CmoCh17G003560 (gene) Cucurbita moschata (Rifu) v1
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.GGCCCAATACTATGTTGGATCGTCGTTTCCCGCGATCTCTCCTCCGTAGATTATCTCTACATTTTACTACTTTCTCCAATAAAGTTGATCGACTCTCTGAAGAAGCTCGAGGTCATCGGTGAACGCCATGGCATTTTGGTGGACTCTGCTTGTAATAGGATTTGCTTACGCGATCTGTAGGTTACTCTTGATGCTCATCCCTCCGAATGTGCCTTCAATCGAAGTTGACGCATCTGATGGTGACAAATTCATTCCTCTCTCGTTCTCTCTGTACATTCGAATGCGTTTTATTCCTCCTTTTTTAATTTTGTGTCCGATCATTTATTTCGACTAATATTCTTGCAGTGATGGACGACGGTAATCAGACGCAGGAGAATAGCTACATCTACGTAAGTATTTCCGGAGATTCTACAATTGATCTTAGCGATACTTAGTTTTGATGCTACAATATTGCTTCATTTCCGGCGTTAGTTTTTGGAATAAGTCGGCATTCTCATACTTCGATGTAAACTGCACTATTTGGTACAGAGATATGTGAATTTGAGCAATTTCTTGAAATTAGTGTTCAGGAACTACCGTCTCAGGCTTCGATTCTTTGAACTACACTGTCGGTGTTTTCTCACTTGAATTTGAACTACACTGTTAAGTAAAAGATGAGTAAGTTCTTGGAATATCTATTCCGCAACCATTGTTTAGGCTTTGATTGTTTAAAGTAATGTTTATTTTTGTACTAAAAATCACTTCGATTTAAATTATACAGTTTAGTACCGAGCTATATGAATTTGAGTAGGTTCTTGAAATCTCCATCCTGGGACCACCGTCTCAGGGTTTGATTCTTTAGACTATATTGTTCAGTCCGCATTCTCTCGCCTTGATTTAAGTTACACTGTTTAGTACAGAGCTATATGAAATTTCAATTCCGGAAGCAATTCTATGATTGATATAGCGAGAATGGTTTTGATGATACATGGCTTCATTTTCAGCAATAATATTTTTTAAAAATAATTCTCTTACTTTGATATAATCTACATTGTTTAGTAGTGATATGAATGTGAGTAAGTAAACAATTGAAATTTCTATTTGGGAGCTATATCTTAAGCTTTGATTCCATTATGGAACTATACTCTTTGAGAGGATCTTCTTGGACCTGGTTTAAGCAAATTACTAGCTTACTAATATGACTTTGAAAATTAGAAATCCTTTCGCATTTTATTCTGAAAATTTTAACGATTGAAGCCAACATTATTTATTGGCCATTACAAACTATTCGTTCTCCCATATCAAAGCTTGCAGAAGGCAGGGATTTTTGTTTGAAATTGCTAAGCAAAACTATCTGATTTCACAATTTCGGTTGGTGATAACAGATTCCACCTAGAGTAAGGACACAGCAGCAAGACAAGCGAGTCCAATGTTACGAGCCTGCAACTATGAAATACCTGGGCTATTTTCCTGCATTGTCACGAGACGAGGTGAGCACTGATTAGTGAACTTGTTAAGAGTTGTAGCATTTGTCCTCTTATTATTTTTGTTGAATTTGGATGGATGGGAGATTTTTCATATCGTTTCATCATAGTTAACTCGATCTGTGTTTCTATCTATTATTAGGCTCCTGCATGTTGTAGTGTTTTATTTTCATGTCAATCCTCCCCCATGATCTTTTTTTTCCTCGATCTTCTGAGAATGATGGTTGTGGAAGGACCAGCAGCTCTCTGTACTTCAAATAAACACTGCCTCAATTTTCTCTCTTTCATTCACCTAGTTGTTATCTCTATATAATACAAGTATTTCTCATACTGATGGCACTAGTTATTAGAAGGATTTATTGCTAAATGAGTGGGAGAGGTAGAAACTGAAGTTAGTGATTAAACTTATTGTGTTGATTTCTACGCTTTAGGTCAATGATCGTGTTGCTTCAGCCAGGAAAGCACAGAAAGAATGGGCCAAAAGTAGCTTTAAGCAAAGGCGTTTGCTCTTACGCATACTTTTGAAGTATATAATTGAACATCAAGAGCTTATTTGCGAGTAAGATCCAGTTATTTTAATATAGTGTAGATTTATATATGTATATTCTCTAAGAGAGAAAAATAAAAATAGAGAGACTAGTAGCCAGGTGGATAGTTTCTGTCATTCTAATTATTTATCCTTTGGGATAGGATCTCCTCCCGTGACACTGGAAAGACAATAGTGGATGCTAATATGGGAGAAATAATGGCAACATGTGAAAAGATTACTTGGCTTCTTTCAGAGGGTGAGAAATGGCTGAAGCCTGAGAGCAGGTAACATTTCTTACTCGTGTTGCAGACAGTACATTACAATTTCTATATCGTTCCTTTGCAGTTTCTTTCCTTTGACTAGCATAGTGGCTCATACATTTAGTCATCTCTGTTGCTCTTGAATACTAATAACCTAGCATCTGTAAGGCATTCCCGCTGGACATGCAAGTTGTCATTGTGGAAATGATATTGTCCGAATGTCCCTAGTTATGTTGGATTTGAATTATATTTTGATCAAGAAAGAAAGCTCTTAAGTTTCTGGATGATTAAATTCATTATGCATTTGATCTCTTAATCTATTTCAATTTGCAGATCATGTGGAAGGGCAACACTTCACAAGAAAGCTCGCGTAGAATTTCATCCCCTTGGAGTTATTGGTGCAATAGTCCCATGGAACTATCCATTTCATAACATTTTCAATCCAGTGCTTGCGGCAGTTTTTGCAGGAAATGGCATTGTAGTTAAGGTATTGAAGTCTTCCCTTAAATCTTTTGGGAATATTATTTTGGCTAAAATGCAAAAAATACTCCAGAACTTTGTTTTTTTTGCTTAAAGAATATTCTTTTTCTTTCAAAGGTGTAATCTTACCCTTGACCTTTCATAAATGAGTCAAAACTACTCCTAAAATAGAAATTCATTAGAATGTTGGATGAAAATTTGGACCTAGAATGTGGCATTTTTCGGTAGCAATTTTTGTTCCATGTCAATGCCACACTATTCCAGGTCTCAATTTTCATCTAACACTTTAACGTATTTGTACCCTTATGGTAGTTTTGAAACGTTTATGCAAGATCAAGGGTAATATTGCAATTTTTGAAAGAGCAAAGTATTCTTTGTTTAAAGGGCAAAGTTTAGGTTTTTTTTTTTTTTTTTTTTTTTTTAGCCTATTTTTTGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTTTTTTTTTTTTTTTTTTTCATTTAGCCTATTTTTTGTATGTTACGTTCTTTCAGCAATTACTGGAAGTTTCATGTCTTACCATCCCAAGCAATCATTTCATGTGCCTAGTCTGCTCTTAAGATGTTATGCATCATTTGGATACATATTCTTAAGGAATTTCAATATTCTAGAGCTTTCTTTCATATTTAGCTCAATTTTTTTAAATATATATATAAATATATAAATAGACACATATTCTAGAGCTTTCTTAGTGGTAAAAAAAAAGCTTCAAATAGCTAAAAGCTTCAACCAAGGAATTTTCAGTTCCATTGATCCTCTTCTATAATGTGCATTCATACGGGTTTTGTTTTTATGTCATACAATTGATTGAAATTATAGGTTTCAGAACATGCAAGTTGGTCAGGATGCTTCTATGTCAGGATTATCCAAGCTGCACTTGCTGCTGTTGGAGCTCCTGAGAGTTTGGTCGATGTGATAACAGGGTACACACTTTAATTTTTCATTTGAAATATCATCACGAGGCTGTTCAGTTGTCCACTTTAATATGATCTTTTATCAGGTTTGCTGAAACAGGTGAAGCTCTAGTATCTTCAGTAGACAAAATGATATTCGTTGGATCTACTGGTGTGGGTAGGATGGTATGAACTCTTTTTTTACTCTATTTTTTGGTTCTATCATTTATTGATTCAGTTGTTCAGGTGTTTCCAAATACATAATTACAGCAATCCACGCTGAGGCATGTTTCATAATAGGGAATGAGTTTGGAGGTTAAGCGAAAAAGTATCCATTGGATTAAAAGTTGCGGGGATGAGAACTACTTTTATTTTTTATTTTTTATTGTGTAGTTACGATTGTTTTGCAGCCAGGCTCAAAATTGATTACCGATGATATTGTTTACAAAGAATGAGAATCAAATATGAATTTGTGTGTATAAATAAATAGAGAACAAAGCAAAAAAGTGATGGGACTCATCAAACATGTTACACCGGAGAACATGTGGGGTCTGTTGGGATTCTTTCTCTATTCTATCTCTAGTTTATAAACAATGGAAAGAAGGATAGCAGGAAATGACTTTGATTATTGTAGACTAATTCATTTGCTTATTTCTACCATATAAAGTAATACTCATTCTTGTTTCCCCTTGAATTCTAGTTATTACACAATGGGGCTTTTATTTATAATCTTTTTAAAATAAAAGAGATGGAAAAAGTGACTTGTTTTCTAGCATCCACCTCTACTCTATGTGTTACATATTTGGCATGAATCCTCGCAGATAATGAAAAGTGCTGCTGAGACACTCATTCCAGTTACTCTTGAGTTGGGTGGAAAGGACGCATTTATCGTGTGTGAGGATGTAGATCTTGATCATGTATGAATACTCTCCAATTTTACTATATACAACTAGCTCGAGTAGTTTAGTTGATTTCATGTCATTGAGAACTGATGGGAGTTTCTTTACTTAATATAGGTTGTAAACGTTGCTCTCAGGGCTTCTATTACATCAAGTGGACATAATTGTACTGGAGCTGAGAGATTTTATGTCCACAAGAACATTTATTCTTCGTTTGTGGATAAAATATCAGAACGTGTAAAGGCTATTACAGTTGTAAGTATGAGTTCCTTTTTTTTATAGTAAAATTATGTCCATTCTTCTGCTGGGTATAAGGGATCTTGTGGTTTTTTTCAATTTCAAATTTCTACTTTTCATTCTGCAAATACGGGACATTTTGAAGGTATGTGGTTTCTTGCAAAATGGACATTAGGAATGGCAGCTGAAACTGAATTTATAACGTATGCTTCCACAGGGAAAAAAATTTCATGGTTCTTAGAAGTTTTTTTTGTTCTCACCGTACTCTTCATATGTTCTGTTGAAAGTTCTCAATTCAACGTTTAAAACCACACATGCAAATCAAATTAAGTGTAAAGAAAGAAAAGAAGGTTACTTAAAAGATCTCTTTGAAGCCAGTAAGAAGATTTGCAAGTACGGGATCTGCTGGAATTATTATGGTTTTAAGAAACTCTATATATACGAGGTAACAAATTTCCAAATGGTTAGAATACTCAACCATTGATAGAAAGAACCTATTCACTTTTAGCAGAAGCCGAAAAGGAAAAATCATTGGAAAATCTCAACAGCAGCATTTCCATAAGCCCTTTACTTTGGTGCTGCTAATTGTTGAATGCCTTACGGGCACATAAATTCTTATAAATTTGCTAAAAACTGGCATCTTCGTCTCCTGCCAATATTGTTGTTGTTTACGCTTCTAGTCTTTCAGCAAAATGTATTTGTTGTTGAATATTCATGCCTCATCTATTTTGGTGGTTGTATGCCATTGTGGTGCCATATTGTATCTATTGTAAGTGAGGATCTGGTTTCGACTAAGTCTTTAATTACCTGGAACAAATTATTTTGATCAAAATTTGAAGACTATTTTTTAATTGAGAGATGAAACTCTCTTCTTGAAAATGTTTTTCAGGGTCCACCATTAGCTGGGAAGTATGATATGGGTGCCATCTGTACGCAAGAGCAGTCTGAGAAACTTCAAAGCCTCGTAAATGATGCCTTAGACAGGGGGGCAAAAATTGTTGCTCGTGGAACTTTCGGACATTTACCTGAAGGTGCCGTTGATCAATATTTTCCACCTACCGTTATTGTTGACGTCAACCATACCATGAAATTAATGCAAGAGGAGGTAGCAATACTTGACATGCTCTTCTTTTATTGCGATAGACTTTTTGGTAGTCCCTTTTAGTCGGCCTATATTATATTTTGTTTGAATAATTCGTCAAATAGATCTTGGAACCCTACTTAATACTTGCTCTGACGACGTGCTGGTGCTGTTTGAATTCAGCTATTGGTCTTATAAAGAAACAAAAAAACAACTAAGGCCCATTTGATAATCATTTGGTTTTTGTTTTTAGCTTAATTTTCAACACTGTTACCACCTATAAGGTTCTTTAATTTGTTATCGACATTAAAAAAATGTTTTTATAATCCCTTAAAAACTCATTTTATTTTTGGAATGTTGCCAAAAGTTTAAATCTTTCTTTGAGAAAGATGAAGGTCATGGTAAACAAATTGGAAACAAAGATAGTTTTCAAAAAAATAAAAGACAAACACAATTGTTATGGAATGTGATCTAAAGTTTTCTTTTTAAATTTTAATTTTATGAAATTGGTTCTCTAGTAAAATTAGTGTGGTATATAACTAACCATCTTATCTTTTATATTACATTTGCAGCTCAATTGATCTCTAAGAAAATATCTTCTGGCTCCAAATTGACCTGTAATTTATTGCTCAACTTTCAAAGCTATGAAAATGTGCTAACTGAGTGGTGGAATACAGGCATTTGGACCAATCCTGCCCATAATGAAATTCAGCACAGATGATGAGGCCGTGAGGCTTGCAAATGATTCAAGATTTGGGCTCGGCTGTGCTGTCTTTTCTGGCAGTCAGCGTCGTGCCAAGAATATTGCTTCGCAGATACGTTCTGGAAGTGTTGCAATTAATGACTTCGCCACAAATTATTTATGTCAGGTAAAATTCATTCATGCTTTATTTATGTTTACTAGTTCATGTTTGGCAGGCTTGTTGTACACTTATTGGTCATTTGTTGGTACAGTCATCAAACACATGTTGTTTCTGACGGCGAGGCACTTATCTGTTTTACCTATTTATATTAGTTTGTTTGAGAAATTAGTTGATATGAAATATAAGAAGAAAAACAAGCTTTGTGCGACAAAAACGTTATATTTATTTTTTTACGTGAAATCCCACATCGATTGGAGAGAGGAACGAGTGCCAGCGAGGACGCTGGCCCCGAAGGGAGGTGGATTGTGAGATCCCACATCGGTTGGAGAGGGGAACGAAGCATTCTTTATAAGGGTGTGGAAACTTCTCTCTAGAAGATGCGTTTTAAAACTTTGAGGGGAAACTCGAAAGGGAAAGCCTAGAAAAGAAAGCTTAAAGAGGACAATATCTGTTAATGGTGGACTTAGACTTGGTTTATTACATTACAGCGGTATTAATTTTTTTAAAAAAATTCATTTCTGATGATGAGATTTAGGTTTTATAGATAGTTTTAAATGATTCGATAGGAAGTTAGTGTCACTAATGAAGAGCTAACTAGTAGCTTAATATTGCTCGTGTAGCATCCTCCCCTTTGTGAATAAGGAAAACCTTTGTGGCCAGCAGGTGTCTGCTATTTTGTGGAGGCTTTGAGGAGAAAGGAACAATAGGACTTTGCTAGGTTCCATATGTTCCTTTAGGTTGCCTCCGTCTTTTGTGGACTTTTTTATTTTTATGTTTTTTTGTATGTTATTTATTATTTACTTTTTCTCAATAAAATCCTAGTTACTGTAGAACAAAGGAAAGAAAAATACTTTTGAGTATCTAAAAATGGCTTTTAAATTAATTTTAGAAACTATCTTTGTTTATTAAGATTAAAAAAAAAAAACGCTTTTGATCTGAATTATTAATTTCTTCAAAAAGGACTTGAAGAAAAATTAATTTTGTTAAAAACATTTTTTTTTCACACATTATTTCAAACACGCTAAATATCTTATGTATTGCTCGTCTCGATGTCATGATTTTTCTTTTATAAACCATGTTGTCGTGCTCGTATCATTTCATTTGTGTGCTGCATAACTGGAAAGGAATCCTTTTCTTTTTTGGAAGAATTTGTTGGTGTTATAGGACAATTACCTGTATTGAATCTAACAGATAGAGGTGACTATTACACAACTACTCCTAACAAAACTTCGTTGCATTAGTTTATTTTACTTAACAATAGCATATCAACCTCAATCATATCAGATATCTCTTGATTTTTCAGTCCTTGCCATTCGGTGGCGTGAAAGAGAGTGGATTCGGTCGATTTGCGGGCGTTGAAGGATTACGAGCTTGTTGTCTCGTCAAAGCAGTTGTTGAAGATAGGTGGTGGCCATACATTCAGACTAAGCATCCTAAGCCTCTTACGGTTAGCCATTAAGAATTTTAATAAGTACTTTTTGCTCTTTATTTTGTATGCCCATTGAAATTGTTCGTATTCTTTCTCGACTAGTATCCTGTGGCAGACAATGCTTTCGAGTTTCAAATGTCGCTCGTTGAAGCAACGTACGGGCTGAACATATGGGATCGATTGAGAGCATTGGTCAATGTCCTAAAGATGCTTTCCGAGCAGAACACTCCGGCTAAAGACAACTCTGCCGTTGATGATGGAAGTAAGAGAGCTGATTGAGGGGATATTGGATTTGCAATAGATTATAATATGTTACATTCACCTAGAAGATGGTGTTCTTGGAGGTACTTTTAGAATTTTCCTCTTTATTTAGTACTTTTTGTTTTGATTATAACCAGGGTTCTAAAGTGCTTAACAACCTAGTACTTTTGATGTTTGATTATGTAATTTTGGAAGTGCTTACTTGAGCTGATGAGGCAAAAGCACCATTCAAATGCTTACTATAACATAAGCATTTTAAGGTGCTTTTTATTTGTTTTTCCAAGCACTTTTTTATGTTTCTAAATGATTGAAAATGGGAAGTATTTGGCTTTGCCCAAAACTCTCCTATTACTGGTTTGGGCTCCGTTCTTTCAACGGCTCATCTCAAATCATCGAATGTTTGGATTTTAACTTTGCGAGCACCCACTCAAACTAGAAGTAGGCAAG GGCCCAATACTATGTTGGATCGTCGTTTCCCGCGATCTCTCCTCCGTAGATTATCTCTACATTTTACTACTTTCTCCAATAAAGTTGATCGACTCTCTGAAGAAGCTCGAGGTCATCGGTGAACGCCATGGCATTTTGGTGGACTCTGCTTGTAATAGGATTTGCTTACGCGATCTGTAGGTTACTCTTGATGCTCATCCCTCCGAATGTGCCTTCAATCGAAGTTGACGCATCTGATGTGATGGACGACGGTAATCAGACGCAGGAGAATAGCTACATCTACATTCCACCTAGAGTAAGGACACAGCAGCAAGACAAGCGAGTCCAATGTTACGAGCCTGCAACTATGAAATACCTGGGCTATTTTCCTGCATTGTCACGAGACGAGGTCAATGATCGTGTTGCTTCAGCCAGGAAAGCACAGAAAGAATGGGCCAAAAGTAGCTTTAAGCAAAGGCGTTTGCTCTTACGCATACTTTTGAAGTATATAATTGAACATCAAGAGCTTATTTGCGAGATCTCCTCCCGTGACACTGGAAAGACAATAGTGGATGCTAATATGGGAGAAATAATGGCAACATGTGAAAAGATTACTTGGCTTCTTTCAGAGGGTGAGAAATGGCTGAAGCCTGAGAGCAGATCATGTGGAAGGGCAACACTTCACAAGAAAGCTCGCGTAGAATTTCATCCCCTTGGAGTTATTGGTGCAATAGTCCCATGGAACTATCCATTTCATAACATTTTCAATCCAGTGCTTGCGGCAGTTTTTGCAGGAAATGGCATTGTAGTTAAGGTTTCAGAACATGCAAGTTGGTCAGGATGCTTCTATGTCAGGATTATCCAAGCTGCACTTGCTGCTGTTGGAGCTCCTGAGAGTTTGGTCGATGTGATAACAGGGTTTGCTGAAACAGGTGAAGCTCTAGTATCTTCAGTAGACAAAATGATATTCGTTGGATCTACTGGTGTGGGTAGGATGATAATGAAAAGTGCTGCTGAGACACTCATTCCAGTTACTCTTGAGTTGGGTGGAAAGGACGCATTTATCGTGTGTGAGGATGTAGATCTTGATCATGTTGTAAACGTTGCTCTCAGGGCTTCTATTACATCAAGTGGACATAATTGTACTGGAGCTGAGAGATTTTATGTCCACAAGAACATTTATTCTTCGTTTGTGGATAAAATATCAGAACGTGTAAAGGCTATTACAGTTGGTCCACCATTAGCTGGGAAGTATGATATGGGTGCCATCTGTACGCAAGAGCAGTCTGAGAAACTTCAAAGCCTCGTAAATGATGCCTTAGACAGGGGGGCAAAAATTGTTGCTCGTGGAACTTTCGGACATTTACCTGAAGGTGCCGTTGATCAATATTTTCCACCTACCGTTATTGTTGACGTCAACCATACCATGAAATTAATGCAAGAGGAGGCATTTGGACCAATCCTGCCCATAATGAAATTCAGCACAGATGATGAGGCCGTGAGGCTTGCAAATGATTCAAGATTTGGGCTCGGCTGTGCTGTCTTTTCTGGCAGTCAGCGTCGTGCCAAGAATATTGCTTCGCAGATACGTTCTGGAAGTGTTGCAATTAATGACTTCGCCACAAATTATTTATGTCAGTCCTTGCCATTCGGTGGCGTGAAAGAGAGTGGATTCGGTCGATTTGCGGGCGTTGAAGGATTACGAGCTTGTTGTCTCGTCAAAGCAGTTGTTGAAGATAGGTGGTGGCCATACATTCAGACTAAGCATCCTAAGCCTCTTACGTATCCTGTGGCAGACAATGCTTTCGAGTTTCAAATGTCGCTCGTTGAAGCAACGTACGGGCTGAACATATGGGATCGATTGAGAGCATTGGTCAATGTCCTAAAGATGCTTTCCGAGCAGAACACTCCGGCTAAAGACAACTCTGCCGTTGATGATGGAAGTAAGAGAGCTGATTGAGGGGATATTGGATTTGCAATAGATTATAATATGTTACATTCACCTAGAAGATGGTGTTCTTGGAGGTACTTTTAGAATTTTCCTCTTTATTTAGTACTTTTTGTTTTGATTATAACCAGGGTTCTAAAGTGCTTAACAACCTAGTACTTTTGATGTTTGATTATGTAATTTTGGAAGTGCTTACTTGAGCTGATGAGGCAAAAGCACCATTCAAATGCTTACTATAACATAAGCATTTTAAGGTGCTTTTTATTTGTTTTTCCAAGCACTTTTTTATGTTTCTAAATGATTGAAAATGGGAAGTATTTGGCTTTGCCCAAAACTCTCCTATTACTGGTTTGGGCTCCGTTCTTTCAACGGCTCATCTCAAATCATCGAATGTTTGGATTTTAACTTTGCGAGCACCCACTCAAACTAGAAGTAGGCAAG ATGGCATTTTGGTGGACTCTGCTTGTAATAGGATTTGCTTACGCGATCTGTAGGTTACTCTTGATGCTCATCCCTCCGAATGTGCCTTCAATCGAAGTTGACGCATCTGATGTGATGGACGACGGTAATCAGACGCAGGAGAATAGCTACATCTACATTCCACCTAGAGTAAGGACACAGCAGCAAGACAAGCGAGTCCAATGTTACGAGCCTGCAACTATGAAATACCTGGGCTATTTTCCTGCATTGTCACGAGACGAGGTCAATGATCGTGTTGCTTCAGCCAGGAAAGCACAGAAAGAATGGGCCAAAAGTAGCTTTAAGCAAAGGCGTTTGCTCTTACGCATACTTTTGAAGTATATAATTGAACATCAAGAGCTTATTTGCGAGATCTCCTCCCGTGACACTGGAAAGACAATAGTGGATGCTAATATGGGAGAAATAATGGCAACATGTGAAAAGATTACTTGGCTTCTTTCAGAGGGTGAGAAATGGCTGAAGCCTGAGAGCAGATCATGTGGAAGGGCAACACTTCACAAGAAAGCTCGCGTAGAATTTCATCCCCTTGGAGTTATTGGTGCAATAGTCCCATGGAACTATCCATTTCATAACATTTTCAATCCAGTGCTTGCGGCAGTTTTTGCAGGAAATGGCATTGTAGTTAAGGTTTCAGAACATGCAAGTTGGTCAGGATGCTTCTATGTCAGGATTATCCAAGCTGCACTTGCTGCTGTTGGAGCTCCTGAGAGTTTGGTCGATGTGATAACAGGGTTTGCTGAAACAGGTGAAGCTCTAGTATCTTCAGTAGACAAAATGATATTCGTTGGATCTACTGGTGTGGGTAGGATGATAATGAAAAGTGCTGCTGAGACACTCATTCCAGTTACTCTTGAGTTGGGTGGAAAGGACGCATTTATCGTGTGTGAGGATGTAGATCTTGATCATGTTGTAAACGTTGCTCTCAGGGCTTCTATTACATCAAGTGGACATAATTGTACTGGAGCTGAGAGATTTTATGTCCACAAGAACATTTATTCTTCGTTTGTGGATAAAATATCAGAACGTGTAAAGGCTATTACAGTTGGTCCACCATTAGCTGGGAAGTATGATATGGGTGCCATCTGTACGCAAGAGCAGTCTGAGAAACTTCAAAGCCTCGTAAATGATGCCTTAGACAGGGGGGCAAAAATTGTTGCTCGTGGAACTTTCGGACATTTACCTGAAGGTGCCGTTGATCAATATTTTCCACCTACCGTTATTGTTGACGTCAACCATACCATGAAATTAATGCAAGAGGAGGCATTTGGACCAATCCTGCCCATAATGAAATTCAGCACAGATGATGAGGCCGTGAGGCTTGCAAATGATTCAAGATTTGGGCTCGGCTGTGCTGTCTTTTCTGGCAGTCAGCGTCGTGCCAAGAATATTGCTTCGCAGATACGTTCTGGAAGTGTTGCAATTAATGACTTCGCCACAAATTATTTATGTCAGTCCTTGCCATTCGGTGGCGTGAAAGAGAGTGGATTCGGTCGATTTGCGGGCGTTGAAGGATTACGAGCTTGTTGTCTCGTCAAAGCAGTTGTTGAAGATAGGTGGTGGCCATACATTCAGACTAAGCATCCTAAGCCTCTTACGTATCCTGTGGCAGACAATGCTTTCGAGTTTCAAATGTCGCTCGTTGAAGCAACGTACGGGCTGAACATATGGGATCGATTGAGAGCATTGGTCAATGTCCTAAAGATGCTTTCCGAGCAGAACACTCCGGCTAAAGACAACTCTGCCGTTGATGATGGAAGTAAGAGAGCTGATTGA MAFWWTLLVIGFAYAICRLLLMLIPPNVPSIEVDASDVMDDGNQTQENSYIYIPPRVRTQQQDKRVQCYEPATMKYLGYFPALSRDEVNDRVASARKAQKEWAKSSFKQRRLLLRILLKYIIEHQELICEISSRDTGKTIVDANMGEIMATCEKITWLLSEGEKWLKPESRSCGRATLHKKARVEFHPLGVIGAIVPWNYPFHNIFNPVLAAVFAGNGIVVKVSEHASWSGCFYVRIIQAALAAVGAPESLVDVITGFAETGEALVSSVDKMIFVGSTGVGRMIMKSAAETLIPVTLELGGKDAFIVCEDVDLDHVVNVALRASITSSGHNCTGAERFYVHKNIYSSFVDKISERVKAITVGPPLAGKYDMGAICTQEQSEKLQSLVNDALDRGAKIVARGTFGHLPEGAVDQYFPPTVIVDVNHTMKLMQEEAFGPILPIMKFSTDDEAVRLANDSRFGLGCAVFSGSQRRAKNIASQIRSGSVAINDFATNYLCQSLPFGGVKESGFGRFAGVEGLRACCLVKAVVEDRWWPYIQTKHPKPLTYPVADNAFEFQMSLVEATYGLNIWDRLRALVNVLKMLSEQNTPAKDNSAVDDGSKRAD Homology
BLAST of CmoCh17G003560 vs. ExPASy Swiss-Prot
Match: Q0WSF1 (Aldehyde dehydrogenase 22A1 OS=Arabidopsis thaliana OX=3702 GN=ALDH22A1 PE=2 SV=2) HSP 1 Score: 954.9 bits (2467), Expect = 4.3e-277 Identity = 452/587 (77.00%), Postives = 527/587 (89.78%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy Swiss-Prot
Match: P38694 (Putative aldehyde dehydrogenase-like protein YHR039C OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=MSC7 PE=1 SV=1) HSP 1 Score: 393.3 bits (1009), Expect = 5.0e-108 Identity = 217/539 (40.26%), Postives = 320/539 (59.37%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy Swiss-Prot
Match: Q9P7K9 (Putative aldehyde dehydrogenase-like protein C21C3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=SPBC21C3.15c PE=3 SV=1) HSP 1 Score: 372.1 bits (954), Expect = 1.2e-101 Identity = 191/502 (38.05%), Postives = 293/502 (58.37%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy Swiss-Prot
Match: Q4VKV0 (4,4'-diapolycopene aldehyde oxidase OS=Methylomonas sp. OX=418 GN=ald PE=1 SV=1) HSP 1 Score: 259.6 bits (662), Expect = 8.7e-68 Identity = 160/455 (35.16%), Postives = 241/455 (52.97%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy Swiss-Prot
Match: P94428 (Succinate-semialdehyde dehydrogenase [NADP(+)] OS=Bacillus subtilis (strain 168) OX=224308 GN=gabD PE=1 SV=1) HSP 1 Score: 258.8 bits (660), Expect = 1.5e-67 Identity = 157/475 (33.05%), Postives = 253/475 (53.26%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy TrEMBL
Match: A0A6J1H899 (aldehyde dehydrogenase 22A1-like OS=Cucurbita moschata OX=3662 GN=LOC111460471 PE=3 SV=1) HSP 1 Score: 1208.7 bits (3126), Expect = 0.0e+00 Identity = 603/603 (100.00%), Postives = 603/603 (100.00%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy TrEMBL
Match: A0A6J1L4Q4 (aldehyde dehydrogenase 22A1 OS=Cucurbita maxima OX=3661 GN=LOC111499119 PE=3 SV=1) HSP 1 Score: 1207.2 bits (3122), Expect = 0.0e+00 Identity = 601/603 (99.67%), Postives = 603/603 (100.00%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy TrEMBL
Match: A0A6J1CA89 (aldehyde dehydrogenase 22A1 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111009819 PE=3 SV=1) HSP 1 Score: 1152.1 bits (2979), Expect = 0.0e+00 Identity = 567/603 (94.03%), Postives = 589/603 (97.68%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy TrEMBL
Match: A0A0A0KCW3 (Aldedh domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_6G307390 PE=3 SV=1) HSP 1 Score: 1135.2 bits (2935), Expect = 0.0e+00 Identity = 563/603 (93.37%), Postives = 581/603 (96.35%), Query Frame = 0
BLAST of CmoCh17G003560 vs. ExPASy TrEMBL
Match: A0A6J1EWW0 (aldehyde dehydrogenase 22A1-like OS=Cucurbita moschata OX=3662 GN=LOC111436875 PE=3 SV=1) HSP 1 Score: 1130.5 bits (2923), Expect = 0.0e+00 Identity = 549/603 (91.04%), Postives = 582/603 (96.52%), Query Frame = 0
BLAST of CmoCh17G003560 vs. TAIR 10
Match: AT3G66658.2 (aldehyde dehydrogenase 22A1 ) HSP 1 Score: 954.9 bits (2467), Expect = 3.1e-278 Identity = 452/587 (77.00%), Postives = 527/587 (89.78%), Query Frame = 0
BLAST of CmoCh17G003560 vs. TAIR 10
Match: AT3G66658.1 (aldehyde dehydrogenase 22A1 ) HSP 1 Score: 892.5 bits (2305), Expect = 1.9e-259 Identity = 423/544 (77.76%), Postives = 489/544 (89.89%), Query Frame = 0
BLAST of CmoCh17G003560 vs. TAIR 10
Match: AT1G74920.1 (aldehyde dehydrogenase 10A8 ) HSP 1 Score: 239.2 bits (609), Expect = 8.6e-63 Identity = 168/488 (34.43%), Postives = 256/488 (52.46%), Query Frame = 0
BLAST of CmoCh17G003560 vs. TAIR 10
Match: AT3G48170.1 (aldehyde dehydrogenase 10A9 ) HSP 1 Score: 235.7 bits (600), Expect = 9.5e-62 Identity = 162/477 (33.96%), Postives = 249/477 (52.20%), Query Frame = 0
BLAST of CmoCh17G003560 vs. TAIR 10
Match: AT1G79440.1 (aldehyde dehydrogenase 5F1 ) HSP 1 Score: 229.9 bits (585), Expect = 5.2e-60 Identity = 153/471 (32.48%), Postives = 247/471 (52.44%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucurbita moschata (Rifu) v1
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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