HG10008687 (gene) Bottle gourd (Hangzhou Gourd) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGATATCCACTGACATTGTGGACTTGTCAAGTGACGATGAGGAAGGATCAAACTTGAAAGCCGTGAAGTTGGAGCCAGGAGTTGATGGGGCTGTGGTTCTACCAAAAGAGCACACAAAGAAGAATATCATCAAACTTGAAAAACCAAATGCTGAATTTGTTATTCAAGGATTTGATGAAAATAGGAGCCCGAATGTTTGGAGTGGTGGTCAGAGTAGCTCTAGTATATTGGATCAGGTGCCATCTCCAGCTGATGATTCTGGCCTTACATCTCCATCTCCCTTGTGTCCTGCACCAGTTTGTCGACAATTCTGGAAAGCTGGCAACTATAATGATGGAGTTGCTTCTAATGTCACCGTTCAAAGTACTATGCACTTTTGCCCATTTCGGATTTGCCATTTTTTTTAATTCATATGCTGTGATATTTCATGGTTTTATTACGGTCAGAATAATTGTTGTCCTATCAAAGTAATGCAGGATTGAACTTTTGATTTAGATGGCTTTGTGAAGAGCTATTGGATTCCGGAGCTTTGTTTCTGATGGTTTTTTCTCCTGATGACAGGTTCCAAAGGCCATCTCCATGTCCACCCTATGTTCCTTCATTCAAATGCTACTTCACACAAATGGGCCTTTGGAGGTATTGAGCTCAAGTTTGTTCATGTTTGTTTATGTTTTTATGTCTTTTTTTGAATATTCAAGGCAAACAATCTCCCAATTGTTTCTTTATCAATTATCCTTTCTATTCAATTCTTTCTTATAAATAAAAAGCCATAATATTTTTTCTTCGTTCTGTTTCCAGCTGTTGCAGAGCTGCTTGATAACGCTGTTGATGAGGTGATTTTCTCACCTGTCTTTTAGCAGAATACTCGTTTAATTTTGATTAAAATTTATGAGATCAGGTTTTTACTGTGGATCTTATCTTGTTTCTCTAGGTTAACCATCTTTCTGGATTCTCTTCTCCTCCCTCCAACCCCAGCTTTCTGAAATAAAACTTTGATTGTACATATTTTTCTCTATATTTCAAGTGCATGATGATCACTTAAGAATTGCAAAATGCAAATAAAGTACTTCCAGTTTCTAGTCTTTGTAAGTTGAGGTATTGGTGTGTTTTTGTGTCTATGATTATGTTCTTACTTTTCTTTTTTGTAATGGGTAGATCCCCAACGGAGCTACCTTTGTCAACGTGGATAAAATCTTGAATGCAAGAGATGGAAGTCCTGCTTTGTTAATTCAAGGTACTGTCATTTGTTTGTTCAAATGCTTTTTGATATCAATTTTATATTTTCTATTAGGTTTCCATTATCCTTTAATCTATTCAACCTTGCTATACATGTAGATTAAACTGCATTATACTTACGCTTTCAAAATTTGGCCACTTTTTTCTAGACGATGGAGGTGGAATGGATCCTGAAGCGATGAGGAGGTGTATGAGCTTTGGATTTTCAGATAAATCGTCAAAATCAGCCATCGGACAATGTATGGAAATTTGTAATCATTTTGTAATGTTACATTTTAAGCTCCTTTCCCTATTGCATTTATTGGTTCACTTGTAGCCTTCCAGATGGAAATGGTTTCAAAACCAGCACTATGAGACTTGGTGCAGATGTTATTGTCTTCAGTCGGCACGTGAATAATAGGTTTGACTCAAACTTTTACATAGGTTACGACTTGTACGTATGAATATCTTAGTTTTGAATGCCTGTCTTATTGATTTGACAGACGATTGTGAATAAGATACTTATGTTTTTCTTTGTGAAACTTATTTGATAGCACCGGATTGACACTAGACTTTTTTTGGCTCTATATGCTGTGCATGCAAGATATTTTCCATTCCACCTCTGTCTAGAAAGAGTGGTCAAACATTTTTTTTCCTTCTTCCCTTAGGTTCGCTTTCTATGTTCCAGGTCCAGGGTATCAACGCAGAGTATTGGTCTTCTGTCCTATACATTTTTGACTCGTTCAGGCTACAACAGAATTGTAGTGCCTATGGTATTTCCACTTTCTCGTTAAATAGTTATAATTAGCTTATATCTTTTTCTTGTTAAATGTTTTGCCATTATGTTTGGTTATGTGCAGAAGCAAAATTTAAGTCCGCTTCAATGTTGTCTTACTATTGAAAATGTGATGTTTTGCATGTTGAAGGAAAAAGATGAACAATGGAAACTGATATCCTTTTGAGGGTATGGCATCCTAGTATCATAAAGAAGCTGGTCTTAGCTAGGATAAATCATAAGAACTTAGCTTTGTTTCTAAAGGGGTGACACCATAGAACCTAATATAGGGAATTTTTGCTGGGGTTAATGAGATCCAATGAATCATTAATGTATGAGAAAGAGCCTGGCAACAAGATGAGAGAAAGGGCAATAGATGTAAGTGTTTTTTTTTTTTTTTTTTTTTTTGTTTGGGGGGGGGGGGGGGATTTTATTCTTATTCTCTAAGGACCGAACAATGTATATTATACGCAATTCTACACTCTTGTGGGTGTATATAGAACATAATCCAACTTGGAGTCGAATTCATCAAAAGTAGTAAGAATGTCACCAATTTAATGGTTGAAATAGAAATAGGTAGCTCATTTAGTAGAGGAGTTTAGACCTTGGTCATAGTGAGTATAAAAGTTGTGAGACAGGTAGACTCAACTTCTTTTGCCTCAAATTCCTTCATAATCACCTATCGATTTTCAAAGAAGGTAACATCCTTAGATGTGCACTTTTTTTTTTTTTTTTTTTTGCTGATGGGAGAATGTATTTCATTTGTACCACTTTTGGTGTGTTGAATAACCTAGGAAAATGCACTTCATGAATGTTGGATCAAATTTAAATGAGTGAGGAGAATGATTGGAGTTGGATTAAATAAAGGAAAAACAACCAAATATGAGATTCAAATTTATCACATATTGGATCAAACAAAGGAAGAACAATCAAATACTTCCGGAGGTAAATTTGAGGAAAAAATTTAGAGTTTATTTTGGAAAGAGGGAGACTTTCTGAGCTTCGTATTTCTGCCTTTTGAAATTCCCCAGAGGGAATACCATGAGACGTTCCTTCTATCATCAGTGCATTGTAATCTTTGGTTGGGACACCAGGAGTAACTCCATTGGCTTTAATATTCTGACAAGAAATTATCTTTTCTTTCCTCAATAAATGAGACTTTTTGCCTTGCTGGGATGTGTTCCCAAAATCAAGGGAAAAGTGCAGGTTTGAAGGATTGACAGGGACCCTAGGAAGCTTCTTCTCCGGCACCTGTGGATTCGTCGGATTTTGAACTTTTTTTCTTAAAGCTTCAAAAGGATTCTTTGAATATAATGGAACTGATTGAATTGAGACAAAATAATCCAAATCTCCTGATTTGGAGATGGAGTGAACTCCTTCATCTTGCATAACTTGATTTAATTGCAGTAGGTCAAGTGGGTTTGTAAAGTCTTTAACAAGTAAAGGCCTTGTAGTAATTGTTGGAGGATCCATAACTTCAATATCACGAAATTCAAAAAAATATTCCCTCGATTAGAATTTATGATTTCAATGGTTGAAGTCATAAAGCCACACAGATTCCTTTTAACTTGTATTTTAGCTTCCGAGCAATTTAGTAAGTTGAGTGTAAGTTGCAATATCCTCAAGGCCCCCAAAATAGTCTCCTATTGCTTCAAAGTCTTCTTGCTCCAATAATCCAGAGGAAGATTTTTAATTTTAAGCCAACCTCCAAATCCTTTCATTAATAATGGTCGACCATGTCTAAATATGTTCCACTTTTCAAATAACAAACAAAAGGGACCCATCTCCTGCCATTTCCTTGGGTCTTCGATTAAATCCTCTAATGATCCCTCTTCTAATTTGATCAAGTCATTCTCTGCAACATGGGATTTATGATGACTTTGGTTTGAAACAAATCTTCAAGACTTTTGCAATCTCTTTCCAGCCGTTGAACATGAACAATCTTGATACGATTCACAAATTGTTGAAATCTTCCTTGAAAACCTTTGTATTTCTGCGTACCCAAAATGAGCTTATGCTTTGTTTTCCTTTTGCCGGAATAGGGGCTGCCCCAGTTCGATTCTTTCTCTGTGGTCTTACTTTGTTTTTCTGAAGCTGAAACAGAGGATTGGCATAGACCTTTTGACTTCGCCTTTTCTACATAGCGTGGTCCTTAAACCTGTGCAGAGAGTGTATCAGCCTCTGTCGAGCTCTGATTGATAGGTTTCAATTTAGGAAATTGTTGCTTTTTCCAAAGATTGTATGCATATTTCATCAGAAAACCGTTCAACAATTTGAGGAAGGACTTCCACCCTTGTTGAGAAACTCTCGAATGAACATGGATGGAAAGAATTCCCCTCTCTGCTGGCCATACGACACATCTTAGATACCATCCTGAATCAGCTCTAAATTTCAAAATTCTTGTCACTCCACAATCATCTTGATCGTTTTTAAGGAAGTACCGATTAGTGGGGCCTCGGAGCTGTTTAGATATGTAGTTCATGAACCATCTCAATTGAGAATTGATAACGATAAAATTTCTTTAGCTTCCACGTCCTCAATATGGAATGAGCTATGCTCAAACCAAATACAGTAGAACAAACCATGAACATTACAACTTTCCACTTCTATTGCGTTAGCCATATTTAAAGGAACCACAAAAATGAAATAATTGAACTAAAGCCGCTAGAAGATGAAATAAAAGAAATGGTTCAAGAGTTGAATTTGAAATAGTTTTGGACATTGTTTTGAGGACCTGTAGAATGGTAGAACTGAAGGTATTTGACGTTTTAAGTAGGAAGGATCATTTGAAGGGGGTGAAGAGAAATGTTCTGGATTGGTTGTCGAGGATCTTTGACTCGGTGTTTAAGAATCTTGAGAGGTTAGTGAGGAATGTTTTGTGGGAAGGGGTTGACGAGGATGAGGTTCTCATTTAGTTAAGGAGGAGGTGGTTTTGAAGCCGATTGACTTGGGAGGTTTTGGTATTGGGAGTTTGAGATTACATAATGAGGCTTTTTTGGCCAAATGGTTGTGGCGGTCTCTTCATTGAGACTTACACATTGTGGTATAGAGTTGTTGAGAGTAGGTATGATCCTCATCCTTTTGAGTGGACTCATTAAAACCATGTGGAAAGCTATCTCTTCGGCTCTTCCCTCTTTTTCTCAATTGATTAGGTTCTTTCTTGATTGACCATGGCATTTAATTTTGGGAGGATCGTTGGGTGGGAGACAAGTGTTTATGTGCATTATTTCCTCGTCTTTACTTTCTTTCAGAGAAGAGGGTACGTTATGTGACCTTGGTGGAGCCTTTTTCAGTCGTTCTTCAATCTCGTTGGGCTTTCCTTGCCCTTTGTCTAATAGGGAGGCAATTAATATGGAAGATATTCTTTTTATCTTTTGAGATAGATATTTTGTTCTAGGTAGGAGGGATGTTAGGATGTGGGCGCCTAACCCTTCTAGTTGGTTCTCTTGCCATTCCTATTTTCAAGAAAGGGTTCTCTTGCCATTCCGATTTTCCCCTTTTATTTTTGTTCCTTGCTCCATCGACGGCTTCTAAGGCTTTAACCTTTTTCTTTATGGAAGGTAAAATTTATAAAAAAGGTTAAAGGTTTTTGTGTGGCAGGTTTTACTGGGGAGAATCGATACCTTGAATCATGTCCAAAGATGATCTTCCTTCATCTTGCTACCATAATGGTGCATTCTTCGTAGGAGGATCTGAATCATTTGTTGTGGGTGGTGTTGTTCATGAACTTTCTTTTGGATTGTTGGTGGATGTCTTTTGGTGTTGGTGGGCTCGTTATAGAGGTGACTAGTGAGCGATCCCTGTTGGAGGAGGTGCACTTTGTGGCATGTGTGTTTCTTTGCTATTTTGTGGGGTATTTGGTTTGAGAGGAATGGTGGCAGCATGAGTCAAGGCCGTGGATATTTTCTGTGACTATGACAATAGATAATGTTTACCACAAAAGGGCGGCATGAACATAAGCTAAACAAACAATGGTCAAACTCCGTAGGAAAATGTTGGAGGACACATGGTCAATGTTCACGACTCCAAAAGGGGACCATTGTGAAAATTTGCAGTGTTGCAAAACAAATAATTGCTCCCCACAACTTGAAACCCATGGTTGTGAATGACTTGCGACCCACAATATGAAATGGGATGCTAGAATGAGATGCTGACATTGGAAGACTTGTCAAAATAAGATGGTGCCGTCGATGGTGATAATTAATGGCTTGTTAGGATTTTTGATGATTAGAGTTTGGCTCTGATACCATGTTATTTCTAGGATAAATTATTGTTTTTTATTCTCCAAAGACTCAATAATTGTAAATATGAAGTATAAAAGAAGTTGAGCAAAGAAACTAATTATAAATGGAAATAGTATTGATAAAATTAAAAGATAAAAAGATGCCGTTATAATACACAAATCTACCGTAGACCATTGTCTTCACCATTCTGTTTCAAGGAACCAACTTGGAGAACCCAAGCTGAGATGTTTCTTGTTTGGAATCTATCACAAGTACTAACCTGGAAAACTCATGGCATAACACTTTTGGTGCCTAAAATGTGGTAAGACGAAGTCTAAACAGAAAATTACCTTATTCTCAAGCTGGATGTATATTGCAATTACATTCTGCTATCTTATTTATTTTTTAAGTTTGATGCCACATTGTCGATAGCTCAAGGGTGGTGACCGGTGATGCTATGATTGAACCAAAAACAAGTTTTTTCACATCTTGATAGGAACTGTTCATCTTTCTTCTATAGATTTACAGAAACGTTTTGTGTGATTACATTTTTTCTTCTCTTTTCAAAAATATAACCCTGCATGGGCTTTCTTTTTTATTTAAACTTGTTCCTGTTTAGTGTCTAGATTGTGCATATTGGTTTTTTTCTTTTCTTCTTTTTTAAGATGCTGCTAGGTTAAATTGCAAAGCAGAAAAATCTCCTATACTTTATTTTGGTTTGCCCCTTGGAGGATATCCAAAGCAAATCTCTTTTTGGCAACCAGTGATAGGTAAAATACATGCAAAGCTTGACAAGTAGACGAGATTCAATTTTTCTATAGGTGGGCGGGCTACTTTGTGTAAATCAGTGTTATCTAACCTTCCCACATATTATATGTCTTTGTTTTTAATGCCTGAGAAAGTCATTTCTGCTTTGGAAAGAATCATGAGAAATTTCTTTTGGGAAGGACACAATGGAAACAAGATCAATCATTTGGTGAAATGGGAAATTGTTACACGATCTTTGGGTGATGGAGGACTTGGCTTCGGGGGCCTTAAAGGAAAGAACTTGGCATTATTAGCTAAGGGGGTATTTGGATGAAGAAATTTCCTTGTGGTGTCAAGTTGTTAGAAACATACACGGCAAAAACTCTTACAATTGGCATATGGCTGGGAAGATTGTTAATAGTTTGAGAAGCCCTTGGAATAGCATTTTTAGAGCTTGGTTGAAGGTGGATGCCTTGGCTCCTCTTAAACTTGAAGATGGTAATAGAGTTGCTTTTTGGCTTGACCTGTGGGATGGCTTGGTTCCTGTGAGCACTCGTTTCCCACGTTTATATAAGGTGGCTTTACTCCCTAAGGGATCGATAACAACACATTGGGATGGTATGTTCTTTTGGTTCATTATCTTTCATCGCTTGTTAAAGGATGATGAAATTGTTGAATTTCAAGAGTTAGGGTCTCAGAGAATTTTGATAGAAGAATATGGTCTTTAGAAACCTCTGGGTCTTTCTATGTGAAATCACTTTCAGCATTCTTGTCCTCCTCCCCACTTGACAAGCTGTTTTTTAAGGCACTTTGGAAACTAAAAATCCTGCGGGTTAACATCCTTGTATGGGTTATGGTTCTTGGATACCTAAATTGCTCCTCGGTGATGCAAAGGAAATTCCCTTCTCACTGTTTGTCTCCATCTATTTGCCACTTATGTAAACAGGATGGAGAGGATTTGCAACATCTATTTTTTGATTGTTCATACTCAGCCCGCTGCTGGTGGAGGTTATTCTCACTATTTAATGTTGATTGGGTGTTTAGAGACGTCTTTAGAGATAATGTTCAACAACTTCTAATTGGCCCAAATTTGAAAGTGGGTCCTCGGATGATTTGGGCCAATGTGGTTAAGGCATTGCTTGTTGAAATTTGGTTTGAAAGAAACCAAAGAATGTTTCATGACAAGCAACTTGGTTGGTGGGATCACTTTAAAATTGCCCGTCGAAATGCTTCTTCTTGGTGCACCTTATCCAAGCCTTTTGAAGACTTTTCTATTTAAGACTTATGCTTAAATTGACATGCTTTTATTTTTCCAGCCTAAGTATTATACTTGTATCATACTTACATTGTTTTGTTATTATTTGGACAGATTGATCTTTTTGTTGTCGTTTTTGGTTGCTAGATCGTTTTTGTTCTCATTGATGTATGGACATGATGAGGATGCTATGGGGGTGTCAACTTAGTTGGGATTCCCGGGTGCATCTCCTGATCCTTAGGTTCTTTCATCGCTCTATGTATCTATATCTTACATTTTGTACGTTGAGCATTAGTCTCATTTCATTAATTCAATGAAGAGGTTGGTTTCCATTTAAAAAAAAGATACTTTCTTATAATTATTTTACTGCCTGTGGACATATATCGCCTTATGCACTTCCTTCGACTTCAAATCTGGTGCTGGTTTTGTTGGTTCTATCACTTTTTTTAATCTAATGGAGAATTGATGTTTTGTGTTTGTACTGCAGATAGATTATGAATATAATGCATCAAGTGGGAAAATGGAAAGATTGCATGGGAGGGAACGTTTTATGTCTAACCTTTCCATACTTCTTCAGTGGTCTCCATACTCATCGGAGTCTGAACTTCTTAAGCAAGTAAGATATGTTCAATCTCCTTTTGTTCCCCTCATGTACTTTGGAATTTTAAGCTTGTTTTGACCATGGACTACATTAATTGCATTCTAGTTGTTCATCCCCATTCTTTCCATTTCTGTTGAAAAATCTAGAATTTCATTCGATCCAGACTCCAGTCCATAGATTTTCATTTACAGCATATACACACAAGATCCTCGCTTCCCTACTCATATTATGTCCGCATAACAGATGAACTATGTCCTGTGTTTTTTCAAAGAACTCATTGGTTGTAAAGTTGTTCAAATAAGAATTCCTAAAATTTTCCTTGGTTCTGTAACTTCCATGGCATAAAAGACCAGTTTGGTTATATAAAATAGTAGGGCTTTTCTTAATCATATTTTTAGTATGTGATCCTCCATGAAACATTGCCCACGGGGAAAAAACTGCAAAATAGCCTTTACTTCATTTGACCATAACATCTTGGCGTTACCTTTAGCCACCATTTAGGGAATCTGCTAGCCAATCTTCTAAGCAACGAGGTTGTTTGTACAAACTGAAGTCCAAACAGATAACCAAAAAAAAATCCCAAAATTTTGTTGCTGCTTATGTTACAATAGAGGAGGGGAGACAGAGACTCTACACTATATTTGGATAAAACACATGTTCGGGACTCTACACTATGTTTGCATAAAACACATGTTTGGAATCTCGAATTTTGTGGAAAACTAGCGCTTGTATCACTTGGGAAGTGGTTAGAGGTAACTTTTCCCTTAGTATTTCTTTTTATGATGCAGAAGGTGAAGATTTTTGGGTTTCGGGAGTTTATGGCCCTTCGAGGTCTAGAGGGAGGAAAGACTTTTGGGGGGAACTAGGGGATCCCTTTGGTTACTGTGGTTTTAGATGTTGTGTGGCTGGTGATTTTAATTTTATTCGCTCTCCCAGGGAGAAGGATTTAGCTGGCAGGATTGCCAGCTCTATGAGAGTTTTCAACCGTTTCATTGAAGAGTGTAACTTGTTTGGCCTTCCCTTGTTAGGTGGGAAGTTTACTTGGTCTAATTGTAGGGTGGCTACTAAGATTGATAGGTTTAAGTGACTTTTGTTGAAAATCTCATTTGTATTTATCTTATTATATTTCTCTATTTTGGAATGTGATGAGGGCGCTAGGATTGTGTCAACCTAGTTGAGATAGTCGGGTGCACCTACTGATCCATGTTACATATTGAACTTATATATCATTGTAATCGAGCATTAGACTCTTTTCATTCCATCAATGATCAGTTTTGTTTCTATTTAAAAAAAAAAAAGATTGATAGGTTTTTATTTTTAGAAGATTGGATGAGAGATTAGGCAGCCCTAGGAAGACAAGGGGTCAAGAGTCACTTTAGATAATTGGCCTATTGTTTTAGCTTTGGGAAAGTGGAGTTGGGGTGCAAGCCCTTCCGCTTTGAGAATATGTGGCTTGAGCACCCTTCATTCAAGGCCAATATCTCTTTTTGGTGGAGAATATCGATCCTAGGAAATTGGGCTGGCTATCATTTTATGTGGAAGTCGAGAGCTCTGGAAGGGGTTCTTAGATCTTGGAATGGAGAGGTTTTTTTTAGATGTTAAGATCAGAAAGCAAGAGGTCCTCAACAGAATCAAGCAGATTGATTCAAAGGAACTGGAGGGTCCCTTGGATTCTGTTTCAAAGGGGGGGAGCTTTAAAAAAAGGGAATTTGCTGATTTCATTAGATTTGTATCAGTTGGGGTTAAAAGGCTGAAAGTGAAATGGGCTAAGGAAGGGGATTGTAATAACACATGTTGTTTTTTTCATAGGGTAGCTAGTGGTAGGAGGAACAAGAACTGCATTGGTCGAGGAGGAGGTTCTTTTGGTGTTCTCAAAGATTTACTATCTGGACACACTGTTGTTTGTTCAGGTTATTAAGTGTTCCATCTTACCGAGGGACGAAGAGGAGTTGGTGGCTCTATTTACTATGGAAGAAATAAGGTAAGTGGTTTTTGGGAGTGATAGGCGTAAATCTCGGGCCCTTGATGGTATATCTATGGAATTTTTTTAAGATAGCTGGGATCTCCTCAAGGTTGTGCTAGAGGGAGTTTTTAAAGAGTTCTTAAGAGAGGTATTTCAAATTGTTCTTTATGGGAAACTTTTGTGTGCCTTACCTCGACAAAAGAAAAATGCAATGAGGTGAAGGATTTCAGACCTATTAGTCTTATCACAAGTGTTTACAAGATTTTAGCAAAGGTCCTTGCAAACCGTTTAAGGTAAGTGCTTCCCTCAACCAAACCAACATAGACTACTTTTGTAAATCAAGGGTAAAATTTTAACATTTTGAAACCTAGGGACTAAATTTAAATCAATCTCAAAACTTAAAGACTAAAAGTGTGACATTTTGAAACCTCCACTAAATAGAAACTAAATCCAAAACTTAGGGACTAAAAATGTGTTTTTTCCTTTATTTTATTATAACTCCTTTTCCTTTGGCCTCTTCAAAGATCTTCCTTACCAGCATAATGCTAAAAAATGGATTATCCTGTTAAAGAGGAGGAGACATCAAAATGCAACACATTTAAAACCTAACAAACCAACTCCAGAGAGGAAACCAAAGCTAGAGAACACAAACTTTAAAGCCATAGCCTATGGAGGACCAATGAGCAGACGAGGTAATAAGTCCAATAAGACCAAAAGTACGAGGATCAAACCACAAAGCTAAGCTTTAACGAAAGGAGAATAAGGTGGAATGATTTCAACTTCAAACCACATTTTTCAATCAAAGTAGAAATTTTAGCAGGAATTATGGGTGACAGTTCTGCTTGAATGTTTTCACCATTTTGAAACATGGTATCTAAACCATTTGCAAAGTAAACCTCTGAATTCTTCTCAACAAAATCATCTTGTGCTAGAGAGTCCATTATCCTCACTGGTTACACTAACATTTGAATCTTCACAAGAATCATAACCTGCAAGGCTGCAACATGGTCCTTTAATTTTTCATTACTTCCCATGAAACGCTCTTTGATTTTGGTTTGAGCCTTTTGATTGGTTTGTTTTTTGGTTCTGTTGGCCCCATGGTACTCGGGGTGTTTGTCCATTATTATTATTGTTTTAGTTTTCTTTTGGATATGATGAGAGTGCTAAGGAGATGTCAACCTAGTTGAGATGTCCGGGTGCACTTGCCGATCCTCTCTTATTTACGTGCTTTTGTATCCCTCTATGTACTATGAGCATTTGTCTCACTTCATTATATCAATGAAAGAGACTCGTTTCCTTTAAAAAAAACATCCATGTTCCGATCTCTGAGTAGTACTCAGGAATAGTATCTTCCTTACACCATTGATTAGACTGGTAAAAAAAAGGTCATGTTTTCTAACTCATGTGAAGATGTGGAAATTTATAATTATGAAAGTTACTATAGTTGTATATGCATATGTTCTGAAAATTTGTAAGTTAAGTGCAAGGCATGCTGAATTACCTTGCCACTGGACATCTTTAATTAAACATATTTTAGCATCTCTCCTCGTACAAACCAATTTTGGTGACCATTTTTTAAGCTATTTTGACTCTGATGGCAGTTTGATGATATTGGATCTCATGGCACAAAAGTAATCATCTATAATTTGTGGTATAATGGAGATGGTAGAATGGAGCTTGACTTCGATACAGATCCGGAGGTTCAAACCATTTTTGTTTTTCTTCTTTTAATCGACTTTTTAATTATTTGGGAGGATTTTTCTATTGATTCTGTGGTAACACAGGGCATTTGCATTGACGGAGATGTAAAAAAAATTGACGCTCTCCCTGCATTGAAGGCAATCAATGAGCAGCACGTTGCTAATCGATTGCAATATTCTCTCCGTGTAAGCTTGAGTTGCAAAAAGAATGCTACAGTTTCATTTTATATAGCACTAGAGTTTTGTACTTACACTTAATCCTTCTCAGGAATATTTATCAATCTTGTATCTGCGTATGTCTGAAAATTTCAAAATAGTATTGCGTGGGAGGGTTGTTCTGCATCGTAATCTTGCAGATGATCTCAAATATCTTGAATACATTTTGTATAAGCCTCAAAGTGGTGGACATGTGGAGGTAGCATTTATCTTTTCAATCCAGCTTTTTTCTTTCTTTCTTTAATTTTGTTTGGGTGATTTTCCATGTCCATAGTTGTCTATATTTTATAAATTTGTTGTTTGGCTTAGTAGATAAATCGTCCTAAGAATGGAAACTTGTCGTTTGTTGTCAACGGGATTAGCAACAAGGATCTTATAGCTCTTTGTTGATATTATTATATTTTGGTTAAAACATTTTGAGGAGATGCTATTTTTTTAAAAAATTATTTTTGGTGTCTGTTTTTTGGAGTTGCTTGTAAGAGGTTGGTTATGAAGAAAGAATAAGAGAATGGAGTAGGCGCACATTTAGGCTTAGTTTTTGGAGGGAACTATGTTTATAAAATGCTTAGTAAACGCATGCACTGATGTACTTCCCTCTTATTATATATCAATATCAATTATCTATCTAATTTATCGTGTATCTTGTAAGAAGTAAACTGAATGAAAAGAAAGAAGAAAGGAAGAAAAAATGAGCAAAACAATGTATTTCTGACTCAAGATCTTATTGAAGTCCTAAAGATAACAATGACGATGATCTTATTTTAACTCCTTTTTTTTTTTTTTTTTTTTACTATTCAGGGTGTGGTTGTTACTACAATTGGGTTCCTGAAGGAAGCCCCAGATGTCAATATACACGGTTTTAATGTTTACCACAAAAATCGTTTGATTCTGGTAAGTTTTCTTTCACTTTTTGTTGACCTTTTTCTAACCCATACATATCATCGTTCCTTCCCTTTCCTAATTTAACCATTATAGAGCTTCTTTTCTTTTTCCATTTTATGTGCTTCTGGGTAGTCCTTTTTTTCATATTAATATATTTGTTCTATGTTGAAAAATGGGTATGGTCTTTCTCAGTTTCAGATCTTACTATTTCTCGTTACTTGTCTATTGGTCCGTATAGATTGGTGAAAGATTGGATCCTGGTTCTTTCTATGTATATATTCTTATGAAAATAGAGATGAAGATATACTATATTACATCAATTTTTTTAAATTTTTTTTGTTTATTTATTTATAAAATAGATACTTCCTTTAAAATATACGTTAATCATGCTGCCCATTGTGAAGGTAATCTATTTCGACATTAAAGCTTTTATGAAAATCTCTCATAATTGCACTTTTGGTCTTTTACAATCTTGCATCAGCTTTCAGGGTCCATATATGCTCCCACGCGTGGGGAAGTGTTATAGTATATATGTAAAGGAGCTTATTAGTTTTTCGTCGTTAGTTTGAGGCTTCTAATAATGCCTGTGAATGTTTTATTTTAGTGAATAGAGTAATATGGTTTATTCTTCCATATGTGGTCCCACACTAACACAATGCATCAGTGATCAGACTAATTCCTTTTATGTAATTTGCAGCCATTTTGGAGGGTTGTGAGCTATTCAGACAGTAGAGGAAGAGGCGTTGTTGGTAGGGCATTTGCTTTCAGAATTTCCTTCGTTTTGTCATGTGAGCTGAATGGTCATTGATATTCTTCTATATCTGAAGGCATTCTCGAGGCAAATTTTATTGAGCCTACACATAATAAACAAGACTTTGAGAGAACTTCTCTTTTCCAGAAGCTTGAAGCTCGTTTGAAGGATATGACCTGGGAATACTGGTAACCTATTTGCTAAAAATTTTAGGCGATGAAGATCAATTTTTTTCCTTTTTATTTAATTTGATTAACGGGGGCATGAGTTACTTGGCGTTAGTTATTTTTACTTGTGTCGTCCCATCATTTTGCCTACCTATCTGGCAGGGATTATCATTGTGGACTCGTTGGGTATCAAGTTAAGAAACAACTCCGTGTGACAGCATCCTCACAAACACCATCCAACATCACAGTACCTGCTGGTATGGAACATCCTCACATATTGAAACAGTGCTTTCCATTTACCGTCACAGAGGCTAATGAAACAGCACATGGGAGACCCAAACAATTTACACTGGAAACACAGGGAAAATCTAGAGAAGGTACCTAATTAGTTGAACATCTGTTTATCACATTATTTAATGTCCTCTTTCCATAGTTCTAAAGCTTTTTTTTGGGTGCAGGAGTATGTATGAAGAGAAAGGCAGATGTTTTGATAGAAGATGCACAGGTGAAAGGGCTTAGGACAAATTATTCTGCATTTTTTATTGTTTTCACTTCTGCTCATGGTTTGCCTTTCTGTTGAGATTATTGTGCTTTTCCAGTATTAGTTGACGTTCCTATTCCTATATATAAATTTCAAATCCATCCACCTGGTTCTGTTCGATCCTTTTTCCATCTTCAACTATTCAAATTGTTAATCACTTCCTGCAGTGGTTTTTTTCGGCCCCTGATATTTTAGCACATAATTTGAGCATGGCTATGTTTTCAACTTTTATATGACAAACAAACAAACAATAATTTTTTTGTCATTGTGCAGTCTGTCCGTGCTTATCAACAGAACAATCAACAGGCTATTGTTTTGCTGGAAGAAAATACGAAGCTTCGTGCAAAGTAAGTTAATAGGAAGTATATTTGAAGGTTTAGAAATGAACTTTGCTCCCCTTGATAACATAACCCCGTAGGTCTCAGATCAGCAGGAAATGAACTGTGCTGTTAAGTTTTATAAGTTATGACGCACTGATTTTTTTCTCGTTTTTCTGCATAGATGTTCAGAGTATGATAAGCGGGAGGAAGAACTTAATCTCAAGGTATAAAGTAGAACCGTTTTTAAATGAAACATTTGTTTCCTGCAAATATTAAAAAAGGCGATTCTTAGAAAGAAAATCATGCTACAACACCCTTCTTTCGTTTTGACCGTGTGGCATTTCTCCACTTTCTGATGTTACTCATGAATTAGACATTGAAAATTAAAAAATTTATTCCATTCATTAGTAAATTACTGTAATGTCACTTGTGCAGGCAACACGGCTTAGGAGCGACATTAGGGAAGTTGAACACGAGATCCAGCGGCTGTTGGATGAGTTAAAATGTTTAGAAGCAGTTAAGGTTGAAGGCATTGTATAA ATGATATCCACTGACATTGTGGACTTGTCAAGTGACGATGAGGAAGGATCAAACTTGAAAGCCGTGAAGTTGGAGCCAGGAGTTGATGGGGCTGTGGTTCTACCAAAAGAGCACACAAAGAAGAATATCATCAAACTTGAAAAACCAAATGCTGAATTTGTTATTCAAGGATTTGATGAAAATAGGAGCCCGAATGTTTGGAGTGGTGGTCAGAGTAGCTCTAGTATATTGGATCAGGTGCCATCTCCAGCTGATGATTCTGGCCTTACATCTCCATCTCCCTTGTGTCCTGCACCAGTTTGTCGACAATTCTGGAAAGCTGGCAACTATAATGATGGAGTTGCTTCTAATGTCACCGTTCAAAGTTCCAAAGGCCATCTCCATGTCCACCCTATGTTCCTTCATTCAAATGCTACTTCACACAAATGGGCCTTTGGAGCTGTTGCAGAGCTGCTTGATAACGCTGTTGATGAGATCCCCAACGGAGCTACCTTTGTCAACGTGGATAAAATCTTGAATGCAAGAGATGGAAGTCCTGCTTTGTTAATTCAAGACGATGGAGGTGGAATGGATCCTGAAGCGATGAGGAGGTGTATGAGCTTTGGATTTTCAGATAAATCGTCAAAATCAGCCATCGGACAATATGGAAATGGTTTCAAAACCAGCACTATGAGACTTGGTGCAGATGTTATTGTCTTCAGTCGGCACGTGAATAATAGGTTTGACTCAAACTTTTACATAGGTTACGACTTGTCCAGGGTATCAACGCAGAGTATTGGTCTTCTGTCCTATACATTTTTGACTCGTTCAGGCTACAACAGAATTGTAGTGCCTATGATAGATTATGAATATAATGCATCAAGTGGGAAAATGGAAAGATTGCATGGGAGGGAACGTTTTATGTCTAACCTTTCCATACTTCTTCAGTGGTCTCCATACTCATCGGAGTCTGAACTTCTTAAGCAATTTGATGATATTGGATCTCATGGCACAAAAGTAATCATCTATAATTTGTGGTATAATGGAGATGGTAGAATGGAGCTTGACTTCGATACAGATCCGGAGGGCATTTGCATTGACGGAGATGTAAAAAAAATTGACGCTCTCCCTGCATTGAAGGCAATCAATGAGCAGCACGTTGCTAATCGATTGCAATATTCTCTCCGTGAATATTTATCAATCTTGTATCTGCGTATGTCTGAAAATTTCAAAATAGTATTGCGTGGGAGGGTTGTTCTGCATCGTAATCTTGCAGATGATCTCAAATATCTTGAATACATTTTGTATAAGCCTCAAAGTGGTGGACATGTGGAGGGTGTGGTTGTTACTACAATTGGGTTCCTGAAGGAAGCCCCAGATGTCAATATACACGGTTTTAATGTTTACCACAAAAATCGTTTGATTCTGCCATTTTGGAGGGTTGTGAGCTATTCAGACAGTAGAGGAAGAGGCGTTGTTGGCATTCTCGAGGCAAATTTTATTGAGCCTACACATAATAAACAAGACTTTGAGAGAACTTCTCTTTTCCAGAAGCTTGAAGCTCGTTTGAAGGATATGACCTGGGAATACTGGGATTATCATTGTGGACTCGTTGGGTATCAAGTTAAGAAACAACTCCGTGTGACAGCATCCTCACAAACACCATCCAACATCACAGTACCTGCTGGTATGGAACATCCTCACATATTGAAACAGTGCTTTCCATTTACCGTCACAGAGGCTAATGAAACAGCACATGGGAGACCCAAACAATTTACACTGGAAACACAGGGAAAATCTAGAGAAGGAGTATGTATGAAGAGAAAGGCAGATGTTTTGATAGAAGATGCACAGTCTGTCCGTGCTTATCAACAGAACAATCAACAGGCTATTGTTTTGCTGGAAGAAAATACGAAGCTTCGTGCAAAATGTTCAGAGTATGATAAGCGGGAGGAAGAACTTAATCTCAAGGCAACACGGCTTAGGAGCGACATTAGGGAAGTTGAACACGAGATCCAGCGGCTGTTGGATGAGTTAAAATGTTTAGAAGCAGTTAAGGTTGAAGGCATTGTATAA ATGATATCCACTGACATTGTGGACTTGTCAAGTGACGATGAGGAAGGATCAAACTTGAAAGCCGTGAAGTTGGAGCCAGGAGTTGATGGGGCTGTGGTTCTACCAAAAGAGCACACAAAGAAGAATATCATCAAACTTGAAAAACCAAATGCTGAATTTGTTATTCAAGGATTTGATGAAAATAGGAGCCCGAATGTTTGGAGTGGTGGTCAGAGTAGCTCTAGTATATTGGATCAGGTGCCATCTCCAGCTGATGATTCTGGCCTTACATCTCCATCTCCCTTGTGTCCTGCACCAGTTTGTCGACAATTCTGGAAAGCTGGCAACTATAATGATGGAGTTGCTTCTAATGTCACCGTTCAAAGTTCCAAAGGCCATCTCCATGTCCACCCTATGTTCCTTCATTCAAATGCTACTTCACACAAATGGGCCTTTGGAGCTGTTGCAGAGCTGCTTGATAACGCTGTTGATGAGATCCCCAACGGAGCTACCTTTGTCAACGTGGATAAAATCTTGAATGCAAGAGATGGAAGTCCTGCTTTGTTAATTCAAGACGATGGAGGTGGAATGGATCCTGAAGCGATGAGGAGGTGTATGAGCTTTGGATTTTCAGATAAATCGTCAAAATCAGCCATCGGACAATATGGAAATGGTTTCAAAACCAGCACTATGAGACTTGGTGCAGATGTTATTGTCTTCAGTCGGCACGTGAATAATAGGTTTGACTCAAACTTTTACATAGGTTACGACTTGTCCAGGGTATCAACGCAGAGTATTGGTCTTCTGTCCTATACATTTTTGACTCGTTCAGGCTACAACAGAATTGTAGTGCCTATGATAGATTATGAATATAATGCATCAAGTGGGAAAATGGAAAGATTGCATGGGAGGGAACGTTTTATGTCTAACCTTTCCATACTTCTTCAGTGGTCTCCATACTCATCGGAGTCTGAACTTCTTAAGCAATTTGATGATATTGGATCTCATGGCACAAAAGTAATCATCTATAATTTGTGGTATAATGGAGATGGTAGAATGGAGCTTGACTTCGATACAGATCCGGAGGGCATTTGCATTGACGGAGATGTAAAAAAAATTGACGCTCTCCCTGCATTGAAGGCAATCAATGAGCAGCACGTTGCTAATCGATTGCAATATTCTCTCCGTGAATATTTATCAATCTTGTATCTGCGTATGTCTGAAAATTTCAAAATAGTATTGCGTGGGAGGGTTGTTCTGCATCGTAATCTTGCAGATGATCTCAAATATCTTGAATACATTTTGTATAAGCCTCAAAGTGGTGGACATGTGGAGGGTGTGGTTGTTACTACAATTGGGTTCCTGAAGGAAGCCCCAGATGTCAATATACACGGTTTTAATGTTTACCACAAAAATCGTTTGATTCTGCCATTTTGGAGGGTTGTGAGCTATTCAGACAGTAGAGGAAGAGGCGTTGTTGGCATTCTCGAGGCAAATTTTATTGAGCCTACACATAATAAACAAGACTTTGAGAGAACTTCTCTTTTCCAGAAGCTTGAAGCTCGTTTGAAGGATATGACCTGGGAATACTGGGATTATCATTGTGGACTCGTTGGGTATCAAGTTAAGAAACAACTCCGTGTGACAGCATCCTCACAAACACCATCCAACATCACAGTACCTGCTGGTATGGAACATCCTCACATATTGAAACAGTGCTTTCCATTTACCGTCACAGAGGCTAATGAAACAGCACATGGGAGACCCAAACAATTTACACTGGAAACACAGGGAAAATCTAGAGAAGGAGTATGTATGAAGAGAAAGGCAGATGTTTTGATAGAAGATGCACAGTCTGTCCGTGCTTATCAACAGAACAATCAACAGGCTATTGTTTTGCTGGAAGAAAATACGAAGCTTCGTGCAAAATGTTCAGAGTATGATAAGCGGGAGGAAGAACTTAATCTCAAGGCAACACGGCTTAGGAGCGACATTAGGGAAGTTGAACACGAGATCCAGCGGCTGTTGGATGAGTTAAAATGTTTAGAAGCAGTTAAGGTTGAAGGCATTGTATAA MISTDIVDLSSDDEEGSNLKAVKLEPGVDGAVVLPKEHTKKNIIKLEKPNAEFVIQGFDENRSPNVWSGGQSSSSILDQVPSPADDSGLTSPSPLCPAPVCRQFWKAGNYNDGVASNVTVQSSKGHLHVHPMFLHSNATSHKWAFGAVAELLDNAVDEIPNGATFVNVDKILNARDGSPALLIQDDGGGMDPEAMRRCMSFGFSDKSSKSAIGQYGNGFKTSTMRLGADVIVFSRHVNNRFDSNFYIGYDLSRVSTQSIGLLSYTFLTRSGYNRIVVPMIDYEYNASSGKMERLHGRERFMSNLSILLQWSPYSSESELLKQFDDIGSHGTKVIIYNLWYNGDGRMELDFDTDPEGICIDGDVKKIDALPALKAINEQHVANRLQYSLREYLSILYLRMSENFKIVLRGRVVLHRNLADDLKYLEYILYKPQSGGHVEGVVVTTIGFLKEAPDVNIHGFNVYHKNRLILPFWRVVSYSDSRGRGVVGILEANFIEPTHNKQDFERTSLFQKLEARLKDMTWEYWDYHCGLVGYQVKKQLRVTASSQTPSNITVPAGMEHPHILKQCFPFTVTEANETAHGRPKQFTLETQGKSREGVCMKRKADVLIEDAQSVRAYQQNNQQAIVLLEENTKLRAKCSEYDKREEELNLKATRLRSDIREVEHEIQRLLDELKCLEAVKVEGIV Homology
BLAST of HG10008687 vs. NCBI nr
Match: XP_038879950.1 (protein MICRORCHIDIA 6-like [Benincasa hispida] >XP_038879951.1 protein MICRORCHIDIA 6-like [Benincasa hispida]) HSP 1 Score: 1245.3 bits (3221), Expect = 0.0e+00 Identity = 625/684 (91.37%), Postives = 645/684 (94.30%), Query Frame = 0
BLAST of HG10008687 vs. NCBI nr
Match: XP_008464553.1 (PREDICTED: protein MICRORCHIDIA 6 isoform X1 [Cucumis melo]) HSP 1 Score: 1176.4 bits (3042), Expect = 0.0e+00 Identity = 604/699 (86.41%), Postives = 621/699 (88.84%), Query Frame = 0
BLAST of HG10008687 vs. NCBI nr
Match: XP_008464554.1 (PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_008464555.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_008464556.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_008464557.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_008464558.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_008464559.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_016903204.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo] >XP_016903205.1 PREDICTED: protein MICRORCHIDIA 6 isoform X2 [Cucumis melo]) HSP 1 Score: 1176.4 bits (3042), Expect = 0.0e+00 Identity = 604/699 (86.41%), Postives = 621/699 (88.84%), Query Frame = 0
BLAST of HG10008687 vs. NCBI nr
Match: XP_022921495.1 (protein MICRORCHIDIA 6 [Cucurbita moschata] >XP_022921496.1 protein MICRORCHIDIA 6 [Cucurbita moschata]) HSP 1 Score: 1174.8 bits (3038), Expect = 0.0e+00 Identity = 589/684 (86.11%), Postives = 623/684 (91.08%), Query Frame = 0
BLAST of HG10008687 vs. NCBI nr
Match: KAG7023121.1 (Protein MICRORCHIDIA 6, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1174.5 bits (3037), Expect = 0.0e+00 Identity = 587/684 (85.82%), Postives = 623/684 (91.08%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy Swiss-Prot
Match: Q56Y74 (Protein MICRORCHIDIA 6 OS=Arabidopsis thaliana OX=3702 GN=MORC6 PE=1 SV=1) HSP 1 Score: 705.7 bits (1820), Expect = 5.2e-202 Identity = 374/643 (58.16%), Postives = 465/643 (72.32%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy Swiss-Prot
Match: Q5FV35 (Protein MICRORCHIDIA 2 OS=Arabidopsis thaliana OX=3702 GN=MORC2 PE=1 SV=1) HSP 1 Score: 476.5 bits (1225), Expect = 5.1e-133 Identity = 269/580 (46.38%), Postives = 345/580 (59.48%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy Swiss-Prot
Match: Q84WV6 (Protein MICRORCHIDIA 1 OS=Arabidopsis thaliana OX=3702 GN=MORC1 PE=1 SV=1) HSP 1 Score: 470.3 bits (1209), Expect = 3.7e-131 Identity = 270/587 (46.00%), Postives = 361/587 (61.50%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy Swiss-Prot
Match: F4KAF2 (Protein MICRORCHIDIA 4 OS=Arabidopsis thaliana OX=3702 GN=MORC4 PE=1 SV=2) HSP 1 Score: 436.4 bits (1121), Expect = 5.9e-121 Identity = 237/451 (52.55%), Postives = 305/451 (67.63%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy Swiss-Prot
Match: F4JRS4 (Protein MICRORCHIDIA 7 OS=Arabidopsis thaliana OX=3702 GN=MORC7 PE=1 SV=1) HSP 1 Score: 421.4 bits (1082), Expect = 2.0e-116 Identity = 285/718 (39.69%), Postives = 399/718 (55.57%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy TrEMBL
Match: A0A1S3CLS1 (protein MICRORCHIDIA 6 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103502402 PE=3 SV=1) HSP 1 Score: 1176.4 bits (3042), Expect = 0.0e+00 Identity = 604/699 (86.41%), Postives = 621/699 (88.84%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy TrEMBL
Match: A0A1S3CLS0 (protein MICRORCHIDIA 6 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103502402 PE=3 SV=1) HSP 1 Score: 1176.4 bits (3042), Expect = 0.0e+00 Identity = 604/699 (86.41%), Postives = 621/699 (88.84%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy TrEMBL
Match: A0A6J1E5X9 (protein MICRORCHIDIA 6 OS=Cucurbita moschata OX=3662 GN=LOC111429746 PE=3 SV=1) HSP 1 Score: 1174.8 bits (3038), Expect = 0.0e+00 Identity = 589/684 (86.11%), Postives = 623/684 (91.08%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy TrEMBL
Match: A0A6J1JM17 (protein MICRORCHIDIA 6 OS=Cucurbita maxima OX=3661 GN=LOC111485617 PE=3 SV=1) HSP 1 Score: 1170.2 bits (3026), Expect = 0.0e+00 Identity = 586/684 (85.67%), Postives = 623/684 (91.08%), Query Frame = 0
BLAST of HG10008687 vs. ExPASy TrEMBL
Match: A0A0A0LP45 (Morc6_S5 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G004350 PE=3 SV=1) HSP 1 Score: 1166.8 bits (3017), Expect = 0.0e+00 Identity = 592/693 (85.43%), Postives = 617/693 (89.03%), Query Frame = 0
BLAST of HG10008687 vs. TAIR 10
Match: AT1G19100.1 (Histidine kinase-, DNA gyrase B-, and HSP90-like ATPase family protein ) HSP 1 Score: 705.7 bits (1820), Expect = 3.7e-203 Identity = 374/643 (58.16%), Postives = 465/643 (72.32%), Query Frame = 0
BLAST of HG10008687 vs. TAIR 10
Match: AT4G36280.1 (Histidine kinase-, DNA gyrase B-, and HSP90-like ATPase family protein ) HSP 1 Score: 476.5 bits (1225), Expect = 3.6e-134 Identity = 269/580 (46.38%), Postives = 345/580 (59.48%), Query Frame = 0
BLAST of HG10008687 vs. TAIR 10
Match: AT4G36290.1 (compromised recognition of TCV 1 ) HSP 1 Score: 470.3 bits (1209), Expect = 2.6e-132 Identity = 270/587 (46.00%), Postives = 361/587 (61.50%), Query Frame = 0
BLAST of HG10008687 vs. TAIR 10
Match: AT5G50780.1 (Histidine kinase-, DNA gyrase B-, and HSP90-like ATPase family protein ) HSP 1 Score: 428.3 bits (1100), Expect = 1.1e-119 Identity = 238/470 (50.64%), Postives = 306/470 (65.11%), Query Frame = 0
BLAST of HG10008687 vs. TAIR 10
Match: AT4G24970.1 (Histidine kinase-, DNA gyrase B-, and HSP90-like ATPase family protein ) HSP 1 Score: 421.4 bits (1082), Expect = 1.4e-117 Identity = 285/718 (39.69%), Postives = 399/718 (55.57%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (Hangzhou Gourd) v1
Date Performed: 2022-08-01
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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