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Tomato locus SlSUT4
| 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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| Image | Description | Type |
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Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (0)
Associated loci (0)
| [Associate new locus] |
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| Associated loci - graphical view | None |
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 |
>Solyc04g076960.2 SL2.50ch04:61910840..61903881 (sequence from reverse strand)
AAAAAGTGTAAAGCAATTTTAGGCATATATACCAACCTACATATTCCCCCTCGTGCCTTTAGCTTAATTACAACTCTACCCCGAGAATAATCTATTTTTCTGCTCACTGTTCTCAATATATCTCGTAATTTCACCAATCTTCAAGGGCATTTTCAGCACGTCCTCCCTCTTCCACCACCTCGCCACCTTCTTCCTCCAAATTCTCCATTAACACACATCAATACGTTGACGTTTTGATATTTGAACGATGCCGGAGATAGAAAGGCATAGAACAAGGCATAACCGACCGGCGATTCGAGAACCGGTGAAACCGAGAGTACCACTGAGACTATTGTTACGAGTAGCTTCGGTTGCCGGTGGAATTCAATTCGGTTGGGCGTTACAACTATCGCTGCTCACACCTTATGTGCAGGAGCTTGGAATACCGCATGCTTGGGCGAGCATAATATGGCTCTGTGGACCGCTTTCAGGTTTATTGGTTCAGCCTTTAGTAGGTCACATGAGTGACAAGTGCACAAGTCGGTTCGGTCGTCGGCGTCCGTTTATTGTCGCCGGAGCAGCATCTATCATGATTGCGGTGTTGATTATCGGTTTCTCCGCTGATATTGGATGGCTTTTAGGTGATCGAGGTGAAATAAAAGTGCGTGCTATAGCGGCGTTTGTTGTAGGGTTTTGGCTTCTCGATGTTGCTAATAATATGACTCAAGGACCTTGCAGAGCTCTGCTTGCTGATCTTACACGTAAGCTTTTCAATTCAATTTTACAGCTTGATTTTCATTTTTTCCCGATTTGTTTATTGCTTGTGAATTACTCTGCTTCTGCTGCTTCTTTTTTACGCTGTTCAATAGCTTAAATTGAATTAACCAATCCACTGAGCTATTAAGATTTAACCAATCCACTGAGCTATAAAGATTTCGCTTCACCTGTAACTTATCATTTGATGAATTTAATTGTTTAGTGCTTTTTGAGGAAGATGAAGCTTCAAACATCTTCGTCAATTATCTAATGGAATGTTTAGCTTTCTTCAGCACTACTCCATAAGAAATGGAAATGCAATAGATGTGTTGTTCTACTTTTTTTGTGACGGTAAAAAACGTATGAGGCGCACTAGTTCAGCTCAAGTAGACAGAAATATCCCGGCACCGATAGTGCAGTGGGACCCCCTCTGTATCCTAAAATTCTCTCATTCTCTCTCTTCTCTTTTTTACTCCTTTTAATTAAATATTAGTGGCTGATGTACACCTAACTGAGTTGAGCCATTACGATCATGGGGGAGCATCGTTAGACTATGTTTTACATTGTTATTAAAAAATTCTTATTTTTTAAAAGCATTTTCTTAAAATAGCTTTTCGTAATTGAACAATAATAATAATTTGTGTTTAGTTAATTTATTTGAAAATTGCTTTTGATAAGCACATTGTGTGTAAGTAATTTTTTTTTTTAAAAAAAAGTAATTTTGAGAATCAAATTATGAAAAAAGGACAAATATTAATGAACTTTTAATATTAAGATTATTTATAGAGAGACATTATTTTAAATATCTTTTATAAATTTTTTTAAAATTTTTATTATAAAATGTATATATTCAAATTTTCAATCAATATGACACAAATAAAAAAGATAAATTTTGATAATATTAATATGATGTATTTATAATTAAAATAAAAATATCAAGCAAAATAAATTTTAAATTATTTCACAAATTAAATCCACCAAAAAATAAATACTCTTTGTCTCTAATGACTTGTCTACATTTCCTTTTTTAGTTGCCCCTAATTATTTATTCATTTTGACAAAGAAAGCACAATTTTTTTCTCCCCTCAATTTATTACTTTGAAAAATGTAGCACTTCTTGAAAATTGTAAGTTTTTAAATCATCCATTTCATAATTAATAGAGATAAAAACCTAAACTCACGATATCAATTATTGTTTTCTTAATAGGTTAGTCAAGTCAAAAGTGGATAAGTGATTAGAAATATAGCACTAAATATAAGGGATATATTGATAAATATTTTTATATGGTAGGGATATGTTGATCTTAAAAAATATAATTTTCTGCTTCTCTTTGCTTTTTTGATGGACTAAGCTATATTATCCGCCAAATTATATTGACTAAGCTTATTTTATCTGCCAAGAGTGGATTTGAAATTTTACTGAGCAGGATCAAACAGTTTTGAGAAGTTCTCTCTTATGGAGTATTTATGTAATTGTTATAGTGATCACTTTGACAATTCATTGTACAGTTGGAATAGAGTACTACGTCTTGGAAATTTAACATACATAGAAGCTAAAAAGAATACAAGTTACAAATCTACTAATTCAAAATGACTAGATAATCATTTAAAAAGTTTAGCACACTTTTCATCCTTGATATGTGAAGTAGGACTGCTAGTTCCAGTAAAACACTTATATTTGAATTGTGGTTTCTGTTGCCATAACCTTTACTTATGGTGCATGACTAAAGATAATTCAAAAATGCGTAACAATTTTTCAAGTTCTTATAACTCTTTCTTCATGAATCATTTGTACATACATGTCAATAAGGTTTTAGATAACTCTTCAGATTTGCACAAAATGGTGCAAAATTTGAAGCCACTTAGCATATTGTGATAAATCATTGCACATCTTAACAGGGGTAAAAGTCAAGTAAATAAAGGTTAAATGCCACTGTTTATTTAATCATGCCTGGGAAGGTCACTACCACTGTCTCCACTCAACATCAATTGATTTTTGCTTCCATTGCTGATACACAATTGCATGTGAAATTAGATAACTGTAGACGAGGTAAATGCTAAGGCCGTAGAAGTCATACATATGATACTTAAAGAAGGAAGAAGTAGGGAACAATTCATTTTGGAGAACTAGTATTTGATAAAGCAGTTGTCTGCCCCTTGTGCAGTTGCACTGGGCTTCATTCTTGTGGTGTAAAGTTTTGATAAAAAATGGATTTTTGTGTATTTTTCGTATAGACAATCGAAAACTTTTCATTGACAAAAAATTATTGTCCATTCCACTGCTGAAAGTAGCAGAAACATTACGGTTGGAAAAGAGCGCTGATGTTAATTGGGAATAAATCATTCCTATTAATTTACAGTTGGTAGTTCAAACAATTAAAGGTGAAAAGATCATATGCCACTATTACTTATTATGGTCACACTATTGTTTCTTCTTTGATCAGATTTCTCAAAATCATATTATTTTAATAAAACATAGATCATGTATCTCAGTGAATCTATATGAGTTTCCCCTTTTTGCTTTAGTCCTTTTCACTATTGGTTCGAACTAGTATAGCGCAGTGAGAGGAAGGCTCAATGGTGCAATGTTTGGCACTAACTATATCATAGTCCTTGACATTATCCACTTAACATGTCTAGCCTGAACATGCCAAGGAGATATGGCTTTTTATTCCATCCTTTGACTTGATTATTAATTCTTGACAGAGTAAGAACAAACTCATCATGTCTGGTCAATTTCCTATCAAAAGCTAAAAGCCTGCTCTATAAAACGGTAGGTCCTGAATCCACAACATTTGCAATGGTGAGTTAAACAAGTAAGAATCATCTTTTACTATGTATCCATCTGTGAGCTGTTTCTTTTGATAAGGTATTATCCAAGCAAGTACCCAGGAGGTACTGCAAAAAGGAAAAGGACAGAATTACACAAGTCTTGAGAAGACAACAATCATTCATCTCAAAGAGGTTACCAAATTTAGCACAACTAAAGTTCATCAATTTCCTTTCGTTAAAGCAGTAGATTATGCATTTGTACTTAACAGCTGCAATCTGCTTCCCCTCTCCATCAAAACATTTTCTGTTTCTTTCCAACCAGATACTCCGCACACTGTACAGAGGGGATGTCCTCCATATTTTCTCAGTCCAGATTTCTGCACTTGCCAGATTAATACAAAACTATTCAGATCTCGTGGCATGACCCAATGCACTACAAACACACATAACAAAACTGTCCAAATCTGCCAAGAAAATTTACAGGAATAAACAAATGGTTAGTTGATACCACTTCCCTTTGACGCAGCCAAGCATTTCTAGTTTCCACCCACCTAAAGAAAACAATTTTAGATGGTGCTTTTGTCTTCCAAATCATCCATCTCTGAACTGTTTATATGAGACAAACAAAAGCTAGTTTAAGTCTTGGTATCACATAATTTGAAGCATTGGGGGTTCTGGAATTTTACTTTAAGTTCAAGTGCTTGAGTGAGTGATGGACTACAGAGGTGATTTCGAGAGGGGAGAGAGATAACAAGGGGTAATGGGAGATGTGTGCTTGTGGCGGTGTGGATTTTGGGCAAACATTATTCTTGGAGCATGAAATATCATCATCACCTTCTTTTCTCTCTGAGATTAGATTTTGAGCTAATTTCCCTAGAGATATTCAAAATCTAGCTCTTACAGGAGCCTTTACCAACAGCAGTGAAACAAAATCAGAATTCACTAGTTTTCTTTATCCCCTCGTGCAGGATAGAATAGGAAGCATTTGCTTGTTACTGAGAAGATTGTGGAGTCTTATATCTCAAAAAGAAATGATTATGGAGTCTAATGATTAGGTCTACTTTGTCTACATACACTGTGTGCTCCTTGTTCCTTTTTACTCTAAGTTTTAATTAGTTGTTAATAATATTATATACCCTATCTAAAGAGCTAGTAAGACCTCCTAAATTTGCGTAATATCCTCACTTTGTTGAAGCTAACTCACGTATCCAAAATTCAAAAGAAAATCTTATTTTGTCGATTTTGACCTCTAGTTTCAGCCATTTAGGAGAAAGTAATACTGAAGTTCATTTTATGGATTTTAACCCCCAGTCTCAACTATTTAGGAGAAAATAACACTTAAGCATAAGAAAAGACATAATGGTGAAAATGGAGGCTACGGTCTGTCGATGCTTATGGGGTTTGAAGAAGAGGACCTCCATGGGATGATGAATCTATGGTCCTATTCCAGAGATGATACAGCCACCAAAAGAAAAGGCTTTGTAGAGCTTAATTTTTCAGGGCGAGATATATCAGTTATACATTTTTGTAGGACTTCATTGTCATTTATTTGTGCATATTTATATCATGAATTTGCCGTCAAACTAGTGACACTTCCTCTGCTCTCTAATATGCAGAAAAGGATCACAGAAGAACTCGGGTAGCAAATGCATATTTTTCCTTATTTATGGCCATTGGTAACATCCTTGGCTTTGCTACTGGATCTTACAGTGGCTGGTACAAGATCTTCCCTTTTACTCTCAATACTGCATGCACCATCAACTGTGCCAATCTAAAGGCTGCTTTTATTCTCGACATTATTTTTATTGCAACAACAACATGCATTAGCATATCGGCGGCCAATGAGCAGCCTCTAGATCCCAGTCGTGGTTCCTCTCATACTGGAGAAGAGATTGACGAATCAAGCCATGGTCAAGAAGAAGCTTTTCTCTGGGAGTTGTTTGGTATTTTCAAGTATTTCCCAGGTGTTGTTTGGGTGATCCTGCTTGTCACTGCCCTGACATGGATTGGATGGTTTCCATTTCTTTTGTTCGATACTGACTGGTTTGGTCGAGAAATTTATGGCGGTGAACCAAATGACGGAAAGAATTATAGTGCAGGAGTGCGGATGGGTTCATTGGGTCTAATGTTGAATTCTGTCCTTCTTGGACTAACTTCATTGTTCATGGAGAAGCTCTGTCGAAAATGGGGGGCTGGTTTCACATGGGGAGTTTCTAACGTGGTCATGTCTCTCTGCTTTATAGCCATGCTTATAATTACTGCTGTTAGGAGTAACATAGACATTGGCCAGGGTCTTCCGCCGGATGGAATTGTGATTGCTGCGCTGGTTGTATTTTCTATTCTTGGGATCCCACTAGCTGTAAGTTGCTTTATTTTGAAGTCACAGCCAGAAGTTATTTTGCACTATTACACAGGTTTATGTGTAGAACTAATTAATTTAAAGCACCTCTAAACCACTTATATTCTTAATCTTCAAAAAATTTTAACAGCAGGGGTGGTATATGTGCTGAGTTTTGGTTTGCAGAGTTTGTTACTGTTGAAATGTAACATAGAAATTCGGTCTATCTGAAATAATCTTTTCATGTAAGATGCCTGGAAAAGGCAACACGATACAAAAAGAAATTTGAGGTTACTGTTTCAAAAGGATTTAGTTTTAGCACAAGTTTCATGGTGGCTTAGAAGAGAGCTTTATTTATGTATATTATTGTATAATGCAAGTCATTTTCTGCAGATAACGTACAGTGTTCCATATGCTTTAGTATCCTCAAGGATTGAAGCTCTTGGGCTTGGACAAGGTAGATTGAGTTTTGTCTATTTTGATCAATATTCTGTAGGTCAAATAGAAAATAGAGCATCAATTACAACTTCAACCTTGCAGGCTTGTCAATGGGCGTGCTGAACCTGGCAATTGTGTTCCCACAGGTATAAATTTTGCTCTGTTTCTATGGGTTTTCACCAAAACAAGAACACTCTCTAGAGAGTGGTTCCAAAAGAAAATAAAAAAAATCATAGCCTTTATGTAGATTGATGTGCCACAGGTGCATTGTGTTGCCTCTTGCCAGTTTGCTCTTGTATCTGTTATCTGTTGAGCCCTTGGTTAGAGCTGAAAAAAAATGAGGCAAGGAGTGGAGGTTATAAATGATAAAATCTAGAGTACTTTCAAGCGAATACAGAACATTATTATTCTAATGGGTGTTTCCACAAGGAATTTTAGCTGCACCTTTGCAGCATGTGTCTTATCATTTCCTGAAGTTATATAGGCCACTGAATGAAAAATATTGTCATTGGTTGCAGATTGTGGTTTCACTGGGAAGTGGGCCATGGGATGAGCTATTTGGTGGAGGCAATTCACCAGCCTTTGTTGTGGCTGCGCTTTCAGCATTTGCTGGTGGACTTATAGCCATCTTGGCAATTCCTCGAACACGGGTTGAGAGACCCAAGATCTTTGCATGA
AAAAAGTGTAAAGCAATTTTAGGCATATATACCAACCTACATATTCCCCCTCGTGCCTTTAGCTTAATTACAACTCTACCCCGAGAATAATCTATTTTTCTGCTCACTGTTCTCAATATATCTCGTAATTTCACCAATCTTCAAGGGCATTTTCAGCACGTCCTCCCTCTTCCACCACCTCGCCACCTTCTTCCTCCAAATTCTCCATTAACACACATCAATACGTTGACGTTTTGATATTTGAACGATGCCGGAGATAGAAAGGCATAGAACAAGGCATAACCGACCGGCGATTCGAGAACCGGTGAAACCGAGAGTACCACTGAGACTATTGTTACGAGTAGCTTCGGTTGCCGGTGGAATTCAATTCGGTTGGGCGTTACAACTATCGCTGCTCACACCTTATGTGCAGGAGCTTGGAATACCGCATGCTTGGGCGAGCATAATATGGCTCTGTGGACCGCTTTCAGGTTTATTGGTTCAGCCTTTAGTAGGTCACATGAGTGACAAGTGCACAAGTCGGTTCGGTCGTCGGCGTCCGTTTATTGTCGCCGGAGCAGCATCTATCATGATTGCGGTGTTGATTATCGGTTTCTCCGCTGATATTGGATGGCTTTTAGGTGATCGAGGTGAAATAAAAGTGCGTGCTATAGCGGCGTTTGTTGTAGGGTTTTGGCTTCTCGATGTTGCTAATAATATGACTCAAGGACCTTGCAGAGCTCTGCTTGCTGATCTTACACGTAAGCTTTTCAATTCAATTTTACAGCTTGATTTTCATTTTTTCCCGATTTGTTTATTGCTTGTGAATTACTCTGCTTCTGCTGCTTCTTTTTTACGCTGTTCAATAGCTTAAATTGAATTAACCAATCCACTGAGCTATTAAGATTTAACCAATCCACTGAGCTATAAAGATTTCGCTTCACCTGTAACTTATCATTTGATGAATTTAATTGTTTAGTGCTTTTTGAGGAAGATGAAGCTTCAAACATCTTCGTCAATTATCTAATGGAATGTTTAGCTTTCTTCAGCACTACTCCATAAGAAATGGAAATGCAATAGATGTGTTGTTCTACTTTTTTTGTGACGGTAAAAAACGTATGAGGCGCACTAGTTCAGCTCAAGTAGACAGAAATATCCCGGCACCGATAGTGCAGTGGGACCCCCTCTGTATCCTAAAATTCTCTCATTCTCTCTCTTCTCTTTTTTACTCCTTTTAATTAAATATTAGTGGCTGATGTACACCTAACTGAGTTGAGCCATTACGATCATGGGGGAGCATCGTTAGACTATGTTTTACATTGTTATTAAAAAATTCTTATTTTTTAAAAGCATTTTCTTAAAATAGCTTTTCGTAATTGAACAATAATAATAATTTGTGTTTAGTTAATTTATTTGAAAATTGCTTTTGATAAGCACATTGTGTGTAAGTAATTTTTTTTTTTAAAAAAAAGTAATTTTGAGAATCAAATTATGAAAAAAGGACAAATATTAATGAACTTTTAATATTAAGATTATTTATAGAGAGACATTATTTTAAATATCTTTTATAAATTTTTTTAAAATTTTTATTATAAAATGTATATATTCAAATTTTCAATCAATATGACACAAATAAAAAAGATAAATTTTGATAATATTAATATGATGTATTTATAATTAAAATAAAAATATCAAGCAAAATAAATTTTAAATTATTTCACAAATTAAATCCACCAAAAAATAAATACTCTTTGTCTCTAATGACTTGTCTACATTTCCTTTTTTAGTTGCCCCTAATTATTTATTCATTTTGACAAAGAAAGCACAATTTTTTTCTCCCCTCAATTTATTACTTTGAAAAATGTAGCACTTCTTGAAAATTGTAAGTTTTTAAATCATCCATTTCATAATTAATAGAGATAAAAACCTAAACTCACGATATCAATTATTGTTTTCTTAATAGGTTAGTCAAGTCAAAAGTGGATAAGTGATTAGAAATATAGCACTAAATATAAGGGATATATTGATAAATATTTTTATATGGTAGGGATATGTTGATCTTAAAAAATATAATTTTCTGCTTCTCTTTGCTTTTTTGATGGACTAAGCTATATTATCCGCCAAATTATATTGACTAAGCTTATTTTATCTGCCAAGAGTGGATTTGAAATTTTACTGAGCAGGATCAAACAGTTTTGAGAAGTTCTCTCTTATGGAGTATTTATGTAATTGTTATAGTGATCACTTTGACAATTCATTGTACAGTTGGAATAGAGTACTACGTCTTGGAAATTTAACATACATAGAAGCTAAAAAGAATACAAGTTACAAATCTACTAATTCAAAATGACTAGATAATCATTTAAAAAGTTTAGCACACTTTTCATCCTTGATATGTGAAGTAGGACTGCTAGTTCCAGTAAAACACTTATATTTGAATTGTGGTTTCTGTTGCCATAACCTTTACTTATGGTGCATGACTAAAGATAATTCAAAAATGCGTAACAATTTTTCAAGTTCTTATAACTCTTTCTTCATGAATCATTTGTACATACATGTCAATAAGGTTTTAGATAACTCTTCAGATTTGCACAAAATGGTGCAAAATTTGAAGCCACTTAGCATATTGTGATAAATCATTGCACATCTTAACAGGGGTAAAAGTCAAGTAAATAAAGGTTAAATGCCACTGTTTATTTAATCATGCCTGGGAAGGTCACTACCACTGTCTCCACTCAACATCAATTGATTTTTGCTTCCATTGCTGATACACAATTGCATGTGAAATTAGATAACTGTAGACGAGGTAAATGCTAAGGCCGTAGAAGTCATACATATGATACTTAAAGAAGGAAGAAGTAGGGAACAATTCATTTTGGAGAACTAGTATTTGATAAAGCAGTTGTCTGCCCCTTGTGCAGTTGCACTGGGCTTCATTCTTGTGGTGTAAAGTTTTGATAAAAAATGGATTTTTGTGTATTTTTCGTATAGACAATCGAAAACTTTTCATTGACAAAAAATTATTGTCCATTCCACTGCTGAAAGTAGCAGAAACATTACGGTTGGAAAAGAGCGCTGATGTTAATTGGGAATAAATCATTCCTATTAATTTACAGTTGGTAGTTCAAACAATTAAAGGTGAAAAGATCATATGCCACTATTACTTATTATGGTCACACTATTGTTTCTTCTTTGATCAGATTTCTCAAAATCATATTATTTTAATAAAACATAGATCATGTATCTCAGTGAATCTATATGAGTTTCCCCTTTTTGCTTTAGTCCTTTTCACTATTGGTTCGAACTAGTATAGCGCAGTGAGAGGAAGGCTCAATGGTGCAATGTTTGGCACTAACTATATCATAGTCCTTGACATTATCCACTTAACATGTCTAGCCTGAACATGCCAAGGAGATATGGCTTTTTATTCCATCCTTTGACTTGATTATTAATTCTTGACAGAGTAAGAACAAACTCATCATGTCTGGTCAATTTCCTATCAAAAGCTAAAAGCCTGCTCTATAAAACGGTAGGTCCTGAATCCACAACATTTGCAATGGTGAGTTAAACAAGTAAGAATCATCTTTTACTATGTATCCATCTGTGAGCTGTTTCTTTTGATAAGGTATTATCCAAGCAAGTACCCAGGAGGTACTGCAAAAAGGAAAAGGACAGAATTACACAAGTCTTGAGAAGACAACAATCATTCATCTCAAAGAGGTTACCAAATTTAGCACAACTAAAGTTCATCAATTTCCTTTCGTTAAAGCAGTAGATTATGCATTTGTACTTAACAGCTGCAATCTGCTTCCCCTCTCCATCAAAACATTTTCTGTTTCTTTCCAACCAGATACTCCGCACACTGTACAGAGGGGATGTCCTCCATATTTTCTCAGTCCAGATTTCTGCACTTGCCAGATTAATACAAAACTATTCAGATCTCGTGGCATGACCCAATGCACTACAAACACACATAACAAAACTGTCCAAATCTGCCAAGAAAATTTACAGGAATAAACAAATGGTTAGTTGATACCACTTCCCTTTGACGCAGCCAAGCATTTCTAGTTTCCACCCACCTAAAGAAAACAATTTTAGATGGTGCTTTTGTCTTCCAAATCATCCATCTCTGAACTGTTTATATGAGACAAACAAAAGCTAGTTTAAGTCTTGGTATCACATAATTTGAAGCATTGGGGGTTCTGGAATTTTACTTTAAGTTCAAGTGCTTGAGTGAGTGATGGACTACAGAGGTGATTTCGAGAGGGGAGAGAGATAACAAGGGGTAATGGGAGATGTGTGCTTGTGGCGGTGTGGATTTTGGGCAAACATTATTCTTGGAGCATGAAATATCATCATCACCTTCTTTTCTCTCTGAGATTAGATTTTGAGCTAATTTCCCTAGAGATATTCAAAATCTAGCTCTTACAGGAGCCTTTACCAACAGCAGTGAAACAAAATCAGAATTCACTAGTTTTCTTTATCCCCTCGTGCAGGATAGAATAGGAAGCATTTGCTTGTTACTGAGAAGATTGTGGAGTCTTATATCTCAAAAAGAAATGATTATGGAGTCTAATGATTAGGTCTACTTTGTCTACATACACTGTGTGCTCCTTGTTCCTTTTTACTCTAAGTTTTAATTAGTTGTTAATAATATTATATACCCTATCTAAAGAGCTAGTAAGACCTCCTAAATTTGCGTAATATCCTCACTTTGTTGAAGCTAACTCACGTATCCAAAATTCAAAAGAAAATCTTATTTTGTCGATTTTGACCTCTAGTTTCAGCCATTTAGGAGAAAGTAATACTGAAGTTCATTTTATGGATTTTAACCCCCAGTCTCAACTATTTAGGAGAAAATAACACTTAAGCATAAGAAAAGACATAATGGTGAAAATGGAGGCTACGGTCTGTCGATGCTTATGGGGTTTGAAGAAGAGGACCTCCATGGGATGATGAATCTATGGTCCTATTCCAGAGATGATACAGCCACCAAAAGAAAAGGCTTTGTAGAGCTTAATTTTTCAGGGCGAGATATATCAGTTATACATTTTTGTAGGACTTCATTGTCATTTATTTGTGCATATTTATATCATGAATTTGCCGTCAAACTAGTGACACTTCCTCTGCTCTCTAATATGCAGAAAAGGATCACAGAAGAACTCGGGTAGCAAATGCATATTTTTCCTTATTTATGGCCATTGGTAACATCCTTGGCTTTGCTACTGGATCTTACAGTGGCTGGTACAAGATCTTCCCTTTTACTCTCAATACTGCATGCACCATCAACTGTGCCAATCTAAAGGCTGCTTTTATTCTCGACATTATTTTTATTGCAACAACAACATGCATTAGCATATCGGCGGCCAATGAGCAGCCTCTAGATCCCAGTCGTGGTTCCTCTCATACTGGAGAAGAGATTGACGAATCAAGCCATGGTCAAGAAGAAGCTTTTCTCTGGGAGTTGTTTGGTATTTTCAAGTATTTCCCAGGTGTTGTTTGGGTGATCCTGCTTGTCACTGCCCTGACATGGATTGGATGGTTTCCATTTCTTTTGTTCGATACTGACTGGTTTGGTCGAGAAATTTATGGCGGTGAACCAAATGACGGAAAGAATTATAGTGCAGGAGTGCGGATGGGTTCATTGGGTCTAATGTTGAATTCTGTCCTTCTTGGACTAACTTCATTGTTCATGGAGAAGCTCTGTCGAAAATGGGGGGCTGGTTTCACATGGGGAGTTTCTAACGTGGTCATGTCTCTCTGCTTTATAGCCATGCTTATAATTACTGCTGTTAGGAGTAACATAGACATTGGCCAGGGTCTTCCGCCGGATGGAATTGTGATTGCTGCGCTGGTTGTATTTTCTATTCTTGGGATCCCACTAGCTGTAAGTTGCTTTATTTTGAAGTCACAGCCAGAAGTTATTTTGCACTATTACACAGGTTTATGTGTAGAACTAATTAATTTAAAGCACCTCTAAACCACTTATATTCTTAATCTTCAAAAAATTTTAACAGCAGGGGTGGTATATGTGCTGAGTTTTGGTTTGCAGAGTTTGTTACTGTTGAAATGTAACATAGAAATTCGGTCTATCTGAAATAATCTTTTCATGTAAGATGCCTGGAAAAGGCAACACGATACAAAAAGAAATTTGAGGTTACTGTTTCAAAAGGATTTAGTTTTAGCACAAGTTTCATGGTGGCTTAGAAGAGAGCTTTATTTATGTATATTATTGTATAATGCAAGTCATTTTCTGCAGATAACGTACAGTGTTCCATATGCTTTAGTATCCTCAAGGATTGAAGCTCTTGGGCTTGGACAAGGTAGATTGAGTTTTGTCTATTTTGATCAATATTCTGTAGGTCAAATAGAAAATAGAGCATCAATTACAACTTCAACCTTGCAGGCTTGTCAATGGGCGTGCTGAACCTGGCAATTGTGTTCCCACAGGTATAAATTTTGCTCTGTTTCTATGGGTTTTCACCAAAACAAGAACACTCTCTAGAGAGTGGTTCCAAAAGAAAATAAAAAAAATCATAGCCTTTATGTAGATTGATGTGCCACAGGTGCATTGTGTTGCCTCTTGCCAGTTTGCTCTTGTATCTGTTATCTGTTGAGCCCTTGGTTAGAGCTGAAAAAAAATGAGGCAAGGAGTGGAGGTTATAAATGATAAAATCTAGAGTACTTTCAAGCGAATACAGAACATTATTATTCTAATGGGTGTTTCCACAAGGAATTTTAGCTGCACCTTTGCAGCATGTGTCTTATCATTTCCTGAAGTTATATAGGCCACTGAATGAAAAATATTGTCATTGGTTGCAGATTGTGGTTTCACTGGGAAGTGGGCCATGGGATGAGCTATTTGGTGGAGGCAATTCACCAGCCTTTGTTGTGGCTGCGCTTTCAGCATTTGCTGGTGGACTTATAGCCATCTTGGCAATTCCTCGAACACGGGTTGAGAGACCCAAGATCTTTGCATGA
| Download sequence region |
Get flanking sequences on SL2.50ch04
|
mRNA Solyc04g076960.2.1
mRNA Solyc04g076960.2.1
|
Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc04g076960.2.1 Sucrose transporter (AHRD V1 **** Q9FVJ6_SOLLC); contains Interpro domain(s) IPR005989 Sucrose/H+ symporter, plant
AAAAAGTGTAAAGCAATTTTAGGCATATATACCAACCTACATATTCCCCCTCGTGCCTTTAGCTTAATTACAACTCTACCCCGAGAATAATCTATTTTTCTGCTCACTGTTCTCAATATATCTCGTAATTTCACCAATCTTCAAGGGCATTTTCAGCACGTCCTCCCTCTTCCACCACCTCGCCACCTTCTTCCTCCAAATTCTCCATTAACACACATCAATACGTTGACGTTTTGATATTTGAACGATGCCGGAGATAGAAAGGCATAGAACAAGGCATAACCGACCGGCGATTCGAGAACCGGTGAAACCGAGAGTACCACTGAGACTATTGTTACGAGTAGCTTCGGTTGCCGGTGGAATTCAATTCGGTTGGGCGTTACAACTATCGCTGCTCACACCTTATGTGCAGGAGCTTGGAATACCGCATGCTTGGGCGAGCATAATATGGCTCTGTGGACCGCTTTCAGGTTTATTGGTTCAGCCTTTAGTAGGTCACATGAGTGACAAGTGCACAAGTCGGTTCGGTCGTCGGCGTCCGTTTATTGTCGCCGGAGCAGCATCTATCATGATTGCGGTGTTGATTATCGGTTTCTCCGCTGATATTGGATGGCTTTTAGGTGATCGAGGTGAAATAAAAGTGCGTGCTATAGCGGCGTTTGTTGTAGGGTTTTGGCTTCTCGATGTTGCTAATAATATGACTCAAGGACCTTGCAGAGCTCTGCTTGCTGATCTTACACAAAAGGATCACAGAAGAACTCGGGTAGCAAATGCATATTTTTCCTTATTTATGGCCATTGGTAACATCCTTGGCTTTGCTACTGGATCTTACAGTGGCTGGTACAAGATCTTCCCTTTTACTCTCAATACTGCATGCACCATCAACTGTGCCAATCTAAAGGCTGCTTTTATTCTCGACATTATTTTTATTGCAACAACAACATGCATTAGCATATCGGCGGCCAATGAGCAGCCTCTAGATCCCAGTCGTGGTTCCTCTCATACTGGAGAAGAGATTGACGAATCAAGCCATGGTCAAGAAGAAGCTTTTCTCTGGGAGTTGTTTGGTATTTTCAAGTATTTCCCAGGTGTTGTTTGGGTGATCCTGCTTGTCACTGCCCTGACATGGATTGGATGGTTTCCATTTCTTTTGTTCGATACTGACTGGTTTGGTCGAGAAATTTATGGCGGTGAACCAAATGACGGAAAGAATTATAGTGCAGGAGTGCGGATGGGTTCATTGGGTCTAATGTTGAATTCTGTCCTTCTTGGACTAACTTCATTGTTCATGGAGAAGCTCTGTCGAAAATGGGGGGCTGGTTTCACATGGGGAGTTTCTAACGTGGTCATGTCTCTCTGCTTTATAGCCATGCTTATAATTACTGCTGTTAGGAGTAACATAGACATTGGCCAGGGTCTTCCGCCGGATGGAATTGTGATTGCTGCGCTGGTTGTATTTTCTATTCTTGGGATCCCACTAGCTATAACGTACAGTGTTCCATATGCTTTAGTATCCTCAAGGATTGAAGCTCTTGGGCTTGGACAAGGCTTGTCAATGGGCGTGCTGAACCTGGCAATTGTGTTCCCACAGATTGTGGTTTCACTGGGAAGTGGGCCATGGGATGAGCTATTTGGTGGAGGCAATTCACCAGCCTTTGTTGTGGCTGCGCTTTCAGCATTTGCTGGTGGACTTATAGCCATCTTGGCAATTCCTCGAACACGGGTTGAGAGACCCAAGATCTTTGCATGA
AAAAAGTGTAAAGCAATTTTAGGCATATATACCAACCTACATATTCCCCCTCGTGCCTTTAGCTTAATTACAACTCTACCCCGAGAATAATCTATTTTTCTGCTCACTGTTCTCAATATATCTCGTAATTTCACCAATCTTCAAGGGCATTTTCAGCACGTCCTCCCTCTTCCACCACCTCGCCACCTTCTTCCTCCAAATTCTCCATTAACACACATCAATACGTTGACGTTTTGATATTTGAACGATGCCGGAGATAGAAAGGCATAGAACAAGGCATAACCGACCGGCGATTCGAGAACCGGTGAAACCGAGAGTACCACTGAGACTATTGTTACGAGTAGCTTCGGTTGCCGGTGGAATTCAATTCGGTTGGGCGTTACAACTATCGCTGCTCACACCTTATGTGCAGGAGCTTGGAATACCGCATGCTTGGGCGAGCATAATATGGCTCTGTGGACCGCTTTCAGGTTTATTGGTTCAGCCTTTAGTAGGTCACATGAGTGACAAGTGCACAAGTCGGTTCGGTCGTCGGCGTCCGTTTATTGTCGCCGGAGCAGCATCTATCATGATTGCGGTGTTGATTATCGGTTTCTCCGCTGATATTGGATGGCTTTTAGGTGATCGAGGTGAAATAAAAGTGCGTGCTATAGCGGCGTTTGTTGTAGGGTTTTGGCTTCTCGATGTTGCTAATAATATGACTCAAGGACCTTGCAGAGCTCTGCTTGCTGATCTTACACAAAAGGATCACAGAAGAACTCGGGTAGCAAATGCATATTTTTCCTTATTTATGGCCATTGGTAACATCCTTGGCTTTGCTACTGGATCTTACAGTGGCTGGTACAAGATCTTCCCTTTTACTCTCAATACTGCATGCACCATCAACTGTGCCAATCTAAAGGCTGCTTTTATTCTCGACATTATTTTTATTGCAACAACAACATGCATTAGCATATCGGCGGCCAATGAGCAGCCTCTAGATCCCAGTCGTGGTTCCTCTCATACTGGAGAAGAGATTGACGAATCAAGCCATGGTCAAGAAGAAGCTTTTCTCTGGGAGTTGTTTGGTATTTTCAAGTATTTCCCAGGTGTTGTTTGGGTGATCCTGCTTGTCACTGCCCTGACATGGATTGGATGGTTTCCATTTCTTTTGTTCGATACTGACTGGTTTGGTCGAGAAATTTATGGCGGTGAACCAAATGACGGAAAGAATTATAGTGCAGGAGTGCGGATGGGTTCATTGGGTCTAATGTTGAATTCTGTCCTTCTTGGACTAACTTCATTGTTCATGGAGAAGCTCTGTCGAAAATGGGGGGCTGGTTTCACATGGGGAGTTTCTAACGTGGTCATGTCTCTCTGCTTTATAGCCATGCTTATAATTACTGCTGTTAGGAGTAACATAGACATTGGCCAGGGTCTTCCGCCGGATGGAATTGTGATTGCTGCGCTGGTTGTATTTTCTATTCTTGGGATCCCACTAGCTATAACGTACAGTGTTCCATATGCTTTAGTATCCTCAAGGATTGAAGCTCTTGGGCTTGGACAAGGCTTGTCAATGGGCGTGCTGAACCTGGCAATTGTGTTCCCACAGATTGTGGTTTCACTGGGAAGTGGGCCATGGGATGAGCTATTTGGTGGAGGCAATTCACCAGCCTTTGTTGTGGCTGCGCTTTCAGCATTTGCTGGTGGACTTATAGCCATCTTGGCAATTCCTCGAACACGGGTTGAGAGACCCAAGATCTTTGCATGA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc04g076960.2.1 Sucrose transporter (AHRD V1 **** Q9FVJ6_SOLLC); contains Interpro domain(s) IPR005989 Sucrose/H+ symporter, plant
MPEIERHRTRHNRPAIREPVKPRVPLRLLLRVASVAGGIQFGWALQLSLLTPYVQELGIPHAWASIIWLCGPLSGLLVQPLVGHMSDKCTSRFGRRRPFIVAGAASIMIAVLIIGFSADIGWLLGDRGEIKVRAIAAFVVGFWLLDVANNMTQGPCRALLADLTQKDHRRTRVANAYFSLFMAIGNILGFATGSYSGWYKIFPFTLNTACTINCANLKAAFILDIIFIATTTCISISAANEQPLDPSRGSSHTGEEIDESSHGQEEAFLWELFGIFKYFPGVVWVILLVTALTWIGWFPFLLFDTDWFGREIYGGEPNDGKNYSAGVRMGSLGLMLNSVLLGLTSLFMEKLCRKWGAGFTWGVSNVVMSLCFIAMLIITAVRSNIDIGQGLPPDGIVIAALVVFSILGIPLAITYSVPYALVSSRIEALGLGQGLSMGVLNLAIVFPQIVVSLGSGPWDELFGGGNSPAFVVAALSAFAGGLIAILAIPRTRVERPKIFA*
MPEIERHRTRHNRPAIREPVKPRVPLRLLLRVASVAGGIQFGWALQLSLLTPYVQELGIPHAWASIIWLCGPLSGLLVQPLVGHMSDKCTSRFGRRRPFIVAGAASIMIAVLIIGFSADIGWLLGDRGEIKVRAIAAFVVGFWLLDVANNMTQGPCRALLADLTQKDHRRTRVANAYFSLFMAIGNILGFATGSYSGWYKIFPFTLNTACTINCANLKAAFILDIIFIATTTCISISAANEQPLDPSRGSSHTGEEIDESSHGQEEAFLWELFGIFKYFPGVVWVILLVTALTWIGWFPFLLFDTDWFGREIYGGEPNDGKNYSAGVRMGSLGLMLNSVLLGLTSLFMEKLCRKWGAGFTWGVSNVVMSLCFIAMLIITAVRSNIDIGQGLPPDGIVIAALVVFSILGIPLAITYSVPYALVSSRIEALGLGQGLSMGVLNLAIVFPQIVVSLGSGPWDELFGGGNSPAFVVAALSAFAGGLIAILAIPRTRVERPKIFA*
Gene model matches
Gene model matches
|
SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
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GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
AF176950 Lycopersicon esculentum sucrose transporter (SUT4) mRNA, complete cds.
| Other genome matches | None |
Literature annotations [2]
Literature annotations [2]
| [Associate publication] [Matching publications] |
A new subfamily of sucrose transporters, SUT4, with low affinity/high capacity localized in enucleate sieve elements of plants.
The Plant cell (2000)
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A new subfamily of sucrose transporters from Arabidopsis (AtSUT4), tomato (LeSUT4), and potato (StSUT4) was isolated, demonstrating only 47% similarity to the previously characterized SUT1. SUT4 from two plant species conferred sucrose uptake activity when expressed in yeast. The K(m) for sucrose uptake by AtSUT4 of 11.6 +/- 0.6 mM was approximately 10-fold greater than for all other plant sucrose transporters characterized to date. An ortholog from potato had similar kinetic properties. Thus, SUT4 corresponds to the low-affinity/high-capacity saturable component of sucrose uptake found in leaves. In contrast to SUT1, SUT4 is expressed predominantly in minor veins in source leaves, where high-capacity sucrose transport is needed for phloem loading. In potato and tomato, SUT4 was immunolocalized specifically to enucleate sieve elements, indicating that like SUT1, macromolecular trafficking is required to transport the mRNA or the protein from companion cells through plasmodesmata into the sieve elements.
Weise, A. Barker, L. Kühn, C. Lalonde, S. Buschmann, H. Frommer, WB. Ward, JM.
The Plant cell.
2000.
12(8).
1345-55.
The sugar transporter inventory of tomato: genome-wide identification and expression analysis.
Plant & cell physiology (2014)
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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.
Ontology annotations (11)
Ontology annotations (11)
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