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Potato locus ADP-glucose pyrophosphorylase small subunit
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Registry name: | None | [Associate registry name] |
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Image | Description | Type |
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![]() ![]() | [Associate accession] |
Accession name:
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Alleles (0) | None | [Add new Allele] |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>PGSC0003DMG400031084 PGSC_DMv3_219_ch07:48118522..48124453
CTGTAATTCAAGTGCAATCACACTCTACCACACACTCTCTAGTAGAGAGATCAGTTGATAACAAGCTTTGTTAACAATGGCGGCTTCCATTGGAGCCTTAAAATCTTCACCTTCTTCTAACAATTGCATCAATGAGAGAAGAAATGATTCTACACGTGCAGTATCCAGCAGAAATCTCTCATTTTCGTCTTCTCATCTCGCCGGAGACAAGTTGATGCCTATATCGTCCTTACGTTCCCAAGGAGTCCGATTCAATGTGAGAAGAAGTTCATTGATTGTGTCGCCTAAGGCTGTTTCTGATTCGCAGAATTCACAGACATGTCTAGACCCAGATGCTAGCCGGGTAAGCAAATTTCGCTTAATTTTATTACAAAATTGAAAATTTGTATTATGAATTAGTATATAAATCATTAGGTATGGTGTTAGTGTGAAAAGTGTAGATTTTTTTGGTAATTTTTTTCTCCGATTGATTGCTTAATTGAGGTGATTATCGGATTGTGGCGGTTTGGAGAAGTAGATCCTCTTGTAAAAAAAATGGAGTGGATGGATTGCTTCAGTATGAAGTATTTCGACTGGGTAGTTCTAGATCCGAGATCCCCTCAACTATTTCCCCCTCTTTCCGATACATAATCACGTGCCTATTTAAAAATGTGCTAGGATTACTTCATTTTGTTTAATATTTCACAAAATTCTTTGCTAACATTCTTCAAAGATTCATTATGCACATGATAGTCATTATTGATGATATTCTGACTTGGAAAAGTTGTTAAAACTAGTATTATATTCTGGAAAATGTAGTCATTGGATCTGACTATCTGAGCATGAGCAAAACGTTGCCGCACCTGTGGCGGATCCTCCAAAAATGCGCTACTTTTGGAGTATCTGACACACACCCAAAGACAACTTTAAAGGGTCCAAATAACGTTTTCAGGCATAGTTAGTAGTGTGTGTCTCACCTTCTAATCCTTAGACTGAACACTTTTAATTTGTTATTAGTAATAATGGGCAGATTGCCATTTCAATATGTCAACTTTTTTATATTTTCATAAAAAAGTATATCAATCTAGTTATATTGTGGGTGAATAGTATTAAGTTAATTGTTTTCACAAAGCCTTATCTGGTAATAGCTTGACAATGATTCACGTGTTCTTAGAAGTAAAGTATTATGGTAATTTGTTTTTTTGATACGGAGTCTTTAAGAAGCTGAATTTCTATAAGTAAATATGGTGATCTGAACTTGAATTGTTAATGCAATTTGGTGTAGAGTGTTTTGGGAATTATTCTTGGAGGTGGAGCTGGGACCCGACTTTATCCTCTAACTAAAAAAAGAGCAAAGCCAGCTGTTCCACTTGGAGCAAATTATCGTCTGATTGACATTCCTGTAAGCAACTGCTTGAACAGTAACATATCCAAGATCTATGTTCTCACACAATTCAACTCTGCCTCTCTGAATCGCCACCTTTCACGAGCATATGCTAGCAACATGGGAGGATACAAAAACGAGGGCTTTGTGGAAGTTCTTGCTGCTCAACAAAGTCCAGAGAACCCCGATTGGTTCCAGGTAACTCATCATTCCTGCTGCATAGAATTCACTTAAAACTACTGTTATTGCTATTAATTACCGGGATACAGATGTCAACTCAATTACTATGAAGCATACAATTAGCACTTAAACTACCTATATCTTTGTAAGCTTCTGAAAAGCTGTTTAGAAATGCATTATTTGAGATGTAACTCGGGTGTCATTCGTGCATGACACCTTGAATTAAACTTCTATTTACGTTTTACTGTTGCTCTGAACTAGTTTACTTCACAAACTGGCATAACAAGTGCTGATGCTTGTCTGTAGGGCACGGCTGATGCTGTCAGACAATATCTGTGGTTGTTTGAGGAGCATACTGTTCTTGAATACCTTATACTTGCTGGAGATCATCTGTATCGAATGGATTATGAAAAGTTTATTCAAGCCCACAGAGAAACAGATGCTGATATTACCGTTGCCGCACTGCCAATGGACGAGAAGCGTGCCACTGCATTCGGTCTCATGAAGATTGACGAAGAAGGACGCATTATTGAATTTGCAGAGAAACCGCAAGGAGAGCAATTGCAAGCAATGAAAGTAAGACTATCATAGTCCTAATGCTTTTCAATTCAGAACTACTCAAGAAAGAATTTATTAGCATGTGTTAATTCTTGTTTTGATGTATTTCAGGTGGATACTACCATTTTAGGTCTTGATGACAAGAGAGCTAAAGAAATGCCTTTCATTGCCAGTATGGGTATATATGTCATTAGCAAAGACGTGATGTTAAACCTACTTCGTGACAAGTTCCCTGGGGCCAATGATTTTGGTAGTGAAGTTATTCCTGGTGCAACTTCACTTGGGATGAGAGTATGTACTTCCTCTAGAACTTACACTTTGTGTTACTTTTACTTATCAAGAAAATTGGAATATGAAATATACACTTTTTGCTGTGTTCAATGCATAAAACATTGCATCTTTTGTCCTTTACTCTAGAGAAAATGGGCCTTTTTGTCTCAACTTCTTGAACTCTCTTCCAAATATGGTAATGGTTATGAAAATGAGCTCTCTTTGCTCTTCTGCTTTCGTGTGTTGCCCCTCTCAAGTTTTTCTCTATTTTTGTTCTTTTCTCTTTGTTGAATCTCTTGTTCTGGTCATCATAAATGTGGAAACTCAAAAAAGAATGATGCATCGTGCTCAATTTCTTTTTAAGATAGTGGTCACTTGGTTAGTGTTGTTTCTAGAAATCTTATGTAATTGTGTTCTCAGGTGCAAGCTTATTTATATGATGGGTACTGGGAAGATATTGGTACCATTGAAGCTTTCTACAATGCCAATTTGGGCATTACAAAAAAGCCGGTGCCAGATTTTAGGTAATTCTGCTGATCTCAAGGAGATCGTTCTCTGTAGTTATCATGCTTTGTTATCCACTCACTTTGATTAAGCACTAATATGGCTGTCTTCAATATTTACTGAAGCTTTTACGACCGATCAGCCCCAATCTACACCCAACCTCGATATCTACCACCATCAAAAATGCTTGATGCTGATGTCACAGATAGTGTCATTGGTGAAGGTTGTGTGATCAAGGTAACTACTTATTGTTTCAAGGCCCCAATATTTCTAAGTTGCAGTAGCAAACATGTGAGGCATATCTTTGACATGTTCAATATTTTCCGTGACCTCATTCATAATCCACGTTCTTTTCAATTGAAGTCCACTTGCATAGAATACAAAATAAAGTTTAGACTACTGCTTTTTCAAAAACAAAAAAGAAGATAAAGTTAAGTATACTGAACTCTCTTCTCTCTGAGGCGTGCTTGCATTTTCTTCTCAGTTTAATTTTCCATCATGGTTGGAGAGGGAAAAATATTGTTTATGTTATGGATCTTGACTTATTTTTTTTCTTTTACCTGAAAAGATAAAGTTAAATATACTGAACTCTCTTCTCTCTGAGGCATGCATGTATTTTCTTCTCAGTTTAATTTTCTGTCATGGTTGGAGAGGGAAAAATATTGTTGATGTTATCGATCTTGACTTATTTTTTTTCTTTTACCTGAAAATTTGAGATTTTGATACTGAGATTGCACTCCCTCTATTTTAATTTAATTGTCTTAGTTTCATGCAGTATGAAGAATATGAGTGAAAGTAAATAATTATATATTATAAAGAAAATTGGTCCGAAATATAACATCTAAAGTTAGCTCTTTGATAAAGTTGAGGCACACAAAATTTAAAACTCACTTACGAATATCGGAGAATTGAAGTGGAGCCTTGGAGCAACGTTAAAGTTGTCTCTGTGTACCTAGAGGGTAACAGGTTTGAGATGTGGAATCAACCTCTAATGCTTTGGGTAGGTTGTCTACATTATACCCCTGGGTTTGGACCTTTTCTGGACCCTAAGTGAATGCGAGATGCTTTTCACCAATTTTTTCCTTTTCATTTTTCATCATACTGTGCTCCAGAAAATGCAGAAAAATAGTATACTATTACATACTCCCTCCGTCCCTATTTACTTGTCCATATTTCCTTTTTTGGTTGTCCCTATTTAGTTGTCCATTTTGACAAATCAAGAAAGGACAACAAATTTTTTCCTATTATACCCTTATTTACACTTCTTGAAAATTGTAAAAGTGTATGTTGTTTCCCTCCAATTTATTTCACTTGAATTCAAATAAGTGGTTGTAATTTTGAAGTGAAAAGTTGTCATAAGGGTAAAATTGTAACTTCACTGTGCTAATCATTGTTGCCTTAATCTGTGTGCCATTTCTAAAGTGGACAACTAAAAAGGGACGGAGGGAGTATATATCTAAGACAAATCCTACAGTGTCACGTAGTTCTAGGGCTTAGGAATTGCTACTAAAGGTCCACTAACGCTAAATGAAAACCTTCATTCCAAAATTCCACTCAGTGCTAAGTATACTCCCAATGAAAACATGCATAAATATGGAAATAGTAATAATCTAANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTAGTTGTCCATTTTGACAAATCAAGAAAGGACAACAAATTTTTTCCTATTATACCCTTATTTACACTTCTTGAAAATTGTAAAAGTGTATGTTGTTTCCCTCCAATTTATTTCACTTGAATTCAAATAAGTGGTTGTAATTTTGAAGTGAAAAGTTGTCATAAGGGTAAAATTGTAACTTCACTGTGCTAATCATTGTTGCCTTAATCTGTGTGCCATTTCTAAAGTGGACAACTAGAAAGGGACGGAGGGAGTAGTTATTAATCAGTATTTCTGTGTGCAGAACTGTAAGATTCATCATTCCGTGGTTGGACTCAGATCATGCATATCAGAGGGAGCAATTATAGAAGACTCACTTTTGATGGGGGCAGATTACTATGAGGTAATGCTAATAATTCTTAGATTACCAGAAAAGATATCTAAAACTAATATACACGGGAACATGAATTTAACTTTCTTCGCTTATTAAACTTGTTGTATATATGTTCTACTGCGGAGCAACTTGCCTTAAGAGTCAAATTACACATGATAAAGAAAATACTGAGCTTGTGGTTTCCTTACTGCATTCACTTATTATAACGGACTCACTTTCTGACCCATTTTTGGTTCAGACTGATGCTGACAGGAAGTTGCTGGCTGCAAAGGGCAGTGTCCCAATTGGCATCGGCAAGAATTGTCACATTAAAAGAGCCATTATCGACAAGAATGCCCGTATAGGGGACAATGTGAAGGTTAAATTCCTTAAACTTTCACGCTTCTGACTTATTGTCATTTAAACATGCAATAGGCGTGTAATGTTTTTTCTCGACATCATGTGTTCAGATTCATAGCATTGATTTAGTCATCGTGTCATATGGATCTTTTCTTCATTATCTGGGCGATGTACAGTGATCATGAATTCCTAATGAGTAATTTTCTTTTGTCAGATCATTAACAAAGACAACGTTCAAGAAGCGGCTAGGGAAACAGATGGATACTTCATCAAGAGTGGGATTGTCACCGTCATCAAGGATGCTTTGATTCCAAGTGGAATCATCATCTGAAGGAATGCGTTTTAACTTGGTTGTCCTCCAAGATTTTGGCTAAACAGCCATGAGGTAGAAACGTGCTGAACTTTTATTTTCCTGAGCTGTAGAAATCTAGTGTACATCTTTCTGTTATGATACTTCTCATTACCCCTACAAGAGAAGACTGGATGCTGTAAAAATTATTCGTCTAGAATAAAAAATAAATTACCCAAAAATCTGCTTTGATCTCACTTTTGC
CTGTAATTCAAGTGCAATCACACTCTACCACACACTCTCTAGTAGAGAGATCAGTTGATAACAAGCTTTGTTAACAATGGCGGCTTCCATTGGAGCCTTAAAATCTTCACCTTCTTCTAACAATTGCATCAATGAGAGAAGAAATGATTCTACACGTGCAGTATCCAGCAGAAATCTCTCATTTTCGTCTTCTCATCTCGCCGGAGACAAGTTGATGCCTATATCGTCCTTACGTTCCCAAGGAGTCCGATTCAATGTGAGAAGAAGTTCATTGATTGTGTCGCCTAAGGCTGTTTCTGATTCGCAGAATTCACAGACATGTCTAGACCCAGATGCTAGCCGGGTAAGCAAATTTCGCTTAATTTTATTACAAAATTGAAAATTTGTATTATGAATTAGTATATAAATCATTAGGTATGGTGTTAGTGTGAAAAGTGTAGATTTTTTTGGTAATTTTTTTCTCCGATTGATTGCTTAATTGAGGTGATTATCGGATTGTGGCGGTTTGGAGAAGTAGATCCTCTTGTAAAAAAAATGGAGTGGATGGATTGCTTCAGTATGAAGTATTTCGACTGGGTAGTTCTAGATCCGAGATCCCCTCAACTATTTCCCCCTCTTTCCGATACATAATCACGTGCCTATTTAAAAATGTGCTAGGATTACTTCATTTTGTTTAATATTTCACAAAATTCTTTGCTAACATTCTTCAAAGATTCATTATGCACATGATAGTCATTATTGATGATATTCTGACTTGGAAAAGTTGTTAAAACTAGTATTATATTCTGGAAAATGTAGTCATTGGATCTGACTATCTGAGCATGAGCAAAACGTTGCCGCACCTGTGGCGGATCCTCCAAAAATGCGCTACTTTTGGAGTATCTGACACACACCCAAAGACAACTTTAAAGGGTCCAAATAACGTTTTCAGGCATAGTTAGTAGTGTGTGTCTCACCTTCTAATCCTTAGACTGAACACTTTTAATTTGTTATTAGTAATAATGGGCAGATTGCCATTTCAATATGTCAACTTTTTTATATTTTCATAAAAAAGTATATCAATCTAGTTATATTGTGGGTGAATAGTATTAAGTTAATTGTTTTCACAAAGCCTTATCTGGTAATAGCTTGACAATGATTCACGTGTTCTTAGAAGTAAAGTATTATGGTAATTTGTTTTTTTGATACGGAGTCTTTAAGAAGCTGAATTTCTATAAGTAAATATGGTGATCTGAACTTGAATTGTTAATGCAATTTGGTGTAGAGTGTTTTGGGAATTATTCTTGGAGGTGGAGCTGGGACCCGACTTTATCCTCTAACTAAAAAAAGAGCAAAGCCAGCTGTTCCACTTGGAGCAAATTATCGTCTGATTGACATTCCTGTAAGCAACTGCTTGAACAGTAACATATCCAAGATCTATGTTCTCACACAATTCAACTCTGCCTCTCTGAATCGCCACCTTTCACGAGCATATGCTAGCAACATGGGAGGATACAAAAACGAGGGCTTTGTGGAAGTTCTTGCTGCTCAACAAAGTCCAGAGAACCCCGATTGGTTCCAGGTAACTCATCATTCCTGCTGCATAGAATTCACTTAAAACTACTGTTATTGCTATTAATTACCGGGATACAGATGTCAACTCAATTACTATGAAGCATACAATTAGCACTTAAACTACCTATATCTTTGTAAGCTTCTGAAAAGCTGTTTAGAAATGCATTATTTGAGATGTAACTCGGGTGTCATTCGTGCATGACACCTTGAATTAAACTTCTATTTACGTTTTACTGTTGCTCTGAACTAGTTTACTTCACAAACTGGCATAACAAGTGCTGATGCTTGTCTGTAGGGCACGGCTGATGCTGTCAGACAATATCTGTGGTTGTTTGAGGAGCATACTGTTCTTGAATACCTTATACTTGCTGGAGATCATCTGTATCGAATGGATTATGAAAAGTTTATTCAAGCCCACAGAGAAACAGATGCTGATATTACCGTTGCCGCACTGCCAATGGACGAGAAGCGTGCCACTGCATTCGGTCTCATGAAGATTGACGAAGAAGGACGCATTATTGAATTTGCAGAGAAACCGCAAGGAGAGCAATTGCAAGCAATGAAAGTAAGACTATCATAGTCCTAATGCTTTTCAATTCAGAACTACTCAAGAAAGAATTTATTAGCATGTGTTAATTCTTGTTTTGATGTATTTCAGGTGGATACTACCATTTTAGGTCTTGATGACAAGAGAGCTAAAGAAATGCCTTTCATTGCCAGTATGGGTATATATGTCATTAGCAAAGACGTGATGTTAAACCTACTTCGTGACAAGTTCCCTGGGGCCAATGATTTTGGTAGTGAAGTTATTCCTGGTGCAACTTCACTTGGGATGAGAGTATGTACTTCCTCTAGAACTTACACTTTGTGTTACTTTTACTTATCAAGAAAATTGGAATATGAAATATACACTTTTTGCTGTGTTCAATGCATAAAACATTGCATCTTTTGTCCTTTACTCTAGAGAAAATGGGCCTTTTTGTCTCAACTTCTTGAACTCTCTTCCAAATATGGTAATGGTTATGAAAATGAGCTCTCTTTGCTCTTCTGCTTTCGTGTGTTGCCCCTCTCAAGTTTTTCTCTATTTTTGTTCTTTTCTCTTTGTTGAATCTCTTGTTCTGGTCATCATAAATGTGGAAACTCAAAAAAGAATGATGCATCGTGCTCAATTTCTTTTTAAGATAGTGGTCACTTGGTTAGTGTTGTTTCTAGAAATCTTATGTAATTGTGTTCTCAGGTGCAAGCTTATTTATATGATGGGTACTGGGAAGATATTGGTACCATTGAAGCTTTCTACAATGCCAATTTGGGCATTACAAAAAAGCCGGTGCCAGATTTTAGGTAATTCTGCTGATCTCAAGGAGATCGTTCTCTGTAGTTATCATGCTTTGTTATCCACTCACTTTGATTAAGCACTAATATGGCTGTCTTCAATATTTACTGAAGCTTTTACGACCGATCAGCCCCAATCTACACCCAACCTCGATATCTACCACCATCAAAAATGCTTGATGCTGATGTCACAGATAGTGTCATTGGTGAAGGTTGTGTGATCAAGGTAACTACTTATTGTTTCAAGGCCCCAATATTTCTAAGTTGCAGTAGCAAACATGTGAGGCATATCTTTGACATGTTCAATATTTTCCGTGACCTCATTCATAATCCACGTTCTTTTCAATTGAAGTCCACTTGCATAGAATACAAAATAAAGTTTAGACTACTGCTTTTTCAAAAACAAAAAAGAAGATAAAGTTAAGTATACTGAACTCTCTTCTCTCTGAGGCGTGCTTGCATTTTCTTCTCAGTTTAATTTTCCATCATGGTTGGAGAGGGAAAAATATTGTTTATGTTATGGATCTTGACTTATTTTTTTTCTTTTACCTGAAAAGATAAAGTTAAATATACTGAACTCTCTTCTCTCTGAGGCATGCATGTATTTTCTTCTCAGTTTAATTTTCTGTCATGGTTGGAGAGGGAAAAATATTGTTGATGTTATCGATCTTGACTTATTTTTTTTCTTTTACCTGAAAATTTGAGATTTTGATACTGAGATTGCACTCCCTCTATTTTAATTTAATTGTCTTAGTTTCATGCAGTATGAAGAATATGAGTGAAAGTAAATAATTATATATTATAAAGAAAATTGGTCCGAAATATAACATCTAAAGTTAGCTCTTTGATAAAGTTGAGGCACACAAAATTTAAAACTCACTTACGAATATCGGAGAATTGAAGTGGAGCCTTGGAGCAACGTTAAAGTTGTCTCTGTGTACCTAGAGGGTAACAGGTTTGAGATGTGGAATCAACCTCTAATGCTTTGGGTAGGTTGTCTACATTATACCCCTGGGTTTGGACCTTTTCTGGACCCTAAGTGAATGCGAGATGCTTTTCACCAATTTTTTCCTTTTCATTTTTCATCATACTGTGCTCCAGAAAATGCAGAAAAATAGTATACTATTACATACTCCCTCCGTCCCTATTTACTTGTCCATATTTCCTTTTTTGGTTGTCCCTATTTAGTTGTCCATTTTGACAAATCAAGAAAGGACAACAAATTTTTTCCTATTATACCCTTATTTACACTTCTTGAAAATTGTAAAAGTGTATGTTGTTTCCCTCCAATTTATTTCACTTGAATTCAAATAAGTGGTTGTAATTTTGAAGTGAAAAGTTGTCATAAGGGTAAAATTGTAACTTCACTGTGCTAATCATTGTTGCCTTAATCTGTGTGCCATTTCTAAAGTGGACAACTAAAAAGGGACGGAGGGAGTATATATCTAAGACAAATCCTACAGTGTCACGTAGTTCTAGGGCTTAGGAATTGCTACTAAAGGTCCACTAACGCTAAATGAAAACCTTCATTCCAAAATTCCACTCAGTGCTAAGTATACTCCCAATGAAAACATGCATAAATATGGAAATAGTAATAATCTAANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTAGTTGTCCATTTTGACAAATCAAGAAAGGACAACAAATTTTTTCCTATTATACCCTTATTTACACTTCTTGAAAATTGTAAAAGTGTATGTTGTTTCCCTCCAATTTATTTCACTTGAATTCAAATAAGTGGTTGTAATTTTGAAGTGAAAAGTTGTCATAAGGGTAAAATTGTAACTTCACTGTGCTAATCATTGTTGCCTTAATCTGTGTGCCATTTCTAAAGTGGACAACTAGAAAGGGACGGAGGGAGTAGTTATTAATCAGTATTTCTGTGTGCAGAACTGTAAGATTCATCATTCCGTGGTTGGACTCAGATCATGCATATCAGAGGGAGCAATTATAGAAGACTCACTTTTGATGGGGGCAGATTACTATGAGGTAATGCTAATAATTCTTAGATTACCAGAAAAGATATCTAAAACTAATATACACGGGAACATGAATTTAACTTTCTTCGCTTATTAAACTTGTTGTATATATGTTCTACTGCGGAGCAACTTGCCTTAAGAGTCAAATTACACATGATAAAGAAAATACTGAGCTTGTGGTTTCCTTACTGCATTCACTTATTATAACGGACTCACTTTCTGACCCATTTTTGGTTCAGACTGATGCTGACAGGAAGTTGCTGGCTGCAAAGGGCAGTGTCCCAATTGGCATCGGCAAGAATTGTCACATTAAAAGAGCCATTATCGACAAGAATGCCCGTATAGGGGACAATGTGAAGGTTAAATTCCTTAAACTTTCACGCTTCTGACTTATTGTCATTTAAACATGCAATAGGCGTGTAATGTTTTTTCTCGACATCATGTGTTCAGATTCATAGCATTGATTTAGTCATCGTGTCATATGGATCTTTTCTTCATTATCTGGGCGATGTACAGTGATCATGAATTCCTAATGAGTAATTTTCTTTTGTCAGATCATTAACAAAGACAACGTTCAAGAAGCGGCTAGGGAAACAGATGGATACTTCATCAAGAGTGGGATTGTCACCGTCATCAAGGATGCTTTGATTCCAAGTGGAATCATCATCTGAAGGAATGCGTTTTAACTTGGTTGTCCTCCAAGATTTTGGCTAAACAGCCATGAGGTAGAAACGTGCTGAACTTTTATTTTCCTGAGCTGTAGAAATCTAGTGTACATCTTTCTGTTATGATACTTCTCATTACCCCTACAAGAGAAGACTGGATGCTGTAAAAATTATTCGTCTAGAATAAAAAATAAATTACCCAAAAATCTGCTTTGATCTCACTTTTGC
Download sequence region |
Get flanking sequences on PGSC_DMv3_219_ch07
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Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>PGSC0003DMT400079823 Glucose-1-phosphate adenylyltransferase small subunit, chloroplastic/amyloplastic
CTGTAATTCAAGTGCAATCACACTCTACCACACACTCTCTAGTAGAGAGATCAGTTGATAACAAGCTTTGTTAACAATGGCGGCTTCCATTGGAGCCTTAAAATCTTCACCTTCTTCTAACAATTGCATCAATGAGAGAAGAAATGATTCTACACGTGCAGTATCCAGCAGAAATCTCTCATTTTCGTCTTCTCATCTCGCCGGAGACAAGTTGATGCCTATATCGTCCTTACGTTCCCAAGGAGTCCGATTCAATGTGAGAAGAAGTTCATTGATTGTGTCGCCTAAGGCTGTTTCTGATTCGCAGAATTCACAGACATGTCTAGACCCAGATGCTAGCCGGAGTGTTTTGGGAATTATTCTTGGAGGTGGAGCTGGGACCCGACTTTATCCTCTAACTAAAAAAAGAGCAAAGCCAGCTGTTCCACTTGGAGCAAATTATCGTCTGATTGACATTCCTGTAAGCAACTGCTTGAACAGTAACATATCCAAGATCTATGTTCTCACACAATTCAACTCTGCCTCTCTGAATCGCCACCTTTCACGAGCATATGCTAGCAACATGGGAGGATACAAAAACGAGGGCTTTGTGGAAGTTCTTGCTGCTCAACAAAGTCCAGAGAACCCCGATTGGTTCCAGGGCACGGCTGATGCTGTCAGACAATATCTGTGGTTGTTTGAGGAGCATACTGTTCTTGAATACCTTATACTTGCTGGAGATCATCTGTATCGAATGGATTATGAAAAGTTTATTCAAGCCCACAGAGAAACAGATGCTGATATTACCGTTGCCGCACTGCCAATGGACGAGAAGCGTGCCACTGCATTCGGTCTCATGAAGATTGACGAAGAAGGACGCATTATTGAATTTGCAGAGAAACCGCAAGGAGAGCAATTGCAAGCAATGAAAGTGGATACTACCATTTTAGGTCTTGATGACAAGAGAGCTAAAGAAATGCCTTTCATTGCCAGTATGGGTATATATGTCATTAGCAAAGACGTGATGTTAAACCTACTTCGTGACAAGTTCCCTGGGGCCAATGATTTTGGTAGTGAAGTTATTCCTGGTGCAACTTCACTTGGGATGAGAGTGCAAGCTTATTTATATGATGGGTACTGGGAAGATATTGGTACCATTGAAGCTTTCTACAATGCCAATTTGGGCATTACAAAAAAGCCGGTGCCAGATTTTAGCTTTTACGACCGATCAGCCCCAATCTACACCCAACCTCGATATCTACCACCATCAAAAATGCTTGATGCTGATGTCACAGATAGTGTCATTGGTGAAGGTTGTGTGATCAAGAACTGTAAGATTCATCATTCCGTGGTTGGACTCAGATCATGCATATCAGAGGGAGCAATTATAGAAGACTCACTTTTGATGGGGGCAGATTACTATGAGACTGATGCTGACAGGAAGTTGCTGGCTGCAAAGGGCAGTGTCCCAATTGGCATCGGCAAGAATTGTCACATTAAAAGAGCCATTATCGACAAGAATGCCCGTATAGGGGACAATGTGAAGATCATTAACAAAGACAACGTTCAAGAAGCGGCTAGGGAAACAGATGGATACTTCATCAAGAGTGGGATTGTCACCGTCATCAAGGATGCTTTGATTCCAAGTGGAATCATCATCTGAAGGAATGCGTTTTAACTTGGTTGTCCTCCAAGATTTTGGCTAAACAGCCATGAGGTAGAAACGTGCTGAACTTTTATTTTCCTGAGCTGTAGAAATCTAGTGTACATCTTTCTGTTATGATACTTCTCATTACCCCTACAAGAGAAGACTGGATGCTGTAAAAATTATTCGTCTAGAATAAAAAATAAATTACCCAAAAATCTGCTTTGATCTCACTTTTGC
CTGTAATTCAAGTGCAATCACACTCTACCACACACTCTCTAGTAGAGAGATCAGTTGATAACAAGCTTTGTTAACAATGGCGGCTTCCATTGGAGCCTTAAAATCTTCACCTTCTTCTAACAATTGCATCAATGAGAGAAGAAATGATTCTACACGTGCAGTATCCAGCAGAAATCTCTCATTTTCGTCTTCTCATCTCGCCGGAGACAAGTTGATGCCTATATCGTCCTTACGTTCCCAAGGAGTCCGATTCAATGTGAGAAGAAGTTCATTGATTGTGTCGCCTAAGGCTGTTTCTGATTCGCAGAATTCACAGACATGTCTAGACCCAGATGCTAGCCGGAGTGTTTTGGGAATTATTCTTGGAGGTGGAGCTGGGACCCGACTTTATCCTCTAACTAAAAAAAGAGCAAAGCCAGCTGTTCCACTTGGAGCAAATTATCGTCTGATTGACATTCCTGTAAGCAACTGCTTGAACAGTAACATATCCAAGATCTATGTTCTCACACAATTCAACTCTGCCTCTCTGAATCGCCACCTTTCACGAGCATATGCTAGCAACATGGGAGGATACAAAAACGAGGGCTTTGTGGAAGTTCTTGCTGCTCAACAAAGTCCAGAGAACCCCGATTGGTTCCAGGGCACGGCTGATGCTGTCAGACAATATCTGTGGTTGTTTGAGGAGCATACTGTTCTTGAATACCTTATACTTGCTGGAGATCATCTGTATCGAATGGATTATGAAAAGTTTATTCAAGCCCACAGAGAAACAGATGCTGATATTACCGTTGCCGCACTGCCAATGGACGAGAAGCGTGCCACTGCATTCGGTCTCATGAAGATTGACGAAGAAGGACGCATTATTGAATTTGCAGAGAAACCGCAAGGAGAGCAATTGCAAGCAATGAAAGTGGATACTACCATTTTAGGTCTTGATGACAAGAGAGCTAAAGAAATGCCTTTCATTGCCAGTATGGGTATATATGTCATTAGCAAAGACGTGATGTTAAACCTACTTCGTGACAAGTTCCCTGGGGCCAATGATTTTGGTAGTGAAGTTATTCCTGGTGCAACTTCACTTGGGATGAGAGTGCAAGCTTATTTATATGATGGGTACTGGGAAGATATTGGTACCATTGAAGCTTTCTACAATGCCAATTTGGGCATTACAAAAAAGCCGGTGCCAGATTTTAGCTTTTACGACCGATCAGCCCCAATCTACACCCAACCTCGATATCTACCACCATCAAAAATGCTTGATGCTGATGTCACAGATAGTGTCATTGGTGAAGGTTGTGTGATCAAGAACTGTAAGATTCATCATTCCGTGGTTGGACTCAGATCATGCATATCAGAGGGAGCAATTATAGAAGACTCACTTTTGATGGGGGCAGATTACTATGAGACTGATGCTGACAGGAAGTTGCTGGCTGCAAAGGGCAGTGTCCCAATTGGCATCGGCAAGAATTGTCACATTAAAAGAGCCATTATCGACAAGAATGCCCGTATAGGGGACAATGTGAAGATCATTAACAAAGACAACGTTCAAGAAGCGGCTAGGGAAACAGATGGATACTTCATCAAGAGTGGGATTGTCACCGTCATCAAGGATGCTTTGATTCCAAGTGGAATCATCATCTGAAGGAATGCGTTTTAACTTGGTTGTCCTCCAAGATTTTGGCTAAACAGCCATGAGGTAGAAACGTGCTGAACTTTTATTTTCCTGAGCTGTAGAAATCTAGTGTACATCTTTCTGTTATGATACTTCTCATTACCCCTACAAGAGAAGACTGGATGCTGTAAAAATTATTCGTCTAGAATAAAAAATAAATTACCCAAAAATCTGCTTTGATCTCACTTTTGC
![]() ![]() | translated polypeptide sequence |
>PGSC0003DMT400079823 Glucose-1-phosphate adenylyltransferase small subunit, chloroplastic/amyloplastic
MAASIGALKSSPSSNNCINERRNDSTRAVSSRNLSFSSSHLAGDKLMPISSLRSQGVRFNVRRSSLIVSPKAVSDSQNSQTCLDPDASRSVLGIILGGGAGTRLYPLTKKRAKPAVPLGANYRLIDIPVSNCLNSNISKIYVLTQFNSASLNRHLSRAYASNMGGYKNEGFVEVLAAQQSPENPDWFQGTADAVRQYLWLFEEHTVLEYLILAGDHLYRMDYEKFIQAHRETDADITVAALPMDEKRATAFGLMKIDEEGRIIEFAEKPQGEQLQAMKVDTTILGLDDKRAKEMPFIASMGIYVISKDVMLNLLRDKFPGANDFGSEVIPGATSLGMRVQAYLYDGYWEDIGTIEAFYNANLGITKKPVPDFSFYDRSAPIYTQPRYLPPSKMLDADVTDSVIGEGCVIKNCKIHHSVVGLRSCISEGAIIEDSLLMGADYYETDADRKLLAAKGSVPIGIGKNCHIKRAIIDKNARIGDNVKIINKDNVQEAARETDGYFIKSGIVTVIKDALIPSGIII*
MAASIGALKSSPSSNNCINERRNDSTRAVSSRNLSFSSSHLAGDKLMPISSLRSQGVRFNVRRSSLIVSPKAVSDSQNSQTCLDPDASRSVLGIILGGGAGTRLYPLTKKRAKPAVPLGANYRLIDIPVSNCLNSNISKIYVLTQFNSASLNRHLSRAYASNMGGYKNEGFVEVLAAQQSPENPDWFQGTADAVRQYLWLFEEHTVLEYLILAGDHLYRMDYEKFIQAHRETDADITVAALPMDEKRATAFGLMKIDEEGRIIEFAEKPQGEQLQAMKVDTTILGLDDKRAKEMPFIASMGIYVISKDVMLNLLRDKFPGANDFGSEVIPGATSLGMRVQAYLYDGYWEDIGTIEAFYNANLGITKKPVPDFSFYDRSAPIYTQPRYLPPSKMLDADVTDSVIGEGCVIKNCKIHHSVVGLRSCISEGAIIEDSLLMGADYYETDADRKLLAAKGSVPIGIGKNCHIKRAIIDKNARIGDNVKIINKDNVQEAARETDGYFIKSGIVTVIKDALIPSGIII*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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X55650 S. tuberosum mRNA for ADP-glucose pyrophosphorylase subunit.
X55155 S.tuberosum mRNA for AGPase.
X61186 S.tuberosum mRNA for ADP-glucose pyrophosphorylase small subunit.
AY186620 Solanum tuberosum ADP-glucose pyrophosphorylase small subunit mRNA, complete cds.
DQ207843 Solanum tuberosum clone 071H10 ADP-glucose pyrophosphorylase small subunit-like mRNA, complete cds.
DQ284459 Solanum tuberosum clone 052F01 ADP-glucose pyrophosphorylase small subunit-like mRNA, complete cds.
DQ297414 Solanum tuberosum ADP-glucose pyrophosphorylase small subunit mRNA, complete cds.
X55155 S.tuberosum mRNA for AGPase.
X61186 S.tuberosum mRNA for ADP-glucose pyrophosphorylase small subunit.
AY186620 Solanum tuberosum ADP-glucose pyrophosphorylase small subunit mRNA, complete cds.
DQ207843 Solanum tuberosum clone 071H10 ADP-glucose pyrophosphorylase small subunit-like mRNA, complete cds.
DQ284459 Solanum tuberosum clone 052F01 ADP-glucose pyrophosphorylase small subunit-like mRNA, complete cds.
DQ297414 Solanum tuberosum ADP-glucose pyrophosphorylase small subunit mRNA, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Isolation and sequence analysis of a cDNA clone encoding a subunit of the ADP-glucose pyrophosphorylase of potato tuber amyloplasts.
Plant molecular biology (1991)
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du Jardin, P. Berhin, A.
Plant molecular biology.
1991.
16(2).
349-51.
Comparison of the primary sequences of two potato tuber ADP-glucose pyrophosphorylase subunits.
Plant molecular biology (1991)
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Near-full-length cDNA clones to the small and large subunit of the heterotetrameric potato tuber ADP-glucose pyrophosphorylase have been isolated and characterized. The missing amino terminal sequence of the small subunit has also been elucidated from its corresponding genomic clone. Primary sequence comparisons revealed that each potato subunit had less identity to each other than to their homologous subunit from other plants. It also appeared that the smaller subunit is more conserved among the different plants and the larger subunit more divergent. Amino acid comparisons of both potato tuber sequences to the Escherichia coli ADP-glucose pyrophosphorylase sequence revealed conserved regions important for both catalytic and allosteric function of the bacterial enzyme.
Nakata, PA. Greene, TW. Anderson, JM. Smith, White. Okita, TW. Preiss, J.
Plant molecular biology.
1991.
17(5).
1089-93.
One of two different ADP-glucose pyrophosphorylase genes from potato responds strongly to elevated levels of sucrose.
Molecular & general genetics : MGG (1990)
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The key regulatory step in starch biosynthesis is catalyzed by the tetrameric enzyme ADP-glucose pyrophosphorylase (AGPase). In leaf and storage tissue, the enzyme catalyzes the synthesis of ADP-glucose from glucose-1-phosphate and ATP. Using heterologous probes from maize, two sets (B and S) of cDNA clones encoding potato AGPase were isolated from a tuberspecific cDNA library. Sequence analysis revealed homology to other plant and bacterial sequences. Transcript sizes are 1.9 kb (AGPase B) and 2.1 kb (AGPase S). Northern blot experiments show that the two genes differ in their expression patterns in different organs. Furthermore, one of the genes (AGPase S) is strongly inducible by metabolizable carbohydrates (e.g. sucrose) at the RNA level. The accumulation of AGPase S mRNA was always found to be accompanied by an increase in starch content. This suggests a link between AGPase S expression and the status of a tissue as either a sink for or a source of carbohydrates. By contrast, expression of AGPase B is much less variable under various experimental conditions.
Müller, Röber. Kossmann, J. Hannah, LC. Willmitzer, L. Sonnewald, U.
Molecular & general genetics : MGG.
1990.
224(1).
136-46.
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