This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Tomato locus SlSUT2
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
[loading edit links...]
|
[loading...]
|
|
![]() ![]() |
Registry name: | None | [Associate registry name] |
![]() ![]() | [Add notes, figures or images] |
Success
The display image was set successfully.
Image | Description | Type |
---|
![]() ![]() | [Associate accession] |
Accession name:
Would you Like to specify an allele?
Alleles (0) | None | [Add new Allele] |
![]() ![]() | [Associate new locus] |
[loading...]
|
Associated loci - graphical view | None |
![]() ![]() |
[loading...]
![]() ![]() |
![]() ![]() |
![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc05g007190.2 SL2.50ch05:1810447..1804154 (sequence from reverse strand)
ATGTGAACATGTTGAATTTGGTATGTGACAAAAAAGAGCCTCGTGTATACCAAAATGACATAACAAGGAAAATGAAAATAGCCGTCGGTGCCCTTCTCTTTCCCTTTGTGTAAAAGTCAAGCATATCCACCTTTGAATCCGACGCCGTTTCATAATCTCCGAGCTTCATCAATCTCCATTTCCAGATCGAATGTGAAGGAGATCCCAATTCATTCGCCTGAAAAATGGATGCGGTATCGATCAGAGTACCGTATAAGAATCTGAAGCAGCAGGAAGTGGAATTAACTAATGTTGATGAATCACGGTTTGCACAGCTCGAGATCCGTAGTGATTCATCATCTCCTAGGGTTTCTAATGGAGAAATGAATGATTCTAATCTACCTCTTCCTCCACCGCCTGTACGTAACAGTTTGCTCACCTTGATTCTTAGTTGCACCGTCGCTGCTGGGGTTCAGTTTGGATGGGCTCTGCAACTATCTCTCCTTACACCTTATATTCAGGTGCAAACATTTTGGATTACTTGTCATGTTTGGTTTCTTCATAGTCAATTTGAGCTACATTAATTCAAATATTTAGCTGCGATCCTTCTAACAATATTAATATGATCTTAAAATGTCGGTCAGCATGCAGTATATAGTGTTAATTGAATTTAAAGATGTTAATTTTACTCATTTACAAGCTCTGTTTTTGATTTGTTTGACCGAATGTGGAGTTACGAGATTGGTGTATGTATGTATTTATACTAGTGATAACAACAACAGAAACAAACCTAGTGTAGTATTGTAAGCGAGCATCTGTGGAGGAAGTAGAGAGGCTATTTTTGAAAGACCCTTGGTTCGAGTAACACACATTTGAAGCAGCTAAAAAGGAAAATGAAGAAGTAAAGAGGACATAGCAAATAAGAGGGGAAACATAACGTAGCATCCAGAATAGGAGCAATAAGGATAACTAAATGATGTGATAACAGAAGCACACTAATAACGAGGAGTATAAAAAAAACATAGTTGGAAGCAAGGTAGCGCTCCAAGACACAAGGAGTGTAGTCTTATCACGGCACTGCCAAGTTCCTCCCTTAAATCTTGACTCCAGCCGAGGTTACGTAAGTGGATAAAAATTTACAGCTGCAGCAATGAGAATCTAGTTTGAAAATTCCGACACAATTTTCAGGATGATTTAGTTGATGTCTTTGATGATTGTATACAAAACAACAAGAACATACACAGTGGAATCCCACAAGTGGGATCTAGGAAGGGTAGAGTGTACGCGGGCCTTACTACTATCTCGTGGACGTAGATAAACCCTCGGCTCGTCTTTAATGTTTTGTCTAGAAGTAGAAAAAAATATCCTGTAAATTGAACATTTAGTGCCATGTGGTTCACATGAACTCTCTACTGTATTTCATTTGCAATTTTGTTTTGGTGGTTGAGAATGCAGAAACTGTCTCTGTGATCAGTTCACTTATATTTCATAGAGAAAAAGAGATCAGAAATTGATTAAAGGTTCTTGTATATATGAAATATTATTGATATGTATTAGAGAAGGAAGAGGAAATAAGCATAAAAGAATAAATTATATTGTGACCTATAGACGAGCACTTTCGGTTTCCTGGTGAACATGATATTTAAGGATCTTTAGAGTTGAAGACCTCTGAAAAAAATTCATTTTCTAGAAGCTTCGAGCTCCTCAAGTTGAAAAGCTATTTCGCAAGAGAACCCTTTGCACATCTTAGTATTATACAAATTGGAAGCTATTTAGAATAGTTGAGTGGTCCCAGTTGTTTCGTGATCACCGAGAAAGTCTCTTGGCTAGTGGTACATGGTTTGAAACAAATGGATAAGTTGTTTCTGCTATCCTCAAGCAATAAGTTCTTATAATTTTCTATCTTTTAGTGGCTTCAGTTTCCTTTTATTATTTTGTTTGCCTATTTCTAGTTGAGCTTCTTCTTTGCCTAAAATTTTTCATATCTATGTTTTGCAGACACTTGGCATAGAGCATGCCTTCTCTTCTTTTATTTGGCTATGCGGTCCTATTACTGGCCTTGTGGTAAGTTGTTCAAATATCATGGAGTTTTATTGCAGATTACTTGGTAAAATGTCCATCTGAAGTGATGAATATCAGTAATTAGAATATAGAGGTGTGAAAACAGCTCTGCTGAGATAAATTGCTGAAAAAATAAGATGGTGATAACCTTTGCACCTGCAAAACCAATTGCAAAAGCTACACTGTTTGAGATTTGTGGACTCTTTAAACAAGAATTTGTTAGACTTCAGCCCATGTACTTAAAATTGTAGATATGGCTTTGCTGAACTGTAACTTCTTTTTTTAACTTTGGATCTCTGCAAAATTTGTCAGCTGTTCCTTGAATTAAAACTTTCTATCCTTTGATCAGTAAAACGAAGTCGCCAGATATATGGTACATACAAATAAAACTTATATATTGGAGAAGTTTCTCCAGAAGCTCCGTTGCTTATTCAACTTAGAAACTTGTCTTCTTGGATATTCTTTAGGTACAACCTTGTGTAGGTATATGGAGTGATAAATGTCATTCTAAATATGGCAGAAGAAGGCCTTTCATTTTTATTGGAGCTGTCATGATCTCTATTGCTGTAAGCATTTAGTAGTTATTTTTATCCTATATTGAATTATTTGGTTCCAGTTAAATCGGCTGAACTAAATCTTGTCGTTTAGGTGATAATTATCGGGTTTTCTGCAGACATAGGATACTTATTGGGGGACACAAAAGAGCATTGCAGGTTTAAACTTCCTCTTGTTCCTGTAATTTTTTTGGATTATCTGAATAGGCTGTGAAGTCTTAAATTATTGTGTGAAAATGCAGCACTTTCAAAGGCACTCGCTCAAGAGCAGCCATTGTATTTGTCGTTGGGTTTTGGATGCTCGATCTTGCTAATAATACTGTGCAGGTTAGCTTCTGAAAGCTTACTGCTATTTCAAGTGGTGTAGATGATTCTAGTAGATGTTACACCATAGTTGTTTTATGTTGGCAGGGTCCGGCTCGAGCTCTTTTGGCAGATTTGTCAGGTAAAAATTCCGATAGATGGAAGAATTATTTTTTTTAAAAATTAATTGGTACAGTTCTTCTTTTGTTGCAATTTGTTGAGATGTATTGGGAACTTTGTTGTAGGTCCTGATCAAAGAAATACCGCAAATGCTGTGTTCTGCTCCTGGATGGCTGTTGGAAACATTCTTGGATTTTCTGCTGGAGCCAGTGGAGGTTGGCACAGGTTTGCTGTTTATTGCGTATCTGAAGTGATATGATGATGTTATATGTGTGTGTGCTTATGTAAAAAGATAGCTCACAATCCCCATCCTGCTTGAACAATATCACTTGTTCAGCATTCTTCTTAAGGGCCATGCCTTTAAAAGTTGTTGAGCTTTTGGTAGCAAAATGTCTTCTGAATTAAGACTTGGTTAAAATATCACATGCGTAAGGTAGTCTTTGACAAAACTTTGTATCTGGACAGATGGTTTCCGTTTTTGACAAATAGAGCTTGTTGTGAGCCATGTGGAAATCTCAAAGCAGCATTCTTAGTTGCAGTGGTGAGTTAACTGCCCTTGATAGAGTTTTTGTGTAGATATAGTAAATTCTGTTTTTGAATCTTGATTTTTGAGGTCATCTATTTTACTTAGACACGTTTTTTCTACCTTGTTTATGTACATAGACAAAACTAGTTGCTAACAAAACATAAAAGGAAGTTTCTGGATCTACTTGTCATATCCTGCATCCTTGATAAAGATATCCCTCGAGCATCTTTTGTAAATAATGTCTTAAAACATTAATCACGTCCTCTTATGCATCTTGTCACTTGCTACTTGCTGATATACCTTTTTTTAAGCCAACTGATTTACTATCTTTGAAAATTGGCTTCTGAAATTAGATAGAGTACAAAGACGACATTTACATTTAATCCCAAGAGGGGTTGGCTAGTGACGACAAGAAAGTCCCACAAGATTCAAGCACATTGATGGAAAACCAGCAACCCTTAAGTACAACCCATGAAAATGACGGACATAAACATAAAGGGTCAACACAAAACAAGCAGTAGATTAGCTTAAATTCTTGCTAACACTGTCGATTAACCCAAACCAAGCTAGATTTAGAATAAGAAAGAAATGACAGGTTCAAATAGAAGCAATTAGTCCACACAAGTATTATCTTCTTACCCCTACCTACTCCTTTGTGTGATAGAGGTTTTTTCTGTACTCTCGGCTAAAGAAGTACCTCATTGACTCTCCAAAAGGTACATGTGTCAAACAAAGTGGAACAGGGGGTGGGTTTTTGACTATGAAGAACTAGTTCTATACTTAAGCTTGAACATAGTACAAATTAATTCTTCTCTGGCGGTTACTGTGTGTTTTAGCACCCATCATGATTCTGTCATTCAAAGTGCTCTATGGACTGTGAACAGGTCTTTCTAACTCTCTGCACGTTAGTAACTCTCTACTTCGCTAATGAAGTCCCGCTGTCACCCAAGCAATATAAGCGCATGTCAGATTCTGCTCCTCTCTTGGATAGTCCTCAGAATACTGGATTTGACCTTTCTCAATCGAAAAGGGAGTTGCAGTATGCAAATAGTGTGGCAAATAATGAATCTGAGATGGGTCATGTAGCAGATAATAGTCCAAAGAATGAAGAACAGAGACCAGACAAGGATCAAGGTGATAGCTTCGCTGATAGCCCTGGAGCAGTTTTGGTCAATCTGTTGACCAGCTTACGTCATTTGCCTCCCGCAATGCATTCGGTTCTCATTGTCATGGCTCTGACTTGGGTAAGTAACTTCTGATTTTTCTGATTTAAGCTTTTAAACTAGCTGTACACATTTTCAATTTGCTGTATTTTGTGAATTTTATTCTTTAGGTTTCTTGTAATCTTTCCAGTGCAGCTAATTATCTATCTTTCTGTCCTTTCAACCAGTTGTCCTGGTTTCCCTTTTTCCTTTTTGACACGGATTGGATGGGGAGAGAAGTCTATCACGGGGATCCGAAAGGAGAAGCAGATGAAGTAAATGCATATAACCAAGGTGTCAGAGAAGGTGCATTTGGTTTGCTATTGAATTCTGTAAGAACTCAGAATTGAGAATAACTAGTTATCCTTTATTTAGATCCAATAATAGGTGATTTGCAGCTTACTAGAATTAATTATCCATTGAGAGCTTATTTATGTCTCTCTCATGGGTGCCCCACTGGCGTCTACGTTATTGTGATGAATCTCCCTGTGAGCAGGTTGTTCTTGGCGTTAGCTCCTTTCTTATTGAGCCAATGTGCAAATGGATTGGTTCTAGACTTGTTTGGGCTGTGAGCAACTTCATTGTATTTGTCTGCATGGCCTGCACCGCTATCATTAGCGTGGTTTCTATCAGTGCAAATACGCAGGGAGTCCAACATGTAATTGGTGCTACTCGATCAACTCAAATTGCTGCTTTGGTTGTTTTCTCTCTTCTTGGCATTCCTCTTGCTGTAAGTTTTTTCTATTACTCCATATATTTTTGTACCTGTTAGCTGCTTATCCAATAGATGTGTTTTTTTTTGTACCTGTTCATCTTTTCATGCATTTTGCTTTACATGCCTGCAGGTAACCTACAGCGTCCCTTTCTCTATCACAGCAGAGTTGACAGCTGACGCTGGTGGTGGCCAAGGTATTTTCTTCGATCCATTAAAATGTTATCACGTCTTACTCGATGAGGCGATCATTGAAACTGTGGTATGCTTTTGCAGGGTTGGCAATAGGAGTCCTGAATCTTGCAATTGTTGTACCTCAGGTAACTTTGCCTTTATATGTTTGATATTGAATTTCATTGAAATGCTTAACACATATGAATAACAACGACAACATATATACCTAGTGTATGTAATCCCCACGAGTGACGATGACATAGTTTTTTATTTTTTATTTACTTAGATGGTTGTATCGCTTGGTGCGGGTCCTTGGGATGCTTTATTTGGTGGAGGAAACATACCGGCATTTGCCTTAGCATCTTTAGCTGCACTTGCTGCTGGAATTTTTGCTATGCTCAGACTACCAAATTTATCAAGTAATTTCAAATCAACTGGCTTCCATTTTGGTTGAGTTAATTTATTGTGTTATACTTCTTATACACATTACACATGTAGTTCATGTTACTGAAGTAACAAAAATATAGTACAGTTTTAGCTGTGATAGGTATCTGATATTTTTCACTCACATTCAATTCATTTTACCCCAATTTTTGACTCTCTTGTATAATGTAAAATTGTCATCTGTAATGAGGAAAAATGTTGTTTACTCTTTGTGAATAA
ATGTGAACATGTTGAATTTGGTATGTGACAAAAAAGAGCCTCGTGTATACCAAAATGACATAACAAGGAAAATGAAAATAGCCGTCGGTGCCCTTCTCTTTCCCTTTGTGTAAAAGTCAAGCATATCCACCTTTGAATCCGACGCCGTTTCATAATCTCCGAGCTTCATCAATCTCCATTTCCAGATCGAATGTGAAGGAGATCCCAATTCATTCGCCTGAAAAATGGATGCGGTATCGATCAGAGTACCGTATAAGAATCTGAAGCAGCAGGAAGTGGAATTAACTAATGTTGATGAATCACGGTTTGCACAGCTCGAGATCCGTAGTGATTCATCATCTCCTAGGGTTTCTAATGGAGAAATGAATGATTCTAATCTACCTCTTCCTCCACCGCCTGTACGTAACAGTTTGCTCACCTTGATTCTTAGTTGCACCGTCGCTGCTGGGGTTCAGTTTGGATGGGCTCTGCAACTATCTCTCCTTACACCTTATATTCAGGTGCAAACATTTTGGATTACTTGTCATGTTTGGTTTCTTCATAGTCAATTTGAGCTACATTAATTCAAATATTTAGCTGCGATCCTTCTAACAATATTAATATGATCTTAAAATGTCGGTCAGCATGCAGTATATAGTGTTAATTGAATTTAAAGATGTTAATTTTACTCATTTACAAGCTCTGTTTTTGATTTGTTTGACCGAATGTGGAGTTACGAGATTGGTGTATGTATGTATTTATACTAGTGATAACAACAACAGAAACAAACCTAGTGTAGTATTGTAAGCGAGCATCTGTGGAGGAAGTAGAGAGGCTATTTTTGAAAGACCCTTGGTTCGAGTAACACACATTTGAAGCAGCTAAAAAGGAAAATGAAGAAGTAAAGAGGACATAGCAAATAAGAGGGGAAACATAACGTAGCATCCAGAATAGGAGCAATAAGGATAACTAAATGATGTGATAACAGAAGCACACTAATAACGAGGAGTATAAAAAAAACATAGTTGGAAGCAAGGTAGCGCTCCAAGACACAAGGAGTGTAGTCTTATCACGGCACTGCCAAGTTCCTCCCTTAAATCTTGACTCCAGCCGAGGTTACGTAAGTGGATAAAAATTTACAGCTGCAGCAATGAGAATCTAGTTTGAAAATTCCGACACAATTTTCAGGATGATTTAGTTGATGTCTTTGATGATTGTATACAAAACAACAAGAACATACACAGTGGAATCCCACAAGTGGGATCTAGGAAGGGTAGAGTGTACGCGGGCCTTACTACTATCTCGTGGACGTAGATAAACCCTCGGCTCGTCTTTAATGTTTTGTCTAGAAGTAGAAAAAAATATCCTGTAAATTGAACATTTAGTGCCATGTGGTTCACATGAACTCTCTACTGTATTTCATTTGCAATTTTGTTTTGGTGGTTGAGAATGCAGAAACTGTCTCTGTGATCAGTTCACTTATATTTCATAGAGAAAAAGAGATCAGAAATTGATTAAAGGTTCTTGTATATATGAAATATTATTGATATGTATTAGAGAAGGAAGAGGAAATAAGCATAAAAGAATAAATTATATTGTGACCTATAGACGAGCACTTTCGGTTTCCTGGTGAACATGATATTTAAGGATCTTTAGAGTTGAAGACCTCTGAAAAAAATTCATTTTCTAGAAGCTTCGAGCTCCTCAAGTTGAAAAGCTATTTCGCAAGAGAACCCTTTGCACATCTTAGTATTATACAAATTGGAAGCTATTTAGAATAGTTGAGTGGTCCCAGTTGTTTCGTGATCACCGAGAAAGTCTCTTGGCTAGTGGTACATGGTTTGAAACAAATGGATAAGTTGTTTCTGCTATCCTCAAGCAATAAGTTCTTATAATTTTCTATCTTTTAGTGGCTTCAGTTTCCTTTTATTATTTTGTTTGCCTATTTCTAGTTGAGCTTCTTCTTTGCCTAAAATTTTTCATATCTATGTTTTGCAGACACTTGGCATAGAGCATGCCTTCTCTTCTTTTATTTGGCTATGCGGTCCTATTACTGGCCTTGTGGTAAGTTGTTCAAATATCATGGAGTTTTATTGCAGATTACTTGGTAAAATGTCCATCTGAAGTGATGAATATCAGTAATTAGAATATAGAGGTGTGAAAACAGCTCTGCTGAGATAAATTGCTGAAAAAATAAGATGGTGATAACCTTTGCACCTGCAAAACCAATTGCAAAAGCTACACTGTTTGAGATTTGTGGACTCTTTAAACAAGAATTTGTTAGACTTCAGCCCATGTACTTAAAATTGTAGATATGGCTTTGCTGAACTGTAACTTCTTTTTTTAACTTTGGATCTCTGCAAAATTTGTCAGCTGTTCCTTGAATTAAAACTTTCTATCCTTTGATCAGTAAAACGAAGTCGCCAGATATATGGTACATACAAATAAAACTTATATATTGGAGAAGTTTCTCCAGAAGCTCCGTTGCTTATTCAACTTAGAAACTTGTCTTCTTGGATATTCTTTAGGTACAACCTTGTGTAGGTATATGGAGTGATAAATGTCATTCTAAATATGGCAGAAGAAGGCCTTTCATTTTTATTGGAGCTGTCATGATCTCTATTGCTGTAAGCATTTAGTAGTTATTTTTATCCTATATTGAATTATTTGGTTCCAGTTAAATCGGCTGAACTAAATCTTGTCGTTTAGGTGATAATTATCGGGTTTTCTGCAGACATAGGATACTTATTGGGGGACACAAAAGAGCATTGCAGGTTTAAACTTCCTCTTGTTCCTGTAATTTTTTTGGATTATCTGAATAGGCTGTGAAGTCTTAAATTATTGTGTGAAAATGCAGCACTTTCAAAGGCACTCGCTCAAGAGCAGCCATTGTATTTGTCGTTGGGTTTTGGATGCTCGATCTTGCTAATAATACTGTGCAGGTTAGCTTCTGAAAGCTTACTGCTATTTCAAGTGGTGTAGATGATTCTAGTAGATGTTACACCATAGTTGTTTTATGTTGGCAGGGTCCGGCTCGAGCTCTTTTGGCAGATTTGTCAGGTAAAAATTCCGATAGATGGAAGAATTATTTTTTTTAAAAATTAATTGGTACAGTTCTTCTTTTGTTGCAATTTGTTGAGATGTATTGGGAACTTTGTTGTAGGTCCTGATCAAAGAAATACCGCAAATGCTGTGTTCTGCTCCTGGATGGCTGTTGGAAACATTCTTGGATTTTCTGCTGGAGCCAGTGGAGGTTGGCACAGGTTTGCTGTTTATTGCGTATCTGAAGTGATATGATGATGTTATATGTGTGTGTGCTTATGTAAAAAGATAGCTCACAATCCCCATCCTGCTTGAACAATATCACTTGTTCAGCATTCTTCTTAAGGGCCATGCCTTTAAAAGTTGTTGAGCTTTTGGTAGCAAAATGTCTTCTGAATTAAGACTTGGTTAAAATATCACATGCGTAAGGTAGTCTTTGACAAAACTTTGTATCTGGACAGATGGTTTCCGTTTTTGACAAATAGAGCTTGTTGTGAGCCATGTGGAAATCTCAAAGCAGCATTCTTAGTTGCAGTGGTGAGTTAACTGCCCTTGATAGAGTTTTTGTGTAGATATAGTAAATTCTGTTTTTGAATCTTGATTTTTGAGGTCATCTATTTTACTTAGACACGTTTTTTCTACCTTGTTTATGTACATAGACAAAACTAGTTGCTAACAAAACATAAAAGGAAGTTTCTGGATCTACTTGTCATATCCTGCATCCTTGATAAAGATATCCCTCGAGCATCTTTTGTAAATAATGTCTTAAAACATTAATCACGTCCTCTTATGCATCTTGTCACTTGCTACTTGCTGATATACCTTTTTTTAAGCCAACTGATTTACTATCTTTGAAAATTGGCTTCTGAAATTAGATAGAGTACAAAGACGACATTTACATTTAATCCCAAGAGGGGTTGGCTAGTGACGACAAGAAAGTCCCACAAGATTCAAGCACATTGATGGAAAACCAGCAACCCTTAAGTACAACCCATGAAAATGACGGACATAAACATAAAGGGTCAACACAAAACAAGCAGTAGATTAGCTTAAATTCTTGCTAACACTGTCGATTAACCCAAACCAAGCTAGATTTAGAATAAGAAAGAAATGACAGGTTCAAATAGAAGCAATTAGTCCACACAAGTATTATCTTCTTACCCCTACCTACTCCTTTGTGTGATAGAGGTTTTTTCTGTACTCTCGGCTAAAGAAGTACCTCATTGACTCTCCAAAAGGTACATGTGTCAAACAAAGTGGAACAGGGGGTGGGTTTTTGACTATGAAGAACTAGTTCTATACTTAAGCTTGAACATAGTACAAATTAATTCTTCTCTGGCGGTTACTGTGTGTTTTAGCACCCATCATGATTCTGTCATTCAAAGTGCTCTATGGACTGTGAACAGGTCTTTCTAACTCTCTGCACGTTAGTAACTCTCTACTTCGCTAATGAAGTCCCGCTGTCACCCAAGCAATATAAGCGCATGTCAGATTCTGCTCCTCTCTTGGATAGTCCTCAGAATACTGGATTTGACCTTTCTCAATCGAAAAGGGAGTTGCAGTATGCAAATAGTGTGGCAAATAATGAATCTGAGATGGGTCATGTAGCAGATAATAGTCCAAAGAATGAAGAACAGAGACCAGACAAGGATCAAGGTGATAGCTTCGCTGATAGCCCTGGAGCAGTTTTGGTCAATCTGTTGACCAGCTTACGTCATTTGCCTCCCGCAATGCATTCGGTTCTCATTGTCATGGCTCTGACTTGGGTAAGTAACTTCTGATTTTTCTGATTTAAGCTTTTAAACTAGCTGTACACATTTTCAATTTGCTGTATTTTGTGAATTTTATTCTTTAGGTTTCTTGTAATCTTTCCAGTGCAGCTAATTATCTATCTTTCTGTCCTTTCAACCAGTTGTCCTGGTTTCCCTTTTTCCTTTTTGACACGGATTGGATGGGGAGAGAAGTCTATCACGGGGATCCGAAAGGAGAAGCAGATGAAGTAAATGCATATAACCAAGGTGTCAGAGAAGGTGCATTTGGTTTGCTATTGAATTCTGTAAGAACTCAGAATTGAGAATAACTAGTTATCCTTTATTTAGATCCAATAATAGGTGATTTGCAGCTTACTAGAATTAATTATCCATTGAGAGCTTATTTATGTCTCTCTCATGGGTGCCCCACTGGCGTCTACGTTATTGTGATGAATCTCCCTGTGAGCAGGTTGTTCTTGGCGTTAGCTCCTTTCTTATTGAGCCAATGTGCAAATGGATTGGTTCTAGACTTGTTTGGGCTGTGAGCAACTTCATTGTATTTGTCTGCATGGCCTGCACCGCTATCATTAGCGTGGTTTCTATCAGTGCAAATACGCAGGGAGTCCAACATGTAATTGGTGCTACTCGATCAACTCAAATTGCTGCTTTGGTTGTTTTCTCTCTTCTTGGCATTCCTCTTGCTGTAAGTTTTTTCTATTACTCCATATATTTTTGTACCTGTTAGCTGCTTATCCAATAGATGTGTTTTTTTTTGTACCTGTTCATCTTTTCATGCATTTTGCTTTACATGCCTGCAGGTAACCTACAGCGTCCCTTTCTCTATCACAGCAGAGTTGACAGCTGACGCTGGTGGTGGCCAAGGTATTTTCTTCGATCCATTAAAATGTTATCACGTCTTACTCGATGAGGCGATCATTGAAACTGTGGTATGCTTTTGCAGGGTTGGCAATAGGAGTCCTGAATCTTGCAATTGTTGTACCTCAGGTAACTTTGCCTTTATATGTTTGATATTGAATTTCATTGAAATGCTTAACACATATGAATAACAACGACAACATATATACCTAGTGTATGTAATCCCCACGAGTGACGATGACATAGTTTTTTATTTTTTATTTACTTAGATGGTTGTATCGCTTGGTGCGGGTCCTTGGGATGCTTTATTTGGTGGAGGAAACATACCGGCATTTGCCTTAGCATCTTTAGCTGCACTTGCTGCTGGAATTTTTGCTATGCTCAGACTACCAAATTTATCAAGTAATTTCAAATCAACTGGCTTCCATTTTGGTTGAGTTAATTTATTGTGTTATACTTCTTATACACATTACACATGTAGTTCATGTTACTGAAGTAACAAAAATATAGTACAGTTTTAGCTGTGATAGGTATCTGATATTTTTCACTCACATTCAATTCATTTTACCCCAATTTTTGACTCTCTTGTATAATGTAAAATTGTCATCTGTAATGAGGAAAAATGTTGTTTACTCTTTGTGAATAA
Download sequence region |
Get flanking sequences on SL2.50ch05
|
![]() ![]() |
![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc05g007190.2.1 Sucrose transporter-like protein (AHRD V1 **** Q9FVL6_SOLLC); contains Interpro domain(s) IPR005989 Sucrose/H+ symporter, plant
ATGTGAACATGTTGAATTTGGTATGTGACAAAAAAGAGCCTCGTGTATACCAAAATGACATAACAAGGAAAATGAAAATAGCCGTCGGTGCCCTTCTCTTTCCCTTTGTGTAAAAGTCAAGCATATCCACCTTTGAATCCGACGCCGTTTCATAATCTCCGAGCTTCATCAATCTCCATTTCCAGATCGAATGTGAAGGAGATCCCAATTCATTCGCCTGAAAAATGGATGCGGTATCGATCAGAGTACCGTATAAGAATCTGAAGCAGCAGGAAGTGGAATTAACTAATGTTGATGAATCACGGTTTGCACAGCTCGAGATCCGTAGTGATTCATCATCTCCTAGGGTTTCTAATGGAGAAATGAATGATTCTAATCTACCTCTTCCTCCACCGCCTGTACGTAACAGTTTGCTCACCTTGATTCTTAGTTGCACCGTCGCTGCTGGGGTTCAGTTTGGATGGGCTCTGCAACTATCTCTCCTTACACCTTATATTCAGACACTTGGCATAGAGCATGCCTTCTCTTCTTTTATTTGGCTATGCGGTCCTATTACTGGCCTTGTGGTACAACCTTGTGTAGGTATATGGAGTGATAAATGTCATTCTAAATATGGCAGAAGAAGGCCTTTCATTTTTATTGGAGCTGTCATGATCTCTATTGCTGTGATAATTATCGGGTTTTCTGCAGACATAGGATACTTATTGGGGGACACAAAAGAGCATTGCAGCACTTTCAAAGGCACTCGCTCAAGAGCAGCCATTGTATTTGTCGTTGGGTTTTGGATGCTCGATCTTGCTAATAATACTGTGCAGGGTCCGGCTCGAGCTCTTTTGGCAGATTTGTCAGGTCCTGATCAAAGAAATACCGCAAATGCTGTGTTCTGCTCCTGGATGGCTGTTGGAAACATTCTTGGATTTTCTGCTGGAGCCAGTGGAGGTTGGCACAGATGGTTTCCGTTTTTGACAAATAGAGCTTGTTGTGAGCCATGTGGAAATCTCAAAGCAGCATTCTTAGTTGCAGTGGTCTTTCTAACTCTCTGCACGTTAGTAACTCTCTACTTCGCTAATGAAGTCCCGCTGTCACCCAAGCAATATAAGCGCATGTCAGATTCTGCTCCTCTCTTGGATAGTCCTCAGAATACTGGATTTGACCTTTCTCAATCGAAAAGGGAGTTGCAGTATGCAAATAGTGTGGCAAATAATGAATCTGAGATGGGTCATGTAGCAGATAATAGTCCAAAGAATGAAGAACAGAGACCAGACAAGGATCAAGGTGATAGCTTCGCTGATAGCCCTGGAGCAGTTTTGGTCAATCTGTTGACCAGCTTACGTCATTTGCCTCCCGCAATGCATTCGGTTCTCATTGTCATGGCTCTGACTTGGTTGTCCTGGTTTCCCTTTTTCCTTTTTGACACGGATTGGATGGGGAGAGAAGTCTATCACGGGGATCCGAAAGGAGAAGCAGATGAAGTAAATGCATATAACCAAGGTGTCAGAGAAGGTGCATTTGGTTTGCTATTGAATTCTGTTGTTCTTGGCGTTAGCTCCTTTCTTATTGAGCCAATGTGCAAATGGATTGGTTCTAGACTTGTTTGGGCTGTGAGCAACTTCATTGTATTTGTCTGCATGGCCTGCACCGCTATCATTAGCGTGGTTTCTATCAGTGCAAATACGCAGGGAGTCCAACATGTAATTGGTGCTACTCGATCAACTCAAATTGCTGCTTTGGTTGTTTTCTCTCTTCTTGGCATTCCTCTTGCTGTAACCTACAGCGTCCCTTTCTCTATCACAGCAGAGTTGACAGCTGACGCTGGTGGTGGCCAAGGGTTGGCAATAGGAGTCCTGAATCTTGCAATTGTTGTACCTCAGATGGTTGTATCGCTTGGTGCGGGTCCTTGGGATGCTTTATTTGGTGGAGGAAACATACCGGCATTTGCCTTAGCATCTTTAGCTGCACTTGCTGCTGGAATTTTTGCTATGCTCAGACTACCAAATTTATCAAGTAATTTCAAATCAACTGGCTTCCATTTTGGTTGAGTTAATTTATTGTGTTATACTTCTTATACACATTACACATGTAGTTCATGTTACTGAAGTAACAAAAATATAGTACAGTTTTAGCTGTGATAGGTATCTGATATTTTTCACTCACATTCAATTCATTTTACCCCAATTTTTGACTCTCTTGTATAATGTAAAATTGTCATCTGTAATGAGGAAAAATGTTGTTTACTCTTTGTGAATAA
ATGTGAACATGTTGAATTTGGTATGTGACAAAAAAGAGCCTCGTGTATACCAAAATGACATAACAAGGAAAATGAAAATAGCCGTCGGTGCCCTTCTCTTTCCCTTTGTGTAAAAGTCAAGCATATCCACCTTTGAATCCGACGCCGTTTCATAATCTCCGAGCTTCATCAATCTCCATTTCCAGATCGAATGTGAAGGAGATCCCAATTCATTCGCCTGAAAAATGGATGCGGTATCGATCAGAGTACCGTATAAGAATCTGAAGCAGCAGGAAGTGGAATTAACTAATGTTGATGAATCACGGTTTGCACAGCTCGAGATCCGTAGTGATTCATCATCTCCTAGGGTTTCTAATGGAGAAATGAATGATTCTAATCTACCTCTTCCTCCACCGCCTGTACGTAACAGTTTGCTCACCTTGATTCTTAGTTGCACCGTCGCTGCTGGGGTTCAGTTTGGATGGGCTCTGCAACTATCTCTCCTTACACCTTATATTCAGACACTTGGCATAGAGCATGCCTTCTCTTCTTTTATTTGGCTATGCGGTCCTATTACTGGCCTTGTGGTACAACCTTGTGTAGGTATATGGAGTGATAAATGTCATTCTAAATATGGCAGAAGAAGGCCTTTCATTTTTATTGGAGCTGTCATGATCTCTATTGCTGTGATAATTATCGGGTTTTCTGCAGACATAGGATACTTATTGGGGGACACAAAAGAGCATTGCAGCACTTTCAAAGGCACTCGCTCAAGAGCAGCCATTGTATTTGTCGTTGGGTTTTGGATGCTCGATCTTGCTAATAATACTGTGCAGGGTCCGGCTCGAGCTCTTTTGGCAGATTTGTCAGGTCCTGATCAAAGAAATACCGCAAATGCTGTGTTCTGCTCCTGGATGGCTGTTGGAAACATTCTTGGATTTTCTGCTGGAGCCAGTGGAGGTTGGCACAGATGGTTTCCGTTTTTGACAAATAGAGCTTGTTGTGAGCCATGTGGAAATCTCAAAGCAGCATTCTTAGTTGCAGTGGTCTTTCTAACTCTCTGCACGTTAGTAACTCTCTACTTCGCTAATGAAGTCCCGCTGTCACCCAAGCAATATAAGCGCATGTCAGATTCTGCTCCTCTCTTGGATAGTCCTCAGAATACTGGATTTGACCTTTCTCAATCGAAAAGGGAGTTGCAGTATGCAAATAGTGTGGCAAATAATGAATCTGAGATGGGTCATGTAGCAGATAATAGTCCAAAGAATGAAGAACAGAGACCAGACAAGGATCAAGGTGATAGCTTCGCTGATAGCCCTGGAGCAGTTTTGGTCAATCTGTTGACCAGCTTACGTCATTTGCCTCCCGCAATGCATTCGGTTCTCATTGTCATGGCTCTGACTTGGTTGTCCTGGTTTCCCTTTTTCCTTTTTGACACGGATTGGATGGGGAGAGAAGTCTATCACGGGGATCCGAAAGGAGAAGCAGATGAAGTAAATGCATATAACCAAGGTGTCAGAGAAGGTGCATTTGGTTTGCTATTGAATTCTGTTGTTCTTGGCGTTAGCTCCTTTCTTATTGAGCCAATGTGCAAATGGATTGGTTCTAGACTTGTTTGGGCTGTGAGCAACTTCATTGTATTTGTCTGCATGGCCTGCACCGCTATCATTAGCGTGGTTTCTATCAGTGCAAATACGCAGGGAGTCCAACATGTAATTGGTGCTACTCGATCAACTCAAATTGCTGCTTTGGTTGTTTTCTCTCTTCTTGGCATTCCTCTTGCTGTAACCTACAGCGTCCCTTTCTCTATCACAGCAGAGTTGACAGCTGACGCTGGTGGTGGCCAAGGGTTGGCAATAGGAGTCCTGAATCTTGCAATTGTTGTACCTCAGATGGTTGTATCGCTTGGTGCGGGTCCTTGGGATGCTTTATTTGGTGGAGGAAACATACCGGCATTTGCCTTAGCATCTTTAGCTGCACTTGCTGCTGGAATTTTTGCTATGCTCAGACTACCAAATTTATCAAGTAATTTCAAATCAACTGGCTTCCATTTTGGTTGAGTTAATTTATTGTGTTATACTTCTTATACACATTACACATGTAGTTCATGTTACTGAAGTAACAAAAATATAGTACAGTTTTAGCTGTGATAGGTATCTGATATTTTTCACTCACATTCAATTCATTTTACCCCAATTTTTGACTCTCTTGTATAATGTAAAATTGTCATCTGTAATGAGGAAAAATGTTGTTTACTCTTTGTGAATAA
![]() ![]() | translated polypeptide sequence |
>Solyc05g007190.2.1 Sucrose transporter-like protein (AHRD V1 **** Q9FVL6_SOLLC); contains Interpro domain(s) IPR005989 Sucrose/H+ symporter, plant
MDAVSIRVPYKNLKQQEVELTNVDESRFAQLEIRSDSSSPRVSNGEMNDSNLPLPPPPVRNSLLTLILSCTVAAGVQFGWALQLSLLTPYIQTLGIEHAFSSFIWLCGPITGLVVQPCVGIWSDKCHSKYGRRRPFIFIGAVMISIAVIIIGFSADIGYLLGDTKEHCSTFKGTRSRAAIVFVVGFWMLDLANNTVQGPARALLADLSGPDQRNTANAVFCSWMAVGNILGFSAGASGGWHRWFPFLTNRACCEPCGNLKAAFLVAVVFLTLCTLVTLYFANEVPLSPKQYKRMSDSAPLLDSPQNTGFDLSQSKRELQYANSVANNESEMGHVADNSPKNEEQRPDKDQGDSFADSPGAVLVNLLTSLRHLPPAMHSVLIVMALTWLSWFPFFLFDTDWMGREVYHGDPKGEADEVNAYNQGVREGAFGLLLNSVVLGVSSFLIEPMCKWIGSRLVWAVSNFIVFVCMACTAIISVVSISANTQGVQHVIGATRSTQIAALVVFSLLGIPLAVTYSVPFSITAELTADAGGGQGLAIGVLNLAIVVPQMVVSLGAGPWDALFGGGNIPAFALASLAALAAGIFAMLRLPNLSSNFKSTGFHFG*
MDAVSIRVPYKNLKQQEVELTNVDESRFAQLEIRSDSSSPRVSNGEMNDSNLPLPPPPVRNSLLTLILSCTVAAGVQFGWALQLSLLTPYIQTLGIEHAFSSFIWLCGPITGLVVQPCVGIWSDKCHSKYGRRRPFIFIGAVMISIAVIIIGFSADIGYLLGDTKEHCSTFKGTRSRAAIVFVVGFWMLDLANNTVQGPARALLADLSGPDQRNTANAVFCSWMAVGNILGFSAGASGGWHRWFPFLTNRACCEPCGNLKAAFLVAVVFLTLCTLVTLYFANEVPLSPKQYKRMSDSAPLLDSPQNTGFDLSQSKRELQYANSVANNESEMGHVADNSPKNEEQRPDKDQGDSFADSPGAVLVNLLTSLRHLPPAMHSVLIVMALTWLSWFPFFLFDTDWMGREVYHGDPKGEADEVNAYNQGVREGAFGLLLNSVVLGVSSFLIEPMCKWIGSRLVWAVSNFIVFVCMACTAIISVVSISANTQGVQHVIGATRSTQIAALVVFSLLGIPLAVTYSVPFSITAELTADAGGGQGLAIGVLNLAIVVPQMVVSLGAGPWDALFGGGNIPAFALASLAALAAGIFAMLRLPNLSSNFKSTGFHFG*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
[loading...]
![]() ![]() | [Associate new genbank sequence] |
AF166498 Lycopersicon esculentum sucrose transporter-like protein (SUT2) mRNA, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
SUT2, a putative sucrose sensor in sieve elements.
The Plant cell (2000)
Show / hide abstract
Show / hide abstract
In leaves, sucrose uptake kinetics involve high- and low-affinity components. A family of low- and high-affinity sucrose transporters (SUT) was identified. SUT1 serves as a high-affinity transporter essential for phloem loading and long-distance transport in solanaceous species. SUT4 is a low-affinity transporter with an expression pattern overlapping that of SUT1. Both SUT1 and SUT4 localize to enucleate sieve elements of tomato. New sucrose transporter-like proteins, named SUT2, from tomato and Arabidopsis contain extended cytoplasmic domains, thus structurally resembling the yeast sugar sensors SNF3 and RGT2. Features common to these sensors are low codon bias, environment of the start codon, low expression, and lack of detectable transport activity. In contrast to LeSUT1, which is induced during the sink-to-source transition of leaves, SUT2 is more highly expressed in sink than in source leaves and is inducible by sucrose. LeSUT2 protein colocalizes with the low- and high-affinity sucrose transporters in sieve elements of tomato petioles, indicating that multiple SUT mRNAs or proteins travel from companion cells to enucleate sieve elements. The SUT2 gene maps on chromosome V of potato and is linked to a major quantitative trait locus for tuber starch content and yield. Thus, the putative sugar sensor identified colocalizes with two other sucrose transporters, differs from them in kinetic properties, and potentially regulates the relative activity of low- and high-affinity sucrose transport into sieve elements.
Barker, L. Kühn, C. Weise, A. Schulz, A. Gebhardt, C. Hirner, B. Hellmann, H. Schulze, W. Ward, JM. Frommer, WB.
The Plant cell.
2000.
12(7).
1153-64.
Sucrose transporter LeSUT1 and LeSUT2 inhibition affects tomato fruit development in different ways.
The Plant journal : for cell and molecular biology (2006)
Show / hide abstract
Show / hide abstract
Sucrose transporters of higher plants belong to a large gene family. At least four different sucrose transporters are known in Solanaceous plants, although their function remains to be elucidated in detail. The isolation of LeSUT1 and LeSUT2from Lycopersicon esculentum has been described earlier. Whereas SUT1 is supposed to be the main phloem loader of sucrose in Solanaceae, the role of SUT2 remains a matter of debate. A transgenic approach was taken to evaluate the potential functions of SUT2/SUC3 proteins in sucrose transport or sensing. Expression of LeSUT1 and LeSUT2 was inhibited independently in transgenic tomato plants, using the antisense technique, in order to analyse their specific functions. Although the phloem-specific inhibition of LeSUT1 antisense plants showed a phenotype consistent with an essential role in phloem loading, constitutive LeSUT2 antisense inhibition exclusively affected tomato fruit and seed development. Neither LeSUT1, nor the LeSUT2 antisense plants were able to produce normal tomato fruits; however, it is likely that independent mechanisms underlie these phenomena. While phloem loading was blocked in LeSUT1 antisense plants, the fertility of fruits was reduced in LeSUT2 antisense plants. A detailed physiological analysis of these plants established a role for SUT2 in pollen tube growth and thus assigned a physiological role for SUT2.
Hackel, A. Schauer, N. Carrari, F. Fernie, AR. Grimm, B. Kühn, C.
The Plant journal : for cell and molecular biology.
2006.
45(2).
180-92.
The sugar transporter inventory of tomato: genome-wide identification and expression analysis.
Plant & cell physiology (2014)
Show / hide abstract
Show / hide abstract
The mobility of sugars between source and sink tissues in plants depends on sugar transport proteins. Studying the corresponding genes allows the manipulation of the sink strength of developing fruits, thereby improving fruit quality for human consumption. Tomato (Solanum lycopersicum) is both a major horticultural crop and a model for the development of fleshy fruits. In this article we provide a comprehensive inventory of tomato sugar transporters, including the SUCROSE TRANSPORTER family, the SUGAR TRANSPORTER PROTEIN family, the SUGAR FACILITATOR PROTEIN family, the POLYOL/MONOSACCHARIDE TRANSPORTER family, the INOSITOL TRANSPORTER family, the PLASTIDIC GLUCOSE TRANSLOCATOR family, the TONOPLAST MONOSACCHARIDE TRANSPORTER family and the VACUOLAR GLUCOSE TRANSPORTER family. Expressed sequence tag (EST) sequencing and phylogenetic analyses established a nomenclature for all analyzed tomato sugar transporters. In total we identified 52 genes in tomato putatively encoding sugar transporters. The expression of 29 sugar transporter genes in vegetative tissues and during fruit development was analyzed. Several sugar transporter genes were expressed in a tissue- or developmental stage-specific manner. This information will be helpful to better understand source to sink movement of photoassimilates in tomato. Identification of fruit-specific sugar transporters might be a first step to find novel genes contributing to tomato fruit sugar accumulation.
Reuscher, S. Akiyama, M. Yasuda, T. Makino, H. Aoki, K. Shibata, D. Shiratake, K.
Plant & cell physiology.
2014.
55(6).
1123-41.
![]() ![]() | [Add ontology annotations] |
[loading...]
![]() ![]() |
- Genomic details
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.
Create New User
Working
