CmaCh20G006170.1 (mRNA) Cucurbita maxima (Rimu)
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.TCTTCACTGCGTCGTTCCCACGCAAATTTAGAAAGCTCATTGACACTTCCAGACAGAGGAACAAGACTAGAACAAGAGAGGGAGAACAGAGCGCGCGAAGCAAAGAAAATGGCGGAGCCCAAAGTAAAATACGATCGCCAACTCAGGTCCTCCTCATTTTCTCTCTAACACCTTCCTCATTCCTCCATCTTTAACTTTTCTTCATATTTCGATTCTTTGCCTCTATCTTCTTGCTCCGTTTTTGCCCTAACTCTGTACCAGTAGCATACTCCACCTTCAAGTTGTCTGTACTTCTTCTATCGCTAATTTATCTTTAGGTTTATCTGTTCTTTCGTCCAGTGAAAGAAAAGAAGCGCATATGTTTATGAACTAATCCGCATTTGGCGCAAACAAAGTTCGCGCACTTCTTAGTTTCTTGGTGTCGTAGTTACCCAGCAGCTGTTCCCGCTATAATTAACCATTGGCATTTTTTTTCTTTATAGGAATTGCTGGAATTTTCGTGATTGCATATATATATATTTTCTTTTATTGTAACTATATATTGCTCGACGATATATAGTTTGTCGGTAAGTTGACAAGTAATGAATTTACATCGGAGCTTAGGTTTTACTCACATCATTGCGGCAACTTGGTTCTTGCAGTATTATCTCTATGGAGAAATGGGTTACCTAGAGTGTTTCTTTCTTTCTTTTTGGGTCAAATTTATCATTTAGCAAACTTGTTCGACTAAATTTAATCATCTTTATTACCTTTAAGTTCTGAAAGCTTTTATCCCGTAATATCGTAGGATCTGGGGTGAACAAGGGCAGGCAGCCCTTGAAAAAGCGAGTATATGCCTTCTCAACTGCGGGCCTACTGGTTCCGAGACATTGAAAAATCTAGTACTTGGAGGGATTGGAAGCATCACTCTAGTCGACGGTACCAAGATAGAAGAGGGCGACCTTGGCAACAACTTCATGGGTAAGTAAGTTATATGTCACTGTTGCTTTTGGTAATGGAGCCCGATTATTGGCAATTGCCTATGGACCTACGAATGATATTTTCTCATAATTCAAATTGCTCAATAAATTTGAAGTTAAATTGAATATTCGGGAGGACTATCAATTAGAATTCTGGAATTGCCTTTCCATAATAATCTTTTGAAAAATCATTCTGTCAACAATAAAATGAATCTTCTTTCCAATCTGCTGTCCGTATGTACTTGAATAATCTACTTCAATACTAATCAATACTTTTGAGCTATAACTACTTCTGTTAGGAAAGAAAAACATGGTTTATCAACTAAACCTTATCTTGTTTTGTGTGATTATTTTTCTAGTGGATGAATCTAGTATTGGACAGTCAAAGGCGAAGTGTGTATGTGCATTTCTTCAAGAACTAAATGATGCTGTGAAAGCTAAGTTTATAGAAGAGTGTCCGGAGGCATTAATTGAAACAAGGCCATCATTCTTTTCACAGTTTACATTAGTAGTTGCCACACAGGTACTGTGATATACATGCTTAGTTCAATTGATGTTGCCCCTCTTTGCTGAAATTCTTGGTTTTTCTCTTGCCTGTCATCTCTTATATCATGTCCTTTGTGTAATTGTTTTCGCATCACTTGGATTGTGTCGTTTTCTTTTTAGTTGCATTTGTAAAATTATTATTATTTATAAGAAACTAAAAAGTTTCAAGGAGTGAATAATTTTTGAAAGTTTTGGAAGTGGCACACTGAAAAACTGCATGAACCTTGATTAGCTCAAAGCTTTCTTCCCAAGGGTAAGTTTTTCCATAAGAGATGCCTTTCTTACTCTCATACCAAATTCCTCGAGTCATAGATTTAACAATGTTACTCAAAGGGTTCTTGTTGGGAGATATTTTTAGCCCTGAAAATTAGTAATCTAAGGAACATATAACCACTTCAAGCCTTTACGGTGGATGCTTTTTGGTTAAATCTCTTATTAGCAAATTGATGGTTGGTAAAAAGGTTAAAGTTTTTTTTTTGTGTAGTTGGCATGCTTAGAAAGCCTCAACAATAGCGGAAAGTGCACAAACTCCAATTTTCTGTTCTTGGTTTTGTTAAATAGTGAGTTTTTTCTTTGGTTACTCGTTTTCTGTAATTTGTCATGGTATGGAATATTTTTTTTCTAAGGTTTTGTTGGAAAGAAAGTCGTATTTGGACACTTTGAATTGCCTTTTAATGTACACTTTGAATTGCCCTTTTAATGGACACTTTGAATTTATTCAGTTGGTTGAAGAATGGATTGTGAAGCTAGATAAAATCTGTAGGAACGCAAATGTCATATTGGTCGTTGCACGCTCCTATGGCCTCACTGGGCTTGTCAGAATCAGTTTAAAGGTAAAGTATTGCTAATGCTACATCAATTACCCAATTCAAAGAAATAATCATGTTGTATGCATAGAAGGGTTCAAAGTATTTATATTACCATTTCTGGGGAAAAAAATGCCTGACACATGATATTTGACTAATCTGGATCCTTTACTAGCCCTTATTAAACTTGTACTTTTCAATTATCATGTATATTTACCTGAATTCCGGCTTAATATCAAATAACTAGTTGTGATGCTTAGCTTGAACTTGGAGAAATAGAGGCTCGTGATTAAAAGCGTTTGCAGGTTGAAATGGTAAATTGCTGACGTAAAACAGCTTAACTGTCACTTCTTTGAGTCCCATATATAAGCTACTTAATGTCTAATGGGGTCTTGTCTGTCACAAATATTTCAATATGGTTCACTTGCACAAACAGTTTTAATGTTTTAAATAAGTGTTTACTACATGGTTTCAAAAGATAAAATATTGTATATAGTCAAGGGCGCTAAAATAAGATATTTTATCCATGTATATCAGGAGCATACTGTCATTGAGTCAAAGCCCGATCATTTTCTGGATGATCTTCGGTTAAATAACCCATGGCCAGAGCTGAGGAGGTAGAGTTTTTAGTCACATTCTTTCCATCTTTTTAATAGGATGGATTTCATATGTGAATATTGTCTGTTTGCATTAGTCTTTGGTCTATCTAAGCTGTGAAGTTTACTATTAAGCACAATCACTGATTGGAGAACATAGACGTTTCATTCTTTCAAATTTTGATATACCATGTACTCACCTCTTGACAGGTTTTCTGAAACTATTGATCTCAATATTCCTGACCCTGTTGCACACAAACACACTCCATATGTTGTTATTCTTGTCAAGATGGCTGAAGAGTGGGCCAAAAGCCACGGTGGCAGTTTACCGTCAAGCAGAGAAGAGAAGAAAGAATTCAAGGTTGCCTTTTATTTGCCTTTTTGCAATCAGTAACATGTGAAAGTCACTAAAATTGTGGGCTCTTGGACAATGCAGGATCTCCTCAAAGCCAAGATGATTGCAATGGATGAAGATAACTACAGAGAAGCTATTGAAGCTTCGTTCAAAGTCTTTGCTCCGCATGGAATCAGTAAGCGGGCATTTTAAAAAAAATATTTAGACTAATTGATCGAGGAACACAAACCTGCTGAGTTACTTGTTTTGTAGTCTTCCCTTTTGGAGTTGTCTCACATCCTGGGTCGTTTGTTGAAATTTCATCTATTTTCTTCAAAACAGTGCCTAGAAGGGTCCTCTTCCCTGAATTGTTTGAAAGATGTTGGAGTACTTGCAAGCATTATATTATGGAGAATGGAGATGGTCCATGATTGTTTTGAGAGCGGTGGCATTCTTGACATTCTCAATGGAATTATCAATTGTGCCCATACCAGAGTAGGTTGGTTCTGAGGTCCTCGACTTCAATCCCTTAACCTCACTAGCTTGGAGATTGAAAGAAAAACAACCTAAAAAAATTATCACATGACAAGAGTGGAGATTGAAAAAAAAAGACGACCTAAAGGAATAAAAAGAAAACAGATTAACTAAACCCAGCCAGACACAACCTATACTCCAAACAAGCCCAACCAACCCTGCATCCCAATCAACCCATTGGTTTCAGGACAATATCTAGAAGGATCCTCACGTGGTTGTCTCTAGATTGATCTACCAGGTGCAAAAAAGTGTCACACACCGTTTCTCCTTTTTCCTGTTTGCTTGCAAAATCTGGGGGAAAAACTTTTCATTCCTTTCATTGGTTCACATCTATTCCAACTAATATCAACACCATGTTCTCGGAATCTGTTCTTTTAAAAAAGGAAAGGAAGTTCTTGTGCATTATGAGAGACTCTTTTAAGCTTCTTACAATAAATATTCAAAATATTAAAACATCTTTTCAGGATATTGATTACTGCCCTTGCTCGAGCTCCATCATCTGGTTTGTATTTATAGCTAAACTCTTGTGTCAATTGAAAGTTGGAAGTTAAAAAAAAAAAAAGAAGAAAGAAAAAGATCTTTCTTGGAAGTTGGAGATGCCAGTTTAATTTCTCTAGCTCTTCTGGAAGTTAGTTTTCACTTAACGTGGTCCAACTATTTCTGAATGTCATGGAAAGGATTGTGGAGTATCACCTCTTGTTGTACATAGTAGTTGAACGTATAACGTATTGAGACTGCCTACAATTTTAGTGAAATTAGAATTGTCAATTGGAGTGTCTGATGGCGTATTTTAAGGTTTTTGTTCAAATCAAATTTTTTAGTTCCTAAAAGGTGACAGATCTACTTAGTGTCTAGAAATATGAGCACCCTTATTTATCATTTTCTTCATCTCAGGTCCAGATCTGAAACAGATAGTTGATGATAGCTGTGCTGAAGTTGATTCTAATTCATCAGATTTTTGGATATTAGTGGCTGCTTTGAAGGTTACTGAAACTTTTTCACTACTACTTTAGCTCTGTATCTCCAACAATTGACGATTTCTTTTTAGGTGTTATTTCGAGTTATGACAATCAGACTTATATAGTACTTGAGGTTCTTAGAAATGACCAGTCACCACCATCTTGCTTAACTATCACATTCTTCTAATTCATATGATGGCTGGATATTTAATTGATTTGTTGCATGTATATTGCTTGATCTATTCTTAACAATCCTTAGATTGGAGGATCTGCTTGTGGATTTACTTGTTTGTTCTCATTATTCCTTTTGAGGGATCAGGAAATGCAAATGTGATTCACTTGAATTAACATACTGTTAAATTACCGTAGTAAATTTAACTTCGCTTCTGATTCATTGTTTTATTTTATAATAGCTAAATATCTACGGATTCATGTGGTTTAAATCAATCAATTCTTAAGTAATTCATGCATTACATATGATTCTGTTTAATCATCCAAAATTTCAAAATATATTGTTAAAGAAGTAATTTTGCGATTGACATTATTAATTTATAGTAAATTTATATATTATTATTATTATACTAAACTAAAGACTTAATATTTATTGATTTTAGTAATATCGTCAATAATAATTAATACCTTAATAGTTATTTTTTTTATTGATAAAAAAATTGTAAGGAACAATGTGTTAAAATATATTGTATTGCTGTTACTGCTATTCTTCTCTTTGGTATAGAATGAAATCATTTTGGATTGAAAGTTGAAAAGACCTCAAGTATGTTTTAAAATTTGGCTGTTTAACCATTATTATTTTGACCCCTGACCTTCGTCTCGCCCTCTCTCCTCTATTTGTCATCTATCTGTTCATTAACGCAAGTATTGATTTGGAAATTCTAACAATATCGTAAGCATTACTTCCAAAGTTGTAGCCTGAACTTGATGTAGTTGTACTCCATTTTCCTTTAAAATGTTTCTTTAATTTCTCTGCAGGAGTTCATAGCGAATGAAGGGGGTGGTGAGGCACCCATGGAGGGATCAATACCAGATATGACATCTTCAACTGAGTGAGTGTCTCAATTTTCTAGAAAATACCATGAAATTTAACTAACTTATTTATTGACTGAAGGGCTGGATTCTGCCTTTTGTAGGCACTATGTTAATTTGCAAAACATCTATCAAGCTAAGGCCGAGGCTGACTTCATGCTAATAGAGGAAAGAGCAAGGAACATTTTGAAAAAAATTGGCAGAGATCCAAATAGCATCTCTAAAACGACAATCAAAGGCTTCTGTAAGAATGCAAGAAAGCTGAAAGTATGCTCTATTATGTTCATTGTGTCATAATACTAAGTATTCTTTTTGTACAATCTGCTGGTATCCCAAGTTGATAGGACAGAAGCCTTCCAATTTAATCCTGTCATTCTCCATGATATTCTAAGAATCTTCCTTATAAAGAGCCTAATTAAGATTTAGCCATCATGACGTATGTGGTCAGAGCTTTTTAAGTTTTTCCTAGGAGTTCTGGATGTATCACAGGACAGATTTCCTCTCTGTCTAAATGGTTCTCTATCTTGTTTAATAATTTTTCAGTTTCTTGATAAATTAAAGAACTACCTATCAGGAATCCACCAATGTATTTTCAATTCACCTTCGCATGTACAAAGCTCCCTTTGCTCAGACAAATGTAGTGTGGTATGATTGTGTAGTGCATAATGGCTGAATATGTTGCTCTCAAAAACTTTATTCTACTTCAACTGAGGCATTTGTGTGGATGCATGCCTACAACTTCGTGCATATACAGTTTTATTTTTTCTAATGGATTATGGGAAATTTTTGTAGGTTTGCAGATATCGTTCACTTGAGGATGAGTTCAATTCTCCTATCTTCGCTGAGCTACAGAAGTATCTAACTGACGAGGATTTCAGGTTACACTAAATTAGTCAACGTGCTTCTTACTTTGTTTTCTGATGTTACATTTTTACTTTATTCAGTGCAATGATGAATGGACGATATCATATAATTTCATTTGTATTAAAATACGATGTTCTTAGAAATCCTTTCTTTGGTATTTTTAATAGCAATAAATAAATAAATAGATTTAATTACTTATTGGTGTAAAAACTATTTATTATCAATCTTAAATTTGGACAATAATGTTACAACTCTGTTTTTTTATACAAGTATTTGCCCTTTCAACATCTTTGTGCCGATTTTGGTATATTTCTTTTCAGTAGCTAAATTTCTTTCAGGCAACCAGTTTTACCAGGGAGAGTTGTTTGCTTACTATTTTATTATTTATTTATGCATTCAATATTATTGCAATCAATTTATTATTATTATTTTTTTGGGTAAGTGCGCTTTCATTGAGAAAACCAATTTTTGTTGCTACATGATAGTTGGTTTCGTTTCTCTGCATTTGTTTACCGAAGATCTTGGAACTTCTCTTCAACTGAATAAGTATATATATTAAAAAAGAAGTAATCTCTACTCTATTGACGTTTATTTCTCTTCTTCCAGCGTGGCTGTTGGATTTTATATTCTGCTTCGAGCTGTTGATCGTTTTGCTGCCAATTACAACAGTTTTCCCGGGCAATTTGATGGGTAGTGTCTGATGCTGTTTTGTATGGGATTGTGTTTCTTTAATAATGATGTAGACTTTTAACTAATTGATGCTCTTGCAGTGGAATTGACGAGGACATATCTCGATTGAAAACTACTGCCGTTGGCCTACTCAGTGACTTGGGTTGCAATGGCTTGACATTATCAGAGGACCTCATTAATGAGATGTGCCGATTCGGTGCTGCAGAGCTCCATGCAGTCGCTGCTTTCATTGGAGGAATTGCATCACAAGAAGTAATCAAGGTAAAGTTAATACTTTCTGGGCTTTTTTCTTTTTTCTATTTCATTTATAATTTGATATTTTCTGAAAGCTTCGGTCTCCTAGAATGACGTATTAAAAAGGTTCTCTTTTGTCTTCAGCTAATCACCCGACAGTTTGTACCCATGTCTGGAACTTTCGTATTCAATGGCATCGATCACAAGTCGCAGTTATTGTCACTCTAGTGACTTTTAGACCCATACCTTAAGTTCTACTGGATTTCCATTTTCCAGATTCGCCTCGCTTCGATTCTTATTGGCAGACCAGGCATTTTCCCTGGAGGAGAAAGCGCTTCTTTGTTGGAGCTATGGTATGGTACACATTGCATGATTCTATACTTTGGTGTGCAATTCCCTTTGTCGATGTATGTTCTATTAGATTAAATTTTTGGCATAATTTTTCAGAATATCAAAATATCATCGGTAGAACAAAAAAGGGTTACAGGAAAGTTTCCAATGGCTACAACCTTCAATCCTACGAGAGTAGTATGACCCTTGAAATTGCCTCCTCTCCTGAGTCTCTTGAATCAATTTGGGTCTCAAAAATATTATTATTATGATCGTTTATGGGTAATTGCTGACTTCGGAAAATGGATTATTGTTCTTTTGTTTTTGCCTTTTAATCTCTCTTCCCTTGTTACACTTGCACCTACCAGTGTGCATTGGGTATTAAATATTTATATTTTGTTTGAACGTATTGCCTTTTTTATTTTAAAATATAGCCACTTTTAAATCCCACTAGTAAGCCACTTTTAACTCGTAATATCAATATGAGATATGAGTTTATATAGTGGAGTGGAGGTGGACAGAGGATGGTGGATAGATGGGCGGAAT TCTTCACTGCGTCGTTCCCACGCAAATTTAGAAAGCTCATTGACACTTCCAGACAGAGGAACAAGACTAGAACAAGAGAGGGAGAACAGAGCGCGCGAAGCAAAGAAAATGGCGGAGCCCAAAGTAAAATACGATCGCCAACTCAGGATCTGGGGTGAACAAGGGCAGGCAGCCCTTGAAAAAGCGAGTATATGCCTTCTCAACTGCGGGCCTACTGGTTCCGAGACATTGAAAAATCTAGTACTTGGAGGGATTGGAAGCATCACTCTAGTCGACGGTACCAAGATAGAAGAGGGCGACCTTGGCAACAACTTCATGGTGGATGAATCTAGTATTGGACAGTCAAAGGCGAAGTGTGTATGTGCATTTCTTCAAGAACTAAATGATGCTGTGAAAGCTAAGTTTATAGAAGAGTGTCCGGAGGCATTAATTGAAACAAGGCCATCATTCTTTTCACAGTTTACATTAGTAGTTGCCACACAGTTGGTTGAAGAATGGATTGTGAAGCTAGATAAAATCTGTAGGAACGCAAATGTCATATTGGTCGTTGCACGCTCCTATGGCCTCACTGGGCTTGTCAGAATCAGTTTAAAGGAGCATACTGTCATTGAGTCAAAGCCCGATCATTTTCTGGATGATCTTCGGTTAAATAACCCATGGCCAGAGCTGAGGAGGTTTTCTGAAACTATTGATCTCAATATTCCTGACCCTGTTGCACACAAACACACTCCATATGTTGTTATTCTTGTCAAGATGGCTGAAGAGTGGGCCAAAAGCCACGGTGGCAGTTTACCGTCAAGCAGAGAAGAGAAGAAAGAATTCAAGGATCTCCTCAAAGCCAAGATGATTGCAATGGATGAAGATAACTACAGAGAAGCTATTGAAGCTTCGTTCAAAGTCTTTGCTCCGCATGGAATCAGTCCAGATCTGAAACAGATAGTTGATGATAGCTGTGCTGAAGTTGATTCTAATTCATCAGATTTTTGGATATTAGTGGCTGCTTTGAAGGAGTTCATAGCGAATGAAGGGGGTGGTGAGGCACCCATGGAGGGATCAATACCAGATATGACATCTTCAACTGAGCACTATGTTAATTTGCAAAACATCTATCAAGCTAAGGCCGAGGCTGACTTCATGCTAATAGAGGAAAGAGCAAGGAACATTTTGAAAAAAATTGGCAGAGATCCAAATAGCATCTCTAAAACGACAATCAAAGGCTTCTGTAAGAATGCAAGAAAGCTGAAAGTTTGCAGATATCGTTCACTTGAGGATGAGTTCAATTCTCCTATCTTCGCTGAGCTACAGAAGTATCTAACTGACGAGGATTTCAGCGTGGCTGTTGGATTTTATATTCTGCTTCGAGCTGTTGATCGTTTTGCTGCCAATTACAACAGTTTTCCCGGGCAATTTGATGGTGGAATTGACGAGGACATATCTCGATTGAAAACTACTGCCGTTGGCCTACTCAGTGACTTGGGTTGCAATGGCTTGACATTATCAGAGGACCTCATTAATGAGATGTGCCGATTCGGTGCTGCAGAGCTCCATGCAGTCGCTGCTTTCATTGGAGGAATTGCATCACAAGAAGTAATCAAGCTAATCACCCGACAGTTTGTACCCATGTCTGGAACTTTCGTATTCAATGGCATCGATCACAAGTCGCAGTTATTGTCACTCTAGTGACTTTTAGACCCATACCTTAAGTTCTACTGGATTTCCATTTTCCAGATTCGCCTCGCTTCGATTCTTATTGGCAGACCAGGCATTTTCCCTGGAGGAGAAAGCGCTTCTTTGTTGGAGCTATGAATATCAAAATATCATCGGTAGAACAAAAAAGGGTTACAGGAAAGTTTCCAATGGCTACAACCTTCAATCCTACGAGAGTAGTATGACCCTTGAAATTGCCTCCTCTCCTGAGTCTCTTGAATCAATTTGGGTCTCAAAAATATTATTATTATGATCGTTTATGGGTAATTGCTGACTTCGGAAAATGGATTATTGTTCTTTTGTTTTTGCCTTTTAATCTCTCTTCCCTTGTTACACTTGCACCTACCAGTGTGCATTGGGTATTAAATATTTATATTTTGTTTGAACGTATTGCCTTTTTTATTTTAAAATATAGCCACTTTTAAATCCCACTAGTAAGCCACTTTTAACTCGTAATATCAATATGAGATATGAGTTTATATAGTGGAGTGGAGGTGGACAGAGGATGGTGGATAGATGGGCGGAAT ATGGCGGAGCCCAAAGTAAAATACGATCGCCAACTCAGGATCTGGGGTGAACAAGGGCAGGCAGCCCTTGAAAAAGCGAGTATATGCCTTCTCAACTGCGGGCCTACTGGTTCCGAGACATTGAAAAATCTAGTACTTGGAGGGATTGGAAGCATCACTCTAGTCGACGGTACCAAGATAGAAGAGGGCGACCTTGGCAACAACTTCATGGTGGATGAATCTAGTATTGGACAGTCAAAGGCGAAGTGTGTATGTGCATTTCTTCAAGAACTAAATGATGCTGTGAAAGCTAAGTTTATAGAAGAGTGTCCGGAGGCATTAATTGAAACAAGGCCATCATTCTTTTCACAGTTTACATTAGTAGTTGCCACACAGTTGGTTGAAGAATGGATTGTGAAGCTAGATAAAATCTGTAGGAACGCAAATGTCATATTGGTCGTTGCACGCTCCTATGGCCTCACTGGGCTTGTCAGAATCAGTTTAAAGGAGCATACTGTCATTGAGTCAAAGCCCGATCATTTTCTGGATGATCTTCGGTTAAATAACCCATGGCCAGAGCTGAGGAGGTTTTCTGAAACTATTGATCTCAATATTCCTGACCCTGTTGCACACAAACACACTCCATATGTTGTTATTCTTGTCAAGATGGCTGAAGAGTGGGCCAAAAGCCACGGTGGCAGTTTACCGTCAAGCAGAGAAGAGAAGAAAGAATTCAAGGATCTCCTCAAAGCCAAGATGATTGCAATGGATGAAGATAACTACAGAGAAGCTATTGAAGCTTCGTTCAAAGTCTTTGCTCCGCATGGAATCAGTCCAGATCTGAAACAGATAGTTGATGATAGCTGTGCTGAAGTTGATTCTAATTCATCAGATTTTTGGATATTAGTGGCTGCTTTGAAGGAGTTCATAGCGAATGAAGGGGGTGGTGAGGCACCCATGGAGGGATCAATACCAGATATGACATCTTCAACTGAGCACTATGTTAATTTGCAAAACATCTATCAAGCTAAGGCCGAGGCTGACTTCATGCTAATAGAGGAAAGAGCAAGGAACATTTTGAAAAAAATTGGCAGAGATCCAAATAGCATCTCTAAAACGACAATCAAAGGCTTCTGTAAGAATGCAAGAAAGCTGAAAGTTTGCAGATATCGTTCACTTGAGGATGAGTTCAATTCTCCTATCTTCGCTGAGCTACAGAAGTATCTAACTGACGAGGATTTCAGCGTGGCTGTTGGATTTTATATTCTGCTTCGAGCTGTTGATCGTTTTGCTGCCAATTACAACAGTTTTCCCGGGCAATTTGATGGTGGAATTGACGAGGACATATCTCGATTGAAAACTACTGCCGTTGGCCTACTCAGTGACTTGGGTTGCAATGGCTTGACATTATCAGAGGACCTCATTAATGAGATGTGCCGATTCGGTGCTGCAGAGCTCCATGCAGTCGCTGCTTTCATTGGAGGAATTGCATCACAAGAAGTAATCAAGCTAATCACCCGACAGTTTGTACCCATGTCTGGAACTTTCGTATTCAATGGCATCGATCACAAGTCGCAGTTATTGTCACTCTAG MAEPKVKYDRQLRIWGEQGQAALEKASICLLNCGPTGSETLKNLVLGGIGSITLVDGTKIEEGDLGNNFMVDESSIGQSKAKCVCAFLQELNDAVKAKFIEECPEALIETRPSFFSQFTLVVATQLVEEWIVKLDKICRNANVILVVARSYGLTGLVRISLKEHTVIESKPDHFLDDLRLNNPWPELRRFSETIDLNIPDPVAHKHTPYVVILVKMAEEWAKSHGGSLPSSREEKKEFKDLLKAKMIAMDEDNYREAIEASFKVFAPHGISPDLKQIVDDSCAEVDSNSSDFWILVAALKEFIANEGGGEAPMEGSIPDMTSSTEHYVNLQNIYQAKAEADFMLIEERARNILKKIGRDPNSISKTTIKGFCKNARKLKVCRYRSLEDEFNSPIFAELQKYLTDEDFSVAVGFYILLRAVDRFAANYNSFPGQFDGGIDEDISRLKTTAVGLLSDLGCNGLTLSEDLINEMCRFGAAELHAVAAFIGGIASQEVIKLITRQFVPMSGTFVFNGIDHKSQLLSL
BLAST of CmaCh20G006170.1 vs. Swiss-Prot
Match: AXR1_ARATH (NEDD8-activating enzyme E1 regulatory subunit AXR1 OS=Arabidopsis thaliana GN=AXR1 PE=1 SV=1) HSP 1 Score: 846.3 bits (2185), Expect = 1.8e-244 Identity = 404/524 (77.10%), Postives = 471/524 (89.89%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. Swiss-Prot
Match: AXL1_ARATH (NEDD8-activating enzyme E1 regulatory subunit AXL OS=Arabidopsis thaliana GN=AXL1 PE=1 SV=1) HSP 1 Score: 804.3 bits (2076), Expect = 7.9e-232 Identity = 384/523 (73.42%), Postives = 453/523 (86.62%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. Swiss-Prot
Match: ULA1_XENLA (NEDD8-activating enzyme E1 regulatory subunit OS=Xenopus laevis GN=nae1 PE=2 SV=1) HSP 1 Score: 439.9 bits (1130), Expect = 3.9e-122 Identity = 221/524 (42.18%), Postives = 335/524 (63.93%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. Swiss-Prot
Match: ULA1_MOUSE (NEDD8-activating enzyme E1 regulatory subunit OS=Mus musculus GN=Nae1 PE=1 SV=1) HSP 1 Score: 439.9 bits (1130), Expect = 3.9e-122 Identity = 221/535 (41.31%), Postives = 336/535 (62.80%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. Swiss-Prot
Match: ULA1_DICDI (NEDD8-activating enzyme E1 regulatory subunit OS=Dictyostelium discoideum GN=nae1 PE=3 SV=1) HSP 1 Score: 439.5 bits (1129), Expect = 5.1e-122 Identity = 224/509 (44.01%), Postives = 316/509 (62.08%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TrEMBL
Match: A0A0A0LMV7_CUCSA (NEDD8-activating enzyme E1 regulatory subunit OS=Cucumis sativus GN=Csa_2G418860 PE=3 SV=1) HSP 1 Score: 1003.4 bits (2593), Expect = 9.9e-290 Identity = 502/523 (95.98%), Postives = 511/523 (97.71%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TrEMBL
Match: A0A061E937_THECC (NEDD8-activating enzyme E1 regulatory subunit OS=Theobroma cacao GN=TCM_011349 PE=3 SV=1) HSP 1 Score: 930.2 bits (2403), Expect = 1.1e-267 Identity = 453/523 (86.62%), Postives = 496/523 (94.84%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TrEMBL
Match: D7TE75_VITVI (NEDD8-activating enzyme E1 regulatory subunit OS=Vitis vinifera GN=VIT_12s0059g00610 PE=3 SV=1) HSP 1 Score: 920.6 bits (2378), Expect = 8.5e-265 Identity = 454/523 (86.81%), Postives = 491/523 (93.88%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TrEMBL
Match: A0A067KGX0_JATCU (NEDD8-activating enzyme E1 regulatory subunit OS=Jatropha curcas GN=JCGZ_10346 PE=3 SV=1) HSP 1 Score: 916.4 bits (2367), Expect = 1.6e-263 Identity = 446/523 (85.28%), Postives = 489/523 (93.50%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TrEMBL
Match: M5XDM7_PRUPE (NEDD8-activating enzyme E1 regulatory subunit OS=Prunus persica GN=PRUPE_ppa004204mg PE=3 SV=1) HSP 1 Score: 909.4 bits (2349), Expect = 2.0e-261 Identity = 445/523 (85.09%), Postives = 490/523 (93.69%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TAIR10
Match: AT1G05180.1 (AT1G05180.1 NAD(P)-binding Rossmann-fold superfamily protein) HSP 1 Score: 846.3 bits (2185), Expect = 1.0e-245 Identity = 404/524 (77.10%), Postives = 471/524 (89.89%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TAIR10
Match: AT2G32410.1 (AT2G32410.1 AXR1-like) HSP 1 Score: 804.3 bits (2076), Expect = 4.5e-233 Identity = 384/523 (73.42%), Postives = 453/523 (86.62%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TAIR10
Match: AT3G25880.1 (AT3G25880.1 NAD(P)-binding Rossmann-fold superfamily protein) HSP 1 Score: 85.1 bits (209), Expect = 1.4e-16 Identity = 43/69 (62.32%), Postives = 50/69 (72.46%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TAIR10
Match: AT5G50680.1 (AT5G50680.1 SUMO activating enzyme 1B) HSP 1 Score: 65.9 bits (159), Expect = 8.7e-11 Identity = 48/174 (27.59%), Postives = 85/174 (48.85%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. TAIR10
Match: AT5G50580.2 (AT5G50580.2 SUMO-activating enzyme 1B) HSP 1 Score: 65.9 bits (159), Expect = 8.7e-11 Identity = 48/174 (27.59%), Postives = 85/174 (48.85%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. NCBI nr
Match: gi|449468362|ref|XP_004151890.1| (PREDICTED: NEDD8-activating enzyme E1 regulatory subunit [Cucumis sativus]) HSP 1 Score: 1003.4 bits (2593), Expect = 1.4e-289 Identity = 502/523 (95.98%), Postives = 511/523 (97.71%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. NCBI nr
Match: gi|659111727|ref|XP_008455879.1| (PREDICTED: NEDD8-activating enzyme E1 regulatory subunit isoform X1 [Cucumis melo]) HSP 1 Score: 990.3 bits (2559), Expect = 1.2e-285 Identity = 498/523 (95.22%), Postives = 505/523 (96.56%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. NCBI nr
Match: gi|659111734|ref|XP_008455882.1| (PREDICTED: NEDD8-activating enzyme E1 regulatory subunit isoform X2 [Cucumis melo]) HSP 1 Score: 982.6 bits (2539), Expect = 2.6e-283 Identity = 496/523 (94.84%), Postives = 504/523 (96.37%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. NCBI nr
Match: gi|590698175|ref|XP_007045644.1| (NAD(P)-binding Rossmann-fold superfamily protein isoform 1 [Theobroma cacao]) HSP 1 Score: 930.2 bits (2403), Expect = 1.5e-267 Identity = 453/523 (86.62%), Postives = 496/523 (94.84%), Query Frame = 1
BLAST of CmaCh20G006170.1 vs. NCBI nr
Match: gi|225447007|ref|XP_002267415.1| (PREDICTED: NEDD8-activating enzyme E1 regulatory subunit [Vitis vinifera]) HSP 1 Score: 920.6 bits (2378), Expect = 1.2e-264 Identity = 454/523 (86.81%), Postives = 491/523 (93.88%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of Cucurbita maxima
Date Performed: 2017-05-20
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