CmoCh18G010470 (gene) Cucurbita moschata (Rifu) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGTGCCTGTGGTATGATAGTACATTGATTTTGGCTGTAGATGTGATGTTAAAGGAGAGGGATTGTGTAGTACGTTTACGATGCGCAGCAGCAGCGGCAGCACTCCGTGTTCTTAATATACTTTTGCATGCTCAAGCTTGTCAGATTTGATTGTATATTATTCTATTTATGTCTTATCCTTATTAAAGATATATATAGAAGTGCAAGCCAAAACCGAACATAGGAGGAAACCTCCATCAAATTGGTCACAGTTTGAACCTTAAAAATGTTGGCTTCTTTGGATTTGTACAAACTATTTTGGTTGGTTTCTTTTGATTAGTTCACTTAGTTTTTGAGCCGGTTCAGGTCGTTTCAATTCGATTGCCATACTTAAGTAAATGGGTTTGTGGAGATACAGGTTGTAACCGCCCAATTAGGATTTACTGCTAGCAGATATTGTTTCTTTTTTAGTTTTGAGATTAAAATGTTTCATTTCATTCTCCGATTGATGCGAAATCTCACAATCCACCCATTTTGGGCCCAACATTCTTGTTGACACAGTGCCCGGTGTCCACCCCACTTTAGGGCTCACTGTCCTCACTAGAGCGAGGTTTGTAACAGCCCAATCCCACGGTTAGCAGATATTGTTCTCTTTGGGCATCCCTTTCCGAACTTAGGTTTTAAAACACGTATACTAGGTTAGCACATATTGTTCTCCTTGGGCTTCCCTTTCTGGGCTTAGGTTTTAAAACACGTATACTAATGAGAGGTTTTCACACTTATTCGTTCCCCTTTCCAATCGACCACACAAATAGTATGCAATAATGCACTAAGCTGACCTTCCGATGGGAAAGTTGTGACTTGATTCGTGCAGACAGGAAGATCTTTTCCTTGTACACCTAACTACTACTTTATCATTTAGGAGAATGGAGCTATCTCGTGAATGTGTTTATATATATATATATTTTGCAAATTTGTTGAAGATAGGATGTTCTTGAAAAAACAGGCTGATATGTACGGAGGCCCATGAACAGTGAACTCCACGTATTTGGGCTTCATTCCTTCTCGAAGTAGGCTTTCTGCTAAGCCCAAAAAGAAAACCAAGCCCAAGATGAACGGATAGAACAGCAAAATCCCGGTATATTGGGCTTTTGAAAAGCCCAATATACTGGGCCTTTTCTGTGGATTACGTGTCGATGGGCCGGCCCATAATGGTTACAGTTCTGTTATTATGGAATTCTCAGATCGGAGTGTGTCTTAACAAAAAGCCTCGTTTGTCCCGGCTCTCTTCTTCTTGTAGTCTCTCTCTCTCTGTCTCTCTCTCTTTCTCCGACGACAGGTTCCTGAAGCTCAGCCAGGCAAGGGCATTGATCTTGGTGAGTCCGCTTTCACTTTTCCTCCCACCCTTTTTCTTTTCCTTTCAAATTTGAGGAAGAAAGGAACTATTTCCATTTTGTTTTAGTCGATCGCCGCCCGAGCAGCGTTTTGTTTAATCTGGATTTCACTACTTTACTTCGTCATTGACAGGAAGGGAATAGTTAGATTGAATTTCCTGTGTTGCTTACCTTAAGTTTCAAGGAACAAGAAAATACTTCTGCCGCACCGTCCTCGTTCTGGATGGAGAATCTTCGATTCTAGCTGCATATCACCGAACTTAGGGCTCGGACCTTCGAATCTGTGTTGTTTCTTTCAATATTTAGGCTTTTTCTATGGTTCTTTAGCCTTGTCCTTTCTTGCCCTTGGATCTTTGATTGCGGATCTGATTTGTCCATTTCTACGTGTTACCTTTTCGTTGAAGTCGAGGATTCATATATCAATAACAAAGCCTTCAATCTCTAGTGTAATTAATGTTTTCCATCTAGTTATTAGAGATCATATGGAGCATTGATTTTATCCACTTTTATTCTGCACGTCCGGAAGGCGCGAGTTTATCGTAAGCGGGTAAAGTTGCGCTTGGCATTTTTCTTTTATGTCTAGTTTTTAGTCCGTTTACGGTCGTTTTTTCGTTCTTATGCCACGTGTTTCGTGATAAGAAATTAGTTTTTTTTTGATATCTTTGTTTTTGTTTTCCCATCAACCTGTTGGAAACCGTCTTTTTGAGCTGTGAACCGATTTCTTTTTCTCTATCTCGTCTTTAGTTTTACAGGAAATCACTGTATAAGATGTCTATGGTCCACGAGCCTCTATATCCAATAGCTGTCCTTATTGACGAGCTGAAAAATGATGACATTCAGCTACGGTTGAACTCAATTCGTAGACTTTCTACAATTGCACGTGCTCTTGGAGAGGAGCGAACGCGTAAAGAATTGATCCCATTTCTGAGTGAAAACAATGATGATGATGATGAGGTGCTTCTTGCTATGGCTGAGGAGTTGGGAGTGTTCATCCCATATGTTGGTGGTGTTGAGCATGCCCATGTTTTGCTTCCACCTCTGGAAACTCTGTGCACTGTTGAGGAAACCTGTGTGAGGGACAAAGCTGTGGAGTCTTTGTGCAGAATTGGTTCCCAAATGAGAGAGAGTGATTTAGTTGATTGGTTTATTCCTCTCGTTAAGGTTAGTATTTCCCTCTACATTTTTCTTTTTCCTTCTTTTCTTCGATATGCATTCCTCTCTTTTTAAAATCATTCCCTTTACTTCATTTATCTGACACTTGCAATAGGTGGCGCATTGAAAAGTATCCATAAATTTAAGATGTTTTATGTTAAATATGCTTCCAATGATATATTGAATGTTCTGGGATATGTTATTTAAGTCTTGCTTATGAGCCTATACTTTTGACGTCCTTCCAATGACAATCGGTTTTTCTAGGGAATACAGCTCAAATTGATTAACTTTGATAACATCAAACCAATTCTGAGACCCTATTAGGTCTCCCTGCCATTTTGTTCATTCTGTCCTAAAAATCTGAGAACTGCTAGCTTCTCCCCTCTTTCTTTTATTTTTCTTCTAAAACACTCTTTGCATATTCAACATCAATAGCTTTAAATCCAACGTTTTCTGAGGGTCTGTGTCTGTTTGTGCTTGCACATATATCCAGAGATTGGCGGCTGGTGAATGGTTTACGGCTAGAGTATCCGCATGTGGGCTATTTCATATTGCCTACCCTAGTGCTCCAGAGATGTTGAAGACTGAGTTGCGGTCAATGTATGGCCAATTGTGTCAAGATGATATGCCCATGGTTAGGAGGTCTGCTGCAACAAATCTAGGAAAGTTTGCTGCAACAATTGAACCTGCTCATCTGAAGACTGATACCATGACTATTTTTGAGGATCTTACTCAAGATGGTAATTATCTGTATCTGTTACCTGAGTGTGATTTACTTTTCTGGTTTCTTGCGGATATTGGATTCATGTGAATAGAAAGTGTGTTTTCTAGTGGGTGCATCACATCGGTTGTGTGTTGCTGGTTAAAGTTTAGACTTCTTGTTTAAGTTTTCAAATTATTTTAGTGTATGTGCAGTGTGCATAATATGTTGAGATCAGTGCTGTTATAAGTCTAACTATTCTTCATTTGGACTTTTTAGTTGAGATATTAACAGGGAATAAACATGGATCTTTCTCAAGTTACAAAAGCATGGGAATTATTCTTTAGAATTCTCTCAGTCAGTTGTTTGGTTTAGTACATTTTATGTTCTTACACCAAGTCTTTAACAGATCAGGACTCTGTGAGATTGCTGGCCGTTGAGGGTTGTGCAGCTTTGGGCAAGTTATTGGAACCCCAGGATTGTGTATCACATATTCTTCCAGTTATCGTTAACTTCTCCCAGGTATAGTTTTGCACAATTTATTGGATTTCACAGTTTGATTTGTATGCCTGACAATTTGTTAGAATGATTATATGCACTGTTGAGAAATATCTTTATTGGAAGATCAGATCAAGCATTATCTTCTTTGGAACAAGGATCAAGGATTATTTTACAATTACATTTTGTAATCTAGTGGTTTCCAGGTCTTTGTGATGAACGTCTGGATGTATTGTTTTATGTTTCCTTTGTGCTTCTGTTGTTTAGTTATTAGCAATGGTAAGAATGACATAGATGTACAAACATCCAAAATTCTTTTTAAGTTGCTACTAAAACTTTTTGAGCTGTCCATAGGATTATTAAATCAACTTTAAAGAAAGCATAGCATATTATAAATACCTTTGTTCTTGAACTTTTTCGTTCCTAGGTAAGCTATAATATCAATGAAATTATAATGTATAATCTATATATCTGCATTTTATTTAGTTACTTCTTAGTTTGAGTACCTCTATTGTGTGTAGCAGAAGGTAAAAATGGTATTTACATGCTTTATACCCTCATGGCCTTGACAATATTTATCCAAGCGCTAATTTCTTTCTTGTTCCTTGCCTACTTTTCCTTCTATGTAGGATAAGTCTTGGCGTGTCCGTTACATGGTTGCCAACCAGTTATACGAGTTGTGTGAAGCTGTAGGACCTGAACCTACTAGGTAATTTCTTATTAATCTATGAAGAAAAGTTGGTTATTGATCAATGTGGAAAGATGAGAATGTTTTTTTTTTTGGACCTATTGTATTATGGAAACCCATGAAATGTAGTTCTGTATGACCTTCCTTTATCATTTGGTTTATTTGGCTATGTAGATAGGAGCCCCTTCCTTGGTTACTGGGGGGTTCTTGGGAGGAAGGTTCTTCTTATTCTGGTTTTCTAGCTTTGGATTTCCTTTCTCTTTATTCTAAAACATTGGAGATACTTTAGTTTATTCTCTTGGGTGGCTCCTAGGCTGTCCTTGGTTAGCCTATATGCTCATGTGGCCTTGTTATTTTAATTTCATTTATCATAATTATCAAATTTTCTATTAATTAAAAAAAATGAATGCACATGTATTTTTGTACTAATACTATGTAAATATGGAAAATAATTCTTATATTAGAAAGAGTTGTGAACATTGTGCCAAGTGTACTACATATTGAGTTTTTATCTTGTTCATAATGCATGCACTTGTTTTTGGGTGGTAAGGACGGACTTGGTACCTGCTTATGTGCGCTTGCTTCGAGACAATGAAGCTGAAGTTCGTATAGCAGCTGCTGGCAAAGTGACCAAGTTTTGCCGGATTTTAAGTCCAGAACTAGCAATTCAGCATATCCTTCCCTGCGTTAAGGTGCATATGCTATTTCAGAGTTTAAACCTTTTCACTTATCTACTGTTACATGTCATGCCTCAAATTTGTTTTTCTCATACTTTCACTGAGTGCTAAGCAAATAACGACTACAGGAATTGTCATCAGATTCCTCTCAGCATGTCCGTTCAGCTTTAGCCTCAGTTATCATGGGAATGGCTCCTGTGTTGGGAAAGGTATGAAGTCTTTATTTTGGTTTTCACAAATGTGTTGCTTGCTATAAACTGCATATTAAATGTTTATTTATTGTTTTATTGAGAACCTTAATCCGCTTCTTTCTTCAATAAGTCTGCTTAGAAGCCATATCTAAGTTTTTTTTTCCATTGGGGGAAGGGGTGAGTACACTGTGGAGAGAGAGGAAATCCTGGATGCTGGTTAATATTTCTGAATTTTGACGCTACTAAGGGATGTGAAATTAAAACACTTTGGTGATTAATGCTTATGTTTAATATTAGGTACTGGATAGTTTATTTTGGACGCATATATTTATGTAAACAGTGAGGAATTGAGAACTGGGTGCTGTGTAATGTTTCTAAGTGAAGTGATTAAAGTAATTTGCTGATTAATACTTTTGTTAGCATATTGATTAGTTTGCTAATTTCGGAGTGTATTTATATATCTGAAATTTTATGAAAAATGGCGAGGAATTGGTAGCTGGATTCTGTTTTGTATTTCTGAATTTTGAAGGCCAAGATGTGATATGAATTACAAATTGAAATAATTTGGGGATTGTAGCGATGACTCTCATAACTCCGTACACAGTGGCTCTTGGAAGACTACTTCACACTCGTTTTTCTAGGAACATTCTTGTGGGGGTTCTGTAGTGGAATTCATTAACTTTCATCTTTCAATCCAGGTTATCCACCCTTCCACCCGGGGGTAAAATTACCTTTTTCTAAATGATAAATAAATTATCAGTCAAGTTTTTGTGCTCATAAAAAAAATATGTTGTCTTTTGTGTGTGGTTGAGTGATGAGGACGTGTACATGTAGTGATAAGGATGAATGGTAGACTCATTATTTCCTCGGAGGCCTTTTTACATCATATCCATGCAACTTGAAGTGGTTACTGGGAAAGATTCGGTATTACATAATTGTCTTGTCTCCATTTTTATTTTCAGGGTCGATGGTTTAACCAATTTCCCAGTCTGTTTAATAGTATACTGTTGTTTGTATTGGGACATAAAAAATCTCACTTAGATGGATTGTGCAGGATGCTACCATCGAACAACTGCTTCCGATATTCCTTTCTCTGCTTAAGGATGAATTCCCTGATGTGCGCCTCAATATCATTAGCAAGCTTGATCAAGTAAATCAGGTTTGTTGTAATTCACCTTGAAACTGAAGGGGGAGGGTTCTTGACCAACATCATAATAAGAGATGCTGTTTTATACTTCGCAAACATGCTTTAACTCTCTCACACTCTCTCTCAAAAAATATTTTACTGCCATCTCACCACAAACCTGTTATGCAGGTTATTGGAATTGATCTCTTGTCTCAATCACTGTTACCTGCCATTGTTGAACTTGCTGAGGATAGACACTGGAGAGTTAGGTTAGCAATTATAGAATACATTCCTTTATTGGCAAGTCAGCTGGGTGTAGGGTTTTTTGACGATAAGCTTGGTGCTCTTTGCATGCAGTGGTTACAGGATAAGGTTAGTGTTTCCTGAGCTTCATTAAGGCTTACCATAGTTTAAGAATGCATGAAAAAAGTAAATTTTAATGTGAATAACATGCTTCTGAGTGAATGTTGCTTCAGTTTATGAGAATATTCTTTTTGTTGAATAAGGTACGTTGCTGTTCATGAGATCATTTGATTGGTTTCTGAAGGGGATGTCCATTATACGGAATTCGTCAATTCTAGTTTCTGTGCAACTGAATCATAATGAAAGTAGCAACTGAACTATTTACTCTGGATTATTATTAGTTATAGAGAGAAAATGATCGGTCTTTGGTCATTGTTAGTTAAGAAATTAAAAGGATACAAATGTGTTTTAGTACCGCTAGCTTTCCATCTCCTGCCAAGTCCTCCATTTCTCTCTAGCCACGACAAATATGTAAACCCAAGCCCAAGCAGGAGGGCAATGGAAAAATGTCTAGTTTATATCTGGGGTCAGAAAACCAACTTGTTAATTCTCGTCCTAGCTAAGGTAGCAGACAAAATTTCCCTGCCTTGGGAAATTAACTCTTCCTAGTCAAGTTGGAGAGGCCACATATGGTTTGTTTTTTGTTGCAGTGGGTTCTTCTTGCATGTTTACTCATATGTGATCTTGCTATGGTATTTTAAAAAAATGGAAACACTAAATAAATGTACACTGTACAAGAGTGTAAGAGGATGAGATACCAAAGGCATCCTCTTTGAGACACCTAAGACATTCTCTTCTTCTTTCTTCCTCATTGTTCTTCTGCTGCTCTCTCTAATGCAGAAAAAGCTATAAAAGAATTTGACCATCTAAAGTGAAAGGAGGTGATTTCAATAGGCAACAAAGTACCGAAAGTGCACATATTAAGAAAGAATTATTTTAAAGGACAATTTGAAAGATATCATTGACTTGTTATATGTTATGCAGTTTTTTATAGAAATTTCTATTGCAATGGTTACTTCTTGCAGGTTTACTCAATCCGTGATGCAGCTGCTAACAATTTGAAGCGCCTTGCAGAAGAATTTGGTCCTGAGTGGGCAATGCAGCATATTGTCCCACAGGTTTGTTTCAAATGAATTTCACAATCACATTTAGCCTGACCTTGGTGATAGCCTAACATTGTCTTTAGATAAAGAAGTTTTTAGATAAAACATACCATCCAGAGGTCATGAAAGAATTATAACGCTAATCATTATTACAAAAATCCTTCACCCTGCCTGCTGCACACAATCCATGCACTTTGTTCTCTTCCTCTAACTGATGGGGTTTCACAAACAGGTTCTTGACATGATTAACAACCCACATTATTTGTATCGAATGACTGTTCTTCGTGCGGTCTCCCTTCTTGCCCCAGTTATGGGCTCAGAAATCACATGCACAAAGCTTTTACCGGTGGTTATCAGTTCTTCCAAGGACAGGTACAGGACATAAATTATTTTCTTGTTTTAATTAGATAGATTAGTTGCTGGCCCAAAGCCGGACGGTGGAATCATCCCTAAAAAAATGAATCATGATGGGTGTTATTGTTAGTTGGCTTGCGCCCCTTGTTAATTGTTTTATCAACCTTCTTTTCGCTCTTTTTTGGTGGTTAAGTTAAGTTTTTACAGGGTTCCAAATATCAAGTTTAATGTGGCGAAAGTGTTGCAGTCTCTCATTCCCATAGTTGACCAACCTGTAAGTAGTCACAGATGATGCTTAACTGATATCTTGATTGTTTATATTAATATTAGATAACACTTGCGATGCAGGTGGTGGAAAAAACTATCCGCCCTAGCCTAGTTGAACTCAGTGAAGATCCAGATGTAGATGTCCGGTTCTTTGCTAACCAAGCTCTTCAATCAATCGATCACGTGATGATGTCCAGTTAGACCGGGCTTCATTGCCATCGCAAACATCTGTACGAAGGTGCTTTTGCAGAAGTTGCTATTGTTTTTCAACGAAATAGCTGTATGTTTCTTCCCCCACGTTCGTTGTTGTAGTGCAGTTTGTGATGCATCTAGCGTGCAGAGTGAGCCATTGAGTAGAGACTTGATGCTTTTATTCCTTCTGCATCCTTATAATCTATAA ATGTGCCTGTGGTATGATAGTACATTGATTTTGGCTGTAGATGTGATGTTAAAGGAGAGGGATTGTGTAGTACGTTTACGATGCGCAGCAGCAGCGGCAGCACTCCGTATCGGAGTGTGTCTTAACAAAAAGCCTCGTTTGTCCCGGCTCTCTTCTTCTTGTAGTCTCTCTCTCTCTGTCTCTCTCTCTTTCTCCGACGACAGGTTCCTGAAGCTCAGCCAGGCAAGGGCATTGATCTTGTTTTACAGGAAATCACTGTATAAGATGTCTATGGTCCACGAGCCTCTATATCCAATAGCTGTCCTTATTGACGAGCTGAAAAATGATGACATTCAGCTACGGTTGAACTCAATTCGTAGACTTTCTACAATTGCACGTGCTCTTGGAGAGGAGCGAACGCGTAAAGAATTGATCCCATTTCTGAGTGAAAACAATGATGATGATGATGAGGTGCTTCTTGCTATGGCTGAGGAGTTGGGAGTGTTCATCCCATATGTTGGTGGTGTTGAGCATGCCCATGTTTTGCTTCCACCTCTGGAAACTCTGTGCACTGTTGAGGAAACCTGTGTGAGGGACAAAGCTGTGGAGTCTTTGTGCAGAATTGGTTCCCAAATGAGAGAGAGTGATTTAGTTGATTGGTTTATTCCTCTCGTTAAGAGATTGGCGGCTGGTGAATGGTTTACGGCTAGAGTATCCGCATGTGGGCTATTTCATATTGCCTACCCTAGTGCTCCAGAGATGTTGAAGACTGAGTTGCGGTCAATGTATGGCCAATTGTGTCAAGATGATATGCCCATGGTTAGGAGGTCTGCTGCAACAAATCTAGGAAAGTTTGCTGCAACAATTGAACCTGCTCATCTGAAGACTGATACCATGACTATTTTTGAGGATCTTACTCAAGATGATCAGGACTCTGTGAGATTGCTGGCCGTTGAGGGTTGTGCAGCTTTGGGCAAGTTATTGGAACCCCAGGATTGTGTATCACATATTCTTCCAGTTATCGTTAACTTCTCCCAGGATAAGTCTTGGCGTGTCCGTTACATGGTTGCCAACCAGTTATACGAGTTGTGTGAAGCTGTAGGACCTGAACCTACTAGGACGGACTTGGTACCTGCTTATGTGCGCTTGCTTCGAGACAATGAAGCTGAAGTTCGTATAGCAGCTGCTGGCAAAGTGACCAAGTTTTGCCGGATTTTAAGTCCAGAACTAGCAATTCAGCATATCCTTCCCTGCGTTAAGGAATTGTCATCAGATTCCTCTCAGCATGTCCGTTCAGCTTTAGCCTCAGTTATCATGGGAATGGCTCCTGTGTTGGGAAAGGATGCTACCATCGAACAACTGCTTCCGATATTCCTTTCTCTGCTTAAGGATGAATTCCCTGATGTGCGCCTCAATATCATTAGCAAGCTTGATCAAGTAAATCAGGTTATTGGAATTGATCTCTTGTCTCAATCACTGTTACCTGCCATTGTTGAACTTGCTGAGGATAGACACTGGAGAGTTAGGTTAGCAATTATAGAATACATTCCTTTATTGGCAAGTCAGCTGGGTGTAGGGTTTTTTGACGATAAGCTTGGTGCTCTTTGCATGCAGTGGTTACAGGATAAGGTTTACTCAATCCGTGATGCAGCTGCTAACAATTTGAAGCGCCTTGCAGAAGAATTTGGTCCTGAGTGGGCAATGCAGCATATTGTCCCACAGGTTCTTGACATGATTAACAACCCACATTATTTGTATCGAATGACTGTTCTTCGTGCGGTCTCCCTTCTTGCCCCAGTTATGGGCTCAGAAATCACATGCACAAAGCTTTTACCGGTGGTTATCAGTTCTTCCAAGGACAGGGTTCCAAATATCAAGTTTAATGTGGCGAAAGTGTTGCAGTCTCTCATTCCCATAGTTGACCAACCTGTGGTGGAAAAAACTATCCGCCCTAGCCTAGTTGAACTCAGTGAAGATCCAGATGTAGATGTCCGACCGGGCTTCATTGCCATCGCAAACATCTGTACGAAGGTGCTTTTGCAGAAGTTGCTATTGTTTTTCAACGAAATAGCTGTATGTTTCTTCCCCCACGTTCGTTGTTGTAGTGCAGTTTGTGATGCATCTAGCGTGCAGAGTGAGCCATTGAGTAGAGACTTGATGCTTTTATTCCTTCTGCATCCTTATAATCTATAA ATGTGCCTGTGGTATGATAGTACATTGATTTTGGCTGTAGATGTGATGTTAAAGGAGAGGGATTGTGTAGTACGTTTACGATGCGCAGCAGCAGCGGCAGCACTCCGTATCGGAGTGTGTCTTAACAAAAAGCCTCGTTTGTCCCGGCTCTCTTCTTCTTGTAGTCTCTCTCTCTCTGTCTCTCTCTCTTTCTCCGACGACAGGTTCCTGAAGCTCAGCCAGGCAAGGGCATTGATCTTGTTTTACAGGAAATCACTGTATAAGATGTCTATGGTCCACGAGCCTCTATATCCAATAGCTGTCCTTATTGACGAGCTGAAAAATGATGACATTCAGCTACGGTTGAACTCAATTCGTAGACTTTCTACAATTGCACGTGCTCTTGGAGAGGAGCGAACGCGTAAAGAATTGATCCCATTTCTGAGTGAAAACAATGATGATGATGATGAGGTGCTTCTTGCTATGGCTGAGGAGTTGGGAGTGTTCATCCCATATGTTGGTGGTGTTGAGCATGCCCATGTTTTGCTTCCACCTCTGGAAACTCTGTGCACTGTTGAGGAAACCTGTGTGAGGGACAAAGCTGTGGAGTCTTTGTGCAGAATTGGTTCCCAAATGAGAGAGAGTGATTTAGTTGATTGGTTTATTCCTCTCGTTAAGAGATTGGCGGCTGGTGAATGGTTTACGGCTAGAGTATCCGCATGTGGGCTATTTCATATTGCCTACCCTAGTGCTCCAGAGATGTTGAAGACTGAGTTGCGGTCAATGTATGGCCAATTGTGTCAAGATGATATGCCCATGGTTAGGAGGTCTGCTGCAACAAATCTAGGAAAGTTTGCTGCAACAATTGAACCTGCTCATCTGAAGACTGATACCATGACTATTTTTGAGGATCTTACTCAAGATGATCAGGACTCTGTGAGATTGCTGGCCGTTGAGGGTTGTGCAGCTTTGGGCAAGTTATTGGAACCCCAGGATTGTGTATCACATATTCTTCCAGTTATCGTTAACTTCTCCCAGGATAAGTCTTGGCGTGTCCGTTACATGGTTGCCAACCAGTTATACGAGTTGTGTGAAGCTGTAGGACCTGAACCTACTAGGACGGACTTGGTACCTGCTTATGTGCGCTTGCTTCGAGACAATGAAGCTGAAGTTCGTATAGCAGCTGCTGGCAAAGTGACCAAGTTTTGCCGGATTTTAAGTCCAGAACTAGCAATTCAGCATATCCTTCCCTGCGTTAAGGAATTGTCATCAGATTCCTCTCAGCATGTCCGTTCAGCTTTAGCCTCAGTTATCATGGGAATGGCTCCTGTGTTGGGAAAGGATGCTACCATCGAACAACTGCTTCCGATATTCCTTTCTCTGCTTAAGGATGAATTCCCTGATGTGCGCCTCAATATCATTAGCAAGCTTGATCAAGTAAATCAGGTTATTGGAATTGATCTCTTGTCTCAATCACTGTTACCTGCCATTGTTGAACTTGCTGAGGATAGACACTGGAGAGTTAGGTTAGCAATTATAGAATACATTCCTTTATTGGCAAGTCAGCTGGGTGTAGGGTTTTTTGACGATAAGCTTGGTGCTCTTTGCATGCAGTGGTTACAGGATAAGGTTTACTCAATCCGTGATGCAGCTGCTAACAATTTGAAGCGCCTTGCAGAAGAATTTGGTCCTGAGTGGGCAATGCAGCATATTGTCCCACAGGTTCTTGACATGATTAACAACCCACATTATTTGTATCGAATGACTGTTCTTCGTGCGGTCTCCCTTCTTGCCCCAGTTATGGGCTCAGAAATCACATGCACAAAGCTTTTACCGGTGGTTATCAGTTCTTCCAAGGACAGGGTTCCAAATATCAAGTTTAATGTGGCGAAAGTGTTGCAGTCTCTCATTCCCATAGTTGACCAACCTGTGGTGGAAAAAACTATCCGCCCTAGCCTAGTTGAACTCAGTGAAGATCCAGATGTAGATGTCCGACCGGGCTTCATTGCCATCGCAAACATCTGTACGAAGGTGCTTTTGCAGAAGTTGCTATTGTTTTTCAACGAAATAGCTGTATGTTTCTTCCCCCACGTTCGTTGTTGTAGTGCAGTTTGTGATGCATCTAGCGTGCAGAGTGAGCCATTGAGTAGAGACTTGATGCTTTTATTCCTTCTGCATCCTTATAATCTATAA MCLWYDSTLILAVDVMLKERDCVVRLRCAAAAAALRIGVCLNKKPRLSRLSSSCSLSLSVSLSFSDDRFLKLSQARALILFYRKSLYKMSMVHEPLYPIAVLIDELKNDDIQLRLNSIRRLSTIARALGEERTRKELIPFLSENNDDDDEVLLAMAEELGVFIPYVGGVEHAHVLLPPLETLCTVEETCVRDKAVESLCRIGSQMRESDLVDWFIPLVKRLAAGEWFTARVSACGLFHIAYPSAPEMLKTELRSMYGQLCQDDMPMVRRSAATNLGKFAATIEPAHLKTDTMTIFEDLTQDDQDSVRLLAVEGCAALGKLLEPQDCVSHILPVIVNFSQDKSWRVRYMVANQLYELCEAVGPEPTRTDLVPAYVRLLRDNEAEVRIAAAGKVTKFCRILSPELAIQHILPCVKELSSDSSQHVRSALASVIMGMAPVLGKDATIEQLLPIFLSLLKDEFPDVRLNIISKLDQVNQVIGIDLLSQSLLPAIVELAEDRHWRVRLAIIEYIPLLASQLGVGFFDDKLGALCMQWLQDKVYSIRDAAANNLKRLAEEFGPEWAMQHIVPQVLDMINNPHYLYRMTVLRAVSLLAPVMGSEITCTKLLPVVISSSKDRVPNIKFNVAKVLQSLIPIVDQPVVEKTIRPSLVELSEDPDVDVRPGFIAIANICTKVLLQKLLLFFNEIAVCFFPHVRCCSAVCDASSVQSEPLSRDLMLLFLLHPYNL Homology
BLAST of CmoCh18G010470 vs. ExPASy Swiss-Prot
Match: Q38950 (Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A beta isoform OS=Arabidopsis thaliana OX=3702 GN=PP2AA2 PE=1 SV=2) HSP 1 Score: 1063.5 bits (2749), Expect = 1.0e-309 Identity = 537/570 (94.21%), Postives = 559/570 (98.07%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy Swiss-Prot
Match: Q38951 (Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A gamma isoform OS=Arabidopsis thaliana OX=3702 GN=PP2AA3 PE=1 SV=2) HSP 1 Score: 1034.2 bits (2673), Expect = 6.7e-301 Identity = 524/570 (91.93%), Postives = 551/570 (96.67%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy Swiss-Prot
Match: Q38845 (Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A alpha isoform OS=Arabidopsis thaliana OX=3702 GN=PP2AA1 PE=1 SV=1) HSP 1 Score: 1003.8 bits (2594), Expect = 9.8e-292 Identity = 499/570 (87.54%), Postives = 543/570 (95.26%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy Swiss-Prot
Match: P36875 (Protein phosphatase PP2A regulatory subunit A (Fragment) OS=Pisum sativum OX=3888 PE=2 SV=1) HSP 1 Score: 667.2 bits (1720), Expect = 2.2e-190 Identity = 338/378 (89.42%), Postives = 362/378 (95.77%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy Swiss-Prot
Match: Q32PI5 (Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A alpha isoform OS=Bos taurus OX=9913 GN=PPP2R1A PE=1 SV=1) HSP 1 Score: 656.8 bits (1693), Expect = 2.9e-187 Identity = 334/569 (58.70%), Postives = 433/569 (76.10%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy TrEMBL
Match: A0A6J1G0Q5 (serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A beta isoform-like OS=Cucurbita moschata OX=3662 GN=LOC111449622 PE=4 SV=1) HSP 1 Score: 1120.1 bits (2896), Expect = 0.0e+00 Identity = 570/570 (100.00%), Postives = 570/570 (100.00%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy TrEMBL
Match: A0A6J1HXG3 (serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A beta isoform-like OS=Cucurbita maxima OX=3661 GN=LOC111467536 PE=4 SV=1) HSP 1 Score: 1117.1 bits (2888), Expect = 0.0e+00 Identity = 568/570 (99.65%), Postives = 569/570 (99.82%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy TrEMBL
Match: A0A0A0KT59 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G608520 PE=4 SV=1) HSP 1 Score: 1115.9 bits (2885), Expect = 0.0e+00 Identity = 569/576 (98.78%), Postives = 572/576 (99.31%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy TrEMBL
Match: A0A5A7SZM8 (Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A beta isoform OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold475G00830 PE=4 SV=1) HSP 1 Score: 1110.5 bits (2871), Expect = 0.0e+00 Identity = 566/570 (99.30%), Postives = 567/570 (99.47%), Query Frame = 0
BLAST of CmoCh18G010470 vs. ExPASy TrEMBL
Match: A0A1S3BG18 (serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A beta isoform OS=Cucumis melo OX=3656 GN=LOC103489266 PE=4 SV=1) HSP 1 Score: 1110.5 bits (2871), Expect = 0.0e+00 Identity = 566/570 (99.30%), Postives = 567/570 (99.47%), Query Frame = 0
BLAST of CmoCh18G010470 vs. TAIR 10
Match: AT3G25800.1 (protein phosphatase 2A subunit A2 ) HSP 1 Score: 1063.5 bits (2749), Expect = 7.4e-311 Identity = 537/570 (94.21%), Postives = 559/570 (98.07%), Query Frame = 0
BLAST of CmoCh18G010470 vs. TAIR 10
Match: AT1G13320.1 (protein phosphatase 2A subunit A3 ) HSP 1 Score: 1034.2 bits (2673), Expect = 4.8e-302 Identity = 524/570 (91.93%), Postives = 551/570 (96.67%), Query Frame = 0
BLAST of CmoCh18G010470 vs. TAIR 10
Match: AT1G13320.3 (protein phosphatase 2A subunit A3 ) HSP 1 Score: 1034.2 bits (2673), Expect = 4.8e-302 Identity = 524/570 (91.93%), Postives = 551/570 (96.67%), Query Frame = 0
BLAST of CmoCh18G010470 vs. TAIR 10
Match: AT1G25490.1 (ARM repeat superfamily protein ) HSP 1 Score: 1003.8 bits (2594), Expect = 6.9e-293 Identity = 499/570 (87.54%), Postives = 543/570 (95.26%), Query Frame = 0
BLAST of CmoCh18G010470 vs. TAIR 10
Match: AT3G25800.2 (protein phosphatase 2A subunit A2 ) HSP 1 Score: 987.3 bits (2551), Expect = 6.7e-288 Identity = 495/526 (94.11%), Postives = 517/526 (98.29%), 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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