAG
ATGGGAAATCTTGTGCTCTTCGATAAGAGAAAGCGCACAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAGAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGCAACAATCTTACCGGGAATCCTAACTCGATTCTCTTACAATGAGCTGAAAGTAATTACAGATGATTTCAGCAGTAAGCTTGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAAGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTTGATAGGTGGATTACAATGAAAAACCGAGAAAATGGGCTTACATGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTGGATCAATATCTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTCGTGACTAGAATGAGAGGAACACGGGGTTATTTAGCCCCTGAATGGTTGAGCTCGGTAATCACTGAGAAAGTTGATGTGTATGCTTTTGGAATTGTCCTCTTGGAAATTCTCTGTGGGCGGAAGAATTTGGACTGGTCCCAAGCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAACTCATTGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTACAGGGTGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGACAAGTCGAAGTCACTAGGACTTTCATTTACTTTGTGGATTGGACGTGAGAACCGTCCAGTGAAATTCAATGCAACCTTGGAACTAGGCCAAGATGGCAACTTGGTCTTGACAGACTCTGATGGCACTCTTGTTTGGTCCACTGATACAATTGGGAAATCTGTTTCTGGCTTAAACTTAACAGAAATGGGAAATCTTGTGCTCTTTGATAAGAGAAAGCGCATAATTTGGCAGTCTTTTGATCATCCTACGGATTCTTTGCTTCCAGGGCAAAGTTTGGTTTCTGGCCGGAAGATCGTAGCAAGCGTTTCAGCAACCAATCGGAGTCAAGCTCAATTCATGAAGATTGGTCCTGATGGACATATAAAGGTATACCAATGGTCTGAAGTTGTATCTGACCTTTTGCCGCGATTTGTAGATAAATGTGCATACCCAATGGTATGTGGAAGTTATAGCATTTGTACAAATAACGGAAAGAGGACACATGAGTCCAGAAAGGCTGCGGATATTTTGGATCTAGCACCAATCTTACCCGGAATCCTAACTCGATTTTCTTACAATGAGCTAAAAATAATTACAGAAGATTTCAGTAGAAAGCTGGGGGAAGGAGGATTTGGCTGTGTTTATGAAGGAACACTGAGAAATGGCACTAAAATAGCTGTGAAGCATCTGGATGGTGTAGGTCAAGTAAAGGAATCATTCTTAACAGAGGTAAAGGCAGTCGGTGGCATTCACCATATCAATCTGGTAAAACTCATTGGATTTTGTGCCGAAAAAACCCACAGGCTTCTAATCTATGAGTACATGGTGAATGGATCGCTGGATAGGTGGATTACACATGAAAACCGACAAAATGGGCTTACGTGGAGCACAAGACAGAGGATAATATCAGATATCGCCAAAGGGTTAGCGTATCTACATGAGGATTGCAGCCAAAAGATAATTCATTTGGACATCAAACCACAAAACATCCTTCTAGATCAGTACTTCAATGCTAAGATATCAGATTTTGGGTTGTCGAAGCTAATTGAGAAAGACAAAAGCAAAGTTGTGACTAGAATGAGAGGCACACCGGGTTATTTAGCCCCTGAATGGTTGAGCTCAGTAATCACTGAGAAAGTTGATGTTTATGCTTTTGGAATTGTCCTCTTGGAAATTCTGTGTGGGCGAAAGAATTTGGATTGGTCCCAACCTGATGAAGAAGATGTCCATTTGCTAAGTGTATTTAGGAGAAAAGCGGAACAAAAGCAGCTCATGGATATGGTTGACAAAAACAACGAAGATATGCAGCTCCACAGGGAAGCAGTGACTGAAATGATGAGCCTCGCTGCATGGTGTCTGCAGGGCGATTTTTCCAAGAGGCCTTCCATGTCATTGGTGGTTAAGGCATTGGAAGCTACTGAATTCAAAATGGTAGTATGCTGTAAGCTTTATTCAAAATGGTAG
Protein sequence Protein sequence | translated polypeptide sequence |
>Solyc07g055640.1.1 Receptor-like kinase (AHRD V1 *-*- B6EB06_NICGU); contains Interpro domain(s) IPR002290 Serine/threonine protein kinase
MGNLVLFDKRKRTIWQSFDHPTDSLLPGQSLVSGRKIVASVSATNRSQATILPGILTRFSYNELKVITDDFSSKLGEGGFGCVYEGTLRNGTKIAVKHLDGVGQVKESFLTEVKAVGGIHHINLVKLIGFCAEKTHRLLIYEYMVNGSLDRWITMKNRENGLTWSTRQRIISDIAKGLAYLHEDCSQKIIHLDIKPQNILLDQYLNAKISDFGLSKLIEKDKSKVVTRMRGTRGYLAPEWLSSVITEKVDVYAFGIVLLEILCGRKNLDWSQADEEDVHLLSVFRRKAEQKQLIDMVDKNNEDMQLHREAVTEMMSLAAWCLQGDFSKRPSMSLVVKALEDKSKSLGLSFTLWIGRENRPVKFNATLELGQDGNLVLTDSDGTLVWSTDTIGKSVSGLNLTEMGNLVLFDKRKRIIWQSFDHPTDSLLPGQSLVSGRKIVASVSATNRSQAQFMKIGPDGHIKVYQWSEVVSDLLPRFVDKCAYPMVCGSYSICTNNGKRTHESRKAADILDLAPILPGILTRFSYNELKIITEDFSRKLGEGGFGCVYEGTLRNGTKIAVKHLDGVGQVKESFLTEVKAVGGIHHINLVKLIGFCAEKTHRLLIYEYMVNGSLDRWITHENRQNGLTWSTRQRIISDIAKGLAYLHEDCSQKIIHLDIKPQNILLDQYFNAKISDFGLSKLIEKDKSKVVTRMRGTPGYLAPEWLSSVITEKVDVYAFGIVLLEILCGRKNLDWSQPDEEDVHLLSVFRRKAEQKQLMDMVDKNNEDMQLHREAVTEMMSLAAWCLQGDFSKRPSMSLVVKALEATEFKMVVCCKLYSKW*
MGNLVLFDKRKRTIWQSFDHPTDSLLPGQSLVSGRKIVASVSATNRSQATILPGILTRFSYNELKVITDDFSSKLGEGGFGCVYEGTLRNGTKIAVKHLDGVGQVKESFLTEVKAVGGIHHINLVKLIGFCAEKTHRLLIYEYMVNGSLDRWITMKNRENGLTWSTRQRIISDIAKGLAYLHEDCSQKIIHLDIKPQNILLDQYLNAKISDFGLSKLIEKDKSKVVTRMRGTRGYLAPEWLSSVITEKVDVYAFGIVLLEILCGRKNLDWSQADEEDVHLLSVFRRKAEQKQLIDMVDKNNEDMQLHREAVTEMMSLAAWCLQGDFSKRPSMSLVVKALEDKSKSLGLSFTLWIGRENRPVKFNATLELGQDGNLVLTDSDGTLVWSTDTIGKSVSGLNLTEMGNLVLFDKRKRIIWQSFDHPTDSLLPGQSLVSGRKIVASVSATNRSQAQFMKIGPDGHIKVYQWSEVVSDLLPRFVDKCAYPMVCGSYSICTNNGKRTHESRKAADILDLAPILPGILTRFSYNELKIITEDFSRKLGEGGFGCVYEGTLRNGTKIAVKHLDGVGQVKESFLTEVKAVGGIHHINLVKLIGFCAEKTHRLLIYEYMVNGSLDRWITHENRQNGLTWSTRQRIISDIAKGLAYLHEDCSQKIIHLDIKPQNILLDQYFNAKISDFGLSKLIEKDKSKVVTRMRGTPGYLAPEWLSSVITEKVDVYAFGIVLLEILCGRKNLDWSQPDEEDVHLLSVFRRKAEQKQLMDMVDKNNEDMQLHREAVTEMMSLAAWCLQGDFSKRPSMSLVVKALEATEFKMVVCCKLYSKW*
Gene model matches Gene model matches |
SGN Unigenes SGN Unigenes | [Associate new unigene] |
Unigene ID:
[loading...]
GenBank accessions GenBank accessions | [Associate new genbank sequence] |
KP082943 Solanum pennellii isolate LA716 S-receptor-like kinase 5 (SRLK-5) gene, complete cds.
Other genome matches | None |
Literature annotations [2] Literature annotations [2] | [Associate publication] [Matching publications] |
Genome-wide dissection of Fusarium resistance in tomato reveals multiple complex loci.
Molecular genetics and genomics : MGG (2001)
Show / hide abstract
Show / hide abstract
Resistance to different pathogenic races of Fusarium oxysporum f. sp. lycopersici (F. o. lycopersici) was explored at two genomic levels in tomato. Six independent Fusarium resistance loci were identified by comparing the responses of a complete set of 53 lines carrying different introgressed regions of the Lycopersicon pennellii genome in a L. esculentum background. The loci confer varying degrees of resistance to different races of the pathogen. Corresponding map positions from different tomato species were aligned and in some cases revealed parallel resistance to F. o. lycopersici with qualitative changes in race specificities. One of the loci identified corresponds to the previously characterized complex resistance locus I2, which is involved in resistance to F. o. lycopersici race 2. A novel member of this locus, I2C-5, which belongs to the NBS-LRR family of resistance genes, was cloned and shown to confer partial resistance in transgenic plants. Thus, at a particular complex locus gene members can confer full or partial resistance to F. o. lycopersici race 2. The results of our whole-genome mapping analysis underline the robust independent origin of resistance to a particular disease and demonstrate the conservation of resistance features at syntenic loci, together with the rapid diversification of genes for innate resistance within loci.
Sela-Buurlage, M. Budai-Hadrian, O. Pan, Q. Carmel-Goren, L. Vunsch, R. Zamir, D. Fluhr, R.
Molecular genetics and genomics : MGG.
2001.
265(6).
1104-11.
The tomato I-3 gene: a novel gene for resistance to Fusarium wilt disease.
The New phytologist (2016)
Show / hide abstract
Show / hide abstract
Plant resistance proteins provide race-specific immunity through the recognition of pathogen effectors. The resistance genes I, I-2 and I-3 have been incorporated into cultivated tomato (Solanum lycopersicum) from wild tomato species to confer resistance against Fusarium oxysporum f. sp. lycopersici (Fol) races 1, 2 and 3, respectively. Although the Fol effectors corresponding to these resistance genes have all been identified, only the I-2 resistance gene has been isolated from tomato. To isolate the I-3 resistance gene, we employed a map-based cloning approach and used transgenic complementation to test candidate genes for resistance to Fol race 3. Here, we describe the fine mapping and sequencing of genes at the I-3 locus, which revealed a family of S-receptor-like kinase (SRLK) genes. Transgenic tomato lines were generated with three of these SRLK genes and one was found to confer Avr3-dependent resistance to Fol race 3, confirming it to be I-3. The finding that I-3 encodes an SRLK reveals a new pathway for Fol resistance and a new class of resistance genes, of which Pi-d2 from rice is also a member. The identification of I-3 also allows the investigation of the complex effector-resistance protein interaction involving Avr1-mediated suppression of I-2- and I-3-dependent resistance in tomato.
Catanzariti, AM. Lim, GT. Jones, DA.
The New phytologist.
2016.
207(1).
106-18.
Ontology annotations (0) Ontology annotations (0) | [Add ontology annotations] |
[loading...]
Related views Related views |
none found
User comments |
Please wait, checking for comments. (If comments do not show up, access them here)
Your Lists
Public Lists
List Contents
List Validation Report: Failed
Elements not found:
Optional: Add Missing Accessions to A List
Mismatched case
Click the Adjust Case button to align the case in the list with what is in the database.
Multiple mismatched case
Items listed here have mulitple case mismatches and must be fixed manually. If accessions need to be merged, contact the database directly.
List elements matching a synonym
Multiple synonym matches
Fuzzy Search Results
Synonym Search Results
Available Seedlots
Your Datasets
Public Datasets
Dataset Contents
Dataset Validation Failed
Elements not found:
Your Calendar
Having trouble viewing events on the calendar?
Are you associated with the breeding program you are interested in viewing?
Add New Event
Event Info
Attribute | Value |
---|---|
Project Name: | |
Start Date: | |
End Date: | |
Event Type: | |
Event Description: | |
Event Web URL: |
Edit Event
Login
Forgot Username
If you've forgotten your username, enter your email address below. An email will be sent with any account username(s) associated with your email address.
Reset Password
To reset your password, please enter your email address. A link will be sent to that address with a link that will enable you to reset your password.