
Lag0038523 (gene) Sponge gourd (AG‐4) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGATGGGCTGGGACTTCGAAATGTGAGCTCACATTGCTCGATCTCTGAGATGGATGATTATGATCTTTCTCGACTTCTTGACAAGCCTAAGCTCAATATTGAGAGGCAAAGATCATTTGATGAGAGGTCCCTCAGTGAGCTGTCCATCAGCCTTGCTAGGGGAGGCCTGGACAACTTTGAGAGCTCGTATTCACCTGGTGGAAGGTCAGGATTTGATACCCCAGCTTCATCTACCAGAAACTCATTTGAGCCCCACCCAATGATCGCCGAAGCATGGGAAGCTTTGCGGAGATCCTTGGTGCATTTTCGGGGTCAACCAGTTGGAACTATTGCAGCATATGACCATGCCTCAGAGGAAGTTTTGAATTATGATCAGGTTGATAATTTTGCAACAACTAAAAAAATTTGAAAATGATTTTAATATACCATTTGATATATGCTAGAGGCCTCAATCATGTTAAGCTGGAGCCATTTATCTGGTGACTAATATCTAAGATGGAGAGCGTTTTTATCTTCTGTTGATAAAATTCAGATTAAAAGTAAGAGAACTTAACAGGTTAATGGTGGGCAGCAAAAAATGCATTGAAAACTTGAACTCAAAAATTTGATTTTCTTTGATACAAACAATTTATGAAAGGAACTGTTAAAGACAACCTGATGTAAGTTGGTTAAGTCATAAAATCAGAGCCCCTAACACAATTTTTTACCACGATTTGTGATGTATTTGATAACAAATAATTGTATACTAGTAACAACCTTAACAAAAGTCTGAAGTATGCATTGGTTATATTGCTTTTCTCTCAGGTTTTTGTTCGGGATTTTGTACCCAGTGCTTTGGCATTTCTGATGAATGGGGAACCTGAAATAGTTAAGAACTTCCTGTTAAAGACTCTCCAGCTTCAGGGATGGGAAAAAAGAATAGACAGATTCAAGCTTGGGGAAGGTGCAATGCCAGCTAGCTTTAAGGTTCTTCATGACCCTGTTAGAAAAACAGATACCATTGTTGCTGATTTTGGAGAAAGTGCAATTGGAAGAGTTGCTCCTGTCGACTCTGGATTCTGGTGGATCATTCTGCTCCGTGCATATACAAAGTCAACTGGCGATCTATCTCTGGCTGAAACACCAGAGTGTCAGAAGGGAATGAGACTTATTTTAACTTTATGTCTGTCAGAGGGGTTCGATACATTCCCAACTCTACTTTGTGCTGATGGATGCTCCATGATTGATCGAAGAATGGTAAAATTTCTTTATATCTTTTGCTTGTTATGAAGTTACTTTTACCTGTTTTTCATTTCATATTATGTGATTATCTTTTGATAATGCTTTCTATAAAATGTATTATGTGATTTCTCTGTATATAACAACTTCACTTTTATTCCAAAAAAAAAACTTAACTTTTCTAAAAGGAATGAAGTTTTTTTATAATTTAATGGTATGGGTTGATCTTTAATGGTTGTGAGGAGGCAGTCACAACCATCTTCTTAAAGTTTCATACTACTTTTCCCTTAGGATGTCTTTTAATGATCTAACTGTTGACTTCTTGGACTTGGCTTTGATTTATATTAAATTATTTGTGTGCGTGATGCAGACCTTTGATTTTATTCTGTTGTGTTAGTGTGGTAGGGTCTACTTTGGTGGCTTTTATTGCATGGCTTCTAACATCGTCAAAAAATAACATTTTTAATGACTAATGAACATAATGTTTCTCATTAGAAAAAAAAAAGACTAATGAACATAAGTGGTCCTGGAAAATAATTTATCAGAACACCCTGTCTTCCTCCTGAACCATATCTTTTTTGAAGAGCTAACTCCTTCCACTGTTGTCTTCAGTAGACTGTAATGTGATGAAGCCTATCAGTGACATTGTTTAACAGACTCGAGTGTTTAAACTGTGTTTAAAATTGTGTTGTTCGTTTCAGTATTTAAAATTGGGGGATAAATAGAATAAGCTTTACTGAGTTTAGCTATTTCTCTACCTTTTTGGTTTTTTTTTTTTTTTTGTTTAGGTCACCATAAGCTATAGTTTACATCTCTATTAATTCAGTCATTTAGACGTAAAATTTTCTGCCAAGAAGTGCTACTTTTTGCAGCCTTCATATAATTTTTGGGGAGCAGAATTTCCTCTTGATTATCGTAGTTGGCATTGTCTCTGTTTTTTTTGTGGACTGTTTTTTCGTATATCCATTGTATATCCTTTCATTTGCTCTATGAAAGTATGGTTTTCCATTTAAAAAAAGCTCAAAGAAAGATTTAAACAAGATTAACTATAAAAAGAATTATTGTTGAGGATAAGCCAACCTCTCTACACCTGCCCCTAGGCTGTTTCTTTTTGGCTATTTATAATAAATAGCCTTCGGGTTCCTTATCCAAAAAAAAAAAAAACTATAAAATGAATTTGATACTATCTTTATCTAGAAAGAATTTAATAGCCAACAATATAAACTTTTTTGCTTAATTCTCTAAATTTGGTTTAATCCTCTCAAGCCATAACTCCCAGAAATACAGTAACCACAATGAACCATAAACTACTGGCTTTCTTTTTGGGACTGTGACCAGGCATCATCGGAACTAAAATTCCTAGGGAAGTTTGGTTGTCCCAGATGAGGTCAATGATACTATAAAGAATATTCCAAACCTTCCTAATCCTGGAGTAGTTATAAGAAAATGTGGGCCTAGGACATTTTTTTATTGCAAAAGGAACACCGGTGAGTATAAAACATTTCAAATCCTAAACCATACTCAATCAGGCGTGCATATAAACATTCTAGTTTACCCGTACTATTTTGGACAGACAATTTTATGTTTGTTTCTCCTCATAATCTGCTCAGAATTGCATGTGCATTGTCTTACAAATTTCAGTCCCATTTGCTTTTCTAGCAATCTTGTAAATGTGTAAAAATTTGTTACAAACTCGGATGTTCATTATTTTGGAATGAGAGTTGCTTGCCGTACGTACCCCATTTAGTAGGGAATGTAGCCTCTCTATATAACTGAGAAGTGTCCAAAAGTTGCTGTGAGACCTCCCATCACTCTTTTCCAACTGTTTATTTTCATCATGTAGCTAGAATATCACTTTTAGAAACCTTCTGTAATTTTCTGTGATTTTCTTTTCAGATGAGATAACCTTTTCATTAACTGCCTATTTGGATGCAGCTATGATGTTCAAGTTTAAAGAACTTGCAAGTTTTTCCTGACATTTCTGAGAAATATTTACCTTGTCAATGTATTATAACTTGATAGTTTTTCTCCAGGGTATATATGGTTATCCTATTGAAATTCAAGCCCTTTTCTTTATGGCCTTGAGATGTGCTCTGGCTTTGCTGAAACATGATGCTGAAGGAAAAGAGTGCATAGAGCGCATTGTGAAGCGTTTGCATGCCTTAAGTTATCACATGAGGAGTTATTTCTGGCTTGACTTCCAGCAACTAAATGACATCTACCGTTATAAAACTGAAGAATATTCACATACAGCTGTAAATAAGTTTAATGTCATCCCTGATTCAATCCCAGAATGGGTGTTTGATTTTATGCCCACCCGTGGCGGGTACTTTGTTGGTAACGTCAGTCCTGCAAGAATGGACTTTAGATGGTTTGCTTTAGGTAATTGTGTTGCAATTCTATCATCTCTTGCCACCCCTGAGCAATCAATGGCAATTATGGATCTTATTGAATCACGTTGGGAGGAGCTGGTTGGAGAAATGCCTTTGAAAATAACATATCCTGCCATAGAAAGCCATGAGTGGCGAATTATTACTGGTTGTGATCCCAAGAATACCAGGTGGAGCTACCATAATGGTGGATCGTGGCCAGGTTTGTTCGTTCACTCATATTTCTCTTCACGTTACATAAACTCTTATTATATTAGTAGTTATAATTAATGCCATGAGAGAGTCTTCTAATAATAGCTTTAGGTGTTCTATATTATGAGAAAAAGCTTTTATTGATAGAAAAGGAAAGAATACACAAAGGCAAACAAAAAGAATGGCCAAAACTAACTATAATAATAGCTGTAGGTGTAGAAGCAAACTGTTGCAGATATTATTAACTTAGAGTCAAGCACTTTGATCTGATCTGCCAATCATCAATTTTATTGATGATATCGCTGTTCTAAACCTCAAGAGGCATTATTAGGAACCGTCCTTTTTTTTCCTCAAAGATTTCTAGCCTCAAGCTTTATCCACTACTAGATTTTAGTCTTTAGCTAGTATCTACCGGCTAGTGGTAGAGGTCTGAGGTGGAGTCTAGGTTGATAAAACAGAATAAGCTATCAGGCAAATGTACATCTTGAAAATTTCCAAGGACAATTTCTAAGTGGTTAACTCTTCCCCTTCAATCTCTTTTCTATGAAGTTTTTTCCCTGTAGCAATTTTGAAGACGACTGTACATCCCAAGCATAAAAAACAGAGGCGTCTTTCTTTTTCAGCCCAAATAACCGCATTAACCTTGGGAATCTTTGAGTATTTAATGCATTTTTCATGGTGGCCATTGGTTCTAATTCAGCACGAGTGGTGTGGGTGCCTCACCCTTAGAAACTGGAAGTTTGACTATCATAGGAGTTTGCTGTTGTTTTCTTCCATCACTGAGTCTCGAAACTAACTAAAATTTTAAGTTACCTTCCAAAGAAAGTCTGAGGTAATTGTGTGTAATCTCATTTTGATACTTTTTTTTTTCTTAGTTTTTTTTAATAGAAAAACCTGCTTTCATTGATTCTCAATGAAAAAATACAAGAGCATTCAAAAAACCAAGCCCATAAAAGGGAACCCAATTAAAGAAAGGGACTCCAATCCAATAAGATAAGACCTAAAGGATAATTACAAAGCTGTCCATTATGTCAACTTTCTTCGCTCTAGCCAACATTTTAGTGTCAGTTAGGAATGACTTTTTAAGTGTTTTAAAACATTCTTTTTTACACTTAAAAATGCTTTTTTAAAGACTTAGTCATTTTAAACGGGTCCTTAGTCTCGTAAAAAATGACCAAGTTCTCAATGGGTTGGCCTACTGACAATGCTTTCGTAAAAATGTAAAAGGGACTTTGCAGGAATGGGTTCAAATCCTAGTCACTTACCCAAGATATTAAAATCCTAGAGTTTCTTGACAACCAAATATTGCAAGATGAAGTATCATACAATTTTCCCAGGGTTTAAAAAGAAAAGAAAAAGAAAATGACCAGATTGGAGCTATGTTTCATGTTTGTCTGATCCCATCTCCTCTTTTTAACCACGAATCCCCTGAAAATTTAATTAATGATCTTCAAAACCACCACCCATCCCTCCTAGGACGCTGTGCCTGATTCTAATCTTACTGTCTCTGCCCCCTTTATTGTAAAAGTGCTTGCTACTTCTCCAGATATAGATCTTTCATTCTTGGTGTATAAGTTGGAGTCAAGATATAGATATTGTTGGAGATGGATGGCATTTTTCTAACACCAGAACCTTGCTTAGATTTCTGTTGGAAAAGATCCTTGATATTTGGTGAGTCTTCAAACTGTAAGATTAAAGGGGCAGTTAGGTAGGTATGCTCAACTTTTTTTTTGAGCACTTGATTTAAGTGAAAATCAGAAAACAATTCTAGGATATGGATTTGAATCACTCAACTTGGATTCGAAAAGGAAAACATCTTAGATTACTGATTAGAATTTTTGTAGCATCAGAAGTTGGCTACGTATATCTCATTCTAGCATCAATATCTGATACAGATGGATATTGAGTCACAGAAGTTAGAATCGTCATTTACCATTTCTGCATCGTGTAATGCAGTAAAAGATCAGAGTCGGTCGTTAATCTTATCTTTTGCCTCATGTTTTATGTTGATATCTTTGTCCTTGCTCTGGGTGCAGTGCTACTATGGCTGCTAACAGCCGCTTGCATTAAAACCGGACGACCACAGATTGCAAGAAAAGCCATTGAGCTCGCCGAGAGTCGTCTGCTGAAGGATAGTTGGCCCGAATACTATGATGGAAAGTTAGGAAGATATATCGGAAAACAAGCAAGGAAATACCAGACGTGGTCGATAGCAGGATACTTAGTTGCAAAGATGATGTTGGAAGATCCATCACACTTGGGAATGATTTCACTCGAAGAGGACAAGCAAATGAAACCACTGATCAAGAGATCATCATCTTGGACCTGCTGAAAGTAGAGAGGCAAAAACAGAAAAAGGATGAAGAAGAAAGAGGTACCGAAGTCGAGCCGGGTTTTTCGTTTTCCATTGTAACACTATTCTTTTACAGTTTGGCTGTGTACAATAGCATCTCCATCATGAAATCTGCAGAGACTTGGCTGTTTTTGGGTCTTGAAAAAAAAAGGTAGTGTGTCTCGAGTTTTTGGCACAAAATTCTGCAAAATATTCCTTTGTTGAGATTTCCTCAGCCTCTGAATGAATGAATGGCTGCGTGGCTAAGGGCGAGACACTTTTCAATTTTTAATATATGGACTTTTTGGGATTTACTGCCCCATTGTGAACTTCATTAATAAATGGCCATTCCTGTCCATATTTTTTTTACCTTATATATATATATATATATATATTTTACCCATAAGCTTACAATTTGATATAAGAATTGGAACGTGCAACCTTCAAAGAGAGGTTACTTATAATCGGTTGAATTATGTTCATATTGGCTTGTTAGAGTTTTTGTATGCAGAAGCATGGTATAACATCCATGTTAGTGTAGGTTCAAAATTAAGTTGGTATTGATGATCTTTGTCCATATTGATTCATGATCAAAATTAAGTTTATGTTCATGATCTTAGATTGAGGCATTTCATATTGGTTTTTTTAATATATTTTTTTCCTCTGTTTAGAAATTGTGTTTACCATTTTTTAATATTGTAAACTTATTTGAATTCATACCTAAATTTAAATATGGAAAGGAAAGGTAGTGTTAAAATCCAGTTTCAGTCTGCCTGTACCACAGAAATATGGGTGCTAATAGGTAACATTCACCGATTGAACTCCTCTTGCTGAGCAAATTGTGAGTGCAAAGGTGGATGCATATTTTACTTAGGTTGAAGCAACACTTGGATTTCCCTTCTTATCTATTTATTTTTGTTTGTCTTTACTTGAATAAAAAACCCCAAATATTTCATCAATTTTTCTGGCTACATTTCTTTGGTTGCCAAGTTAGAGGAGATACATGTTTTAGGATTGAAAAAGTATATTTTCTACAATTCTCTTGGGATTCGATATCCATAATACTCTCCACTTATTACTTGGTAGTGTATACTTGCACTCAGACATTAGTCCAACAGAGACACATCAATATTCATAATTTTAGGAAGGTTCGTTTTAGCAACAAGAACGTTGAAAGATGTTTAGAAAGGGGAGTTAACCATGACACTATATGATCTTGGTGAAATTTAGTGTATTTGATGGTATAAAATATCTGGCTGATATAGAAGAATGCTCTGTCATTCAAATTCTAGAAGGATTAATAGTGCGTGCAAAGTGTCATGGTTAACTCCCCTTTTTAAGAAAAGTATGCTTCTAGAATGTGATTACTACTTATATGCACTTGCATCACACTCTTTTTGAGTTATGTACGGTTCAGATAGAATGCGCCTGACTTGCGCCCACAACCAACCCTTTTTGACGCTCTGTGAGTGAGTTCAATTTATATTCAGCTCTGCTTTTGGTGCCTTAAGAAGACTAAACACTTAAACTCCCATGCCAAGGGCTAATTTTAACTTAGATAAAAATAAAGGAACACAACTCAAACACTCTATTGGTCCTTGTCCTATGTCTAGGTACAAGAAGCAAATCCCTATTTCTAGGTTCTTTTCCAATATTGCCTTTGTGAAAGCACGTATGCAACCCAAACTTTTCAATATTGAACTTCACACAAGCTATGTTAACCCAAGTGATCAGTTTAAGCTAACAATGAAACTTAAACTCAATAAAAGCAAAGGATGCTAAGCATGAACAAAGTTATTTTTGCATTAGGTGGGACCCTTACTTCTACTTAAAGTACACATATTTTGAATCCCCAAGTAGAAGTTTAGCTCATGATGGAGATGAAAGAAATAAATGTAAAAGAAAGAACACACATGAATAAAACAAAAACTGAATTCATATTAATGAATAATATAAATACAATAATAATGTTTAGAATAGAAAAATAGACGGTTGGAAAGTAAAGGATAAAAACATAAACTTAACACTATGCAAATGAACAATGAATACTTCCAGTAGGATTAAAATTCCTGCGGAAGCCTAATTGAACCATCTCGTATTTAATTTCGTTCTAAAATACCGATACATTGGCAATCAAATACGGAGAACAATTCTAAGCATTTATTAGATTAAGTATGTTGTTTAATTCAAGTCTAATGTAATGTAATCAATGACTTTGTGATGCCCCGCGTTCCAGATAACCCAAAGTTTTTATTAATCGATACTTTAGCTCATTGAGATTTTTGCCCTTTCTCGTGTGTTAGTGGTTGAATGATTTAGTTGGTTGAGTTTTTGCAGGTTAGTGGACAATTAAGTAGCGTCTTTTTCTCCTGGTTAGTGGGTGGTTTTGGAGCCAGTTAGGTTTTTTTAAAACAAGAGTAAAGAAAAGAGGAAAAAAAAAATCAAACTCTCTCTCTCTCGCGTGAACCTCTCCCCCACACCTTCTCTGCGTTTTTTTTCTCCCGTCTTCTAGCCTCACCTCCCTCCATTCTCGTTAGCTTTTTCTCCACGCCGTCGCTTGCTCCCTCATCGCCGCTCAGCCGCCTCGCGTCGTTGTCCCTTCCTCGTCGGCGTCGGTCCATCTTTCTCGCCCAGCCGCCGTCGCCGTCGCCTTCCCTTCTCCATCTCTCCCCTCGTTTTCCTGTGTTTGTTGCCGCCGCACCCTCCCCTATTTTCCTTCTCGCGCCGCCGTCATTTGCTAGCTGCCGGTCTCCCCTCGCACTGCCGCCGCCTCCTTCTCCAGTTGTTCTTCATCAGAAATCAGTACCTACGCCACAAGATCCGCACGTAAGTTCCTCTCTCCCTCGTCTTTGGCCGTTTTAAGCTCAATTTAATCTCCTTTTCTCTTGTTTCGCTCAGATCCTGTGCATTCAGCATCTCGAATCTCGTTCTTCTCACAATTTTTCCTCTGTCCAGTGTGTTTAGGCGTGGTTCCAACCCTCATTCGACGTTATTTGGCGATTTCAGTAAGTTCTATCTTGACCCATTCGTTATTGGTTGCAAATATGAGTTACCCATGGTCCAAGAAATGTTATTCTAAGTTACCCACTCTTTATCGCCTCCTAAATTGCAGGTTTTGGCGATTTTTGGACACTGTTCAGCACGTATCCAACTTTGTTTTGGTGTTGAACGGTAAGTTCCAACGCCCTTAGGACTTTAGAATTCATCTAAGCTAGCTTTAGAATAACCTTTAATCATTGGGCATTCTTGAGTTTCAATTTTAAACTCAATTTGGACTTAGGACAACACTTGGTTGGTTTAAGAGTGCTTTTAAACTTGTGTAAGTAGTTTCTATCTGGTTGGGCTTGTTTGTTTGTTTGAGCATGCCGTTTTCTTTAATTGCCTTGTTATTATATGTTGTGTTTAATATGTATGTAGCTCGCTAAGAGAATAAGCACGATGCTTTATTTGGTTCCTAAGCATGTTGCTTTGTTGATTTATAAGTATGCTGCTTTGTTTAATTCATGAGCATGAGATACTGTTGTTGTTGCCTATGCTGCATATGAGTCTGATTTGCATAGTGTGTGTTCACTGGGAAGAGGCGGAGCATGACACGTAAATCGTGTGTCGGGTGTGTGTGCGGACGTGACGCGGAAATCATGTGTGGGTGTGAGTGCGGAGTGTGACTCGGAAATCACGTTTGGGATGTGAGTTCGGAACGTGACGCGAAAATCACGTGTGAGTGTGTGGGCATGGAGCGAACATGTGGGGGTGCATTGCACAATGCGTGGATTCATGTTGTCATCTCATTTTGCATGAAGCATGTGTTGGCATTGTTGTTTTCGTGTTTAAGAGCATGTTGGTTTGTTTATCGCTTTACAAGTATGATGTGTGTGGATATCATGTCGATGTGGTTGTTTGTTGTTTGGTGGCTCACCGGGTGGGAGCTACTTACCAGTACTGTGGTTGTACTGATACCCCTCCCCTTTCTTCCCCTCAACATTTTTAGATTATGTAGGTGTTGACGAGTTTTATGTGCCCTGTGATGTAGACGAGGAGGTTCACGAGGGATGACCACATGGGTCCATTTACTTATTTATTTTATTTTTGATAGATAAGGTAGTCCTTTATTCAATTGATGATAGGCTTAATCTTTAATTTGTAGGTTGGATTAACTTTTAGTTGTTGAGCTTGTGTAGATTTTCATGCTTTCGTTAGGTTGTAAATATGTTAATTATTAATAAAGTTGAACTGTTTCTAGAAAGTTAAGAGCATGCTTACACTAGAAGGGTTGTAGTTCTATTGTTGGTTGAAGATACGAGATCTGACTCGTATTTTATTGTGGAGATGTTTCAGTGGAGTCGTGGGGTAGACTAGATTAATATAGAAGTGTTGTTTTGTGTTAACATGTGATTAAAAAATTTTGGGTTCGTCCTATTATGTCGTTATGCTGCCAAAATTTTCGGAGCTCTCGGTTAGTTTGAATAGGAGTTTAGTAATGTCACTAGACTAGATAATAATAAAACCTGGGACGTTACAGTTGGTATCAGAGTGGAGTTGTTCCTGTAGACTGACCTAGAAACCAGGTTGTTAATAGTGTAGGATCTGTGGTCTTCATCGTTCTCCTCTTCATCACCAGGTATGTAGATTAATTGTCTTATTTGTATATTGCTTGATTTACTTGGTTGCTTATTCTTATGCTTGCCTTGAATGATTATTGTTAGACTTGCAATGCATGTTTATTCATTGACTTGGTTGCCTTGTTTGAGCATGAAGTTTTCCATGTTGCTTTATTATATAGTAGCTAGGCTTAGGATGCTCCCTTTAGGTGGTTAGAAAGCTTGCTTCAATTGCATGTTTATTGCATGATAGTAGGATTAGGATGCTACCTAGACTTATGTTAGAGCTTGTACCCTTGGTTGCTATCTGTTCGTTGACCTTAGTGCACCACCTTCTTAGTCGATGGCTCGTGGTCGGGGTAGACCTAGAATCCCAGCTGTTAGGCAAGAGAACTAGGCGGAGGGTGATGATGTTTATGAGATCCTCCAGCCCCTCCCGATCAACAAGAGGTTAACCCTCCAGTTCCTCATCATCGACGAGGAGTTGTACCCCCAACACCTCCTGCAGCTTCTATGCTGATCACATCGGAAGCGCTTCAGACCATGTTCGATAACATGGCTCAAAGAAATGTTAGGCAGCTGAGGAACCCCAACCGGGCAACTGAAGACCCAATGAAGTCTCAATTCCTTCGAGATTTTAAACTTTACAACCCTCCTACTTTTGATGGTCGGTCAGAGAATCCTGTGGCGACCGACCGTTAG ATGGATGGGCTGGGACTTCGAAATGTGAGCTCACATTGCTCGATCTCTGAGATGGATGATTATGATCTTTCTCGACTTCTTGACAAGCCTAAGCTCAATATTGAGAGGCAAAGATCATTTGATGAGAGGTCCCTCAGTGAGCTGTCCATCAGCCTTGCTAGGGGAGGCCTGGACAACTTTGAGAGCTCGTATTCACCTGGTGGAAGGTCAGGATTTGATACCCCAGCTTCATCTACCAGAAACTCATTTGAGCCCCACCCAATGATCGCCGAAGCATGGGAAGCTTTGCGGAGATCCTTGGTGCATTTTCGGGGTCAACCAGTTGGAACTATTGCAGCATATGACCATGCCTCAGAGGAAGTTTTGAATTATGATCAGGTTTTTGTTCGGGATTTTGTACCCAGTGCTTTGGCATTTCTGATGAATGGGGAACCTGAAATAGTTAAGAACTTCCTGTTAAAGACTCTCCAGCTTCAGGGATGGGAAAAAAGAATAGACAGATTCAAGCTTGGGGAAGGTGCAATGCCAGCTAGCTTTAAGGTTCTTCATGACCCTGTTAGAAAAACAGATACCATTGTTGCTGATTTTGGAGAAAGTGCAATTGGAAGAGTTGCTCCTGTCGACTCTGGATTCTGGTGGATCATTCTGCTCCGTGCATATACAAAGTCAACTGGCGATCTATCTCTGGCTGAAACACCAGAGTGTCAGAAGGGAATGAGACTTATTTTAACTTTATGTCTGTCAGAGGGGTTCGATACATTCCCAACTCTACTTTGTGCTGATGGATGCTCCATGATTGATCGAAGAATGGGTATATATGGTTATCCTATTGAAATTCAAGCCCTTTTCTTTATGGCCTTGAGATGTGCTCTGGCTTTGCTGAAACATGATGCTGAAGGAAAAGAGTGCATAGAGCGCATTGTGAAGCGTTTGCATGCCTTAAGTTATCACATGAGGAGTTATTTCTGGCTTGACTTCCAGCAACTAAATGACATCTACCGTTATAAAACTGAAGAATATTCACATACAGCTGTAAATAAGTTTAATGTCATCCCTGATTCAATCCCAGAATGGGTGTTTGATTTTATGCCCACCCGTGGCGGGTACTTTGTTGGTAACGTCAGTCCTGCAAGAATGGACTTTAGATGGTTTGCTTTAGGTAATTGTGTTGCAATTCTATCATCTCTTGCCACCCCTGAGCAATCAATGGCAATTATGGATCTTATTGAATCACGTTGGGAGGAGCTGGTTGGAGAAATGCCTTTGAAAATAACATATCCTGCCATAGAAAGCCATGAGTGGCGAATTATTACTGGTTGTGATCCCAAGAATACCAGGTGGAGCTACCATAATGGTGGATCGTGGCCAGTGCTACTATGGCTGCTAACAGCCGCTTGCATTAAAACCGGACGACCACAGATTGCAAGAAAAGCCATTGAGCTCGCCGAGAGTCGTCTGCTGAAGGATAGTTGGCCCGAATACTATGATGGAAAATCCATCACACTTGGGAATGATTTCACTCGAAGAGGACAAGCAAATGAAACCACTGATCAAGAGATCATCATCTTGGACCTGCTGAAAGTAGAGAGGCAAAAACAGAAAAAGGATGAAGAAGAAAGAGGTACCGAAGTCGAGCCGGGTTTTTCGTTTTCCATTGTAACACTATTCTTTTACAGTTTGGCTGTGTACAATAGCATCTCCATCATGAAATCTGCAGAGACTTGGCTGTTTTTGGGTCTTGAAAAAAAAAGGTACAAGAAGCAAATCCCTATTTCTAGGTTCTTTTCCAATATTGCCTTTGTGAAAGCACCCTCACCTCCCTCCATTCTCGTTAGCTTTTTCTCCACGCCGTCGCTTGCTCCCTCATCGCCGCTCAGCCGCCTCGCGTCGTTGTCCCTTCCTCGTCGGCGTCGGTCCATCTTTCTCGCCCAGCCGCCGTCGCCGTCGCCTTCCCTTCTCCATCTCTCCCCTCGTTTTCCTGTGTTTGTTGCCGCCGCACCCTCCCCTATTTTCCTTCTCGCGCCGCCGTCATTTGCTAGCTGCCGGTCTCCCCTCGCACTGCCGCCGCCTCCTTCTCCAGTTGTTCTTCATCAGAAATCAGTACCTACGCCACAAGATCCGCACATCCTGTGCATTCAGCATCTCGAATCTCGTTCTTCTCACAATTTTTCCTCTGTCCAGTTTTGGCGATTTTTGGACACTGTTCAGCACGTATCCAACTTTGTTTTGGTGTTGAACGGTGTTGACGAGTTTTATGTGCCCTGTGATGTAGACGAGGAGGATCTGTGGTCTTCATCGTTCTCCTCTTCATCACCAGCCCCTCCCGATCAACAAGAGGTTAACCCTCCAGTTCCTCATCATCGACGAGGAGTTGTACCCCCAACACCTCCTGCAGCTTCTATGCTGATCACATCGGAAGCGCTTCAGACCATGTTCGATAACATGGCTCAAAGAAATGTTAGGCAGCTGAGGAACCCCAACCGGGCAACTGAAGACCCAATGAAGTCTCAATTCCTTCGAGATTTTAAACTTTACAACCCTCCTACTTTTGATGGTCGGTCAGAGAATCCTGTGGCGACCGACCGTTAG ATGGATGGGCTGGGACTTCGAAATGTGAGCTCACATTGCTCGATCTCTGAGATGGATGATTATGATCTTTCTCGACTTCTTGACAAGCCTAAGCTCAATATTGAGAGGCAAAGATCATTTGATGAGAGGTCCCTCAGTGAGCTGTCCATCAGCCTTGCTAGGGGAGGCCTGGACAACTTTGAGAGCTCGTATTCACCTGGTGGAAGGTCAGGATTTGATACCCCAGCTTCATCTACCAGAAACTCATTTGAGCCCCACCCAATGATCGCCGAAGCATGGGAAGCTTTGCGGAGATCCTTGGTGCATTTTCGGGGTCAACCAGTTGGAACTATTGCAGCATATGACCATGCCTCAGAGGAAGTTTTGAATTATGATCAGGTTTTTGTTCGGGATTTTGTACCCAGTGCTTTGGCATTTCTGATGAATGGGGAACCTGAAATAGTTAAGAACTTCCTGTTAAAGACTCTCCAGCTTCAGGGATGGGAAAAAAGAATAGACAGATTCAAGCTTGGGGAAGGTGCAATGCCAGCTAGCTTTAAGGTTCTTCATGACCCTGTTAGAAAAACAGATACCATTGTTGCTGATTTTGGAGAAAGTGCAATTGGAAGAGTTGCTCCTGTCGACTCTGGATTCTGGTGGATCATTCTGCTCCGTGCATATACAAAGTCAACTGGCGATCTATCTCTGGCTGAAACACCAGAGTGTCAGAAGGGAATGAGACTTATTTTAACTTTATGTCTGTCAGAGGGGTTCGATACATTCCCAACTCTACTTTGTGCTGATGGATGCTCCATGATTGATCGAAGAATGGGTATATATGGTTATCCTATTGAAATTCAAGCCCTTTTCTTTATGGCCTTGAGATGTGCTCTGGCTTTGCTGAAACATGATGCTGAAGGAAAAGAGTGCATAGAGCGCATTGTGAAGCGTTTGCATGCCTTAAGTTATCACATGAGGAGTTATTTCTGGCTTGACTTCCAGCAACTAAATGACATCTACCGTTATAAAACTGAAGAATATTCACATACAGCTGTAAATAAGTTTAATGTCATCCCTGATTCAATCCCAGAATGGGTGTTTGATTTTATGCCCACCCGTGGCGGGTACTTTGTTGGTAACGTCAGTCCTGCAAGAATGGACTTTAGATGGTTTGCTTTAGGTAATTGTGTTGCAATTCTATCATCTCTTGCCACCCCTGAGCAATCAATGGCAATTATGGATCTTATTGAATCACGTTGGGAGGAGCTGGTTGGAGAAATGCCTTTGAAAATAACATATCCTGCCATAGAAAGCCATGAGTGGCGAATTATTACTGGTTGTGATCCCAAGAATACCAGGTGGAGCTACCATAATGGTGGATCGTGGCCAGTGCTACTATGGCTGCTAACAGCCGCTTGCATTAAAACCGGACGACCACAGATTGCAAGAAAAGCCATTGAGCTCGCCGAGAGTCGTCTGCTGAAGGATAGTTGGCCCGAATACTATGATGGAAAATCCATCACACTTGGGAATGATTTCACTCGAAGAGGACAAGCAAATGAAACCACTGATCAAGAGATCATCATCTTGGACCTGCTGAAAGTAGAGAGGCAAAAACAGAAAAAGGATGAAGAAGAAAGAGGTACCGAAGTCGAGCCGGGTTTTTCGTTTTCCATTGTAACACTATTCTTTTACAGTTTGGCTGTGTACAATAGCATCTCCATCATGAAATCTGCAGAGACTTGGCTGTTTTTGGGTCTTGAAAAAAAAAGGTACAAGAAGCAAATCCCTATTTCTAGGTTCTTTTCCAATATTGCCTTTGTGAAAGCACCCTCACCTCCCTCCATTCTCGTTAGCTTTTTCTCCACGCCGTCGCTTGCTCCCTCATCGCCGCTCAGCCGCCTCGCGTCGTTGTCCCTTCCTCGTCGGCGTCGGTCCATCTTTCTCGCCCAGCCGCCGTCGCCGTCGCCTTCCCTTCTCCATCTCTCCCCTCGTTTTCCTGTGTTTGTTGCCGCCGCACCCTCCCCTATTTTCCTTCTCGCGCCGCCGTCATTTGCTAGCTGCCGGTCTCCCCTCGCACTGCCGCCGCCTCCTTCTCCAGTTGTTCTTCATCAGAAATCAGTACCTACGCCACAAGATCCGCACATCCTGTGCATTCAGCATCTCGAATCTCGTTCTTCTCACAATTTTTCCTCTGTCCAGTTTTGGCGATTTTTGGACACTGTTCAGCACGTATCCAACTTTGTTTTGGTGTTGAACGGTGTTGACGAGTTTTATGTGCCCTGTGATGTAGACGAGGAGGATCTGTGGTCTTCATCGTTCTCCTCTTCATCACCAGCCCCTCCCGATCAACAAGAGGTTAACCCTCCAGTTCCTCATCATCGACGAGGAGTTGTACCCCCAACACCTCCTGCAGCTTCTATGCTGATCACATCGGAAGCGCTTCAGACCATGTTCGATAACATGGCTCAAAGAAATGTTAGGCAGCTGAGGAACCCCAACCGGGCAACTGAAGACCCAATGAAGTCTCAATTCCTTCGAGATTTTAAACTTTACAACCCTCCTACTTTTGATGGTCGGTCAGAGAATCCTGTGGCGACCGACCGTTAG MDGLGLRNVSSHCSISEMDDYDLSRLLDKPKLNIERQRSFDERSLSELSISLARGGLDNFESSYSPGGRSGFDTPASSTRNSFEPHPMIAEAWEALRRSLVHFRGQPVGTIAAYDHASEEVLNYDQVFVRDFVPSALAFLMNGEPEIVKNFLLKTLQLQGWEKRIDRFKLGEGAMPASFKVLHDPVRKTDTIVADFGESAIGRVAPVDSGFWWIILLRAYTKSTGDLSLAETPECQKGMRLILTLCLSEGFDTFPTLLCADGCSMIDRRMGIYGYPIEIQALFFMALRCALALLKHDAEGKECIERIVKRLHALSYHMRSYFWLDFQQLNDIYRYKTEEYSHTAVNKFNVIPDSIPEWVFDFMPTRGGYFVGNVSPARMDFRWFALGNCVAILSSLATPEQSMAIMDLIESRWEELVGEMPLKITYPAIESHEWRIITGCDPKNTRWSYHNGGSWPVLLWLLTAACIKTGRPQIARKAIELAESRLLKDSWPEYYDGKSITLGNDFTRRGQANETTDQEIIILDLLKVERQKQKKDEEERGTEVEPGFSFSIVTLFFYSLAVYNSISIMKSAETWLFLGLEKKRYKKQIPISRFFSNIAFVKAPSPPSILVSFFSTPSLAPSSPLSRLASLSLPRRRRSIFLAQPPSPSPSLLHLSPRFPVFVAAAPSPIFLLAPPSFASCRSPLALPPPPSPVVLHQKSVPTPQDPHILCIQHLESRSSHNFSSVQFWRFLDTVQHVSNFVLVLNGVDEFYVPCDVDEEDLWSSSFSSSSPAPPDQQEVNPPVPHHRRGVVPPTPPAASMLITSEALQTMFDNMAQRNVRQLRNPNRATEDPMKSQFLRDFKLYNPPTFDGRSENPVATDR Homology
BLAST of Lag0038523 vs. NCBI nr
Match: XP_022143693.1 (probable alkaline/neutral invertase D [Momordica charantia]) HSP 1 Score: 1028.1 bits (2657), Expect = 4.4e-296 Identity = 494/498 (99.20%), Postives = 497/498 (99.80%), Query Frame = 0
BLAST of Lag0038523 vs. NCBI nr
Match: XP_038897844.1 (probable alkaline/neutral invertase D [Benincasa hispida]) HSP 1 Score: 1025.0 bits (2649), Expect = 3.7e-295 Identity = 493/498 (99.00%), Postives = 497/498 (99.80%), Query Frame = 0
BLAST of Lag0038523 vs. NCBI nr
Match: XP_011659122.1 (probable alkaline/neutral invertase D [Cucumis sativus] >KGN44485.1 hypothetical protein Csa_016461 [Cucumis sativus]) HSP 1 Score: 1012.3 bits (2616), Expect = 2.5e-291 Identity = 484/498 (97.19%), Postives = 493/498 (99.00%), Query Frame = 0
BLAST of Lag0038523 vs. NCBI nr
Match: XP_008461922.1 (PREDICTED: probable alkaline/neutral invertase D [Cucumis melo] >KAA0046174.1 putative alkaline/neutral invertase D [Cucumis melo var. makuwa] >TYK00203.1 putative alkaline/neutral invertase D [Cucumis melo var. makuwa]) HSP 1 Score: 1011.1 bits (2613), Expect = 5.6e-291 Identity = 484/496 (97.58%), Postives = 493/496 (99.40%), Query Frame = 0
BLAST of Lag0038523 vs. NCBI nr
Match: XP_022926252.1 (probable alkaline/neutral invertase D [Cucurbita moschata] >XP_022926253.1 probable alkaline/neutral invertase D [Cucurbita moschata] >XP_022926254.1 probable alkaline/neutral invertase D [Cucurbita moschata] >XP_022981442.1 probable alkaline/neutral invertase D [Cucurbita maxima] >XP_022981443.1 probable alkaline/neutral invertase D [Cucurbita maxima] >XP_022981444.1 probable alkaline/neutral invertase D [Cucurbita maxima] >KAG7037246.1 Alkaline/neutral invertase CINV2, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1008.8 bits (2607), Expect = 2.8e-290 Identity = 483/498 (96.99%), Postives = 491/498 (98.59%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy Swiss-Prot
Match: Q67XD9 (Alkaline/neutral invertase CINV2 OS=Arabidopsis thaliana OX=3702 GN=CINV2 PE=1 SV=1) HSP 1 Score: 890.6 bits (2300), Expect = 1.4e-257 Identity = 424/496 (85.48%), Postives = 459/496 (92.54%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy Swiss-Prot
Match: F4I2X9 (Probable alkaline/neutral invertase D OS=Arabidopsis thaliana OX=3702 GN=INVD PE=2 SV=1) HSP 1 Score: 874.4 bits (2258), Expect = 1.1e-252 Identity = 416/494 (84.21%), Postives = 459/494 (92.91%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy Swiss-Prot
Match: Q69T31 (Cytosolic invertase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=CINV1 PE=1 SV=1) HSP 1 Score: 874.0 bits (2257), Expect = 1.4e-252 Identity = 416/501 (83.03%), Postives = 456/501 (91.02%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy Swiss-Prot
Match: Q9LQF2 (Alkaline/neutral invertase CINV1 OS=Arabidopsis thaliana OX=3702 GN=CINV1 PE=1 SV=1) HSP 1 Score: 873.6 bits (2256), Expect = 1.8e-252 Identity = 411/499 (82.36%), Postives = 455/499 (91.18%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy Swiss-Prot
Match: Q9SW48 (Probable alkaline/neutral invertase B OS=Arabidopsis thaliana OX=3702 GN=INVB PE=1 SV=1) HSP 1 Score: 835.1 bits (2156), Expect = 7.2e-241 Identity = 404/520 (77.69%), Postives = 453/520 (87.12%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy TrEMBL
Match: A0A6J1CRC0 (Alkaline/neutral invertase OS=Momordica charantia OX=3673 GN=LOC111013535 PE=3 SV=1) HSP 1 Score: 1028.1 bits (2657), Expect = 2.1e-296 Identity = 494/498 (99.20%), Postives = 497/498 (99.80%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy TrEMBL
Match: A0A0A0K476 (Alkaline/neutral invertase OS=Cucumis sativus OX=3659 GN=Csa_7G308910 PE=3 SV=1) HSP 1 Score: 1012.3 bits (2616), Expect = 1.2e-291 Identity = 484/498 (97.19%), Postives = 493/498 (99.00%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy TrEMBL
Match: A0A5A7TSZ5 (Alkaline/neutral invertase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1333G00200 PE=3 SV=1) HSP 1 Score: 1011.1 bits (2613), Expect = 2.7e-291 Identity = 484/496 (97.58%), Postives = 493/496 (99.40%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy TrEMBL
Match: A0A1S3CH54 (Alkaline/neutral invertase OS=Cucumis melo OX=3656 GN=LOC103500409 PE=3 SV=1) HSP 1 Score: 1011.1 bits (2613), Expect = 2.7e-291 Identity = 484/496 (97.58%), Postives = 493/496 (99.40%), Query Frame = 0
BLAST of Lag0038523 vs. ExPASy TrEMBL
Match: A0A6J1J239 (Alkaline/neutral invertase OS=Cucurbita maxima OX=3661 GN=LOC111480561 PE=3 SV=1) HSP 1 Score: 1008.8 bits (2607), Expect = 1.3e-290 Identity = 483/498 (96.99%), Postives = 491/498 (98.59%), Query Frame = 0
BLAST of Lag0038523 vs. TAIR 10
Match: AT4G09510.1 (cytosolic invertase 2 ) HSP 1 Score: 890.6 bits (2300), Expect = 1.0e-258 Identity = 424/496 (85.48%), Postives = 459/496 (92.54%), Query Frame = 0
BLAST of Lag0038523 vs. TAIR 10
Match: AT1G22650.1 (Plant neutral invertase family protein ) HSP 1 Score: 874.4 bits (2258), Expect = 7.6e-254 Identity = 416/494 (84.21%), Postives = 459/494 (92.91%), Query Frame = 0
BLAST of Lag0038523 vs. TAIR 10
Match: AT1G35580.1 (cytosolic invertase 1 ) HSP 1 Score: 873.6 bits (2256), Expect = 1.3e-253 Identity = 411/499 (82.36%), Postives = 455/499 (91.18%), Query Frame = 0
BLAST of Lag0038523 vs. TAIR 10
Match: AT1G35580.2 (cytosolic invertase 1 ) HSP 1 Score: 873.6 bits (2256), Expect = 1.3e-253 Identity = 411/499 (82.36%), Postives = 455/499 (91.18%), Query Frame = 0
BLAST of Lag0038523 vs. TAIR 10
Match: AT4G34860.1 (Plant neutral invertase family protein ) HSP 1 Score: 835.1 bits (2156), Expect = 5.1e-242 Identity = 404/520 (77.69%), Postives = 453/520 (87.12%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (AG-4) v1
Date Performed: 2022-08-01 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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