ClCG10G000080 (gene) Watermelon (Charleston Gray)
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.AAGCTTCCACGATTGCTTGGACAAAGGAGTGAAACTCAAAAGGCCGGGGACTAGAGAGACCCAGACACGGGTCTTTCTGGATCTATTGCGAATTGCAATATAACTTCTCCATTTCTGGAGGAAACGGAGAAGGATGGGGATGGGGATGGAGATGAATGAAATCTCAGGACCTTCCGTCACAGTTTTCAAGGCAGGCGGTGGACCGGCCACCAAATGGCGGATGTTGCACATAATAGTAGCCCTTGGAATTTGGCTCGGCGGCATTCATCTCAATTTTGCTCTAGGCTTCATCTCCCTCTTCTACCTCTCCCTGCCCAAAGCCCTTCTGTGAGTTTCCTTTTCCTTTTCCTTTTCCTTTTCCTTTTCTCTGTCTCTCTTTCTAATCTTTTTTTTTTTTTTCTTCAGGGTCTTCGCTTTACTTTTGATATTAGTGTTAATTCCTGTCGACGATAAAAGCAAATACGGTCGCGTATTGGCCAAGTATGTTCTGCACCCTTTTTCCTTTTCCATCGGTCTCCTTCTTCTTTCATCAATCCACTCTTCCTCCTTTCTGCTTACTATCTGCTGTTTGCTTTCAGATATATATGTCAAAATGCTTGCAGCTATTTTCCTGTTACTCTACATGTTGAGGATATACATGCCTTTGATCCCAATCGTGCTTATGGTTAGTGACTGCTGTTTTTATTTACTTGTTTATTTGTTTCTCCCCTTCTACAATTGTTCGGTTTCTCTCTCTCAACAATGTAGGAGAAATTGTTTTTTTAAAAAAGAAAACGCAGAAGAAATATGGGAAATGAAATGTTTGGTTATATGAAATTTCACAAGGGTTTAATGAGCAAATATACGTGACATCCTATTGGGTGCATTTTGGTTTTTAGGGCCTCTAAGATTACTGAATGAGGCTATGCTAGCTAAACAGTTGTGTCGGATTATTGTGGGTGAGCATGAACCAACACCCTTTGAGTGGGTTTTAAGTAGTGGAAGGGCTTGAGCAAAAAAATCTGAACTGCTAATGCTCTGGGTTTTCTAATTTTCAGTTCGTTAATTGTTCCATCAGGACGGGACTGATACTTGTTGTTTTAGAGGATTGTTGAGCGGGTGAGAAGCCCCTTTTTGTGTTGTACCACCTGTCGTGCAGTTGCACTCAGTGGCATCTGTTTTGTTTTCCTAGGATGTGTCTTCTTCGCTGTCAGCATCGTCTTACTGACCGAGAAACTTTGGAGGTAGTGGCTTTCTTTCCATCATTTCATATTATAGGTTCTATTTAGGGAGAAGAGATATTAGGGTCTGGACTCTACTTCCTTTTCACCGGTTCTCTTGTCGTTTGTACTTCCATAGGCTTTGTTCTCTTTCTCTTAATTAGGGAGCCTCAATTTTCTTCTCTTTGAAAGATTGAAATTCCTGATTCCTAAGAAAGTGAGTTTTTTGCTCGATAGATCTTGCATGAGAGAGCAAACACCCATGATTATATCCAGCGGCATTCCACTTTTGTGTGCAGCTGGAATGGTTTGTTCTTTGCAGACGTCATGAGAAGGATTGGGATCATCTCTTATGGGGTGTCAGTTTTCTCACTTCTCTTTGAAGTCATTACTTTAGTGTGTTTGGGGTGGCATGGGTGCGTCTGCTTGAGGGGGATTATATTTGATTTTGGAAATTATGATGAAATCTGATGTAGTCTAAAAGATGAATGGAGGGAAATCTCCAATAATAAAATCAAAGTCTTTATTATGAATCAAAGTTATCAAAACAAGAAACCATCCCTTTTTTTAGAGAATTGGAAACCAAACTCATCCTAATCCTGGGGAACAACAATACATATTGCCACGATAACTATGTAGTTCCTTTAGTCTACACCACGATAACTATTCGGTTAAATCTCTTGCCAAATATTTGAATTCATCTATGCCTATTGACTAGGAGATCTATCAAGGCATTTGGAAATCGAAGAGTCCTAAAAGAGTTGATGTTTTGATTTGGATTCTGCTATATGGGTCTTTAAACTGGTCGGCCACACTACAATACAAACTCCAGAATCATTGTTTACTCCCATCCATATGCCCTTTGTGTGCAGCAAATGAAGAAAACCTTCAACATTTATTGTTTGAGTGCTCATATGTAAGCAAGTGTTGGTGGAAGATATTCTCCATGTTTAACGTTTCATGGGTTTTTGGAAATCAATGGGAGAAAATTTGCAACAAATTCTAGTTGGCCCTCTTCTCTCGCCCAAAGCTCATATTATTTGGTCTAATGCGGTTAAAACATTAATTTAAAAAATTTGGTTTGAGCATAATCAGATAGTTTTTCATAACAAGTCTTTGGATTGGTCGGATCGTCTCAGTTCTACCCATCTCCTAGCTTCTTCATGGAGTTCCCAATCGAAGCTTTTTGCGGATTACTCAATTCAAGATATTTGTCTTAATTAGAATGCTTTTGTTTTTCCTATGTAATAATGTATTCTCTAGTCTTATTGTGGGAAATCTCATTTAAGGATGTGATAAGGGTGCTAAGGTGGTGTCAACCTAGTTGAGATGACCTGGTGCATCTACTGATCCTAAATTTATCAAATTTACTGTATCATTTGCTCTTATGTTTTTTTGTATTTTGAGCATTTGACTCTTTTCATTACATCAATGAAAGGTCATGTTTCTATTTTTAAAAAAATGATCTTGAAACCACTGAAATGGGTTAGTCTCTTCCAAATTTTCTCCTTAATTAATCTTAAGGAGTTTTGATGATTCGTGGACTTGGCCTTTGGGTCCTACAAAATCCTTCACAGTTTGATCATTGATGGAGGACTTAGACATGCTAAAGACTCATCTCCTCATAACCTTTATTTGGTAATTTGAAAGGATAGTTATTCATGTTTGATTTCTCTTTTGTTTTGTTGGTACGAGGAATTGTTTTATGTTCAATTCTTAACATTTCATGAAATAGATGTATTTTATTTTTCAATCATGTAGTCTTTGGTTATGAGCCACATTCAGTTTTACCTATCGGTGTTGTTGCGTTGGCCGACCTTACTGGTTTCATGCCTCTCAAAAAATTGAAAGTCCTTGCTAGTTCCGCTGTAAGACTTCTTCCTCTTTTTTATAGGCATTTACTAGTTTCCTCTGTAACTTCTAATCGTTTCATCATGTGGGGGGGTATTATACCAGGTGTTTTATACTCCATTTTTGAGGCACATATGGACATGGATGGGTCTAACGCCAGCAACAAAGAAAAATTTCATCTCCCTCTTGACAGCTGGCTATAGTTGCATCATTGTGCCTGGTGGAGTACAAGAGACATTTCATATGGAGCATAATTCGGAGGTCTTTATCCATCTATTCTTTACCTGTAAATTTTGACATGGATCCTGCTACCTTTATTTGATTTATTTACATTTTCCTCCATGTTACTAGAAGGTTAAGACTTGTGCACTTGCATACTGGAGCCAAGATAGATAAAACTCTAGTCCCTTCTTGTCCGTCCATTTTGAACTTAGCCAGAACATTTCAAGATTTTCTCACTTTTACTTCTACATTCTCCTATTTACTAGTATCAAAAGGTAGATATAACTGGTGGAGTTCGCTATTTGAGGCATTCTTTAGTTACTTTTCCTTTGTGATTAGTACCAGTTGAATTTCTTTTTATAATCTTTTATATATATATATTGCTTTAGAATGGTGTTGAGCACTGAATTAATAACATTTTACAAATTTTACAAGTTCTTACTATGGGATTTAATCTCAATTCATTATATCAATGAAATAGATTGTTTCCTTTTAAAAAAAAAAAATTTTACAAATCCTAAGTTGGTATGACTAAGTATTACTAAACATAATAGTTATATAAAAGTTTAAAGAAAAAAAAATACCCCATCAATTCCCACTTTAAAAGAAAAATCTACATCACTATTATTATTAATAAGATGGACTTATAAAAACTTTGTTCCATCAGTGTTTTGAAGTCATAGTAGTAGTAAGAGTAATAATAGTTCAAATTCTCATAACTCAAACTTTTATATTGTGTTCTTCTAATAATCACATGAGCCTGGAGATTTTAAACCTTGGTGCATTTTCACACTGATGTTACCTCTTCTATGAGAGGCGTAAGCTTCTTATGGTTGAAAGAAGGTATAAGTCTTGGGGCTAAAAGTTAGAGTCTTGTCTCAACGCACAAACCTTGATAGCTTTTAAAACATAGAATGGAATTGATGTTATCGTGCCTTTGGGTGGTTGTTGCCAAGCTAGATAGTTTGCTTATTAGGGCCTCATCAAGAGAAAATTGCTAGAGGTTCCTCAATCACTTGAAATATTTAGACATTTGAACATAGTAACTAGTGAGCAATGAAGACAATGAGCAAACTATGAGACAAGCTATGAGATGATTATCTTTTCTTTCTTTGTGAGTCTTCTCCAATGAAATATTTCTTATCTTTAGTAGTGGGTGGCAAATGCAAATGTTTTAAAAGGCTAAAGGTGACTTTGAGGCTTTTTCCTTAGGAAAAGCGAGACAAGGCGTAAGCTTCACTTTAAATAGATTAAAAATCATAAAAATATAGAATTTTTGTATGAATAATCTTCATTTGTAGCCTATGTATTCCCTATGAATAATCTTCTAAGAATCAATCTTGTGCATCTTTTATTGAAGTGATAATCATTGTTTCATACAAGAATGGAAGACTCCTATTTATAGAGTTTTATTACGAGTGGCCAATGGGGGTAAAAAGGGAATTAACCTAGAATATTACCTAATTAACCCCATTCTTCTTGCATTATTCTACCCCTCCAAAAAGAAAATTCATCCCCAAGTTTTAAAAAGAAAAAATAAAAAAAATCAAAGAATAAAATAATATCATTCAATGGCATAGGCCAAACCAACCTCCTACGTTTTAAACAAAACAAAACTATTCCGATTAAAGAAGTAAATCAGAGACAGAAATTCCAATATTTCTATCAAAAGATGAACTTCTCCATCGGCCAGAAACCCAAAAAAGGTGTTTCCATCAAGCTCATTCGAAACTGTAAGTCTATAATCATAGGACCAATCTCAAAAGAATTAGCTTTTGAAGAGGACCTTTCAAGAATCACATATTCATCATTTGCTTCAAGTTCTTTGACGTAGTGGTAATCGATTTCCAATGCAATTGGTGTATCGTTCTTGCTCAATTTTTTTTTTTTTTTATTTCCACCTTGATGTATAGAGTTTCGATGTTCAATACCTCTTTTTCATCTTCTTCGTTGGATTTCTCTTCTTCACTCAAGACTACTTCTGAATCAACATCTTCGAATTCTTTTTTTTCTTCTACTTCATTCACATGATTTTTGGCCAATCACCTTTGTTAACTACACAGGTCCCAACAAGATTTTCTCCAATTTTATCTTCAAGATTTTCGATTTGAAATTTTTCCAACCATGGTTCCTTTGTTTACTTTTCAGTATATGGAAACAATTTGTTGTTGAACTCTTGCAAATGAATTGATAATTGATCTATATTTTGGGACATTTTTCCCAATGAATATTGGAGTTATTTTGCTAATTTCTTTATATTCTCCAATGTTATATGATCAAAGTAGTCATTTTGTTGGGTTCTTGAGTATGTTTCCATCTCATAACAGGTATAGGACTGATTCTTTGATTTTGTTGAATAGGAATCAACCTTTCTTGTGTTTACTAACTAAAAGAGTGATTTCGAGCCTTGAACGTTTCTTGACTTGAATTTAAAAGGGTTTCTCGTAAATATATGTGGGTTGTTTGGCAATTAGCACTACACTCAAAACTCCTTCTTGTGACCAGCGTTGTGAAGAGTTTTCTAGTCTTTCACTGGTGGAGTCAACGTTGGCCCAGATGGTTGCTTTGATACCAAATTTATGTAGCCTAAGTATTCTTGAGAAATAATCTTCCAAGAATCAATCTTGTTCATCTTTTATTGAAGTGATAATCATTCTTTCATACAAGAAGGGGAGACTCCTATTTAAAGTGTTTTATTACAAGTGGGAGTAAAGAGGAATTAACCTAGAATATTACTCAATTACCCAATTAACCTCATTCTTCTTACATCATTTCATCATTTTGTTACTGAACCATTAATTTGAAGAGGCAAGCAAGGGATCATCATCAATAAGTGACTCTTTCAGTCACCACCAACTCTTCATGCATGCAAAGAACCTATAATGTCACTGCCTTCACCAATGGATCAATATTAATTGATTAAACTCCCATCGACGTTCCCCTACGAATCAGCATGAATGAGCTGCTAGGTATCCAGCACCTGCAAATAGCAAATACCCAACAAGATATCCTGGAAACAGGGTAAACAACTGTCCCTGTATTTATATATTCACAATATGATAGTCTCACAAGAGTTCATTCAAGATCAAGCAACAAGAAGAAATATAAAAGGAAATAACAAGATAACTTTCCAGCAAATTGGAGAGGGTTGGTTCTCTCCCACACAAAGGCTTAACCCCAAAACATCCACACCCTCCTCATCTAACAAAACCCTACTTAAACCCCTCTTCCCCTTTTTCATTGGTCCCCACTTTTGAAATAACTAACTTCACAGTCCACTCACATCCTGCCCGTGTGGAATATCTTTCTTACCTCTCCTCTTGTAAGTATGATGAATAGGAGGCCTTACAATACCCCAAGTTTCAAGATGCACCTTGTCCTCAAGGAGTAATTCAGGGAATTGGTGTTTAATGAAATAAGCTTCTTGCCATGTAGCTTCACTATCCAGCAACTTCTCCCATTTGATTAACCACTCTTCACGACATAACTCCGAATTCCCGCGAATGCCAAGAATATTCTCTGGGCACACTTGCAATTCAAACTCTTCAACTTCAGAACATTGAGGAGGATGTACCTGAACTTGTTGTGTGTCTCCAACTACTCTCTCCAAATGAGACGTGTGAAACACATTGTAAATTGAGGCTTCTGGAGGTAGCTAAATTCGATAAGCCACATTACCAATTTATTCCTGCAACACATAAGGCCCATAATACTTGGAGAAAGTTTCTCAGATCGTTTCTTGGCTAAAGATCACTGACGGTAGGGTCTTTGTTTCAAAAATATTGCATCCCCCACGTTGAACTCAACTTCTCTTCTTTTCATATAGCTGACGGTGGGATTTTCTTAATTCATTTAAGTGGAATATCTTTCATTTATTAGTTGGTCTAGTTGTGGCGTCAACGTCCTAAGTTTTTTGGTCTAATGAAATGAAAGAGTACAACTAGAGGGTTTTTCATAACTCTTCCTTAGGATGACATTGACCGTTTTGGTTCAGCTCATTTAAAGGCCTCTTCATGGAGTTCTCTTTCTAAAGACTTCGCAAGCTACTCTATTTAGGATATATGTCTCAACGGAATGCTTTTATGTTTCTCTTATAAACCCTTATGACTAGGTATTTTGATTTAATGTTCTTTTATCGTCATTTTTATGTTCTTCTTTTCTCTTTGGGTTCTTGTACTTTTGAGCATTGGTTTCTTTTTCCTTCTATCAATGAAAGGTATTTATTTCCTTATTAGGAAAAAAAAATCTTTTCATTATATCAATAAAAAGTATTTCCTTCCTTTCAATGAAAAAAACACTTGAAGAATATCTTTTGGAGCAATATTTACTGAAATAGTGTTATGGGAAAAAATGTCGAGGTGGCAGTGGCACTAAAATAAAGATCAAGTTTTCTAAAAAGGAACAGAAGAAAAGAAAAAGGAAGAAATCCAAATTTCTCTTTACCACCACAAAATTAGAGAACAAAAGAGAAGAGAAAGCCTGCGGCCACCAATCCAGGTCAGTTATTCTCTTGTTCAAACAACAATGAGGCTTACAACCTTCCATCAGAACCCTAAGCCTCCTTTTGTTTGGTTCAGGCATAAGCCTTGTGGCACCTCAAAGATGCCTCACCTCAAGGCTTATAGCTATACCTCAAACGATTTGAAAACATTCGGGGACAGGAAAAGGAAATGTAGTTAGTGTAACTTCTTGCTTTTCTACAAAGTTGGGTTTGTAAACATCTTTCTCATTCCTCAAGCCTGGTATGGTAGGATTGACAATTCTGAAATTCATTTGTAGACTGTCTTCCTCAAGACAAGACGAGGATTTGTTCGTATAGCGATGGAGATGGGTACACCTCTGGTCCCAGTTTTCTGCTTTGGTCAGGTATTTTTCTAATATGTTCGTAGGGTTTTATTTCTTGTGCTACATTATCATTCTGATTTTAGTTGTATTTTAGAATTTGATTTTGATCAGTTTCCTCCAAATCTATGTAGTCAAATGTTTATCAGTGGTGGAAACCTGGTGGTAACTTCTTCCTCCAATTTTCTAGAGCGATCAAGTTCACACCAATTGTCTTCTGGGGAGTTTTTGGGTATGTGTATATTTTCTTGGATAGTAGCATTGTTGTATCTTGATTCTTGCTTTTAAGAGAAACATTTATTGCTGTATCTTGATTCTTGCTTTTAGGAGAAACATTTATACTTTAAATATAAGTGTACTTAGTCATATGATATATCAATTGTGCACCAAACTTTTAGCTTCGAAGGCGAAGTTCAATGAAGAAAAAGACTTTTCTTCAATGTGTGCACAGCTCAATAAATCTTGCTCATCTCACTTCATAGGGTTACTCTCCTGCAATCAAGGATGCCTATTGTAGGCCTTTGTTGAACCTTGGAGGAGTTGCATAGACTGCATCTTGAGGCAAGTTGAGTTTGGGTGTCATTAGCAACCACGTAATTGCTCAACTGTTCATGTTATCATTGTTGGCACCTCACGGTCAATTTTGAATTATATATTTAGTTTTATTTGGAACTTGGACCAGGGAAAACTAACTTTGCACTGAAGTCTTTTGTTTGGTAAAAATGTTGTATACATGCAATTTATTTTGAGAAAGTTGTTTGAAGAGGAGGAACAATGATCCACGAAAAAGTTCTATAGAATGTTACAGCATTGGGTTAAAGTGTGTTGGTCCGTGTTTTTTGGTTATGTTCATAAGTTAATCTATCCAGTTCTGATTGCATCGTCAACTGGCTATCATTGAATATTATTGTTGTGTTTTCAGATCGCCCCTTCCTTATAGGCGGCGGATGCATGTGGTGGTGGGGAAACCCATTGAGGTGAAGAAAAATCCAAATCCAACAAGTGACGAGGTAGGTGTCTCAAAGGCCCATTTCATTCCATAGCATATATACTTAGAATGATTGGAATTCTTTACGAGTGTCTAAGCATACTTAATATTGACGACAAAGAATCTCTCTTTTTGGTTCCTCTATGACTCTCCAGCCGCCCAACTTGGTTTGGGAAGCTGAGTGCCTAGAAAGACAGGCAGGGGAACTCTGAGGGGTCAAAACTACTTTCTAGAATTTAACAATTATAAATAGGATTCGAACCTATAATTTTACCAAGTTCTATAGAATTATCTGCTTGAGGGATTGCTTACCAAGTCCTATATTCCATTATTCTTTTAACTATCATGGTGATATTTTATTGGCTTTGTAACTATTTCGTGGTTGGTTTGTCAGGTGCTTGATTTACACGGTCGGTTTGTTGAAGCACTCGAAAATATATTTGAAAGGTACAAAGGACAGCTTGGGTATGATAATCTGCAGCTGAAAGTTCTTTGATTAAGATTGAGAGAGATATTTATTAGGTCCAAGTCCATCCTGCCTGTGCTCATTTGTTGTATCCGATATGTGATCCGTAGCAATAAAAGGAGTGCCCATTTTTTTTACATGCATTTGGAATCCTTTTGGTAAATGCAGGGTCGAGCATAATAGAAAATCCCTCTGGGTATATATATATTAG AAGCTTCCACGATTGCTTGGACAAAGGAGTGAAACTCAAAAGGCCGGGGACTAGAGAGACCCAGACACGGGTCTTTCTGGATCTATTGCGAATTGCAATATAACTTCTCCATTTCTGGAGGAAACGGAGAAGGATGGGGATGGGGATGGAGATGAATGAAATCTCAGGACCTTCCGTCACAGTTTTCAAGGCAGGCGGTGGACCGGCCACCAAATGGCGGATGTTGCACATAATAGTAGCCCTTGGAATTTGGCTCGGCGGCATTCATCTCAATTTTGCTCTAGGCTTCATCTCCCTCTTCTACCTCTCCCTGCCCAAAGCCCTTCTGGTCTTCGCTTTACTTTTGATATTAGTGTTAATTCCTGTCGACGATAAAAGCAAATACGGTCGCGTATTGGCCAAATATATATGTCAAAATGCTTGCAGCTATTTTCCTGTTACTCTACATGTTGAGGATATACATGCCTTTGATCCCAATCGTGCTTATGTCTTTGGTTATGAGCCACATTCAGTTTTACCTATCGGTGTTGTTGCGTTGGCCGACCTTACTGGTTTCATGCCTCTCAAAAAATTGAAAGTCCTTGCTAGTTCCGCTGTGTTTTATACTCCATTTTTGAGGCACATATGGACATGGATGGGTCTAACGCCAGCAACAAAGAAAAATTTCATCTCCCTCTTGACAGCTGGCTATAGTTGCATCATTGTGCCTGGTGGAGTACAAGAGACATTTCATATGGAGCATAATTCGGAGTGGCACTAAAATAAAGATCAAGTTTTCTAAAAAGGAACAGAAGAAAAGAAAAAGGAAGAAATCCAAATTTCTCTTTACCACCACAAAATTAGAGAACAAAAGAGAAGAGAAAGCCTGCGGCCACCAATCCAGGCATAAGCCTTGTGGCACCTCAAAGATGCCTCACCTCAAGGCTTATAGCTATACCTCAAACGATTTGAAAACATTCGGGGACAGGAAAAGGAAATGTAGTTAGTGTAACTTCTTGCTTTTCTACAAAGTTGGGTTTGTAAACATCTTTCTCATTCCTCAAGCCTGGTATGGTAGGATTGACAATTCTGAAATTCATTTGTAGACTGTCTTCCTCAAGACAAGACGAGGATTTGTTCGTATAGCGATGGAGATGGGTACACCTCTGGTCCCAGTTTTCTGCTTTGGTCAGTCAAATGTTTATCAGTGGTGGAAACCTGGTGGTAACTTCTTCCTCCAATTTTCTAGAGCGATCAAGTTCACACCAATTGTCTTCTGGGGAGTTTTTGGATCGCCCCTTCCTTATAGGCGGCGGATGCATGTGGTGGTGGGGAAACCCATTGAGGTGAAGAAAAATCCAAATCCAACAAGTGACGAGGTGCTTGATTTACACGGTCGGTTTGTTGAAGCACTCGAAAATATATTTGAAAGGTACAAAGGACAGCTTGGGTATGATAATCTGCAGCTGAAAGTTCTTTGATTAAGATTGAGAGAGATATTTATTAGGTCCAAGTCCATCCTGCCTGTGCTCATTTGTTGTATCCGATATGTGATCCGTAGCAATAAAAGGAGTGCCCATTTTTTTTACATGCATTTGGAATCCTTTTGGTAAATGCAGGGTCGAGCATAATAGAAAATCCCTCTGGGTATATATATATTAG ATGGAGATGGGTACACCTCTGGTCCCAGTTTTCTGCTTTGGTCAGTCAAATGTTTATCAGTGGTGGAAACCTGGTGGTAACTTCTTCCTCCAATTTTCTAGAGCGATCAAGTTCACACCAATTGTCTTCTGGGGAGTTTTTGGATCGCCCCTTCCTTATAGGCGGCGGATGCATGTGGTGGTGGGGAAACCCATTGAGGTGAAGAAAAATCCAAATCCAACAAGTGACGAGGTGCTTGATTTACACGGTCGGTTTGTTGAAGCACTCGAAAATATATTTGAAAGGTACAAAGGACAGCTTGGGTATGATAATCTGCAGCTGAAAGTTCTTTGA MEMGTPLVPVFCFGQSNVYQWWKPGGNFFLQFSRAIKFTPIVFWGVFGSPLPYRRRMHVVVGKPIEVKKNPNPTSDEVLDLHGRFVEALENIFERYKGQLGYDNLQLKVL
BLAST of ClCG10G000080 vs. Swiss-Prot
Match: DGAT2_ARATH (Diacylglycerol O-acyltransferase 2 OS=Arabidopsis thaliana GN=DGAT2 PE=2 SV=1) HSP 1 Score: 158.3 bits (399), Expect = 4.8e-38 Identity = 71/110 (64.55%), Postives = 88/110 (80.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. Swiss-Prot
Match: MOGT1_BOVIN (2-acylglycerol O-acyltransferase 1 OS=Bos taurus GN=MOGAT1 PE=2 SV=1) HSP 1 Score: 66.6 bits (161), Expect = 1.9e-10 Identity = 38/109 (34.86%), Postives = 61/109 (55.96%), Query Frame = 1
BLAST of ClCG10G000080 vs. Swiss-Prot
Match: MOGT1_XENTR (2-acylglycerol O-acyltransferase 1 OS=Xenopus tropicalis GN=mogat1 PE=2 SV=1) HSP 1 Score: 66.2 bits (160), Expect = 2.5e-10 Identity = 38/111 (34.23%), Postives = 60/111 (54.05%), Query Frame = 1
BLAST of ClCG10G000080 vs. Swiss-Prot
Match: MOGT2_HUMAN (2-acylglycerol O-acyltransferase 2 OS=Homo sapiens GN=MOGAT2 PE=1 SV=2) HSP 1 Score: 65.9 bits (159), Expect = 3.2e-10 Identity = 40/105 (38.10%), Postives = 59/105 (56.19%), Query Frame = 1
BLAST of ClCG10G000080 vs. Swiss-Prot
Match: MOGT1_MOUSE (2-acylglycerol O-acyltransferase 1 OS=Mus musculus GN=Mogat1 PE=1 SV=2) HSP 1 Score: 65.5 bits (158), Expect = 4.2e-10 Identity = 37/108 (34.26%), Postives = 64/108 (59.26%), Query Frame = 1
BLAST of ClCG10G000080 vs. TrEMBL
Match: A0A0A0L0W7_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_3G00090 PE=4 SV=1) HSP 1 Score: 222.2 bits (565), Expect = 3.0e-55 Identity = 102/110 (92.73%), Postives = 108/110 (98.18%), Query Frame = 1
BLAST of ClCG10G000080 vs. TrEMBL
Match: A0A061DKN7_THECC (Diacylglycerol acyltransferase family isoform 2 OS=Theobroma cacao GN=TCM_000014 PE=4 SV=1) HSP 1 Score: 184.9 bits (468), Expect = 5.3e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. TrEMBL
Match: A0A061DF89_THECC (Diacylglycerol acyltransferase family isoform 1 OS=Theobroma cacao GN=TCM_000014 PE=4 SV=1) HSP 1 Score: 184.9 bits (468), Expect = 5.3e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. TrEMBL
Match: A0A061DEZ9_THECC (Diacylglycerol acyltransferase family isoform 3 OS=Theobroma cacao GN=TCM_000014 PE=4 SV=1) HSP 1 Score: 184.9 bits (468), Expect = 5.3e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. TrEMBL
Match: A0A067DL52_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g025152mg PE=4 SV=1) HSP 1 Score: 181.4 bits (459), Expect = 5.9e-43 Identity = 79/110 (71.82%), Postives = 97/110 (88.18%), Query Frame = 1
BLAST of ClCG10G000080 vs. TAIR10
Match: AT3G51520.1 (AT3G51520.1 diacylglycerol acyltransferase family) HSP 1 Score: 158.3 bits (399), Expect = 2.7e-39 Identity = 71/110 (64.55%), Postives = 88/110 (80.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. NCBI nr
Match: gi|659095173|ref|XP_008448438.1| (PREDICTED: diacylglycerol O-acyltransferase 2 [Cucumis melo]) HSP 1 Score: 227.3 bits (578), Expect = 1.3e-56 Identity = 105/110 (95.45%), Postives = 108/110 (98.18%), Query Frame = 1
BLAST of ClCG10G000080 vs. NCBI nr
Match: gi|778674541|ref|XP_004146185.2| (PREDICTED: diacylglycerol O-acyltransferase 2 [Cucumis sativus]) HSP 1 Score: 222.2 bits (565), Expect = 4.3e-55 Identity = 102/110 (92.73%), Postives = 108/110 (98.18%), Query Frame = 1
BLAST of ClCG10G000080 vs. NCBI nr
Match: gi|590701596|ref|XP_007046427.1| (Diacylglycerol acyltransferase family isoform 3 [Theobroma cacao]) HSP 1 Score: 184.9 bits (468), Expect = 7.7e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. NCBI nr
Match: gi|590701592|ref|XP_007046426.1| (Diacylglycerol acyltransferase family isoform 2 [Theobroma cacao]) HSP 1 Score: 184.9 bits (468), Expect = 7.7e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), Query Frame = 1
BLAST of ClCG10G000080 vs. NCBI nr
Match: gi|590701588|ref|XP_007046425.1| (Diacylglycerol acyltransferase family isoform 1 [Theobroma cacao]) HSP 1 Score: 184.9 bits (468), Expect = 7.7e-44 Identity = 80/110 (72.73%), Postives = 99/110 (90.00%), 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 watermelon (Charleston Gray)
Date Performed: 2016-09-28
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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