Lsi08G005110 (gene) Bottle gourd (USVL1VR-Ls) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATTTGTTTTTCTTGTTTTACTTGTATTCGGTTTGAATTTGAAGAAGACTATCAAATAAGAACTGTCCACCGTCTTCTCACCGATAACTTTATTACGAACTAAACTAAATCAACGATTTCTCTTTCTTTGCTTTTGTCAAACCGTAGGAGATTCCACCGCCGCCGTTCGCCACCGCCGCTGCCGCCGCCATCTCAACTGTGGTGCTGCTCCAAGGTTCAAGTCCTGCAATTCCACGGAGGAATCTTCGTTCCCTTTTCCCTCTGCCTTTGCTCCCCCGCTTGGGGATGCCGATCAAGAGACCACTCTACGACCGCCTCAACCATCTCTTCCGCCTCCGGTAGTTTCAGAAATTATAATGTCCTCGAGGGATTCTAACGTCCTCTTCAGTGGTGGCGGTATCAGGTCTTTGACTCTTTCTTTTACCTTCTCATCGCTGGAACTCCTCATCATGTATGCATAAATTCAATGGTGTTTTCTGCTGTGAATCTCTCTATTTTGACCTTTTCTCTCCCGCCCTTGTTTATTGATTTACTTTTCATTAACGTTTGTGGGGTTGGACCATTGGATTGGTCCGTTCAAGCTTCTTACAGGTTGTATTGATGATTCTCCTGACATTCCATATCTGGATGAAGACACCGAGTCACAGATTTTTATTTTCATTTTTGAAATTTGCCTTGCTTTTTGAGGGAGTGGTATTTTTAGGCAAGTTGTTCCAATGGCTTCTGTAATAGAGCATTCAAATGAAACTTAAGGATATTTATTTGGCCAGTTCTTTATATAGTCTACTTTGATGTTAAGAGTGGTCCAGATTACCTGGCCATCGCATGGATGGTGGACCTGAGTTTTTGGTTTACCTTCCTGCTTTGGCAATAAGATTCCTTTCGACACCTTTTTTTTTCTTAAAAAACTTGAAGCAATCAATGTGCAGTGGCTGAGTTCTTAAAGGTGGTCATAGGGCCCATCATCTCTGGGGTTTGATTTTGAGTTGCTCTCCGGATGGATTTTTCAGCCCTGTATCATTTAATTTCTGTAAGGACATAATCATCTTTAGTTCTATGCCTTTGATGGTTTGTTTGTGAAGCAATTCTTGATGTATGATATTGGATTCAGTAATTGTATTTTCTGAAATCTAGCACACATGATCCTTATTGGTTAAAATAACTTCTTCTTTTGGTGGGTTTATTACAATGTGAAGTTTGGGAAGCAGTGAAACTTGCACATCTAATATTTTTCTCTTCTCTATTTTTAGTTTTCTCAATGAAAATCACACTGGAAAGTTCAGCTATGGATATTCTAGTTTCAAGGGCAAAAGGGCTTCGATGGAGGACTTCTATGAAACAAGAATTTCTGAAGTTGATGGGCAGATGGTCGCTTTTTTCGGTGTTTTTGATGGTAGGACCAAGTATTTGTTTGCAATTTTATGTTGTTTTATTTGGGAGATTGAATCAGAGGCATGATTTACATCTCCGTGGTTCTAAAAATTGTTTCTATATTTAAGTCACTTACAGCATTTAACTTGATCATTTCATTTAAGAACTATCCTTATAAGATTCCTGACTCCTGAGTTATCTAGTTTGATTGCATGAATGCTTGTTTTTTTCCCCAATTTCATGAATGCTGCAATGTTACGTAGGTCATGGAGGTTCCAGAACAGCTGAATACCTTAAGCGCAATCTTTTCAAGAACCTAAGTAGCCATCCAGACTTTATCAAAGACACAAAGACTGCTATTAGTAAGAAGTTATAATGTATTCATGCATATGATGTCATATTTTCCTTTTGTCTTTGCTAGTGGAGCATCAACCAGGAAAATTACTTATTCTGCAGTTGAGGTCTTTAAGCAGACCGATGCCGATTATATCAATGAAGAGAAAGGGCAGCAGAAGGATGCTGGGTCAACTGCATCAACTGCTGTACTGTTCGGGGATCGTCTCCTTGTTGCAAATGTTGGGGATTCCAGAGTAGTTGCATCTAGAGCTGGTTCAGGTAGCATATTTTCTTCTATAATTTTACTTAATTTTAATAAAACACAGTTCAGGTAGCATATTTTCTTCTATAATTTTACTTAATTTTAATAAAACATGAAATGGTGGATCCAAATCTTTTTGTTAATTATTTTATGTTACAATACTATTTTAATCCCTATACTTTGAAGTTTGATCAGTTTTAGTTCCTATACTTTCCGTTGTTCAATTTTAGTGCATGTACTTTCAATAAATCTAAAATTTAGTCCCCATGACTAGTTTGTTGATTTTTTGAAAACTTTTTGTTATCTATTAGCATCTTTACTATAAATTTTGAAAATATATTCACATTTTGTATTTTTTTGCATGGAAATTTGTATTATTATTTAATTAATTTCGATAAAAATTAACTTTGGGGGACTAAATTTAAGACTAAAATTGAACGAACTTTATTTTTTTTATCAAGTATTGAAAATGAAGATTTGTTGGAATCAATGGATATGTGGCAATTCTTGGGATATTAAGTTGTCAGATCATTTGTTGCAGCTATTCCCCTCTCTATTGATCACAAACCTGATAGATCAGATGAGCGCCAAAGGATTGAACAAGCTGGAGGGTTCATTCTTTGGGCAGGTAAAGTATACTTACTTTTTGATGGCATCCTTGTGCACCAGACTCAGTTGTTTAATTCTGTTTAACTGATACAGTATACGATCCAAAGTAATCATAATGAATAAAGTTTATCTTGGTATATTTTTATAATATATATATACATATAAAGAGTAAAGCTACACTATCCGCATTTATGAATTTGCATTGGATATTTTATTTTTCCGTTTATTTGTGGCTATGATTAAATGCCAACCTGATAATATACTTAGGCATAAACAAAGTTTGTCCATCAGTATTTACATTTTAATCCACTATTACTATTTCCGCAACAATCTTTATCAAATAGCACAAACTAATCATAACATTAAAGTTTGAAATGAAACATCTAATTTGATGCAAAACTTAACCAGGAACGTGGAGGGTTGGTGGTATTCTAGCAGTTTCACGTGCCTTTGGAGATAAGCTACTCAAACCATTTGTTGTTGCTGATCCTGAAATTAAGGTTGGGAAGCTATCTTTTAAATATGAATTTAGTATGTAATGTATTTATTTGGTCTAGCACTTATGAAACATCAGCACAAGTTGACTATGTTCCTATTGTTTGTACTTGCATATGTTCTCCATCAAATGTAAATGACATTTATTTCGAGGATTTTGCAAAGTGCTAAGGCCCTTGAATTTAACCAAGAGGTCATTGTTTCAAAATCTTTGGTGGCCGCTTATGTAATTTCAAACTAGCTGTCGTTGCGTCTTGGTGTAGGCACAGTAGTCCTTTAACCATATATCTGTATTTTGTACGTTTATCTGTTTCCTCATGCTCTTGTAATTGCTTCTGGAAATCTGGAAGAACGCTTTGCTTTTGCTTATCTTCCCTGCTTCCTTAACTCTGATTTTCACTCATTTGAATAGGAAGAAGAACTTGAAGGTGTAGATTTTATTATTATTGCAAGCGATGGACTTTGGAATGTCATATCAAACGAGGTGATTGTTTATTCAAATTACTTTTGACTTTCTCTGTCTTGCTCTATTAGAGAGATTAATTATTCATTTATTTAATCTTTAAACAAAGAAGTTCTGTTCTGATTTTGACATCTTAAAATGTGGTAATGCTAACTTGGAGATCTTGAAAAAATGACAATCTGGGAATACTTCTCTGGGGTTGGAAGGATTCAAGGCCAGTTGACTCTGAGAGGAGAGAGAGAGATAATTGTCGAGCACTCTTCTTCCTTGTCATAATCTTTGAAACCAACTATTCCACAACCACCCGCAAAAGGGGAAAAAAATATAAAACAATGTACTTTTATTGAAAAGTACTGCATAAACTATACAAGAAAATCCATAGGATGATTGAAAATGGATAAGCTTTCCACTAACTTGTTCTTTCGCAAGTCTTTGAAGTATTTGCTGAGTTTTCTAGTTGAATTCCATGCTTTTCGGAAGGTAGAGTCGTCTACTATAATTTTCTAGTTTCAGTAGACATTTGATCAAGTTATGAAACATTTTAAACAAGTTTTTGAATCTAAATGCTAGAAATGACAGCTACTTTGTGGGATTAGTTATCGTATGCATAAACTGTGTTAAAACTATATTTACATTCAAAGGTTTGAGGTAAAAAATACAGGTCCCTTTAGCTCATTCTCCCCTCTTGTGATAAAAAAATACAAAGCTCAAATCAAACTGCATATTGTCTATGTTTCATTTCCCTTTTCTGGCTTTGCAGGAAGCTGTTGCATTGGTACAACACAACCAAGATGCAGAAATGGCATCAAGAAATCTTATACAAGAAGCTTTTGCTCGAGGTAGTTCCGACAACATTACATGCGTCATTGTACGGTTTGGTTTGTCATAATGTGATACAATCCGATAAAACTTGTATGAAGCAGCAAATGGCAGCTCTTTCCCATGGAATGTCATGACTATCTACAGTTGCTGATCTTAACGAGGTCTTAATCCTCAAAAGATCAGCTGATTTGTTTGTCTGTATTGAGTCAGAATACGTAACTTGTGCTGTGCTCAGGACGTTCCTGCTCAATCTGTAGATTACTTTGCCTTTATGTATATGTTCCAACTTTTGCTCCAAGCTCATGTTGCAGATGTCGTTTCACAGGGGTTTCTCACATTTGTAATAACATTCAGGCTAACCTTTCTCATTAGACGCCCTTACGATAGTGTCTCTTTTGTGTTCAACATTCTTCATTATGATCCCGAATACCATTTGGGTTTTATCATTTATAGACTCTGATACCATATTAGAAATAACATGACAGATCTATTTTATATAGAGTGTGAGGTCCCTTGATTTTTCCACTGTGGAATTATGAATAGCTTCTACATTATTTTGTCTCAATTTATAACTTTTAAAAGAATAAATGTATTCTTTAAACTAAAGATGGATTATTTACTATAGGTAGTGTTGTGTCATGATGAAAATTATTGTAATGTTGACATATTAATAATTTGAAATGATTGAAATTATTTCTCAAATTAAAGGGACAAAATTTAAACTTAGTTTTATTACAAAAGTGAAAGTGTACAACAAAGCGAAAAGATATAAATTAACCTGAATTAAAACTTACCTTTTCAAATTTGAATAGAGAACCCTACTTGCTACATTAACTTTTAGTAAATCTCTTAAATTAATGAGATTTATACCATAACTTATTTATCGAGGTATCATGTGGGGAAACAAAATCTCTTTCTTTAATATTTAATATTTCTAAAATAACTTGCACATCAATCATTAAAGTTGCCTCTTTTACAGCTATAGTTGATCATTATGAGAGATGGAAAGTTGCCCCATACGAGGGTGTAGACTTTAGGGGGACCAACCTAAGCTTCTTCTCGTGTTTTAAAAAACCAAATTTTTAATATTTATGAATAAAATTATCATTTTGATCCATATATTTAAAGCTTGTTCAATTTTATTATTTGTACTTTCAATAAATCTGAAATTTAATATTTATTGTTAATTTATTATGATTTTTTTTTCAATTTTTTTGGGCAAATGGCAAAAATTATCCCTAAAGTATAGTGATAGTTGCAAACTTACATAATTGTAGAAATTGTAACGATCGTATAAGTTTGAGAGTTCTAATTTTTATCATTTGGGAGTCTAATTTCTACGATTAGTAAGCTTGAAGGTCAAATTTTAACAATTGCATAAGTTGGAGGGCTTAATTTTTACAATTGAACGTTTGAGGGTGTAATTGCAACTACGTCTGTATCTTGCTGGCGCGGGAGCTACCGAAACTAAAAGAAAATGAATGAAGGAAGAAGGTATTAGCATTAGAAAGACTACAAAGGCATTCCAGGCCGACTACAAGACTAGGACTACAATACAAGTCATGAGCGATAGCAAGAAAGAAGGCCGAAAGCCAGGCAGTAAAGCTCACGTTGTCGACACCTGTTTGCCAATTTTTTTTTTATCTATTAACATTTTCAATATGAATTTTGATAATATATTCAAATATTGTATTTCTTGCCTGGAAATTATTATTATTACTTAACCAATTTTGATAAAAACATAACTTTCATAGACTAAATTTAAGATTTATTGAGTCAAACCTCAATTTATAGGAACTAAAATAGTATTTGTAGCCTTTATAAAAAGAGTTAAATTGACTCCTAATTATCAATTGGTTCTATGGTATAGTGGTTAGCACTCTGGACTTTGAATCCAGCGATCGGGGTTCGACTCCCGGTAGGACCTTATATATTTTTCTTTTTCGCTTCTTCAAAACGGCATCACGGTGGGCCAATCTGAAAAGCCCAGTAAGAAAAGGTAAATAAAAGCCCGAGCCCACAAAATGAGGCCCATCCCACAGCCCAAAACAGGTAGCCGACAAAGTGGTAAGTACACGTGGCGGCATTCAAAAGGGCTCTGAGTATGAGGAGGTCGCAAAAAGCAAAAGGTAGAGAAAGGGAAAAAGATAGAGTACTTTGCCGCTACATCATAAGCGCCACCTTGTTGACAGTTAAAAAAATACTGTTTGCTCCCGCGAAAAAGCAGTTTCTTGTATTAGTTTATTTGTGAAGAACTGGAAAGGCACGAGAAGCTAGTGGGCGGTGGGGTGGGCGAAGCAAAGCAAAGCAAAGGCTCTTCGATCAGAAATGGCCCTATTTCTCTCTCTCTCTTACTTTTCCCCATTTTCTCTGCTCTCAACTTTCTACTCTCACTCCCAGTTGTTCCACTCCTGGGACAGCTTGCTCTGCTGCAGATCCGTGATCTAGGTCTCGACGAAAATGGTGAACGATACTGAGTATTACGACATTCTCGGTGTTCGTCCTTCTGCTTCTGAGGAGGAGATTCGTAAGGCCTATTATCTTAAGGTTAGTTTTATCTGATTGATTGTGTTTTGAAGGATTTTGAGTTTTGTTCTGTTAACTAGTTGATGGAGATTGTAATTAAATGGCAATCGATTAAGAATTGCATGATTAACTGGTGTTTGAGTTAATTGTCTGGTACAGGCGAAACAAGTCCATCCAGATAAGAATTTGAATGATCCTCAAGCAGCTGAAAGGTTTCAGGCAAGTATACTCTCTGGTTCATTATCTTCTTTACATTTTGCGGTTCATGCTTTGCATAATGCAGAACTTTTCCCCAGCTGCTGAAGTTGTATGCTGTATATTAATTATTTTCCGCAGGCGTTAGGTGAAGCTTATCAAGTGTTGAGTGATGCAGTCCAAAGAGATGCATATGATAGGAATGGGAAGCACAGTGTTACTAGGTTAGATCTCTTGGTAGAGACTTATCAAGCTTACCAAGCTGATGTCATTCTTTTGTTAATTAAAAAAATAATAATTCTGTACTGTTTTGTGCTGTTCTTTTCTATAATTTGCTGTTCTTTCTTTTGACATTATTGGATTTGTTATGTTCAGGGAATCCATGCTTGACCCTACTGCTGTTTTTGCACTTCTATTTGGAAGTGAATTATTTGAGGACTACATTGGGCATTTAGCTGTAGCATCAATGGCCTCATCTGAATTAGAAAGCGAAACTGGCAATCCAGAGAGATTACATGATAAGTTGAAGGCAAGTATGCAGCCTTATGGTGTTTACAAGTTACAATAAGTGAATGTCCTTATAATATAGATTTATTTTATAGTTTAACACTTGCAGAGAGGCAGATCAAACTATAGATCCTTAGAATTAATGGTAATAGGTCTCTTATCTACTAAGCAATTCTGGCTTATAATATTGAATTGTTGCTTGTAATATGCTTGCTATAACAGTTCATTTGGTAGCCAATCCTTCTCTAAACAACTTTTATATCTATAAGCAGTCTTAGATTAGAAGGAACTCTGTTCCTTCCACCTTCTCCTCCCCGACATTCTCTTTCCTTTTTTATTTCTTTTTCTAGTAAAAAATTTCAGGAACATAAATCTATCTTCTTATTTGTTTCTCTTACATTTGAAAAGATTCCAACATCTTTGAGAAGCTGTGATAACATCGGACTCTTACATACTTCAACAAGGGATGTTTACTTATAAAAGATAATATGTTCTTTTGCTCAAGATTCACTTTCTCTAAACTATCTCCATATCCCTGATATGCAACTTATCTAATGTAGGCCGTCCAGAAAGAAAGAGAAGAAAAACTTGCACGTATACTTGAGGGTTTTCTTAATCAATATGTACAAGGTGACAGAGACGGATTCTTACGGCATGCTGAATCTGAAGCCAAAAGACTTTCTAATGCGGGTAAGAACAACTCTGAATATGATATGGCAATTACTCTCTTCCCTTCCCACCCTTTTCCTTCCTGATTTCATTTAATTACTTCGACCGTCTCTTGTTGCAATTCTTGTGTTGTTCTATGCAAGAATGTTGTGTGTCTAGCCATGTGGAAAGACACCTTAATAAGTTCGGCACTTTCTTGAAAGCTTATTGATGCAGGAGCCTTCTTGTATTTATATTGTTTTCCATCTTGAATGTGCAGCTTTTGGTATAAATATATTGCACACTATAGGCTACATTTATTCAAGACAAGCAGCACAAGAGCTTGGAAAGAGAGCCATTTACCTCGGTGTGCCATTTGTGGCCGAATGGTTTCGCAACAAGGGACATTTTTGGAAGTCACAGATAACAGCGGCAAAAGGCATGAAGATCTCAAGCTTACACTTTTTCTCCTCATCGATGATTGAGTATTCTGCTTTGATATCTTGCTACTTAATCGTACAAACTATTTATATGTATCCAGGTGCTTTTCAGTTGTTACAACTTCAAGATGATATTTGCCGGCAGTTTACAATGGATGGTAGTGGCCCTGGAAATGATATTGAATCGCATATTCAAGCGAATAAAGACACATTTCTCAGTTCTTTGTGGAAGCTTAATGTGGTTGACATAGAACTGACACTTATAAATGTGTGCCAGATGGTGAGCTCTCTTTCTCTCTTTTGAAAAGTGAATATTTGGGAACTTAATTATCAAAGTATATCCAGGGATGTTAGGTGAACTTAGTTATGATTCATAGGCAATTAATATTTAGGAATAAATATTAGCTGAATTGATACTCTGATATTGAAAAAAATACAATGATATTAGTTATTAGGCACAGATAATGAATGTTTTGTGGTCCAATCTGTTCTCCAGGTGCTACGCGATAATACTGTTAGAAAGGAAGAACTAAAAGCTCGTGCCCTGGCTCTGAAAATTCTTGGAAAGATATTCCAGGTTCAATATGAGATTGAGATCTGAGACATGTTCACCCTTTCTTGTTTTTATTGATTGCCAGAGGCCAAGCAACATTTTTTCCCATTATTTTATTTTTCCTTAGTTTTACTAAAATTTCATTGACCCACAAGTTCTGACCGTTTTCATATAAGGATCTAGTGATAATGCTTTTTGCTGGATATATACTGGCTCCTCTCTGATGTCAAAGTCACACACACCAATATAAGATGCCGGGATATTGTGCATTTTCTGATGTATTTTAAAGAATAAGGGTGATAATATTCCAGGTTTCTAACGTCGTGTTTTCAAAACTACTTTACGTCTTTATGAGCAGGAGAAGCAAGCACAAAATGGTGGAACGTCAAGAAAGAAAGGTGCTGCTGCAGTAGATGACGATGGAACGAGTTCAGAGAGCAGCGATGATGAGGATGATCCCCGAAGACCGCTATCATATCGAACTCCTTTTCTTACTCAGGCAAGTAGATCAACTCTTCTCTTTCCACTCAAAAGGTGGATACTTTATCTCATGTATGTTGAAAGTTAGCGCGGAAAAGTTTGGCTGGTAACCAACTAATAATGTATAGGTCAGAATCGAGCAATAACTTGACTCTTTTTGCTGCTTCTCTAAACTAGAATAGTTTATGCTAGTCGGGATGCTAAGTTTTCTTCTGAACCTCATACAAGACATAATAAATCAACCTACCCGAATGAGTAATCGACACATTCAGTTACTGTCAACTGAACAAGTGATCGGCCTAATTTTATTGAAAGTAAGAAAAGAAAGCGAGGATATAGACCACCACATTGGTATACAAACACTTTTTACATTTTATTTGATTACTCAAGTGCATCTTAAAACGCACCTAAGTATTAATCAAACCTTTAAAATTAGTTTTAGACTTTGGATAGTATATATACATACATTTAGAAACTATTCTGAAAAAAATAACTTTACAACTTAAGTTTATAAGCTTCTAATTTTGTATTTAATAGTTTCTTGAAATTTATGGTAAAACTTTCTACTTTTCTAATAAATCTTGACATTTTTTGAAATACTTCGAGCCTACCAAACTCACAAATTTAAGATCTCATATTATACATGTTATTCACTATTATGTTTAATTTATTAATTTTAAACTCTTCAAATACTTTGAAGATTTATTAAATTTAAAAATAAAGTTGAAAGTTAATTGTCTGAAATTTCACAAGCTTATTAACTATAAACTTGAAAGTTCAAGATTTAAACTTTGCAATTAAATTTAAAGTTAATGAGCACAGTTTAGATAAAACATACGAAGAAAAAACAGAAAAGAACACTTTAATCCTTTTGAAGTTTGTATTTGGCAGTATTCTTGCTCCCTCTTCACGAAAAATTTGACGTGACCCTTATCTTATATTAAACAATATTTTTCTTCTAATTTTTTTTAACTGTTGAACTTAAAAAATATATGTTTTCATCTACTTGTTTTTCATCTCCTCTCTCCACTAAGAACCACCACCACCAATGACTGCAAATTTTTTCTCAAAAACTTTCTAATAGAGTAATTTTATTTGCTTGATCTTTTGCACTATCTGATGGGAACATGGTCACGGTTGAAGTTCTATATCATTTGTTCATGTCGTGCAGGGTATAGGTAGACTCTTCAGATGCCTGTGTAACCCAGCATTTGATGTGGACGATGATGAAATTGTGTATAAAAGCAAA ATTTGTTTTTCTTGTTTTACTTGTATTCGGTTTGAATTTGAAGAAGACTATCAAATAAGAACTGTCCACCGTCTTCTCACCGATAACTTTATTACGAACTAAACTAAATCAACGATTTCTCTTTCTTTGCTTTTGTCAAACCGTAGGAGATTCCACCGCCGCCGTTCGCCACCGCCGCTGCCGCCGCCATCTCAACTGTGGTGCTGCTCCAAGGTTCAAGTCCTGCAATTCCACGGAGGAATCTTCGTTCCCTTTTCCCTCTGCCTTTGCTCCCCCGCTTGGGGATGCCGATCAAGAGACCACTCTACGACCGCCTCAACCATCTCTTCCGCCTCCGGTAGTTTCAGAAATTATAATGTCCTCGAGGGATTCTAACGTCCTCTTCAGTGGTGGCGGTATCAGTTTTCTCAATGAAAATCACACTGGAAAGTTCAGCTATGGATATTCTAGTTTCAAGGGCAAAAGGGCTTCGATGGAGGACTTCTATGAAACAAGAATTTCTGAAGTTGATGGGCAGATGGTCGCTTTTTTCGGTGTTTTTGATGGTAGGACCAATGGAGCATCAACCAGGAAAATTACTTATTCTGCAGTTGAGGTCTTTAAGCAGACCGATGCCGATTATATCAATGAAGAGAAAGGGCAGCAGAAGGATGCTGGGTCAACTGCATCAACTGCTGTACTGTTCGGGGATCGTCTCCTTGTTGCAAATGTTGGGGATTCCAGAGTAGTTGCATCTAGAGCTGGTTCAGCTATTCCCCTCTCTATTGATCACAAACCTGATAGATCAGATGAGCGCCAAAGGATTGAACAAGCTGGAGGGTTCATTCTTTGGGCAGGAACGTGGAGGGTTGGTGGTATTCTAGCAGTTTCACGTGCCTTTGGAGATAAGCTACTCAAACCATTTGTTGTTGCTGATCCTGAAATTAAGGAAGAAGAACTTGAAGGTGTAGATTTTATTATTATTGCAAGCGATGGACTTTGGAATGTCATATCAAACGAGGAAGCTGTTGCATTGGTACAACACAACCAAGATGCAGAAATGGCATCAAGAAATCTTATACAAGAAGCTTTTGCTCGAGAACTGGAAAGGCACGAGAAGCTAGTGGGCGGTGGGGTGGGCGAAGCAAAGCAAAGCAAAGGCTCTTCGATCAGAAATGGCCCTATTTCTCTCTCTCTCTTACTTTTCCCCATTTTCTCTGCTCTCAACTTTCTACTCTCACTCCCAGTCTCGACGAAAATGGTGAACGATACTGAGTATTACGACATTCTCGGTGTTCGTCCTTCTGCTTCTGAGGAGGAGATTCGTAAGGCCTATTATCTTAAGGCGAAACAAGTCCATCCAGATAAGAATTTGAATGATCCTCAAGCAGCTGAAAGGTTTCAGGCAAGTATACTCTCTGGTTCATTATCTTCTTTACATTTTGCGGCGTTAGGTGAAGCTTATCAAGTGTTGAGTGATGCAGTCCAAAGAGATGCATATGATAGGAATGGGAAGCACAGTGTTACTAGGTTAGATCTCTTGGTAGAGACTTATCAAGCTTACCAAGCTGATGTCATTCTTTTGGAATCCATGCTTGACCCTACTGCTGTTTTTGCACTTCTATTTGGAAGTGAATTATTTGAGGACTACATTGGGCATTTAGCTGTAGCATCAATGGCCTCATCTGAATTAGAAAGCGAAACTGGCAATCCAGAGAGATTACATGATAAGTTGAAGGCAAGTATGCAGCCTTATGGTAGAGGCAGATCAAACTATAGATCCTTAGAATTAATGGCCGTCCAGAAAGAAAGAGAAGAAAAACTTGCACGTATACTTGAGGGTTTTCTTAATCAATATGTACAAGGTGACAGAGACGGATTCTTACGGCATGCTGAATCTGAAGCCAAAAGACTTTCTAATGCGGCTTTTGGTATAAATATATTGCACACTATAGGCTACATTTATTCAAGACAAGCAGCACAAGAGCTTGGAAAGAGAGCCATTTACCTCGGTGTGCCATTTGTGGCCGAATGGTTTCGCAACAAGGGACATTTTTGGAAGTCACAGATAACAGCGGCAAAAGGCATGAAGATCTCAAGCTTACACTTTTTCTCCTCATCGATGATTGAGTATTCTGCTTTGATATCTTGCTACTTAATCGTACAAACTATTTATATGTATCCAGGTGCTTTTCAGTTGTTACAACTTCAAGATGATATTTGCCGGCAGTTTACAATGGATGGTAGTGGCCCTGGAAATGATATTGAATCGCATATTCAAGCGAATAAAGACACATTTCTCAGTTCTTTGTGGAAGCTTAATGTGGTTGACATAGAACTGACACTTATAAATGTGTGCCAGATGTTATTAGGCACAGATAATGAATGTTTTGTGGTCCAATCTGTTCTCCAGGTGCTACGCGATAATACTGTTAGAAAGGAAGAACTAAAAGCTCGTGCCCTGGCTCTGAAAATTCTTGGAAAGATATTCCAGGAGAAGCAAGCACAAAATGGTGGAACGTCAAGAAAGAAAGGTGCTGCTGCAGTAGATGACGATGGAACGAGTTCAGAGAGCAGCGATGATGAGGATGATCCCCGAAGACCGCTATCATATCGAACTCCTTTTCTTACTCAGGCAAGTAGATCAACTCTTCTCTTTCCACTCAAAAGGTGGATACTTTATCTCATGTATGGTATAGGTAGACTCTTCAGATGCCTGTGTAACCCAGCATTTGATGTGGACGATGATGAAATTGTGTATAAAAGCAAA ATGTCCTCGAGGGATTCTAACGTCCTCTTCAGTGGTGGCGGTATCAGTTTTCTCAATGAAAATCACACTGGAAAGTTCAGCTATGGATATTCTAGTTTCAAGGGCAAAAGGGCTTCGATGGAGGACTTCTATGAAACAAGAATTTCTGAAGTTGATGGGCAGATGGTCGCTTTTTTCGGTGTTTTTGATGGTAGGACCAATGGAGCATCAACCAGGAAAATTACTTATTCTGCAGTTGAGGTCTTTAAGCAGACCGATGCCGATTATATCAATGAAGAGAAAGGGCAGCAGAAGGATGCTGGGTCAACTGCATCAACTGCTGTACTGTTCGGGGATCGTCTCCTTGTTGCAAATGTTGGGGATTCCAGAGTAGTTGCATCTAGAGCTGGTTCAGCTATTCCCCTCTCTATTGATCACAAACCTGATAGATCAGATGAGCGCCAAAGGATTGAACAAGCTGGAGGGTTCATTCTTTGGGCAGGAACGTGGAGGGTTGGTGGTATTCTAGCAGTTTCACGTGCCTTTGGAGATAAGCTACTCAAACCATTTGTTGTTGCTGATCCTGAAATTAAGGAAGAAGAACTTGAAGGTGTAGATTTTATTATTATTGCAAGCGATGGACTTTGGAATGTCATATCAAACGAGGAAGCTGTTGCATTGGTACAACACAACCAAGATGCAGAAATGGCATCAAGAAATCTTATACAAGAAGCTTTTGCTCGAGAACTGGAAAGGCACGAGAAGCTAGTGGGCGGTGGGGTGGGCGAAGCAAAGCAAAGCAAAGGCTCTTCGATCAGAAATGGCCCTATTTCTCTCTCTCTCTTACTTTTCCCCATTTTCTCTGCTCTCAACTTTCTACTCTCACTCCCAGTCTCGACGAAAATGGTGAACGATACTGAGTATTACGACATTCTCGGTGTTCGTCCTTCTGCTTCTGAGGAGGAGATTCGTAAGGCCTATTATCTTAAGGCGAAACAAGTCCATCCAGATAAGAATTTGAATGATCCTCAAGCAGCTGAAAGGTTTCAGGCAAGTATACTCTCTGGTTCATTATCTTCTTTACATTTTGCGGCGTTAGGTGAAGCTTATCAAGTGTTGAGTGATGCAGTCCAAAGAGATGCATATGATAGGAATGGGAAGCACAGTGTTACTAGGTTAGATCTCTTGGTAGAGACTTATCAAGCTTACCAAGCTGATGTCATTCTTTTGGAATCCATGCTTGACCCTACTGCTGTTTTTGCACTTCTATTTGGAAGTGAATTATTTGAGGACTACATTGGGCATTTAGCTGTAGCATCAATGGCCTCATCTGAATTAGAAAGCGAAACTGGCAATCCAGAGAGATTACATGATAAGTTGAAGGCAAGTATGCAGCCTTATGGTAGAGGCAGATCAAACTATAGATCCTTAGAATTAATGGCCGTCCAGAAAGAAAGAGAAGAAAAACTTGCACGTATACTTGAGGGTTTTCTTAATCAATATGTACAAGGTGACAGAGACGGATTCTTACGGCATGCTGAATCTGAAGCCAAAAGACTTTCTAATGCGGCTTTTGGTATAAATATATTGCACACTATAGGCTACATTTATTCAAGACAAGCAGCACAAGAGCTTGGAAAGAGAGCCATTTACCTCGGTGTGCCATTTGTGGCCGAATGGTTTCGCAACAAGGGACATTTTTGGAAGTCACAGATAACAGCGGCAAAAGGCATGAAGATCTCAAGCTTACACTTTTTCTCCTCATCGATGATTGAGTATTCTGCTTTGATATCTTGCTACTTAATCGTACAAACTATTTATATGTATCCAGGTGCTTTTCAGTTGTTACAACTTCAAGATGATATTTGCCGGCAGTTTACAATGGATGGTAGTGGCCCTGGAAATGATATTGAATCGCATATTCAAGCGAATAAAGACACATTTCTCAGTTCTTTGTGGAAGCTTAATGTGGTTGACATAGAACTGACACTTATAAATGTGTGCCAGATGTTATTAGGCACAGATAATGAATGTTTTGTGGTCCAATCTGTTCTCCAGGTGCTACGCGATAATACTGTTAGAAAGGAAGAACTAAAAGCTCGTGCCCTGGCTCTGAAAATTCTTGGAAAGATATTCCAGGAGAAGCAAGCACAAAATGGTGGAACGTCAAGAAAGAAAGGTGCTGCTGCAGTAGATGACGATGGAACGAGTTCAGAGAGCAGCGATGATGAGGATGATCCCCGAAGACCGCTATCATATCGAACTCCTTTTCTTACTCAGGCAAGTAGATCAACTCTTCTCTTTCCACTCAAAAGGTGGATACTTTATCTCATGTATGGTATAGGTAGACTCTTCAGATGCCTGTGTAACCCAGCATTTGATGTGGACGATGATGAAATTGTGTATAAAAGCAAA MSSRDSNVLFSGGGISFLNENHTGKFSYGYSSFKGKRASMEDFYETRISEVDGQMVAFFGVFDGRTNGASTRKITYSAVEVFKQTDADYINEEKGQQKDAGSTASTAVLFGDRLLVANVGDSRVVASRAGSAIPLSIDHKPDRSDERQRIEQAGGFILWAGTWRVGGILAVSRAFGDKLLKPFVVADPEIKEEELEGVDFIIIASDGLWNVISNEEAVALVQHNQDAEMASRNLIQEAFARELERHEKLVGGGVGEAKQSKGSSIRNGPISLSLLLFPIFSALNFLLSLPVSTKMVNDTEYYDILGVRPSASEEEIRKAYYLKAKQVHPDKNLNDPQAAERFQASILSGSLSSLHFAALGEAYQVLSDAVQRDAYDRNGKHSVTRLDLLVETYQAYQADVILLESMLDPTAVFALLFGSELFEDYIGHLAVASMASSELESETGNPERLHDKLKASMQPYGRGRSNYRSLELMAVQKEREEKLARILEGFLNQYVQGDRDGFLRHAESEAKRLSNAAFGINILHTIGYIYSRQAAQELGKRAIYLGVPFVAEWFRNKGHFWKSQITAAKGMKISSLHFFSSSMIEYSALISCYLIVQTIYMYPGAFQLLQLQDDICRQFTMDGSGPGNDIESHIQANKDTFLSSLWKLNVVDIELTLINVCQMLLGTDNECFVVQSVLQVLRDNTVRKEELKARALALKILGKIFQEKQAQNGGTSRKKGAAAVDDDGTSSESSDDEDDPRRPLSYRTPFLTQASRSTLLFPLKRWILYLMYGIGRLFRCLCNPAFDVDDDEIVYKSK Homology
BLAST of Lsi08G005110 vs. ExPASy Swiss-Prot
Match: Q8VZN9 (Probable protein phosphatase 2C 11 OS=Arabidopsis thaliana OX=3702 GN=At1g43900 PE=2 SV=1) HSP 1 Score: 332.0 bits (850), Expect = 1.8e-89 Identity = 172/260 (66.15%), Postives = 206/260 (79.23%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy Swiss-Prot
Match: Q8GYX8 (Chaperone protein dnaJ 10 OS=Arabidopsis thaliana OX=3702 GN=ATJ10 PE=2 SV=2) HSP 1 Score: 318.5 bits (815), Expect = 2.1e-85 Identity = 199/465 (42.80%), Postives = 267/465 (57.42%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy Swiss-Prot
Match: Q67UX7 (Probable protein phosphatase 2C 10 OS=Oryza sativa subsp. japonica OX=39947 GN=Os02g0149800 PE=2 SV=1) HSP 1 Score: 274.2 bits (700), Expect = 4.5e-72 Identity = 143/250 (57.20%), Postives = 177/250 (70.80%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy Swiss-Prot
Match: Q8RXV3 (Probable protein phosphatase 2C 59 OS=Arabidopsis thaliana OX=3702 GN=WIN2 PE=1 SV=1) HSP 1 Score: 272.7 bits (696), Expect = 1.3e-71 Identity = 138/250 (55.20%), Postives = 181/250 (72.40%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy Swiss-Prot
Match: Q5Z6F5 (Probable protein phosphatase 2C 59 OS=Oryza sativa subsp. japonica OX=39947 GN=Os06g0698300 PE=2 SV=1) HSP 1 Score: 268.9 bits (686), Expect = 1.9e-70 Identity = 147/250 (58.80%), Postives = 180/250 (72.00%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy TrEMBL
Match: A0A6P9ESZ1 (Protein-serine/threonine phosphatase OS=Juglans regia OX=51240 GN=LOC108981366 PE=3 SV=1) HSP 1 Score: 842.0 bits (2174), Expect = 2.0e-240 Identity = 480/818 (58.68%), Postives = 551/818 (67.36%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy TrEMBL
Match: A0A6P9EHN9 (Protein-serine/threonine phosphatase OS=Juglans regia OX=51240 GN=LOC108981366 PE=3 SV=1) HSP 1 Score: 838.6 bits (2165), Expect = 2.2e-239 Identity = 476/818 (58.19%), Postives = 546/818 (66.75%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy TrEMBL
Match: A0A6P9EFD0 (Protein-serine/threonine phosphatase OS=Juglans regia OX=51240 GN=LOC108981366 PE=3 SV=1) HSP 1 Score: 775.4 bits (2001), Expect = 2.3e-220 Identity = 455/818 (55.62%), Postives = 518/818 (63.33%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy TrEMBL
Match: A0A6P9EHY7 (Protein-serine/threonine phosphatase OS=Juglans regia OX=51240 GN=LOC108981366 PE=3 SV=1) HSP 1 Score: 771.9 bits (1992), Expect = 2.5e-219 Identity = 451/818 (55.13%), Postives = 513/818 (62.71%), Query Frame = 0
BLAST of Lsi08G005110 vs. ExPASy TrEMBL
Match: A0A1S3B3A2 (chaperone protein dnaJ 10 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103485662 PE=4 SV=1) HSP 1 Score: 658.3 bits (1697), Expect = 4.1e-185 Identity = 372/540 (68.89%), Postives = 395/540 (73.15%), Query Frame = 0
BLAST of Lsi08G005110 vs. NCBI nr
Match: KAG6578926.1 (putative protein phosphatase 2C 11, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1030.0 bits (2662), Expect = 1.1e-296 Identity = 580/817 (70.99%), Postives = 610/817 (74.66%), Query Frame = 0
BLAST of Lsi08G005110 vs. NCBI nr
Match: XP_040997166.1 (uncharacterized protein LOC121243167 isoform X1 [Juglans microcarpa x Juglans regia]) HSP 1 Score: 844.3 bits (2180), Expect = 8.3e-241 Identity = 480/817 (58.75%), Postives = 551/817 (67.44%), Query Frame = 0
BLAST of Lsi08G005110 vs. NCBI nr
Match: XP_035546983.1 (uncharacterized protein LOC108981366 isoform X1 [Juglans regia]) HSP 1 Score: 842.0 bits (2174), Expect = 4.1e-240 Identity = 480/818 (58.68%), Postives = 551/818 (67.36%), Query Frame = 0
BLAST of Lsi08G005110 vs. NCBI nr
Match: XP_040997167.1 (uncharacterized protein LOC121243167 isoform X2 [Juglans microcarpa x Juglans regia]) HSP 1 Score: 841.3 bits (2172), Expect = 7.1e-240 Identity = 478/816 (58.58%), Postives = 550/816 (67.40%), Query Frame = 0
BLAST of Lsi08G005110 vs. NCBI nr
Match: XP_040997168.1 (uncharacterized protein LOC121243167 isoform X3 [Juglans microcarpa x Juglans regia]) HSP 1 Score: 840.9 bits (2171), Expect = 9.2e-240 Identity = 476/817 (58.26%), Postives = 546/817 (66.83%), Query Frame = 0
BLAST of Lsi08G005110 vs. TAIR 10
Match: AT1G77020.1 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 485.0 bits (1247), Expect = 1.2e-136 Identity = 278/505 (55.05%), Postives = 327/505 (64.75%), Query Frame = 0
BLAST of Lsi08G005110 vs. TAIR 10
Match: AT1G43900.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 332.0 bits (850), Expect = 1.3e-90 Identity = 172/260 (66.15%), Postives = 206/260 (79.23%), Query Frame = 0
BLAST of Lsi08G005110 vs. TAIR 10
Match: AT1G76700.1 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 318.5 bits (815), Expect = 1.5e-86 Identity = 199/465 (42.80%), Postives = 267/465 (57.42%), Query Frame = 0
BLAST of Lsi08G005110 vs. TAIR 10
Match: AT1G21080.1 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 314.7 bits (805), Expect = 2.1e-85 Identity = 186/417 (44.60%), Postives = 250/417 (59.95%), Query Frame = 0
BLAST of Lsi08G005110 vs. TAIR 10
Match: AT1G21080.3 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 314.7 bits (805), Expect = 2.1e-85 Identity = 186/417 (44.60%), Postives = 250/417 (59.95%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
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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