CmaCh04G010010 (gene) Cucurbita maxima (Rimu) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TAATTATTTATTTTTTAATTAAGTTTAGTATCTTTGCTTTTGTTAATTAGTCTTCAAAAATATTTTCAAATAAAAAAGATATTATTTTATTTAAATTTGGGTAGAGATGTAAATGTTTCTTAAGAATTAAAAAAAAAAAAATAGAAAACTAAAAATAAAATTATTTCTAAATGTTAGCTTAAAAGGATATTAAGAAGTTTTCTAAATTTAAGTAGAAATTAAACGAATAGATTTTTTTTTTTTTAGAAAGACTTATTTTCTTTTAGTAAGTATTTAGTAATTTTTTTATTGCTATAAATTCGAATATAAATAGGTTGTGTTTGGACAAATTGAAATACTGAGGCCGAACAAACAACAGACACGAGGGATTAGCAGAAGACTGTTTATTTGACAACGGATTTGCATGGAATTCAACGCTTCTCATTGGTCAACATTTCAAAATCGTCCAAAGTTTCCAAAAATTAGTTAGCTATTACGATGTAACGATCCATCCTTTCATACATGAATAAATGAGTTATTATAAAAGACAGAAGAGCAGAGACTCGAGAACTACTCAAAATCATTCATATAAAATGAAAACCGATAAAAGAGAAAAGAATCAATTCTACATGCTTGCTAGAACTTAAGATAAGGCTTTTGTTCATCATCATCCCCAAAGCCTTTCTTCTTAGAATGTTCTCATCCTAGTCTCTCAAAAATTGGTGCACATTTGGCCTTGATACTGGCTACGCGTGCGACTATACCTACATTTTTTTAAGGCATAAATTATAATAGTCGCACTTACCTACTTGTCGCTCCTCTCTATTATGTTGCTATCACGGTGAGACTTTAGAGTGATATCAACCCTTTCCTATCGTAGTTGAGAGTCATTTATAGCTCCAACTCTATCAAACCAACCAAGCTGTTGATGCAACTATCTATGAATGACTCTCAACAACTATTAGAAGTAGTTGATAGTCTTTTAGAATCTCATCACTATAATAAAGGGGCATGACTTGGTGTGTGTCAACTAGGACACATACATGAACTAGCCACAAATAAATTTCAATCGTTATTAAGGATAGTTAGAAACCCTTAGAGTTCATAAACATGGGGGAGCAACCTCATGCCTATAATTAAAATACATATGTGGGCTAGTTATAAATGGTTCTCAATCACTATTAAAGACGGTTAGTAATCTTCTGGAGCCTCATCATAATATTATAATTGAGAGATCCCACGTCGATTGAAGAAGGTTATAAGGGTGTAGAATCCTTCTCTTAACATATTTTAAGCCTAAAAGAGAAAGCCTAAAGAAAACAATATCGGCTAAAGGTAGACTTGGACCCTTATACAAATTGATATTATTGAGGATGGGATAAATAAAAACTTTATGATAATAAATCAATTAATCTTCTTATCCATGTTCCCAATGAGTTGTTTCATCTGAAATCTCCAAAAGAAGAAATAAGCCAAACCGAACCCGACCAATACATAAACCCAAACCCATTCGTCTTCACTCTCTTTGGGAGACCTCATCTCCTCAATCCCGAACCGCTCCCTTCCCGAATTACCATTTAACCCCTCATTCACGTACCCATTCAACACGTACACCCTCCCCTCATTCCCCACTGTCACGCCTGTGGCGAACTTCTCTTCATCGAGGTCAATTTCGTCATAAACCACCCCCTCCCCCCAACTGTCCTCGCTCTTCAGGAACCAAAGCTTTCTGTAACTCACCACCAAAACGACGCCGTCTCTCCTCGCCGCTATCCCGTCCGCCCCTTCCAGATCTTTGTTCAGCAAAACCAGCCTCGCCGTTCCGTCGTCCGCGTCCACTTTGTACATCTTTCCGGTGTTTGATTGCACCACCAGAAGATATCCTTTGCTCACGTAAACCGCTCCGTTTAGCCCTGAGGATGAGAAGACTTCGTTGGGGGTTGCGGGATGGGAACTGTAACTCGTTGATTTCGAGAAGACTGTGGCCGATCCGTCTATGTTTACCTTCCAGATGAAGTTTCCGGCGGAGTTCGTGATGAAGGCGTTGCCCTTGAAGTCGGCCGCGACGGCGTTTGCGACGGGGCGGTGACTGGAGGTTCCATCGGATGGGAGAGAAGTGAGGGAGATGCGGCGGCGAGATCGCAGATCGTAGGTAGCGAGGGCGTTGAATTCCGGAAGTGGAGGGGCAGCATGGACGGCTGCGAGGAGGCGGTTGTTGACGGAATCGATGGCGAGGCCTAAGATCGAGACGTTTTCGGGGAGGTCAGGATCGTGGATTAGGGTTTCGGCGACGCCGGCATCAGAGACGGAGACGAGAGTGCGGTGGTGGAGTGAGCCGACGACGAAATGCTGCGCGGATGCGTCCCATACGATGCCCTCTGGATAGAGATTTGGGGATCGGAAATCGATAAGGTGGGGCTTTCGAGCTAGGGTTTGGGAGAGGAAGAATTGGAAGAGGAAGAATTGGAGAATTGGAGAGCGATGAATTGGCGCCATAGGAGTGATTGTAGAGGACTTACAATGGATTAGCGATTTGTGCAATGAATTTATATGTGAGGAAGAAGATGATGAACAGATTCCTTGAAGAACCAAGACAATTGGACTGGATTTCTTGTCGAAGGGGTTTCTTTTCTTAACTTCTCTGAAGATATTAAAAATTAACATTTTAATTTTTTTTCTTTTGTTCGATTTAGATGATGAAGCGTTCAAAAACAAGTGATCATTTAACTCAAACTAAGTCAATGCACATATGGAAGGTATCTCATTCGACATTCTCAACGAAAAACGATCGTACCTGATTGCATATGAACAAAGATGGTAGACTTCGCCCAATTCTCTCTATCACGTAGTGACAGGCTTCTACCGATTACCTTCTCCAAAGTTTACTCGATGCACACTGTTGTTGGTGTTCTACATAATTAATAAAATTAGATAATCAAATGATTATATTCATTAAATCTTGAAATTTTAAAGACTCGAAAACTCAAATTTTGATGATTAAAATTAATATTATATGACAGATAATCGTAAATTTTTTTTATAATATTCACTAAAATTTTCAAAATTTGATCTTTTATGGCAAGAAGCATCTTAATTTTAAAATGTATTTAATATATATATATATATTTTTTAATTTTTAGAAAATGAAATTTCAATTTCAATTTGTGTCCTCTCCGCCAATCATCTCTGTAGCCGACTTTCCCTGAACTTTATCGAAAGAAGAAAAAACAAGAAGCGTTCTTCTTTATTCATCGCTTCTTCATTCTCGTTTCTCCCACTTGAGTTCAGCTCAATTCTCTCTCTCTCTCTCTCTCATACACAGGCAATAGAATCGTCAGTTTCAGGCATTTCCAGAGTGGGACTTACACATACACCGCCGCCAAGGTGATTTTCTCTTCACCTTCTCGCTTTCACCCTCCTCTAGGTATTTGAATATTTTCACTTATCGCAATTCTACTTTATCTGCACAGGCGAATTAGTCTTTTGGATAGATGCATATACTGAATCTGTATAGACCCTCTTTCGGGCATATCTGCCAATGCTGTGGACATAGCGATTTGCGGGCCTGTTCTAGAGGGTTAACACATATCTCAATCTCTACAGCTCACGGCTTGGTTCCCAGGTATTTGCATGGCTTCCTAGTGTCCTCATGTAATGTTGCAAAAGAAAACAAAGAATTTAAGACCATGAATGGGGAATTGAATGCATCTCGAGTACCTTTCTGTAATGAATATAATGAGAAATCAAGGACAAGTTGCTAAGAAGTAAGTAATAATAACTTCTGGGTACAAAGAAAATGTTAGGAACTAAAGCAAAGTTTGCCTTCTGTTTGGGTTGATTGCTATTTAGATTGGATGATAATAACATGTGCACTAATGCGTTTTTTGAATGTTGGAATCTCATGATTTGTAACCGCCCAAACCTACCGCTAACAAATATTGTCATCTTTTGGTTTTTCCTTCCGGGCTTCGCCTCAAGGTTTTTAAAATGCGTTTGCCGGAGAAAGGTTTCTACACCCTTATAAAGAATGTTTTGTTTCCCTCTCCCACTAACGTGGGATCTCACAATCCACCTCCTTTTGGGGTCCAATGTCTTTGTTGACACTTGTTCCCTTCCTTAATCGATGTGGGACCCCCCAATTCACCCCCCTTTGAAGCCCAGCATCCTTGCTGGCACACCATCTCGTGTCCATCCCCTTCGAGTCTCAGCCTCCTCGCTAGCATATTGTCAGGTGTCTGGCTCTGATACCATTTGTACAACCCAATCTCACCGCAAGTAGGTATTGTCCTCTTTGGGCTTTCCCTTTCGGGCTTCCCCTCAAGGTTTTTAATACGCATCTGTTAGTGAGAGGTTTCCACCCCCTTAAAAAGAATGCTTCGTTTTCCTCTCCAACCGATGTGGGATCTCACATGATTACTAGTTGATAATTATAATATTTCATAGATCTCATAATGTTTATCATTGAAATGTGTTAGACATCAATGTCAACTATAGTTCATGTTGTATCAGACATTAAAAGAGTTTGTCAAACTTATGATCCACTTTTTAGTGCCATCTTGTTCATAATGATATAGTAACACGTTCAAAGAGTAAGATCTTTCAATTTGGCCAACTTTTAATTGATTTTATATCTTAAATAGGTCCAACTCCCATATCTCAGGCATTAAAAGAGTTCATCAAACTTGTGATCCCCTTTTAGTATCATCTTGTTCATAAAGGCATAATGAAACACTTGATGACAAGAAAAATTGACGTGCTGTAAAATTTTCATCTTGTTCTTTCGTTTTAATGTAGAGCTCATCTGTTTGTGCTGTAAAGATTTATGGTGACTTGTTAGCTCTCCCCTTTGCTAATGACTCAACAACTTCAGGAAACTTACGGCAATGTCTGCATCTGTGGCAAAAGATTCTGGAATATCAGTTGCATCAGTAGCAATCCAGCCTCCATCTCACCCTACCTATGATTTGCGTGGCGTCATCAAGTTAGCCCTTGCTGAAGATTCTGCTAATTTTGGTATAATAGATATTACTTTGTAATTTTCCATGGTGATTTCTGGGTTTACCTCCCCATTCATTATGATCTTTTTCTTTTTTAAAAGAGGAATTAGTTGCTGAAATTTTCATTTGCCAAATAATCTTTAGCATAGTTTTTGCTTCCTAGGTATGTTTTCGATCTTAGGTCTTATTTCGTTGAACAAGAAATTTATAGATGCATTCAAATCATCAATGTAATTATATTTTCGACTCGAATCTACTTGGGTTAAGTCTGTTTTTCCACCTAAGTGAAACTGCTGTGATAGTATTCCTAACACAAATGTAGGTGATGTAACATCTCTGGCCACCATCCCCTCTGACATGGTAGTGGATGCTTTCTTCTTGGCCAAAGAGGACGGCATTGTTGCTGGCATTACTCTTGCAAACATGGTATTCCAGGAGGTTGATCCTTCAATTAAGGTAATGTTGATGTTCTCTCTCATTTCTCCCTCCCCCTCTTCCTTTTGATTCTTATCGAGTTATTTATGAGATGGACGTGTTCCCGTTGATCCTAATCCGTCTTCAGGTAGAATGGTCCCAGAAGGATGGAGATTATATTCATAAAGGACTACAATTTGGAAAAGTTTCTGGTAAGAACTGAAAATCTCTAGGAAGCTTAACAAAACTCCGTGTCGAGCATAGTGTTGGTATGGGATACTCCAAACACGTGATGAAGACATGGAAATAAACTTCCTAAATTTCCTAAATTTTTTATATGCAGGGCAAGCACAAAGCATCCTTGTAGCTGAAAGGGTGGCACTAAATTTTATGCAGAGAATGAGTGGAATTGCAACTTTAACTAAGGTTCGTTTGTTTCCCTTATGATGCAATCAATAAGTAGTTTTATAGTATCAATTTCTCCACATAGTGTATAAATATAGGGACACAATGGGGTGAGATAGCCAATGGATTTTATGTTATTTTTCCTTTTTTCTTGTTTGAGTGAGTATTAACAAGTACATGGCATCGAGGATTTTGCAGGCAATGGCAGATGCTGCTGCCCCTGCACGCATTCTGGAAACGAGAAAAACTGCTCCAGGTTTACGTTTGGTGGATAAGTGGGCGGTGTATATCACTTCCTTGGTTCTACTTTTACAGAAACTTTTTTGGCATTCTACACTTATTCTTTATTGATGTTCTTACAGGTATTAATTGGTGGAGGCGAAAATCACAGGATGGGTTTATTTGATATGGTGTTGATAAAAGATAATCATATATCAGCAGCTGGAGGCATCTCAAATGCCATTAAATCTGTTGACTTGTATCTGCAACAAAGAAATCTTAAAATGAACGTCGAGGTACTTTCCCGAATCCTAACGTTTTTTTAATAAGTTTAAAATTGTTTTTCTAGTTATTCTGAATCCTTTTTGTTTGTTTTTATATTGTAATATCTATTGATATTAAAATTCTATGAGTTTCCTAGTAATTAGATGTTATAGGGTTAGAAAATTGTCTCGTAAGATAAGTCAAGGTATGTGCACAGAACATTTATGGATATTAAAAAAATGTGTGGGCGCGTGTGTATGCACTTGTAACTCCGATTTTGTTAAAATTAAATTATAGTGATATATATTACAACTTGTTTGCACCTAAGTTTTATTATTTCTTAAATGTTTAAGGATTTCTTCTTGATATGCTTCAACATGCTAATTTTTGTTTGTATATTGCTTACTTTTAGATGGAACTTAATTTTTCTTGGTTATATTTTAATCAATTTCCAGGTTGAGACCAGGACACTTGAGGAAGTTCATGAGGTACTGCACTATGCAACCCAAAACAAGACATCCTTAACCAGGATGATGTTGGATAATATGGTCGTTCCACTCCCAAGTGGCGATGTTGATGTGTCCATGCTTAAGGAGGCTGTAGACATCATCAATGGGAGATTTGAGACCGAGGTACGTACTGTTTAATACCAGCACATTTCGCAGTGTCGGGAACTTGAAATCTATTGATGGCCTTTAAATTCTGTATACGAACAATAATATTTTTTACTTATAATGAGTTTTGCCCTTTGAAGCGTGACCATTTGGCTCACATAGCGTTTAAGTTTGATAGATATTTGATAATGTGATACTCAACACTTAACACACCATATGCTAGAGTGTCTGGTTTATAATTCGATTGCATGAACACTTTATTTATGAAACAATGGACGAAAATGAAGAATTTTCGATGAAATACATTGGATTATTCTTCTTAAAACACATATTTTTATGGATGTAATACGTATTTGATTTAAGATTATTCTTCTTTACTCGTTTTTAGGTTGAATTTGCATTTAGGAGGATGTCTTATCCTGTTATATAAATGCTTTGTAGTTATTAATTTATTTATATAACGTTATATCAGATTTTGATTCGCCTATTCTCTGGTGGTAGGCTTCAGGAAATGTTACTCTGCAGACCATACAGAAAATTGGACAAACTGGGGTTACTTACATATCCAGGTATAATACACAGATTGTAATATTTTATCAGCAAGCTTCCAGCTTTTCTTTAATTAAAGTGTGTATACATACATACATATATATATATAGTTTCAATGCTATTACTTCTCTTAAAAGTCTCTAGTGTCATAAAAAAAGCTTTAAAAGATTTGTTGACAGCCTAATACTGACTCAAAAGAGTCCCAGAAAAGCACCTGAGAGCTAGGAGTTACTGTATTATCCCAGCTATATTTTCTGACACATTATGGCCTTTTGAGGAAATATTTCTTGATTGCCCTGTATTCCATATATTGCAGTCGTATTTCCTTCGCAATATCCTCGCATTAGTTTACTCCTAGCATTTACTGTTGGCCTAGCAGTAGAATCCTTGAACTCACCTTCACTTGTTCCCTTCAAGGTGCAGGTGCCATATTATCCACATATTATCCACATATTATCCACACATTATTGAAGTTCCAAATCCATAGCCATAGAGAAAAGATTATTCTGTTGTCTTCTGTAAATTCGCTCCGACCAGCTAAAAAATGAAACATTGCCCTGCTGTCTTCTATAAATTTGGCTCCAACCAGCTTAAAACAAAACAGTGCATCTTAGATTTGATGGGTAATGCGACATAGATATTGATACATCAAATCATAGAGAAATCTTTGATTTAGTTATCCGAGAAGTTTAGTCAAGGCTCAAGCTGAGTCTAGTGAGGATATTGCTTTCTGCCAGTTATGCTAATATATGCTCCATGTAACACAGCAAGCAAAAGTAGTCGGGGAAAAGCTAACCTGCTGGAATACCATTCAAACAAAAGAAACAATGTCCGAGTCAAAATATACTCTCAAGGAAACACGTTAAGAAACTCTCATTTCTATTCATAAAAGATGAAGCAAAGGAGAAAATGATTCTAAAACAGTGAAAACTTTGAAAACCTCCACTCAAGTAATAAGAGAGCTCTTTTATTTTGCAGCCTCATGCATATGTTCCATCTATCTCATATGCTCATCAGCAAAATTGACGTTATTGTACGTGGATGCCATGTTTGTGCTATTATGTCTTTTCTTTATTGCAAGGAGAGAACCATTTCTTGACCAAATCCTAGTGGAAGTGGGGATCAAGCTATAGAAACTAGGGGCTTTTTTTTTCCGTCTTTTTTTGCTATCTTTTGAGATAATATTTTATGACTTCATCTTTAATCTTTGCAGTGGTGCGCTGACACATTCTGTGAAAGCACTTGATATCTCTCTCAAGATAGACACAGAGTTGGCCCTTCAAGTTGGAAGACGTACAAAACGAGCCTGATTCTAAAACCCCACGTATCTGGTAATGTTTATCCTTTAACGTTTTATTTTTGGGAATAATTCAATTTTAACCCTAATTTTTCCATTTCATCAAATTATGCCTAGACTTGGTTAAATGATGCAATTTCTATCATCTATTCAAATCTTGTTAATTCATCTACTAATTTTAACAAATGTGGGGTGTTTAGATTTAAACACCTGTGTTCATGTTGATCCTAACCAAGTTTTGTTATATGATTTAAAATGAATTTATAATTTATATGATTTTGTTTGGAAGCTATGACTTTTCCTTTTTTGGGTATCATCTAAATTTCTGTTTGCAGCCTGAAGTAGTCTTTTTAAGCATTGAAATTCTAGTTTGGCCTCTGAAATTTCGTACTTAATTCTCTTTTAGTTCCTAAATTTTCGAGCATTTTGTTGACCTTGCATCAACAAGAATTTCAGTATTTGTCATTATGCTTGTGAACTATTCAATAAAAACTCGACATAACAAGCATTTTTGGGGGTTTATTTACTGGACGAGTAAGTTATCAGGTTGAAGCCATCTGCAGTAGCTTAAGTTTTGTGTATTTTTGTTCAAGATGAACTCTGGATATTTTAGTTTTATCGTTAATTTTCTAAACTATTTACTAAAAACCTAACATAGGTACTTTATTTCTTTGATGAATAAGGTATCCATATAGGCAGATCCTTGTGGTCACTTGCAGTAGTCTTAAGTTTTGGATTTTAGAACAGATTGAGAGTTTTGTTGAATGATTTATGAAAAGTTTAGGGCAATAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGTGTTCCAAGTTTATAGACAAACATAATATTTGGAACACAGAAACACATATTAAATGGAAATTTGGTATAATTAATTGTAAATGGAAGAAGGTGAGTTTTGTTATTCAGTGTTTCTTGGAAGTTGCTTGTGGAAGTTATGAATTGTCCAAATCTAATGGTTGCGTGTAGTGTATGGCTGTGTAAGTCTTTAACGTATTTCTTTTGTTCTCTCTCACTTTCTTGCAGGGACCAGGCGAGAGATGAGAGGCCTTTGCCGTGGTGGCTTACACCCACTTTATTATTACCCGTGAATCACTCATTTCTTTGACGCCAAACAATAAATAAAAAGTGGGTGCTTTAGTTTTTAGTCCTTAGAGGTGGTTTTTCTTTCTACAGAACCCCCCCTCCCTTTGTAGCTGTAGCAGCCAACCTGAAACTTTATCATCCTATCTATTACTTTTTTTGCACTTTTAATGCTTCTCTCCATTATCTTTCCCAAAATGTTAGAAGGGGTTGAGACACGAGTGTCTCATGCTTTTGTGTACAATGCTTGACCCTAATTCTTATACGAATGCCATGCTGACTCCCATTTTCTAGGCTTTCTTTTGCTTGAGGGCTGCTTGTAATAATCAAAAATTACAAAGTTAATCCTATAATTTACTTTTAGTCCTTTTAACAACGCTAGGCTCAATGATGCCATACCAATTGGTCATAATGCGGAACAAATTGAATATGGGTATATTATGCATATTGTATTTTGATTGAATGTACCTCTCGTTTTGCC TAATTATTTATTTTTTAATTAAGTTTAGTATCTTTGCTTTTGTTAATTAGTCTTCAAAAATATTTTCAAATAAAAAAGATATTATTTTATTTAAATTTGGGTAGAGATGTAAATGTTTCTTAAGAATTAAAAAAAAAAAAATAGAAAACTAAAAATAAAATTATTTCTAAATGTTAGCTTAAAAGGATATTAAGAAGTTTTCTAAATTTAAGTAGAAATTAAACGAATAGATTTTTTTTTTTTTAGAAAGACTTATTTTCTTTTAGTAAGTATTTAGTAATTTTTTTATTGCTATAAATTCGAATATAAATAGGTTGTGTTTGGACAAATTGAAATACTGAGGCCGAACAAACAACAGACACGAGGGATTAGCAGAAGACTGTTTATTTGACAACGGATTTGCATGGAATTCAACGCTTCTCATTGGTCAACATTTCAAAATCGTCCAAAGTTTCCAAAAATTAGTTAGCTATTACGATGTAACGATCCATCCTTTCATACATGAATAAATGAGTTATTATAAAAGACAGAAGAGCAGAGACTCGAGAACTACTCAAAATCATTCATATAAAATGAAAACCGATAAAAGAGAAAAGAATCAATTCTACATGCTTGCTAGAACTTAAGATAAGGCTTTTGTTCATCATCATCCCCAAAGCCTTTCTTCTTAGAATGTTCTCATCCTAGTCTCTCAAAAATTGGTGCACATTTGGCCTTGATACTGGCTACGCGTGCGACTATACCTACATTTTTTTAAGGCATAAATTATAATAGTCGCACTTACCTACTTGTCGCTCCTCTCTATTATGTTGCTATCACGGTGAGACTTTAGAGTGATATCAACCCTTTCCTATCGTAGTTGAGAGTCATTTATAGCTCCAACTCTATCAAACCAACCAAGCTGTTGATGCAACTATCTATGAATGACTCTCAACAACTATTAGAAGTAGTTGATAGTCTTTTAGAATCTCATCACTATAATAAAGGGGCATGACTTGGTGTGTGTCAACTAGGACACATACATGAACTAGCCACAAATAAATTTCAATCGTTATTAAGGATAGTTAGAAACCCTTAGAGTTCATAAACATGGGGGAGCAACCTCATGCCTATAATTAAAATACATATGTGGGCTAGTTATAAATGGTTCTCAATCACTATTAAAGACGGTTAGTAATCTTCTGGAGCCTCATCATAATATTATAATTGAGAGATCCCACGTCGATTGAAGAAGGTTATAAGGGTGTAGAATCCTTCTCTTAACATATTTTAAGCCTAAAAGAGAAAGCCTAAAGAAAACAATATCGGCTAAAGGTAGACTTGGACCCTTATACAAATTGATATTATTGAGGATGGGATAAATAAAAACTTTATGATAATAAATCAATTAATCTTCTTATCCATGTTCCCAATGAGTTGTTTCATCTGAAATCTCCAAAAGAAGAAATAAGCCAAACCGAACCCGACCAATACATAAACCCAAACCCATTCGTCTTCACTCTCTTTGGGAGACCTCATCTCCTCAATCCCGAACCGCTCCCTTCCCGAATTACCATTTAACCCCTCATTCACGTACCCATTCAACACGTACACCCTCCCCTCATTCCCCACTGTCACGCCTGTGGCGAACTTCTCTTCATCGAGGTCAATTTCGTCATAAACCACCCCCTCCCCCCAACTGTCCTCGCTCTTCAGGAACCAAAGCTTTCTGTAACTCACCACCAAAACGACGCCGTCTCTCCTCGCCGCTATCCCGTCCGCCCCTTCCAGATCTTTGTTCAGCAAAACCAGCCTCGCCGTTCCGTCGTCCGCGTCCACTTTGTACATCTTTCCGGTGTTTGATTGCACCACCAGAAGATATCCTTTGCTCACGTAAACCGCTCCGTTTAGCCCTGAGGATGAGAAGACTTCGTTGGGGGTTGCGGGATGGGAACTGTAACTCGTTGATTTCGAGAAGACTGTGGCCGATCCGTCTATGTTTACCTTCCAGATGAAGTTTCCGGCGGAGTTCGTGATGAAGGCGTTGCCCTTGAAGTCGGCCGCGACGGCGTTTGCGACGGGGCGGTGACTGGAGGTTCCATCGGATGGGAGAGAAGTGAGGGAGATGCGGCGGCGAGATCGCAGATCGTAGGTAGCGAGGGCGTTGAATTCCGGAAGTGGAGGGGCAGCATGGACGGCTGCGAGGAGGCGGTTGTTGACGGAATCGATGGCGAGGCCTAAGATCGAGACGTTTTCGGGGAGGTCAGGATCGTGGATTAGGGTTTCGGCGACGCCGGCATCAGAGACGGAGACGAGAGTGCGGTGGTGGAGTGAGCCGACGACGAAATGCTGCGCGGATGCGTCCCATACGATGCCCTCTGGATAGAGATTTGGGGATCGGAAATCGATAAGGTGGGGCTTTCGAGCTAGGGTTTGGGAGAGGAAGAATTGGAAGAGGAAGAATTGGAGAATTGGAGAGCGATGAATTGGCGCCATAGGAGTGATTGTAGAGGACTTACAATGGATTAGCGATTTGTGCAATGAATTTATATGTGAGGAAGAAGATGATGAACAGATTCCTTGAAGAACCAAGACAATTGGACTGGATTTCTTGTCGAAGGGGTTTCTTTTCTTAACTTCTCTGAAGATATTAAAAATTAACATTTTAATTTTTTTTCTTTTGTTCGATTTAGATGATGAAGCGTTCAAAAACAAGTGATCATTTAACTCAAACTAAGTCAATGCACATATGGAAGGTATCTCATTCGACATTCTCAACGAAAAACGATCGTACCTGATTGCATATGAACAAAGATGGCAATAGAATCGTCAGTTTCAGGCATTTCCAGAGTGGGACTTACACATACACCGCCGCCAAGGCGAATTAGTCTTTTGGATAGATGCATATACTGAATCTGTATAGACCCTCTTTCGGGCATATCTGCCAATGCTGTGGACATAGCGATTTGCGGGCCTGTTCTAGAGGGTTAACACATATCTCAATCTCTACAGCTCACGGCTTGGTTCCCAGGAAACTTACGGCAATGTCTGCATCTGTGGCAAAAGATTCTGGAATATCAGTTGCATCAGTAGCAATCCAGCCTCCATCTCACCCTACCTATGATTTGCGTGGCGTCATCAAGTTAGCCCTTGCTGAAGATTCTGCTAATTTTGGTGATGTAACATCTCTGGCCACCATCCCCTCTGACATGGTAGTGGATGCTTTCTTCTTGGCCAAAGAGGACGGCATTGTTGCTGGCATTACTCTTGCAAACATGGTATTCCAGGAGGTTGATCCTTCAATTAAGGTAGAATGGTCCCAGAAGGATGGAGATTATATTCATAAAGGACTACAATTTGGAAAAGTTTCTGGGCAAGCACAAAGCATCCTTGTAGCTGAAAGGGTGGCACTAAATTTTATGCAGAGAATGAGTGGAATTGCAACTTTAACTAAGGCAATGGCAGATGCTGCTGCCCCTGCACGCATTCTGGAAACGAGAAAAACTGCTCCAGGTTTACGTTTGGTGGATAAGTGGGCGGTATTAATTGGTGGAGGCGAAAATCACAGGATGGGTTTATTTGATATGGTGTTGATAAAAGATAATCATATATCAGCAGCTGGAGGCATCTCAAATGCCATTAAATCTGTTGACTTGTATCTGCAACAAAGAAATCTTAAAATGAACGTCGAGGTTGAGACCAGGACACTTGAGGAAGTTCATGAGGTACTGCACTATGCAACCCAAAACAAGACATCCTTAACCAGGATGATGTTGGATAATATGGTCGTTCCACTCCCAAGTGGCGATGTTGATGTGTCCATGCTTAAGGAGGCTGTAGACATCATCAATGGGAGATTTGAGACCGAGGCTTCAGGAAATGTTACTCTGCAGACCATACAGAAAATTGGACAAACTGGGGTTACTTACATATCCAGTGGTGCGCTGACACATTCTGTGAAAGCACTTGATATCTCTCTCAAGATAGACACAGAGTTGGCCCTTCAAGTTGGAAGACGTACAAAACGAGCCTGATTCTAAAACCCCACGTATCTGGGACCAGGCGAGAGATGAGAGGCCTTTGCCGTGGTGGCTTACACCCACTTTATTATTACCCGTGAATCACTCATTTCTTTGACGCCAAACAATAAATAAAAAGTGGGTGCTTTAGTTTTTAGTCCTTAGAGGTGGTTTTTCTTTCTACAGAACCCCCCCTCCCTTTGTAGCTGTAGCAGCCAACCTGAAACTTTATCATCCTATCTATTACTTTTTTTGCACTTTTAATGCTTCTCTCCATTATCTTTCCCAAAATGTTAGAAGGGGTTGAGACACGAGTGTCTCATGCTTTTGTGTACAATGCTTGACCCTAATTCTTATACGAATGCCATGCTGACTCCCATTTTCTAGGCTTTCTTTTGCTTGAGGGCTGCTTGTAATAATCAAAAATTACAAAGTTAATCCTATAATTTACTTTTAGTCCTTTTAACAACGCTAGGCTCAATGATGCCATACCAATTGGTCATAATGCGGAACAAATTGAATATGGGTATATTATGCATATTGTATTTTGATTGAATGTACCTCTCGTTTTGCC ATGCATATACTGAATCTGTATAGACCCTCTTTCGGGCATATCTGCCAATGCTGTGGACATAGCGATTTGCGGGCCTGTTCTAGAGGGTTAACACATATCTCAATCTCTACAGCTCACGGCTTGGTTCCCAGGAAACTTACGGCAATGTCTGCATCTGTGGCAAAAGATTCTGGAATATCAGTTGCATCAGTAGCAATCCAGCCTCCATCTCACCCTACCTATGATTTGCGTGGCGTCATCAAGTTAGCCCTTGCTGAAGATTCTGCTAATTTTGGTGATGTAACATCTCTGGCCACCATCCCCTCTGACATGGTAGTGGATGCTTTCTTCTTGGCCAAAGAGGACGGCATTGTTGCTGGCATTACTCTTGCAAACATGGTATTCCAGGAGGTTGATCCTTCAATTAAGGTAGAATGGTCCCAGAAGGATGGAGATTATATTCATAAAGGACTACAATTTGGAAAAGTTTCTGGGCAAGCACAAAGCATCCTTGTAGCTGAAAGGGTGGCACTAAATTTTATGCAGAGAATGAGTGGAATTGCAACTTTAACTAAGGCAATGGCAGATGCTGCTGCCCCTGCACGCATTCTGGAAACGAGAAAAACTGCTCCAGGTTTACGTTTGGTGGATAAGTGGGCGGTATTAATTGGTGGAGGCGAAAATCACAGGATGGGTTTATTTGATATGGTGTTGATAAAAGATAATCATATATCAGCAGCTGGAGGCATCTCAAATGCCATTAAATCTGTTGACTTGTATCTGCAACAAAGAAATCTTAAAATGAACGTCGAGGTTGAGACCAGGACACTTGAGGAAGTTCATGAGGTACTGCACTATGCAACCCAAAACAAGACATCCTTAACCAGGATGATGTTGGATAATATGGTCGTTCCACTCCCAAGTGGCGATGTTGATGTGTCCATGCTTAAGGAGGCTGTAGACATCATCAATGGGAGATTTGAGACCGAGGCTTCAGGAAATGTTACTCTGCAGACCATACAGAAAATTGGACAAACTGGGGTTACTTACATATCCAGTGGTGCGCTGACACATTCTGTGAAAGCACTTGATATCTCTCTCAAGATAGACACAGAGTTGGCCCTTCAAGTTGGAAGACGTACAAAACGAGCCTGA MHILNLYRPSFGHICQCCGHSDLRACSRGLTHISISTAHGLVPRKLTAMSASVAKDSGISVASVAIQPPSHPTYDLRGVIKLALAEDSANFGDVTSLATIPSDMVVDAFFLAKEDGIVAGITLANMVFQEVDPSIKVEWSQKDGDYIHKGLQFGKVSGQAQSILVAERVALNFMQRMSGIATLTKAMADAAAPARILETRKTAPGLRLVDKWAVLIGGGENHRMGLFDMVLIKDNHISAAGGISNAIKSVDLYLQQRNLKMNVEVETRTLEEVHEVLHYATQNKTSLTRMMLDNMVVPLPSGDVDVSMLKEAVDIINGRFETEASGNVTLQTIQKIGQTGVTYISSGALTHSVKALDISLKIDTELALQVGRRTKRA Homology
BLAST of CmaCh04G010010 vs. ExPASy Swiss-Prot
Match: Q9ZU32 (Nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic OS=Arabidopsis thaliana OX=3702 GN=QPT PE=2 SV=2) HSP 1 Score: 506.9 bits (1304), Expect = 2.0e-142 Identity = 259/336 (77.08%), Postives = 300/336 (89.29%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy Swiss-Prot
Match: Q0IZS0 (Nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os09g0553600 PE=2 SV=1) HSP 1 Score: 472.6 bits (1215), Expect = 4.1e-132 Identity = 236/316 (74.68%), Postives = 283/316 (89.56%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy Swiss-Prot
Match: P77938 (Probable nicotinate-nucleotide pyrophosphorylase [carboxylating] OS=Rhodospirillum rubrum OX=1085 GN=nadC PE=3 SV=1) HSP 1 Score: 207.2 bits (526), Expect = 3.2e-52 Identity = 131/301 (43.52%), Postives = 175/301 (58.14%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy Swiss-Prot
Match: P30819 (Nicotinate-nucleotide pyrophosphorylase [carboxylating] OS=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) OX=208964 GN=nadC PE=3 SV=2) HSP 1 Score: 169.5 bits (428), Expect = 7.4e-41 Identity = 107/290 (36.90%), Postives = 161/290 (55.52%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy Swiss-Prot
Match: P39666 (Probable nicotinate-nucleotide pyrophosphorylase [carboxylating] OS=Bacillus subtilis (strain 168) OX=224308 GN=nadC PE=1 SV=2) HSP 1 Score: 167.2 bits (422), Expect = 3.7e-40 Identity = 104/273 (38.10%), Postives = 152/273 (55.68%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy TrEMBL
Match: A0A6J1ILM4 (Quinolinate phosphoribosyltransferase [decarboxylating] OS=Cucurbita maxima OX=3661 GN=LOC111477549 PE=3 SV=1) HSP 1 Score: 726.1 bits (1873), Expect = 7.6e-206 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy TrEMBL
Match: A0A6J1FQC2 (Quinolinate phosphoribosyltransferase [decarboxylating] OS=Cucurbita moschata OX=3662 GN=LOC111447821 PE=3 SV=1) HSP 1 Score: 712.2 bits (1837), Expect = 1.1e-201 Identity = 370/377 (98.14%), Postives = 372/377 (98.67%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy TrEMBL
Match: A0A1S3BZD2 (Quinolinate phosphoribosyltransferase [decarboxylating] OS=Cucumis melo OX=3656 GN=LOC103495096 PE=3 SV=1) HSP 1 Score: 658.7 bits (1698), Expect = 1.5e-185 Identity = 344/377 (91.25%), Postives = 358/377 (94.96%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy TrEMBL
Match: A0A6J1DQ18 (Quinolinate phosphoribosyltransferase [decarboxylating] OS=Momordica charantia OX=3673 GN=LOC111022503 PE=3 SV=1) HSP 1 Score: 651.4 bits (1679), Expect = 2.4e-183 Identity = 338/377 (89.66%), Postives = 358/377 (94.96%), Query Frame = 0
BLAST of CmaCh04G010010 vs. ExPASy TrEMBL
Match: A0A6J1DM89 (Quinolinate phosphoribosyltransferase [decarboxylating] OS=Momordica charantia OX=3673 GN=LOC111022503 PE=3 SV=1) HSP 1 Score: 651.4 bits (1679), Expect = 2.4e-183 Identity = 338/377 (89.66%), Postives = 358/377 (94.96%), Query Frame = 0
BLAST of CmaCh04G010010 vs. NCBI nr
Match: XP_022977195.1 (nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic [Cucurbita maxima]) HSP 1 Score: 726.1 bits (1873), Expect = 1.6e-205 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 0
BLAST of CmaCh04G010010 vs. NCBI nr
Match: XP_023513503.1 (nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 714.1 bits (1842), Expect = 6.1e-202 Identity = 371/377 (98.41%), Postives = 373/377 (98.94%), Query Frame = 0
BLAST of CmaCh04G010010 vs. NCBI nr
Match: XP_022942936.1 (nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic [Cucurbita moschata]) HSP 1 Score: 712.2 bits (1837), Expect = 2.3e-201 Identity = 370/377 (98.14%), Postives = 372/377 (98.67%), Query Frame = 0
BLAST of CmaCh04G010010 vs. NCBI nr
Match: XP_038892237.1 (nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 678.7 bits (1750), Expect = 2.9e-191 Identity = 351/377 (93.10%), Postives = 365/377 (96.82%), Query Frame = 0
BLAST of CmaCh04G010010 vs. NCBI nr
Match: XP_008454775.1 (PREDICTED: nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic isoform X1 [Cucumis melo] >XP_008454776.1 PREDICTED: nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic isoform X1 [Cucumis melo] >XP_016901657.1 PREDICTED: nicotinate-nucleotide pyrophosphorylase [carboxylating], chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 658.7 bits (1698), Expect = 3.1e-185 Identity = 344/377 (91.25%), Postives = 358/377 (94.96%), Query Frame = 0
BLAST of CmaCh04G010010 vs. TAIR 10
Match: AT2G01350.1 (quinolinate phoshoribosyltransferase ) HSP 1 Score: 506.9 bits (1304), Expect = 1.4e-143 Identity = 259/336 (77.08%), Postives = 300/336 (89.29%), Query Frame = 0
BLAST of CmaCh04G010010 vs. TAIR 10
Match: AT2G01350.4 (quinolinate phoshoribosyltransferase ) HSP 1 Score: 501.9 bits (1291), Expect = 4.5e-142 Identity = 257/329 (78.12%), Postives = 297/329 (90.27%), Query Frame = 0
BLAST of CmaCh04G010010 vs. TAIR 10
Match: AT2G01350.3 (quinolinate phoshoribosyltransferase ) HSP 1 Score: 490.7 bits (1262), Expect = 1.0e-138 Identity = 255/336 (75.89%), Postives = 295/336 (87.80%), Query Frame = 0
BLAST of CmaCh04G010010 vs. TAIR 10
Match: AT2G01350.2 (quinolinate phoshoribosyltransferase ) HSP 1 Score: 451.1 bits (1159), Expect = 9.0e-127 Identity = 228/281 (81.14%), Postives = 261/281 (92.88%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucurbita maxima (Rimu) v1.1
Date Performed: 2021-10-25
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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