This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Tomato locus invertase 7
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
New Edit Delete
|
Locus | Solyc09g010090 |
Locus name | invertase 7 |
Symbol | lin7 |
Gene activity | invertase |
Description | Invertase 7, an extracellular invertase, catalyses cleavage of sucrose in apoplast and its supply from source to sink organs in tomato. In tomato, Lin7 is specifically expressed in flower and flowerbud. Its expression is highest in stamen, much lower in gynoecia and very minute in petal. |
Chromosome | 9 |
Arm |
|
|
![]() ![]() |
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] |
|
![]() ![]() | View invertase 7 relationships in the stand-alone network browser |
[loading...] | [Legend] [Levels] |
![]() ![]() |
![]() ![]() |
![]() ![]() |
![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc09g010090.2 SL2.50ch09:3480545..3484159
CATTCCCATGTTTCTTTTCTCCTTATCCAAAAAAAAAAAAATTAAAAAAAATTATTTAGATTAAATATCACTATCTGTCA
AAGCCCAATCATTAAAATAAAATAAAAATTATGGATTATTCATCTAATAAAAGTTCTCGTTGGGCTTTGCCAGTTATCTT
AGTTTGCTTTTTTGTAATTTTATTATCCAATAATGTTGTTTTTGCTTCTCATAAAGTTTTTATTCACTTGCAATCTCAAA
ATGCTGTAAATGTTCATACTGTTCATCGAACTGGTTATCATTTTCAGCCCGAAAAACATTGGATCAATGGTATGTTTATT
CCTTTTTTTCGTCTTTTTTTTATATATATATATAATAAAACGAACATGTTGTGTTTAGTCTAGATTTAATACTAGTGATT
TTTTTGACGCTAACAAATAATCGAGTACTCACCATTTGTCAATAGATACATTGACATGTATTAGTATGATTTTCGTCTTT
TTTCGTTGTTTCTAATATTATTTAATCTTCACTAATTTTTTTTATTTTTCTTTGAATGATGTCTCTTGGTCAAAACATAC
AATAGATCCCAATGGTAAGTTAACTATATTTTTGTATATTTTTTAAATTTATTTTATTCTTATTATATAATATAGGGAAA
AAAGGATAAATATATCCCCGAACTATTATAAATAGTATGCACCAGTATCCTCTGTTATACTTTAGAGACATTTTTGCCGT
CAAAAAACTAGAACACATATATCCTTTATTTATCCCGATATCGAATCGATTGTACCACGAGTGAAGGGTATAGCTCTAGT
TTTTGGACGGTAGGGCACCTAAAGTATGACGAAGAATATCTGCAAACCATTTACAATAGTTTTGGATATATTTGTGAACT
AATGATGTTTGAATTCTTTTTTCATAGCACCAATGTATTTCAATGGAGTGTATCATCTATTCTACCAGTACAACCCAAAT
GGTTCAGTATGGGGTAACATTGTTTGGGCTCATTCCGTTTCAAAAGACTTGATCAATTGGATCAATTTAGAACCTGCAAT
TTACCCATCAAAGCCATTTGATCAATTCGGTACCTGGTCTGGATCAGCAACCATCCTACCTGGTAACAAGCCAGTCATCT
TGTACACCGGAATCATAGATGCCAACCAAACCCAAGTCCAAAACTACGCAATCCCAGCTAACTTATCCGATCCATATCTC
CGCGAATGGATCAAGCCAGACAACAACCCATTAATTATAGCCGATGAAAGTATCAACAAGACCAAGTTTCGTGACCCAAC
AACAGCATGGATGGGTAAAGACGGGCATTGGAGAATCGTCATGGGAAGTTTGAGGAAACACAGCAGGGGCTTAGCTATAA
TGTATAGGAGCAAAGACTTTATGAAATGGGTCAAGGCTAAACACCCACTTCACTCAACTAACGGCACTGGAAACTGGGAA
TGCCCTGATTTTTACCCAGTTTCATCGAAAGGTACTGATGGGTTGGATCAATACGGTGAGGAACACAAGTACGTGCTGAA
GAACAGTATGGATCTTACTCGATTTGAGTATTATACACTTGGAAAATACGATACGAAAAAAGATAGGTACGTTCCAGATC
CAGATTCTGTCGATAGTTTGAAGGGATTGAGACTCGATTACGGTAACTTCTACGCATCGAAGTCATTCTACGATCCAAGC
AAAAATCGAAGGGTTATCTGGGGTTGGTCTAATGAATCAGATATATTCCCAGAGGATGATAATGCGAAGGGATGGGCTGG
GATTCAATTGATTCCTCGTAAAGTATGGCTTGATCCAAGTGGTAAGCAGTTGGTTCAATGGCCTGTGGAGGAACTAGAAA
CCCTAAGAACTCAAAAGGTTCAATTGAGCAACAAGAAGATGAACAATGGGGAGAAGATTGAAGTTACAGGAATCACACCA
GCACAGGTATATATATAGACTTTTTTATTTTTAATTTATTATTATTATTATTATTACTCTCTCCGTTTTCAAAAAAAAAA
TATCCCTATTTTCTTTTATAGTCTCTTTAATTTAAAAAGAATGATCTATTTTCTTTTTGGATAACCTTTTAACTTTGATT
TTTCACGTGAAATGTTTAAAATCACGAGATTAAAGAGCATTTTGGTTACATTTGACATAACTGAAATTTAGAAACACAAG
ATTAAAGGACATTTTGGTACATTTGACATAACTTGAATTTAAAACCACATAATTAAAGGGCATTTTGGTACATTTGAATT
AGAACATTTTGATACATTTGACATAACATGAATTTAGAACCACAAGATTAAAAAATCTTCTTTCTTTTTTCTTAAATTTC
GTTCCAAGTCAAATTAGGTCATTCTTTTTTAATTACTCCCTCCGTCTAATTTTATGTAACAACATTTGACCGGACGGAGA
GTTTTAAGAAATAAATAAAACACTTTGAGATGTGTACCAAATTGCTCTCCAAAAATACTCACTTTTCTCTCTCCTCATAA
ATGTATTTGAGTACTATTTTTAAAATTAAGCGAGTCCAACAAGAATAAAATAGAAACTGTACTTTTAAATATTTACCATA
TAAAAAAATGTGATTTTTTTTTTTTGAAAACTGATCAAAAAGAAAATGATATCACTCGACGATGAAAGTGTTTAATAATG
AAAAAACATGACAGGCTGATGTTGAAGTGACATTCTCATTTGCAAGTTTGGATAAGGCAGAGTCATTTGATCCTAAATGG
AATGATATGTATGCACAAGATGTTTGTGGACTCAAGGGTGCAGATGTTCAAGGTGGGCTTGGGCCATTTGGTCTTGCTAC
ATTAGCTACTGAAAACTTGGAAGAAAACACACCGGTTTTCTTCCGAGTTTTCAAAGCACAGCAAAACTACAAGGTTCTCT
TGTGTTCTGACGCTAAAAGGTACTACTTATTGAATTTTTAACTTGTTGGTAACGTTTTCGACGGTATAATATCGAGAAGT
TGAGAAATTGACAAATCTTTTGTTTTATGTCTGATAGGTCAACTCTTAAGTTCAATGAAACAATGTACAAAGCTTCATTT
GCTGGATTTGTTGATGTTGATTTGGCTGACAAGAAATTGTCACTCAGAAGCTTGGTAACTTCTCTTTCTATCGTTAATCA
AAAATCTAAACGAACATTTGAATCTAAACTATTGAAATTCTTTTTGTAGATTGATAATTCAGTTATAGAAACTTTTGGTG
CTGGTGGAAAGACATGTATAACATCGAGGGTTTATCCAACATTGGCAATTAACGACGAGGCACATTTATTCGCGTTTAAC
AACGGAACGGAGCCAATCACAATTGAGAGTTTGGATGCATGGAGTATGGGCAAAGCTAAGATACAATATTGAAGAAAAAA
AAAAGAATAAGGAGAAAGGAACTATGGTAAAAGGGGGAAATATGAGATTTTGATGGACATATAAGAGTTTGTTATTTTGA
TATTTCAACTCTATTTTTTTTGTTTATCAAATTAGATATCCCTCGAGTCAAAAAAAATGTATATAGATTTATCCTCTATT
TTCAATTTATGACAATAATGCTATGTTTTTGCTTTCAAAATTGTTGTTTTCGTTATATTATTTGTTCAATCGTGTATTTA
TTTTATTGATATATC
CATTCCCATGTTTCTTTTCTCCTTATCCAAAAAAAAAAAAATTAAAAAAAATTATTTAGATTAAATATCACTATCTGTCA
AAGCCCAATCATTAAAATAAAATAAAAATTATGGATTATTCATCTAATAAAAGTTCTCGTTGGGCTTTGCCAGTTATCTT
AGTTTGCTTTTTTGTAATTTTATTATCCAATAATGTTGTTTTTGCTTCTCATAAAGTTTTTATTCACTTGCAATCTCAAA
ATGCTGTAAATGTTCATACTGTTCATCGAACTGGTTATCATTTTCAGCCCGAAAAACATTGGATCAATGGTATGTTTATT
CCTTTTTTTCGTCTTTTTTTTATATATATATATAATAAAACGAACATGTTGTGTTTAGTCTAGATTTAATACTAGTGATT
TTTTTGACGCTAACAAATAATCGAGTACTCACCATTTGTCAATAGATACATTGACATGTATTAGTATGATTTTCGTCTTT
TTTCGTTGTTTCTAATATTATTTAATCTTCACTAATTTTTTTTATTTTTCTTTGAATGATGTCTCTTGGTCAAAACATAC
AATAGATCCCAATGGTAAGTTAACTATATTTTTGTATATTTTTTAAATTTATTTTATTCTTATTATATAATATAGGGAAA
AAAGGATAAATATATCCCCGAACTATTATAAATAGTATGCACCAGTATCCTCTGTTATACTTTAGAGACATTTTTGCCGT
CAAAAAACTAGAACACATATATCCTTTATTTATCCCGATATCGAATCGATTGTACCACGAGTGAAGGGTATAGCTCTAGT
TTTTGGACGGTAGGGCACCTAAAGTATGACGAAGAATATCTGCAAACCATTTACAATAGTTTTGGATATATTTGTGAACT
AATGATGTTTGAATTCTTTTTTCATAGCACCAATGTATTTCAATGGAGTGTATCATCTATTCTACCAGTACAACCCAAAT
GGTTCAGTATGGGGTAACATTGTTTGGGCTCATTCCGTTTCAAAAGACTTGATCAATTGGATCAATTTAGAACCTGCAAT
TTACCCATCAAAGCCATTTGATCAATTCGGTACCTGGTCTGGATCAGCAACCATCCTACCTGGTAACAAGCCAGTCATCT
TGTACACCGGAATCATAGATGCCAACCAAACCCAAGTCCAAAACTACGCAATCCCAGCTAACTTATCCGATCCATATCTC
CGCGAATGGATCAAGCCAGACAACAACCCATTAATTATAGCCGATGAAAGTATCAACAAGACCAAGTTTCGTGACCCAAC
AACAGCATGGATGGGTAAAGACGGGCATTGGAGAATCGTCATGGGAAGTTTGAGGAAACACAGCAGGGGCTTAGCTATAA
TGTATAGGAGCAAAGACTTTATGAAATGGGTCAAGGCTAAACACCCACTTCACTCAACTAACGGCACTGGAAACTGGGAA
TGCCCTGATTTTTACCCAGTTTCATCGAAAGGTACTGATGGGTTGGATCAATACGGTGAGGAACACAAGTACGTGCTGAA
GAACAGTATGGATCTTACTCGATTTGAGTATTATACACTTGGAAAATACGATACGAAAAAAGATAGGTACGTTCCAGATC
CAGATTCTGTCGATAGTTTGAAGGGATTGAGACTCGATTACGGTAACTTCTACGCATCGAAGTCATTCTACGATCCAAGC
AAAAATCGAAGGGTTATCTGGGGTTGGTCTAATGAATCAGATATATTCCCAGAGGATGATAATGCGAAGGGATGGGCTGG
GATTCAATTGATTCCTCGTAAAGTATGGCTTGATCCAAGTGGTAAGCAGTTGGTTCAATGGCCTGTGGAGGAACTAGAAA
CCCTAAGAACTCAAAAGGTTCAATTGAGCAACAAGAAGATGAACAATGGGGAGAAGATTGAAGTTACAGGAATCACACCA
GCACAGGTATATATATAGACTTTTTTATTTTTAATTTATTATTATTATTATTATTACTCTCTCCGTTTTCAAAAAAAAAA
TATCCCTATTTTCTTTTATAGTCTCTTTAATTTAAAAAGAATGATCTATTTTCTTTTTGGATAACCTTTTAACTTTGATT
TTTCACGTGAAATGTTTAAAATCACGAGATTAAAGAGCATTTTGGTTACATTTGACATAACTGAAATTTAGAAACACAAG
ATTAAAGGACATTTTGGTACATTTGACATAACTTGAATTTAAAACCACATAATTAAAGGGCATTTTGGTACATTTGAATT
AGAACATTTTGATACATTTGACATAACATGAATTTAGAACCACAAGATTAAAAAATCTTCTTTCTTTTTTCTTAAATTTC
GTTCCAAGTCAAATTAGGTCATTCTTTTTTAATTACTCCCTCCGTCTAATTTTATGTAACAACATTTGACCGGACGGAGA
GTTTTAAGAAATAAATAAAACACTTTGAGATGTGTACCAAATTGCTCTCCAAAAATACTCACTTTTCTCTCTCCTCATAA
ATGTATTTGAGTACTATTTTTAAAATTAAGCGAGTCCAACAAGAATAAAATAGAAACTGTACTTTTAAATATTTACCATA
TAAAAAAATGTGATTTTTTTTTTTTGAAAACTGATCAAAAAGAAAATGATATCACTCGACGATGAAAGTGTTTAATAATG
AAAAAACATGACAGGCTGATGTTGAAGTGACATTCTCATTTGCAAGTTTGGATAAGGCAGAGTCATTTGATCCTAAATGG
AATGATATGTATGCACAAGATGTTTGTGGACTCAAGGGTGCAGATGTTCAAGGTGGGCTTGGGCCATTTGGTCTTGCTAC
ATTAGCTACTGAAAACTTGGAAGAAAACACACCGGTTTTCTTCCGAGTTTTCAAAGCACAGCAAAACTACAAGGTTCTCT
TGTGTTCTGACGCTAAAAGGTACTACTTATTGAATTTTTAACTTGTTGGTAACGTTTTCGACGGTATAATATCGAGAAGT
TGAGAAATTGACAAATCTTTTGTTTTATGTCTGATAGGTCAACTCTTAAGTTCAATGAAACAATGTACAAAGCTTCATTT
GCTGGATTTGTTGATGTTGATTTGGCTGACAAGAAATTGTCACTCAGAAGCTTGGTAACTTCTCTTTCTATCGTTAATCA
AAAATCTAAACGAACATTTGAATCTAAACTATTGAAATTCTTTTTGTAGATTGATAATTCAGTTATAGAAACTTTTGGTG
CTGGTGGAAAGACATGTATAACATCGAGGGTTTATCCAACATTGGCAATTAACGACGAGGCACATTTATTCGCGTTTAAC
AACGGAACGGAGCCAATCACAATTGAGAGTTTGGATGCATGGAGTATGGGCAAAGCTAAGATACAATATTGAAGAAAAAA
AAAAGAATAAGGAGAAAGGAACTATGGTAAAAGGGGGAAATATGAGATTTTGATGGACATATAAGAGTTTGTTATTTTGA
TATTTCAACTCTATTTTTTTTGTTTATCAAATTAGATATCCCTCGAGTCAAAAAAAATGTATATAGATTTATCCTCTATT
TTCAATTTATGACAATAATGCTATGTTTTTGCTTTCAAAATTGTTGTTTTCGTTATATTATTTGTTCAATCGTGTATTTA
TTTTATTGATATATC
Download sequence region |
Get flanking sequences on SL2.50ch09
|
![]() ![]() |
![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc09g010090.2.1 Beta-fructofuranosidase insoluble isoenzyme 2 (AHRD V1 **-- B6U1H5_MAIZE); contains Interpro domain(s) IPR018053 Glycoside hydrolase, family 32, active site IPR013148 Glycosyl hydrolases family 32, N-terminal IPR001362 Glycoside hydrolase, family 32
CATTCCCATGTTTCTTTTCTCCTTATCCAAAAAAAAAAAAATTAAAAAAAATTATTTAGATTAAATATCACTATCTGTCA
AAGCCCAATCATTAAAATAAAATAAAAATTATGGATTATTCATCTAATAAAAGTTCTCGTTGGGCTTTGCCAGTTATCTT
AGTTTGCTTTTTTGTAATTTTATTATCCAATAATGTTGTTTTTGCTTCTCATAAAGTTTTTATTCACTTGCAATCTCAAA
ATGCTGTAAATGTTCATACTGTTCATCGAACTGGTTATCATTTTCAGCCCGAAAAACATTGGATCAATGATCCCAATGCA
CCAATGTATTTCAATGGAGTGTATCATCTATTCTACCAGTACAACCCAAATGGTTCAGTATGGGGTAACATTGTTTGGGC
TCATTCCGTTTCAAAAGACTTGATCAATTGGATCAATTTAGAACCTGCAATTTACCCATCAAAGCCATTTGATCAATTCG
GTACCTGGTCTGGATCAGCAACCATCCTACCTGGTAACAAGCCAGTCATCTTGTACACCGGAATCATAGATGCCAACCAA
ACCCAAGTCCAAAACTACGCAATCCCAGCTAACTTATCCGATCCATATCTCCGCGAATGGATCAAGCCAGACAACAACCC
ATTAATTATAGCCGATGAAAGTATCAACAAGACCAAGTTTCGTGACCCAACAACAGCATGGATGGGTAAAGACGGGCATT
GGAGAATCGTCATGGGAAGTTTGAGGAAACACAGCAGGGGCTTAGCTATAATGTATAGGAGCAAAGACTTTATGAAATGG
GTCAAGGCTAAACACCCACTTCACTCAACTAACGGCACTGGAAACTGGGAATGCCCTGATTTTTACCCAGTTTCATCGAA
AGGTACTGATGGGTTGGATCAATACGGTGAGGAACACAAGTACGTGCTGAAGAACAGTATGGATCTTACTCGATTTGAGT
ATTATACACTTGGAAAATACGATACGAAAAAAGATAGGTACGTTCCAGATCCAGATTCTGTCGATAGTTTGAAGGGATTG
AGACTCGATTACGGTAACTTCTACGCATCGAAGTCATTCTACGATCCAAGCAAAAATCGAAGGGTTATCTGGGGTTGGTC
TAATGAATCAGATATATTCCCAGAGGATGATAATGCGAAGGGATGGGCTGGGATTCAATTGATTCCTCGTAAAGTATGGC
TTGATCCAAGTGGTAAGCAGTTGGTTCAATGGCCTGTGGAGGAACTAGAAACCCTAAGAACTCAAAAGGTTCAATTGAGC
AACAAGAAGATGAACAATGGGGAGAAGATTGAAGTTACAGGAATCACACCAGCACAGGCTGATGTTGAAGTGACATTCTC
ATTTGCAAGTTTGGATAAGGCAGAGTCATTTGATCCTAAATGGAATGATATGTATGCACAAGATGTTTGTGGACTCAAGG
GTGCAGATGTTCAAGGTGGGCTTGGGCCATTTGGTCTTGCTACATTAGCTACTGAAAACTTGGAAGAAAACACACCGGTT
TTCTTCCGAGTTTTCAAAGCACAGCAAAACTACAAGGTTCTCTTGTGTTCTGACGCTAAAAGGTCAACTCTTAAGTTCAA
TGAAACAATGTACAAAGCTTCATTTGCTGGATTTGTTGATGTTGATTTGGCTGACAAGAAATTGTCACTCAGAAGCTTGA
TTGATAATTCAGTTATAGAAACTTTTGGTGCTGGTGGAAAGACATGTATAACATCGAGGGTTTATCCAACATTGGCAATT
AACGACGAGGCACATTTATTCGCGTTTAACAACGGAACGGAGCCAATCACAATTGAGAGTTTGGATGCATGGAGTATGGG
CAAAGCTAAGATACAATATTGAAGAAAAAAAAAAGAATAAGGAGAAAGGAACTATGGTAAAAGGGGGAAATATGAGATTT
TGATGGACATATAAGAGTTTGTTATTTTGATATTTCAACTCTATTTTTTTTGTTTATCAAATTAGATATCCCTCGAGTCA
AAAAAAATGTATATAGATTTATCCTCTATTTTCAATTTATGACAATAATGCTATGTTTTTGCTTTCAAAATTGTTGTTTT
CGTTATATTATTTGTTCAATCGTGTATTTATTTTATTGATATATC
CATTCCCATGTTTCTTTTCTCCTTATCCAAAAAAAAAAAAATTAAAAAAAATTATTTAGATTAAATATCACTATCTGTCA
AAGCCCAATCATTAAAATAAAATAAAAATTATGGATTATTCATCTAATAAAAGTTCTCGTTGGGCTTTGCCAGTTATCTT
AGTTTGCTTTTTTGTAATTTTATTATCCAATAATGTTGTTTTTGCTTCTCATAAAGTTTTTATTCACTTGCAATCTCAAA
ATGCTGTAAATGTTCATACTGTTCATCGAACTGGTTATCATTTTCAGCCCGAAAAACATTGGATCAATGATCCCAATGCA
CCAATGTATTTCAATGGAGTGTATCATCTATTCTACCAGTACAACCCAAATGGTTCAGTATGGGGTAACATTGTTTGGGC
TCATTCCGTTTCAAAAGACTTGATCAATTGGATCAATTTAGAACCTGCAATTTACCCATCAAAGCCATTTGATCAATTCG
GTACCTGGTCTGGATCAGCAACCATCCTACCTGGTAACAAGCCAGTCATCTTGTACACCGGAATCATAGATGCCAACCAA
ACCCAAGTCCAAAACTACGCAATCCCAGCTAACTTATCCGATCCATATCTCCGCGAATGGATCAAGCCAGACAACAACCC
ATTAATTATAGCCGATGAAAGTATCAACAAGACCAAGTTTCGTGACCCAACAACAGCATGGATGGGTAAAGACGGGCATT
GGAGAATCGTCATGGGAAGTTTGAGGAAACACAGCAGGGGCTTAGCTATAATGTATAGGAGCAAAGACTTTATGAAATGG
GTCAAGGCTAAACACCCACTTCACTCAACTAACGGCACTGGAAACTGGGAATGCCCTGATTTTTACCCAGTTTCATCGAA
AGGTACTGATGGGTTGGATCAATACGGTGAGGAACACAAGTACGTGCTGAAGAACAGTATGGATCTTACTCGATTTGAGT
ATTATACACTTGGAAAATACGATACGAAAAAAGATAGGTACGTTCCAGATCCAGATTCTGTCGATAGTTTGAAGGGATTG
AGACTCGATTACGGTAACTTCTACGCATCGAAGTCATTCTACGATCCAAGCAAAAATCGAAGGGTTATCTGGGGTTGGTC
TAATGAATCAGATATATTCCCAGAGGATGATAATGCGAAGGGATGGGCTGGGATTCAATTGATTCCTCGTAAAGTATGGC
TTGATCCAAGTGGTAAGCAGTTGGTTCAATGGCCTGTGGAGGAACTAGAAACCCTAAGAACTCAAAAGGTTCAATTGAGC
AACAAGAAGATGAACAATGGGGAGAAGATTGAAGTTACAGGAATCACACCAGCACAGGCTGATGTTGAAGTGACATTCTC
ATTTGCAAGTTTGGATAAGGCAGAGTCATTTGATCCTAAATGGAATGATATGTATGCACAAGATGTTTGTGGACTCAAGG
GTGCAGATGTTCAAGGTGGGCTTGGGCCATTTGGTCTTGCTACATTAGCTACTGAAAACTTGGAAGAAAACACACCGGTT
TTCTTCCGAGTTTTCAAAGCACAGCAAAACTACAAGGTTCTCTTGTGTTCTGACGCTAAAAGGTCAACTCTTAAGTTCAA
TGAAACAATGTACAAAGCTTCATTTGCTGGATTTGTTGATGTTGATTTGGCTGACAAGAAATTGTCACTCAGAAGCTTGA
TTGATAATTCAGTTATAGAAACTTTTGGTGCTGGTGGAAAGACATGTATAACATCGAGGGTTTATCCAACATTGGCAATT
AACGACGAGGCACATTTATTCGCGTTTAACAACGGAACGGAGCCAATCACAATTGAGAGTTTGGATGCATGGAGTATGGG
CAAAGCTAAGATACAATATTGAAGAAAAAAAAAAGAATAAGGAGAAAGGAACTATGGTAAAAGGGGGAAATATGAGATTT
TGATGGACATATAAGAGTTTGTTATTTTGATATTTCAACTCTATTTTTTTTGTTTATCAAATTAGATATCCCTCGAGTCA
AAAAAAATGTATATAGATTTATCCTCTATTTTCAATTTATGACAATAATGCTATGTTTTTGCTTTCAAAATTGTTGTTTT
CGTTATATTATTTGTTCAATCGTGTATTTATTTTATTGATATATC
![]() ![]() | translated polypeptide sequence |
>Solyc09g010090.2.1 Beta-fructofuranosidase insoluble isoenzyme 2 (AHRD V1 **-- B6U1H5_MAIZE); contains Interpro domain(s) IPR018053 Glycoside hydrolase, family 32, active site IPR013148 Glycosyl hydrolases family 32, N-terminal IPR001362 Glycoside hydrolase, family 32
MDYSSNKSSRWALPVILVCFFVILLSNNVVFASHKVFIHLQSQNAVNVHTVHRTGYHFQPEKHWINDPNAPMYFNGVYHL
FYQYNPNGSVWGNIVWAHSVSKDLINWINLEPAIYPSKPFDQFGTWSGSATILPGNKPVILYTGIIDANQTQVQNYAIPA
NLSDPYLREWIKPDNNPLIIADESINKTKFRDPTTAWMGKDGHWRIVMGSLRKHSRGLAIMYRSKDFMKWVKAKHPLHST
NGTGNWECPDFYPVSSKGTDGLDQYGEEHKYVLKNSMDLTRFEYYTLGKYDTKKDRYVPDPDSVDSLKGLRLDYGNFYAS
KSFYDPSKNRRVIWGWSNESDIFPEDDNAKGWAGIQLIPRKVWLDPSGKQLVQWPVEELETLRTQKVQLSNKKMNNGEKI
EVTGITPAQADVEVTFSFASLDKAESFDPKWNDMYAQDVCGLKGADVQGGLGPFGLATLATENLEENTPVFFRVFKAQQN
YKVLLCSDAKRSTLKFNETMYKASFAGFVDVDLADKKLSLRSLIDNSVIETFGAGGKTCITSRVYPTLAINDEAHLFAFN
NGTEPITIESLDAWSMGKAKIQY*
MDYSSNKSSRWALPVILVCFFVILLSNNVVFASHKVFIHLQSQNAVNVHTVHRTGYHFQPEKHWINDPNAPMYFNGVYHL
FYQYNPNGSVWGNIVWAHSVSKDLINWINLEPAIYPSKPFDQFGTWSGSATILPGNKPVILYTGIIDANQTQVQNYAIPA
NLSDPYLREWIKPDNNPLIIADESINKTKFRDPTTAWMGKDGHWRIVMGSLRKHSRGLAIMYRSKDFMKWVKAKHPLHST
NGTGNWECPDFYPVSSKGTDGLDQYGEEHKYVLKNSMDLTRFEYYTLGKYDTKKDRYVPDPDSVDSLKGLRLDYGNFYAS
KSFYDPSKNRRVIWGWSNESDIFPEDDNAKGWAGIQLIPRKVWLDPSGKQLVQWPVEELETLRTQKVQLSNKKMNNGEKI
EVTGITPAQADVEVTFSFASLDKAESFDPKWNDMYAQDVCGLKGADVQGGLGPFGLATLATENLEENTPVFFRVFKAQQN
YKVLLCSDAKRSTLKFNETMYKASFAGFVDVDLADKKLSLRSLIDNSVIETFGAGGKTCITSRVYPTLAINDEAHLFAFN
NGTEPITIESLDAWSMGKAKIQY*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
![]() ![]() | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Regulation and tissue-specific distribution of mRNAs for three extracellular invertase isoenzymes of tomato suggests an important function in establishing and maintaining sink metabolism.
Plant physiology (1997)
Show / hide abstract
Show / hide abstract
The aim of the present study was to gain insight into the contribution of extracellular invertases for sink metabolism in tomato (Lycopersicon esculentum L.). The present study shows that extracellular invertase isoenzymes are encoded by a gene family comprising four members: Lin5, Lin6, Lin7, and Lin8. The regulation of mRNA levels by internal and external signals and the distribution in sink and source tissues has been determined and compared with mRNA levels of the intracellular sucrose (Suc)-cleaving enzymes Suc synthase and vacuolar invertase. The specific regulation of Lin5, Lin6, and Lin7 suggests an important function of apoplastic cleavage of Suc by cell wall-bound invertase in establishing and maintaining sink metabolism. Lin6 is expressed under conditions that require a high carbohydrate supply. The corresponding mRNA shows a sink tissue-specific distribution and the concentration is elevated by stress-related stimuli, by the growth-promoting phytohormone zeatin, and in response to the induction of heterotrophic metabolism. The expression of Lin5 and Lin7 in gynoecia and stamens, respectively, suggests an important function in supplying carbohydrates to these flower organs, whereas the Lin7 mRNA was found to be present exclusively in this specific sink organ.
Godt, DE. Roitsch, T.
Plant physiology.
1997.
115(1).
273-82.
Functional divergence of a syntenic invertase gene family in tomato, potato, and Arabidopsis.
Plant physiology (2003)
Show / hide abstract
Show / hide abstract
Comparative analysis of complex developmental pathways depends on our ability to resolve the function of members of gene families across taxonomic groups. LIN5, which belongs to a small gene family of apoplastic invertases in tomato (Lycopersicon esculentum), is a quantitative trait locus that modifies fruit sugar composition. We have compared the genomic organization and expression of this gene family in the two distantly related species: tomato and Arabidopsis. Invertase family members reside on segmental duplications in the near-colinear genomes of tomato and potato (Solanum tuberosum). These chromosomal segments are syntenically duplicated in the model plant Arabidopsis. On the basis of phylogenetic analysis of genes in the microsyntenic region, we conclude that these segmental duplications arose independently after the separation of the tomato/potato clade from Arabidopsis. Rapid regulatory divergence is characteristic of the invertase family. Interestingly, although the processes of gene duplication and specialization of expression occurred separately in the two species, synteny-based orthologs from both clades acquired similar organ-specific expression. This similar expression pattern of the genes is evidence of comparable evolutionary constraints (parallel evolution) rather than of functional orthology. The observation that functional orthology cannot be identified through analysis of expression similarity highlights the caution that needs to be exercised in extrapolating developmental networks from a model organism.
Fridman, E. Zamir, D.
Plant physiology.
2003.
131(2).
603-9.
Cell wall-bound invertase limits sucrose export and is involved in symptom development and inhibition of photosynthesis during compatible interaction between tomato and Xanthomonas campestris pv vesicatoria.
Plant physiology (2009)
Show / hide abstract
Show / hide abstract
Cell wall-bound invertase (cw-Inv) plays an important role in carbohydrate partitioning and regulation of sink-source interaction. There is increasing evidence that pathogens interfere with sink-source interaction, and induction of cw-Inv activity has frequently been shown in response to pathogen infection. To investigate the role of cw-Inv, transgenic tomato (Solanum lycopersicum) plants silenced for the major leaf cw-Inv isoforms were generated and analyzed during normal growth and during the compatible interaction with Xanthomonas campestris pv vesicatoria. Under normal growth conditions, activities of sucrolytic enzymes as well as photosynthesis and respiration were unaltered in the transgenic plants compared with wild-type plants. However, starch levels of source leaves were strongly reduced, which was most likely caused by an enhanced sucrose exudation rate. Following X. campestris pv vesicatoria infection, cw-Inv-silenced plants showed an increased sucrose to hexose ratio in the apoplast of leaves. Symptom development, inhibition of photosynthesis, and expression of photosynthetic genes were clearly delayed in transgenic plants compared with wild-type plants. In addition, induction of senescence-associated and pathogenesis-related genes observed in infected wild-type plants was abolished in cw-Inv-silenced tomato lines. These changes were not associated with decreased bacterial growth. In conclusion, cw-Inv restricts carbon export from source leaves and regulates the sucrose to hexose ratio in the apoplast. Furthermore, an increased apoplastic hexose to sucrose ratio can be linked to inhibition of photosynthesis and induction of pathogenesis-related gene expression but does not significantly influence bacterial growth. Indirectly, bacteria may benefit from low invertase activity, since the longevity of host cells is raised and basal defense might be dampened.
Kocal, N. Sonnewald, U. Sonnewald, S.
Plant physiology.
2009.
148(3).
1523-36.
![]() ![]() | [Add ontology annotations] |
biological_process
|
cellular_component
|
molecular_function
|
plant_anatomy
|
![]() ![]() |
- Genomic details
Please wait, checking for comments about locus 764
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
