Cucsa.189430 (gene) Cucumber (Gy14) v1
The following sequences are available for this feature:
Legend: five_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TCTGGTTTTTATTTCACACTGATTTGTATAATTTTCCTGTAATTTAACGAACAAATGCAAAAAGCCGAACCTCTTATTCCATTTGAAACGAAGCGAGAGAAGTGAAGAATGCTACTTCTCGTCATTTTCTTTCTCTCATTCTTTCTGTTCTTCAGATTCGCCACTGCTTATGGTAATCATCCTTCCAAATTTCAATCAACTATTGAATTTTAATAGTTATATAAATGCGAAGGATTTGATTTTATGTCTTTGTTGCCTTATTTTTTCCGTTCCAATTCATAGGCGACTTCACTTTAATGTTCAAGAACCATGTCAAGCGAGAGGAAATTGAAGATAAGGTCAGCTGGTTTTTGAGTTTTCTATTCTTCAAGTTCTAGTGTTCTTCATCACACTAATCATCACTCCTTTCTGATGTTAATCCAACTATGCCGCATCAGGTCATTTGGATTACTGGTGCTAGCCGAGGAATTGGTATTCTGCTTAATATTTTTAGTTCTTTAATTATTTCTACTATATTGGGCTTTAATAGATCAATAATCTTTCTGCTAATTTGTCTGTCTTTTACACTCAGTTATAAGATTACTGTTATTTCCTTTATTTGACATTTTTCTTATATTTTAAACTTTTTTGTTGAATGTAGGGGAGGTTCTTGCAAAACAACTTGCTGCTTTGGGAGCTAAGCTTATTATTTCTGCACGGGATGAAGCTGGGTTAGAGAGAGTGAAGAGCGAGCTCTCTGGTTTGCAAATTTTCATAAAAATTTGCACTAGTCTCGATAATTTTTTCTTTCTCTAATACAGCTTTTGATCTGTCACAGGTAAATTTGCACCTAATGAAGTGAAAGTTTTACCCTTAGATTTGGCATCTGGGGAAAATAAGTTGAAAGAAGCGGTAGAGTTAGCAGAGTCATTTTTTCCCGGCTCTGGTGTGGATTATATGATCCATAATGCAGCTTTTGAGCGTCCCGTAAGTGACGAATATTTTATATATATATCTACTTGGCTTGAATAATGTTTTCATGAATTTAATTAACCCTTTAAGATTTTGAACCATGCCGGTAAAGATATTGATATTACACTTTGCACCATATTATGAGTCTATGACATTGTCCTATTTTAGAATGCCAGTTGTAAATTTTTTGACGTTCCTGTCATTCTTGAATCTTGTGAACATGTGTACTTAGTTGTTAGTCCTTCAACAAGCGTGTGGCTACTTGCAGACAAGTGTTCATGTTAATTGACAAAGGCAAGAGTCCATGCTGCTTTATAGACCTCCTTAGTGATGTAGTATGTGATTCTTCAAGAAATTGACTATCTAGGATTTCCTACGAGTCCAATTCAAGAAATAACTAGATATATCTCAATTTATCAGTTTAAATGGTAGGCCATTGATTAGAGGGTGTTGTATATCAAGTGGATTCCAGTTAGCATGGATCTAACTTTTATGTTAAAGGCTGAAGCTGTCAATAGATAGGGTGGCAACTTCACTATGTTTGTTTGGTCAGATGGGAATTGTTTCAACTAAGTGTAATAGTGTACTTTTATATTTATTTATATGAAAATAAATCATGGAGACATAACAATAGCTGGCATGCACCCGAATGAACTTGTTTTCATGGTGCTTTTTTTGGCACGTGATTCATAACATTGTTTTGTACATCTACATTCTCATACGGTTCAAACTTTATGCTACACCAACTTATCTATTTTCCATAATTCCCATTGGATGTTGACAGCCATGTTTTCAATATAGGCAATACAACAAAAAGTTAATGGACCCGCTTTATCAATTCTTTCGGCTTACTTGAACAACCTTACCAAAATTTTGGATGATTATCTGTTCTACGTGTGGAATATAAAACTTTGTATGAAACAGAAGCAAGCCTCTTCATTGATATAATGAGTGAGACTAAAGCTCAAAGTACAAAGTACAAATTAATGAGTCGAAGCACAACAAGATTATAAGGAACAAAAAGGACCAACCCAAAACATCTAAACCAAGAGAACAAAGCTAAACCAAATGGAGAAAAAAGCAAACCAACGACAACTCCCGAGAAGCCCTACACAACAATTTGAGATGAACAAAGAAATCTCAAACAAACAAAAACTAGATGTAGCAGTCCGAGAGGCTGTAAATCTTCCAAGATGGGTATGACAGGGCATCGAAGGAATGTCAAGGGCAGCTGATAATATGCAAATACTTTATCAACTTCGAACAGAAAAACACAGCTTGTTGTGCTTGCATGTGTGTATTCAAGCATTCTTTCCAAAAGAGATGTATGCATGCTTGCATTGTTGCAATTAGTTTGATATATCCCTCAAAGTCTCACTGAGTGTTTTAATATCAACTTGATGTATTAGTTGTTTGTGCTTTTACTATTTGGATGTAAAATAAGCTAGTTTCCTAGTTAATTATTTTAACTAGGTGTGGTTCTATAGGTAACTAGTCCTTAACTCCCTCTTGTGTATAAATAGGCCTTAGTGTCATCTTTTGTCATTAATAAAAGAAATTTTCATTGAGTTCTCGAAGCATAATCAGTTACAACTTTTGTACAAATTCCTACTATCATCATTGAGTCTAATCATTCCATGGTGTAAAATGCTTCACATGCTCTGTTTTGTTCAACAATCTTTCTACACTTTAATATCTGTATTTGTTTATCGTTTTACAGAAAACTACAGCTTTGGATGTATCTGAGGAAAGTCTGAAGGTAAGGAGGAATAAACAAGTGACACTCACAGTCTGGTTTAGTGATTCTTAAGATGGATTGATTTTATATTCAGTACGTCTGGGTATTGAGATAGCCATTTCCTGTGTTATCTTTTTGTTTCTATTGTTAACTCTCATTAACTATGTACGACATGCTCAATTCTTACGTGTTTTTCTTTTCTCTCTCTCTCTTTTTAATTACGATCAGACAACATTTGATGTCAATGTTATTGGGACCATTTCTCTCACACGGCTTCTAGCACCTTTTATGTTACAACGGGGACGAGGTCATTTTGTTGTTGTAAGTGGGAAGTCACTAATATTACTTATACTTTGCCATTGTTTGCTTAATTTAGACTCGTTGCATCTTAATTTGATAGATAATAATCATATCAGTGTGGTTGGACCCTGAATATACTATTGTGATATAACTGTAACTGTTTATTGCCAGTTTGATCTTCAGGTTGTTACCTAATACTTAATACCTGCTCAAATAATCTTTATCATCAGAATTTCTAATTTTTCTCATCTTTGAACAATACACATCTGACTATGTTCTAGTATTGGGCATTGATTGTTTGTACATTGTTCTAACTTTTAGAATTTTTCGTATTTGATATTTGGACAGTCGTCATTTTATTTTTCATATACTGTTCTTGTTTTTTCCCTTATTTCCTCTCACTTGTATGATAATCTAAATTTTCAATTGCTAATATTTTGTATCCTTCTGGATTGCTTTCAGATGAGCAGTGCTGCAGGAAAGACACCTGCTCCAGGACAGGCTGTATATTCTGCATCAAAGCATGCTCTGAATGGTTATTTTCATTCTTTACGATCGGAGGTAAGATGAACCTAATGTGTTTGTCCTTATATTTGAGATTACAGTTAAGACATTTACCTTTTCTGAATGAAGGAATATGAACATGCCTTCCAGTTCCTATATTTGGCACTGTTTACTTGCATTTTGGAGTAACTTCTAGATAATTTAGACTCTACCAAGTTAAAAACTAGAATTTTAGGTTCCAGGTTTCTTTTGTTTTGAAAATTAAGCTTACATACAGAACTTTCTCATAAGTTTTTATGTTTCATACTAATCTTTTTCAAAAACCAAGCCAAGTTTTGAAAACTCAAAAAAGTAGTTTTCAAAAACTTAATTATTATTTGGATTTTATTAAGATTTCAAGTGCTTCTTTAACATGGTGAAAACCATAATTGAATAATTGGGAGGAAACAAGCATAGATTTTAAAAACTAAGGCCCTATTTACTACCATTTTGAATTGTCAAGGAATCTCAACTTCTCTTTACAAGAATCCACTAATCACTTTACAAGAATCCACTAATCAGTCATTCAATTAATTGAATTACAAATAAAGAAAAGTACTCAACCAAATCTAAAATTTAAAATAAATAAAGATAAGCATAGTAAAATCTCTGGATCATAAAATGCATTTTCATTCAAAATATACCCTTGTCCTGGAGGGTGAGAAAGACTGGCCAGCGTAGATTGACTACTTGAACATTTTTTCCCATGGATTTTTTTTTCCCTTTTAAACGTTTTCTCCAGTGGGTTTCTCCACCTATAGACCTCTTTGATTTATAAGTCACCGTATCTTCACTGATTATGATCTTCATCTCCATGCATTATTGATTAAATAATCTTTTATATTTGATATGTTAACTTAAAGTTTAATGTTATTTTATGAAATATTAATGTGAGTAGGTAATCTTTTTTTAATTGAGAAACAAGCCTTATAGTTTAAGAAGCACAAACACGGGAATGAGACACAAATACCACATGGACACGGCAACACGCCATATTTTAAAAATCTAGGACACGACACGGCAAGGACACGTTTATTAAATTATTCATTTTTATAAAAAATATATCATTTTTATAGTAAAAGAAAATCCATAGTAAATGAATTGATGCATTTATATGCTTAAAAGACTTAGCTTGTTGTATTCCACACCCAAGAGTTATTATTATTGTCATATATGTCTTTTTAGTCTAATCAACTAGTGTTCTATGCATGTCTAATGCATTTGTTGCACTAACAAATGTTCAATAAATGTCCACCAAGTGTCGAACATGGACACACTAGCCAAACTAAAGTGTGTGCTTCTTAGCTTATAGTTTATCATCGTAGGCTAATGTGAGTAAGTAATCTAAAACATACTTTTCTTATCTTAAAATTAACATTTACATTTATTATTTTTATTTTTCTAGTTCAGTGAGGATCGAGCCATAGACCTTTGAGATTGATAATTGGTATCTTAGCCACTAAGTTATGTTCGGATGGACATATTTAAACTATTATTAATTAAATATAGATAAAAAAAGAATAATTTTGTTAGAAAAATTTATTATTATTAGTTATCATAAGAGATTTTAGTCCAAAATAAAAATATTATAAACGACAAATGGAGAGAGTGGGAAAGGGAGATGGTTTTCAAAGAGTTATTTATTTATTTTAACTTATTCAGCCACTTTCATTAATAAAAAATTAAAAGAATACACGGGCATACAAAGGAACAAGCCCACAAAAAAGGGAACTCCCTTTACAAGTAGGAACTCCAACTATGTGAAATCACACCTATAGAATAGTTACAAAAAGCCTTCAAAATCGAAGTCGAAAAAGAAACATGAAATTGAACGACAGACCATAACTCCCTAGGATCCCTCTCCATACCCTTACGCACCCTACTATTCTGTTAACCTCACAAGACCCCTAATGACTGCACACATCCTTGAAAGCCATAAAAAATGGCCTTTCTCCTCAAAAGGCAGATTGAGAAGAAACTCCTCGATCATAGCACCAACATCTTATGACCGACCTCTCTAATGGTTGCATTAAATTTCTTATATGATGTAAATATAATGTAAATTCTATTCAAAATTCTAAATAATTTAAACTCAAAAGAACTTTGGTAAAAATTGTATATGTACCCGATAGCTCTGAAGCCAGTCAGTATTTTTACCTCTGGTGCCTTTTTTATGAGAAAATTATAAGTTCTATTGAGGATACCATTGATTAATCCCTATAATCTTAGAAAATTTTCCTAAATTGGATTTGATGAGGTTCCATAATGTTTTTGGAAGAAGTCTACCATAAAACTAGATGTTAAAATTTTGTTACTGCTTTTTCCTTTTCTCCTATAGTTTTATAGTCGCTGACCTTTTATTTTCTTATGTAATCATATATCATTTATTTTTCATTTATATTGCTACATTGCAATCTCAGCTCTACCAGAAAGGAATTAGAGTGACCGTTGTTTGTCCTGGGCCAATTGAAACGTCAACTAGCTCAGGTGCAGAAGTCGTGGGGAAGAAAGGTGTATCTGAGGTATGTAGATCTTCTTTTATCTTGTGTCAATGTTCATGTTGGCTTAAAGCCTGTAAACTCAACAAAAAGATGAAAGTTTTGAATCTCCCGCAGAACTCTAAATATATTTATATATTCGTTGGAACTCTTCTCTCTCCTCCGTTCAAGTTGGTCAATTTGATTTATTATAATGGGATGAGTCGGATGATCTACTGGTCAACAAGAGTACATATAACTATAGAGATTAGTGGGAATGAGTTGAAGTTACAGTGACCACTTGTACAACATTGAATTTCCTACAAGTTTCTTGGCAATTGAATCGAGACGAGTTAGACAATTATTCCATGGGAATAATTGAGGTGTGTGCAAGTTGGCCCAAACATTCATGAAGATAGAAAGAAAGAAAATTCTGATTTGAAGAAAAAAGACTTGTTTTGTCACTATTTGTACATTTTTATGCATAATCTTTAGGACAGGTTATTTATCTGCTTCATGGCATCATATATGGATGGTTCTACATACTAACCCACTATGTGATTGGAATGCTGCTACTACTAGGGATATATTTGTAATTAGTGAGGGAAGTTGTTAGGATATTGGTTATAAAGGGAGGGAGTAGGAATGAGAAAGTGGGGATTATTTTGGCGTAGCTATGACATGCTTAGAGCTTTATTGAGTTTCTTGATTCTACTTTTCTTGCAGAAGCGACTTTCATCAGAAAAATGTGCTCAGTTAACAATTATTGCTGCCACCCATAATCTAAAAGAAGTTTGGATATCATATCAGGTATCCATTTTGAATGATTCACTAATTTATCCAGTATTTATCCTTGATTAAATAGCTTGGAAGTAGAGTTCTCGTTTTTGTGATATTTGAAGCTACAGTGATGTTGAACTATGTCACTTTATGCAACCCATATCAATCCCTTTAAATGCCACCTGTGTTTTTTTTAATAAATAAATATCATGTGCAATTGTGCAAAGATTTGAAGTCTCAGTCTTTCATCTTGCACATAAAAAAGAATGGTAGCTTGTCATTGCATTGATATTATTGAAAGTAGAGACAAACAACAAACACAACCCTAGAACCCTAGTTCAGGGAGAACCACGGTGCTGATAATTTTATTATTTTCTAATACTCATAAAGGTACAAAGGGGAAGTATTTATAGGCAATAGAAGCCTAAAATAAGGCAAAGTAAATTACGTAACTACCCTTGGGCTTTCAACATGACCTAAGCCTATTATTTCTAACACTCTCCCTCAAGTTGGGACGTAAACGTCATAAAGACCCAACTTGCTAGTTGAAACTTTGTCTGAGGAGCCCCTTTATGAGGATATCAGCAATCTGTTGACTTGAGGGTATGCAAGGAATGCGGATGCAACCATTGTCAAGCTTCTCTTTGGTAGAAGTGTCTGTCAATCTCCACATGTTTAGTCCTGTTATGTTAGACCGAGTTATTGGCAATGATAATGGCTGCCTTGTTATCGCAAAATAGCTTCATAGGCACCTTATAGTCTTGAAAAAGATCAGACAACACCTTCTAGAGCCAGAGCTCCTCACAGATCCCCAAACTCATAGCCCTGTATTTGGCTCCAGTGCTCTACCTGTGAACCCTTGCTCCTTGCTTCTTACTTCTCCAAGTAACAAAATTTCCCCACACAAAAGTACAGTATCTTGAGGTAGACTTTCTATCAACAATAAATCCTGTCCTGTCAGAATTAGTATAAGCTTTCAACACATCTTTTGTGAGGCTTCCTGAACCTCAGACCTTTATCAGGAGTTGCTTTTAAACACCTTAGGATCCTGTTAACCACCTCCAAGTGGTCCTCATAAGGTGCCTGCATGAACCGACTAACGATGCTTATAACATAGGAGATGTCAAGTCTAGTGTAAGATAAGTAAATCAACTCTCCCACCAGGCGCTGATATTTCTCTTTATCAACAGGAACTCTGTCATTTGAATTTTCGAGTTTAGCATTGAACTAAATGGTTGTATCAGCAAGACGACATTCTAGCATACCTGTCTCAGCTAATAAATCAAGGGTGTAGTTTATTTGGGACATTGATATGCCTTCTCTGGATCTAGGAATCTCCATACCGAGAAAGTACTTCAGATTTCCCATCTCTTCAATGATCTCATCAGTGTCATCCTCGGATACACAATGTCATCGACATAGACAATCACTACTGCAATTTTTCCCGTCTTGGAGACTTTGGTGAACAAGGTGTGATCAGAGTGCCCCTGATTGTACCCTTGAGACTTGATGAAAGTGGTAAATCTGTCAAACTACACTCTTGGTGATTGTTTCAACCCGTATAAAGACTTTCGAAGCTTGCAAACCTAATTGTTAAATTGAGCTTCAAATCCTGGAGATGGACTCATGTACACTTCCCCTTTTAAATTCCCATTTAATAATGCATTCTTAACATCAAGTTGATATAGGGTCAATCCTTATTCACTGCAACAGACAGAAAAACTCTAACAGTGTTTAAATTTGCAACAGGAGAAAAAGTCTCAGAATAATCAATCTAATAAGTCTGAGTGAACCCTTTTGCAACTAGCCTATCCTTGTGTCTATCAAGTAGACTCTAAGGGAAGCATATAGTTAGACTCTGTACTCACACTCTCCCCCTGAAGTAGGCTAACGGGAAAGAAAGGACGATCTTCAGTAAAAGGGACATCCATGGTAACTAAGTACTTATGTGAAGATTGATGGAAGCATTTATAGCCTTGTTGGAGTTGACTGCTGAGGAACCCAACAAACATGCAAGCTTAAGCTCGAGGAGTGAATTTAGTTTGGTTAGGGCCATGACTATGAACATAGGTTGTGCATTTGAAGACTTGAAGAGGACCATCAGGAATGAGTGAGGTGGAGGGATAAGATTCTTTGAGACAACTTAACGGTGTCTTGAGGTGAAGGACATGGGAAGGCATACAGTTGATGAGCCTAATTAACATAATAAGAATTAGGGTAAAGTAAATTATGCAACTACCTTTGGGCTTTGAACGTGACCTAAGCTCATTGTTTCTAACAAATATTAATGACTAATGAATTTTGTTTAAACGTATAAAATGGAAAATGTTCTCAAACGGGGGATCTTGTATATGCTACTTGAATTATGGAAATTTACTCACAAAAATCCTGGAAAACATGCTACTTGTTCTTAATTATTTTTTTGTTTTGTTTTGTTTTTCTGTTCTTATGGGTAGCAAAAATTTTATCTTCCAACTCTTATTTATGTGAGATTTAATTAGTTGCTTGATTTATGTAGCCCGTCCTTGCTGTTATGTATTTGGTTCAATACATGCCAACGATCGGCTACTGGCTCATGGATAAGGTATTATTTGGTTTCAAAATTGGGTATAAAATAGAGTTTGAAATTGTGATCGGGGCTCATGAATTGAATAATCTCTAGTCCCATCCTGAATGGTTGTGTATGTAAAATTGACTTGCAGATTGGTAGGAATCGTGTTGAAGCGGCTGCTAAGAAGGGGAACACGTACTCCCTGAGTTTGTTATTTGGGAAAAACAAGTCATCTTAAAGTATGACTTCACCGTAGTTCTAACATTTTCAAGAATAACTTTTCTTAAAGCTCAACAAAGGTTCAAATTCTGGTAGTAATATACATATATAGACAGATACTCATCTCCTACGCAATGCATGGCTGAAAAGCATGCAAAAGTGATGCACAACAAGTACGTTTTCTTTTGTTTTATTTTATATGTTAAAAGTAATTTAACGTATGCGACTTGGGACGGACTTCCATTGAGAAAACACTCATCTTTTGTCTTTTGGGTGGACTTCGGGGTGGAAATTGCAACAGATGGTCTAAATCTCTATTACTGTTTTGAAATATGTCTAAATTTTTAAAGGTTAAATCATTAAAAAAAAAAGATATCAATTTTGCCTTTTGTATTAAAGTACTTCTAAAGCT TCTGGTTTTTATTTCACACTGATTTGTATAATTTTCCTGTAATTTAACGAACAAATGCAAAAAGCCGAACCTCTTATTCCATTTGAAACGAAGCGAGAGAAGTGAAGAATGCTACTTCTCGTCATTTTCTTTCTCTCATTCTTTCTGTTCTTCAGATTCGCCACTGCTTATGGCGACTTCACTTTAATGTTCAAGAACCATGTCAAGCGAGAGGAAATTGAAGATAAGGTCATTTGGATTACTGGTGCTAGCCGAGGAATTGGGGAGGTTCTTGCAAAACAACTTGCTGCTTTGGGAGCTAAGCTTATTATTTCTGCACGGGATGAAGCTGGGTTAGAGAGAGTGAAGAGCGAGCTCTCTGGTAAATTTGCACCTAATGAAGTGAAAGTTTTACCCTTAGATTTGGCATCTGGGGAAAATAAGTTGAAAGAAGCGGTAGAGTTAGCAGAGTCATTTTTTCCCGGCTCTGGTGTGGATTATATGATCCATAATGCAGCTTTTGAGCGTCCCAAAACTACAGCTTTGGATGTATCTGAGGAAAGTCTGAAGACAACATTTGATGTCAATGTTATTGGGACCATTTCTCTCACACGGCTTCTAGCACCTTTTATGTTACAACGGGGACGAGGTCATTTTGTTGTTATGAGCAGTGCTGCAGGAAAGACACCTGCTCCAGGACAGGCTGTATATTCTGCATCAAAGCATGCTCTGAATGGTTATTTTCATTCTTTACGATCGGAGCTCTACCAGAAAGGAATTAGAGTGACCGTTGTTTGTCCTGGGCCAATTGAAACGTCAACTAGCTCAGGTGCAGAAGTCGTGGGGAAGAAAGGTGTATCTGAGAAGCGACTTTCATCAGAAAAATGTGCTCAGTTAACAATTATTGCTGCCACCCATAATCTAAAAGAAGTTTGGATATCATATCAGCCCGTCCTTGCTGTTATGTATTTGGTTCAATACATGCCAACGATCGGCTACTGGCTCATGGATAAGATTGGTAGGAATCGTGTTGAAGCGGCTGCTAAGAAGGGGAACACGTACTCCCTGAGTTTGTTATTTGGGAAAAACAAGTCATCTTAAAGTATGACTTCACCGTAGTTCTAACATTTTCAAGAATAACTTTTCTTAAAGCTCAACAAAGGTTCAAATTCTGGTAGTAATATACATATATAGACAGATACTCATCTCCTACGCAATGCATGGCTGAAAAGCATGCAAAAGTGATGCACAACAAGTACGTTTTCTTTTGTTTTATTTTATATGTTAAAAGTAATTTAACGTATGCGACTTGGGACGGACTTCCATTGAGAAAACACTCATCTTTTGTCTTTTGGGTGGACTTCGGGGTGGAAATTGCAACAGATGGTCTAAATCTCTATTACTGTTTTGAAATATGTCTAAATTTTTAAAGGTTAAATCATTAAAAAAAAAAGATATCAATTTTGCCTTTTGTATTAAAGTACTTCTAAAGCT ATGCTACTTCTCGTCATTTTCTTTCTCTCATTCTTTCTGTTCTTCAGATTCGCCACTGCTTATGGCGACTTCACTTTAATGTTCAAGAACCATGTCAAGCGAGAGGAAATTGAAGATAAGGTCATTTGGATTACTGGTGCTAGCCGAGGAATTGGGGAGGTTCTTGCAAAACAACTTGCTGCTTTGGGAGCTAAGCTTATTATTTCTGCACGGGATGAAGCTGGGTTAGAGAGAGTGAAGAGCGAGCTCTCTGGTAAATTTGCACCTAATGAAGTGAAAGTTTTACCCTTAGATTTGGCATCTGGGGAAAATAAGTTGAAAGAAGCGGTAGAGTTAGCAGAGTCATTTTTTCCCGGCTCTGGTGTGGATTATATGATCCATAATGCAGCTTTTGAGCGTCCCAAAACTACAGCTTTGGATGTATCTGAGGAAAGTCTGAAGACAACATTTGATGTCAATGTTATTGGGACCATTTCTCTCACACGGCTTCTAGCACCTTTTATGTTACAACGGGGACGAGGTCATTTTGTTGTTATGAGCAGTGCTGCAGGAAAGACACCTGCTCCAGGACAGGCTGTATATTCTGCATCAAAGCATGCTCTGAATGGTTATTTTCATTCTTTACGATCGGAGCTCTACCAGAAAGGAATTAGAGTGACCGTTGTTTGTCCTGGGCCAATTGAAACGTCAACTAGCTCAGGTGCAGAAGTCGTGGGGAAGAAAGGTGTATCTGAGAAGCGACTTTCATCAGAAAAATGTGCTCAGTTAACAATTATTGCTGCCACCCATAATCTAAAAGAAGTTTGGATATCATATCAGCCCGTCCTTGCTGTTATGTATTTGGTTCAATACATGCCAACGATCGGCTACTGGCTCATGGATAAGATTGGTAGGAATCGTGTTGAAGCGGCTGCTAAGAAGGGGAACACGTACTCCCTGAGTTTGTTATTTGGGAAAAACAAGTCATCTTAA MLLLVIFFLSFFLFFRFATAYGDFTLMFKNHVKREEIEDKVIWITGASRGIGEVLAKQLAALGAKLIISARDEAGLERVKSELSGKFAPNEVKVLPLDLASGENKLKEAVELAESFFPGSGVDYMIHNAAFERPKTTALDVSEESLKTTFDVNVIGTISLTRLLAPFMLQRGRGHFVVMSSAAGKTPAPGQAVYSASKHALNGYFHSLRSELYQKGIRVTVVCPGPIETSTSSGAEVVGKKGVSEKRLSSEKCAQLTIIAATHNLKEVWISYQPVLAVMYLVQYMPTIGYWLMDKIGRNRVEAAAKKGNTYSLSLLFGKNKSS*
BLAST of Cucsa.189430 vs. Swiss-Prot
Match: DHRS7_HUMAN (Dehydrogenase/reductase SDR family member 7 OS=Homo sapiens GN=DHRS7 PE=1 SV=1) HSP 1 Score: 197.6 bits (501), Expect = 2.1e-49 Identity = 115/314 (36.62%), Postives = 178/314 (56.69%), Query Frame = 1
BLAST of Cucsa.189430 vs. Swiss-Prot
Match: DHRS7_MOUSE (Dehydrogenase/reductase SDR family member 7 OS=Mus musculus GN=Dhrs7 PE=1 SV=2) HSP 1 Score: 175.6 bits (444), Expect = 8.6e-43 Identity = 112/314 (35.67%), Postives = 170/314 (54.14%), Query Frame = 1
BLAST of Cucsa.189430 vs. Swiss-Prot
Match: YQJQ_BACSU (Uncharacterized oxidoreductase YqjQ OS=Bacillus subtilis (strain 168) GN=yqjQ PE=3 SV=1) HSP 1 Score: 131.0 bits (328), Expect = 2.4e-29 Identity = 79/205 (38.54%), Postives = 125/205 (60.98%), Query Frame = 1
BLAST of Cucsa.189430 vs. Swiss-Prot
Match: DHRS7_DROME (Dehydrogenase/reductase SDR family protein 7-like OS=Drosophila melanogaster GN=CG7601 PE=2 SV=1) HSP 1 Score: 129.0 bits (323), Expect = 9.2e-29 Identity = 96/285 (33.68%), Postives = 141/285 (49.47%), Query Frame = 1
BLAST of Cucsa.189430 vs. Swiss-Prot
Match: DRS7B_XENLA (Dehydrogenase/reductase SDR family member 7B OS=Xenopus laevis GN=dhrs7b PE=2 SV=1) HSP 1 Score: 118.6 bits (296), Expect = 1.2e-25 Identity = 95/282 (33.69%), Postives = 140/282 (49.65%), Query Frame = 1
BLAST of Cucsa.189430 vs. TrEMBL
Match: A0A0A0LHE7_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G099440 PE=4 SV=1) HSP 1 Score: 630.6 bits (1625), Expect = 1.1e-177 Identity = 323/323 (100.00%), Postives = 323/323 (100.00%), Query Frame = 1
BLAST of Cucsa.189430 vs. TrEMBL
Match: M5VZ56_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa008500mg PE=4 SV=1) HSP 1 Score: 503.4 bits (1295), Expect = 2.0e-139 Identity = 258/328 (78.66%), Postives = 293/328 (89.33%), Query Frame = 1
BLAST of Cucsa.189430 vs. TrEMBL
Match: A0A0D2UEH8_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_010G140700 PE=4 SV=1) HSP 1 Score: 501.1 bits (1289), Expect = 9.9e-139 Identity = 251/328 (76.52%), Postives = 285/328 (86.89%), Query Frame = 1
BLAST of Cucsa.189430 vs. TrEMBL
Match: W9REV9_9ROSA (Dehydrogenase/reductase SDR family member 7 OS=Morus notabilis GN=L484_005583 PE=4 SV=1) HSP 1 Score: 498.8 bits (1283), Expect = 4.9e-138 Identity = 248/323 (76.78%), Postives = 283/323 (87.62%), Query Frame = 1
BLAST of Cucsa.189430 vs. TrEMBL
Match: A0A0D2R7V0_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_010G140700 PE=4 SV=1) HSP 1 Score: 496.5 bits (1277), Expect = 2.4e-137 Identity = 250/328 (76.22%), Postives = 285/328 (86.89%), Query Frame = 1
BLAST of Cucsa.189430 vs. TAIR10
Match: AT3G03330.1 (AT3G03330.1 NAD(P)-binding Rossmann-fold superfamily protein) HSP 1 Score: 454.1 bits (1167), Expect = 7.0e-128 Identity = 228/323 (70.59%), Postives = 265/323 (82.04%), Query Frame = 1
BLAST of Cucsa.189430 vs. TAIR10
Match: AT3G03350.2 (AT3G03350.2 NAD(P)-binding Rossmann-fold superfamily protein) HSP 1 Score: 153.3 bits (386), Expect = 2.6e-37 Identity = 75/117 (64.10%), Postives = 92/117 (78.63%), Query Frame = 1
BLAST of Cucsa.189430 vs. TAIR10
Match: AT3G47350.2 (AT3G47350.2 hydroxysteroid dehydrogenase 2) HSP 1 Score: 99.0 bits (245), Expect = 5.7e-21 Identity = 83/279 (29.75%), Postives = 140/279 (50.18%), Query Frame = 1
BLAST of Cucsa.189430 vs. TAIR10
Match: AT5G50600.1 (AT5G50600.1 hydroxysteroid dehydrogenase 1) HSP 1 Score: 94.7 bits (234), Expect = 1.1e-19 Identity = 73/234 (31.20%), Postives = 117/234 (50.00%), Query Frame = 1
BLAST of Cucsa.189430 vs. TAIR10
Match: AT5G50700.1 (AT5G50700.1 hydroxysteroid dehydrogenase 1) HSP 1 Score: 94.7 bits (234), Expect = 1.1e-19 Identity = 73/234 (31.20%), Postives = 117/234 (50.00%), Query Frame = 1
BLAST of Cucsa.189430 vs. NCBI nr
Match: gi|449442273|ref|XP_004138906.1| (PREDICTED: dehydrogenase/reductase SDR family member 7 [Cucumis sativus]) HSP 1 Score: 630.6 bits (1625), Expect = 1.6e-177 Identity = 323/323 (100.00%), Postives = 323/323 (100.00%), Query Frame = 1
BLAST of Cucsa.189430 vs. NCBI nr
Match: gi|659082223|ref|XP_008441728.1| (PREDICTED: dehydrogenase/reductase SDR family member 7 [Cucumis melo]) HSP 1 Score: 607.1 bits (1564), Expect = 1.8e-170 Identity = 311/327 (95.11%), Postives = 318/327 (97.25%), Query Frame = 1
BLAST of Cucsa.189430 vs. NCBI nr
Match: gi|470132650|ref|XP_004302191.1| (PREDICTED: dehydrogenase/reductase SDR family member 7 [Fragaria vesca subsp. vesca]) HSP 1 Score: 511.5 bits (1316), Expect = 1.1e-141 Identity = 259/323 (80.19%), Postives = 287/323 (88.85%), Query Frame = 1
BLAST of Cucsa.189430 vs. NCBI nr
Match: gi|595826181|ref|XP_007205530.1| (hypothetical protein PRUPE_ppa008500mg [Prunus persica]) HSP 1 Score: 503.4 bits (1295), Expect = 2.9e-139 Identity = 258/328 (78.66%), Postives = 293/328 (89.33%), Query Frame = 1
BLAST of Cucsa.189430 vs. NCBI nr
Match: gi|823236258|ref|XP_012450774.1| (PREDICTED: dehydrogenase/reductase SDR family member 7 isoform X5 [Gossypium raimondii]) HSP 1 Score: 501.1 bits (1289), Expect = 1.4e-138 Identity = 251/328 (76.52%), Postives = 285/328 (86.89%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of cucumber (Gy14)
Date Performed: 2017-01-17
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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