CmoCh03G009050 (gene) Cucurbita moschata (Rifu)
The following sequences are available for this feature:
Legend: exonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCAGTTTAAAGAAGATTTAGAAGGGTCTCTTTCTGTAGGCCCAGAAAAGAAGGGTGATGCAGGGATCCAAAATGAGACCAGGTAATTGAAGTTTATTTAAAACCTTCACAATTGTTTAACAGTTCCTACTGGAAAGAGAAGTCAATAATTTAACTGAAAGAAAAAATTCAGAGAGACTTGAAGGAATATGGATTGAAGCACCAAATCATAAACTACTAGTAGCACGTAACAGCCAACTAATGCAGAAAAAGTGAAGATTAAGGTTCCTCTTGTATTTTGGCCTCTAAAGGCCTTCTCACTTTGGAAAGAAGCTTCACCATGTACTTAAGCAACAATCTACATAAAGACCTTGCGCCAGTTGGATTATAAGTTAGAAGCTCAAAAACCAAACCATCATTATTAAGATTTAAGAAGCTATAAAGGTTTCATCATCAACTTCCACCACAATGAACAAGTTGAAAGGCTATCGAATTTTCTGACACGATGTGTTTAATAAAATGCAACTTTTCATTGATGAATGAAAATCATTGTGTACCACCACATACTGATTTCAAGGATCTAATAATACAAGAAGGAAAAAAAAACCTTGATACACCTAAGCCCAGCAACAGTTATTCCTTCCTCGGGATCCTCTCTAAGTTCTAAATGACCAGATGATTTTTCAAGCAAATCGTAGATTATCTGAAAAAAGTTTTAAAAGATGAAATTAATGTTTCTGTAAAACGAAAGATAATCCACATGTACAATTGCCAAAGAAAAAGCAAGGTGAGCATACTTCATTATAGACTTCAAGATATGAGCAAGTAACTTCAAACTCATCGGCCCGCTTGTCCTGTTTTATAAGATCGAATACAGTATGCAAACTGAGCACCATGAGTCCAGGATCATCTTTGGTCCCAACCATTGTGTACGTTTTACCGCTAATATTTGTAAAGGAAATTTGAGCATGATTAGTGTAGATTTGGGTACAGAGAACAAAAGGAAAAGTTCAGTGCTTTCCAGTTCTACATTGTGTGGTTCCCATTTATACTATACAGAATAAAAATTGCCCAACGCTCATGAATTTAGTTGCATGGTTTAAACAGCACGCAAGGTGCAACTCCTCTAAAGCAAAGATGGAGATAACTTGAGAGCAAGAAAACACCTCTTTAATACCTTCCAGTTGAACCATAGGCAAAAACAGTCACGTTCAGACCTTGAACAACTTCAGGAATTATGGAAGATATACTTTTTGTGTAGACTTCCTGAAAACACGGGGATTAGAAAATAATTAGAAACATGCTAAAAACATCAGCCCATCAGTATTTGAAGTTCATTCTTGCAAGGTGATGAGAAGCAAAGTGATACTACATCATAATACCGTAGCAAGTCAATAATGAGGGTTGTCAGAAACAAAGAAATACCTGCATAAACATTTTAAACTAGTAAAAAAAAACCTTACAACAAGACACCTTGCCTTCAATATAATACACTCGCTGATAATGGAATCTTTCACATTTTTTCTGTTCATAAAATGTAGATCATATGGAAACTCTGGGAACGGAAAGAATTTAGAGGAAGTAAAAATAAACGATTTGTCTGGCCCCAAAGTGCCCAGAATGATGAACGATTATGGCCTATTTTGAGCACTATGGAGAAATTGTCCAATTTAATTCAATTTGGTAATCACCTCACAGCCATCAATCCAATTGTCAAGTTCCGGCAATGCGCTATCTCAATTACTCGACATGTAATCGGACACACAAAACGAAATTGGAGATAAGTTATACGCACCAGATTAGTACTATCTGGACCGAATGCATGGTCGAAACAATATTTCTTTTCCTTCGTTCGATTCCGAATGCGGTCGAGGTAATCCTTGGACAGGTCAGGATCCAGTATAAGCACCTCCTATAATTTTCAGCATGCCAAATTTCAGCAATAATTTGGTTCACAAAAATGACAATAAAAGAAAATTTTCAAACCGCAATTAGTTGAGGTAACCTTGCTTTCAATAACTTGGACAATATCACGGCCACGCTCTTTGTCTTAGAGGACGGCATTTCACTGCAACCTGAGGAACAGAACGCGACAAGAATGGCATGAAGCAAACAACGCAGTAGGACGTGGCTGTTGGCAAAGGCAAATGACGAACGGTTAGAGTAGTGGATTTGTTAAGAATGAGATAGAAAATAGAATTGGGAAGATGTGTATTATCATTGATATTGATATCCTTTAAATAAGATACAAGCCAGTACAAATGAGGAAAATATAAAATAATTAAATACTAAATAAAATAAAATATACTATAAATCTAATCATAAATGAAAGAATATTAAGATATAATATCTAAGATATATTCCATAAATAATATATCTCAACACTCCCCCTCAAGTTGGAGAGTGTATGTTAATCACGTCCAACTTGTCTTTAACTTGTCTTTACGGTAGGTCAATAACACCCAAGTTGTCTTTCACTCTTGTCTTCCCAGTAATGAAAATATCTGTCAAAAAATAGACCGCCTTTGATTGGTTTGCATTTTTAGACTTTCAAGAAATTATTGAATTTTCAAGAAAGATGCAAGACTCAGAAATAGACCGCAATGATTGACTCGAGGATTGGTAACTTGTCCCATTTAATTTGATTTGGAACAAGTGAATATCCTCCCTGATCACTTTTCGGTCCATGCATAAATGCTTTAGAAATAGACCGCAATGATTGACTCGAGGATTGATAACTTGTCCATTTAATTTGATTTGGAACAAGTGAATATCCTCCCTGATCACTTGTTGGTCCATGCATAAATGCTTTAGTGGATAATGACACCAAGATCGATGCTTTGGATCACTTGAGAGGCTGTGAAAGAAATACGAACATCTTGAATATGTCACCTTAGAGCTTGGTGAGAAATTTGAAGATGCTTATAACGTATTCTTGATATTGGATGATTGACGATGGTAAAGACTTCACTGATTGGTTAGGGTTTGGCTTTAGGTTTAATACTCCCCTTGGACTCAGAGTCCAAGGGGTATTAGGAATACCACGATCGGTGCTTTGATATTAGGAATATCAAGATCGGTGCTCTGATACCATGTTAAGAATAAGATAGAAAATATAATTGGGAAGGTCTGTATTATCATTGATATTGATATCCTTTAAATAGGATACAAGCTAGTACAAATAAGGAAAATATAAAATAATTAAATACTGAGAATAAAATAAAATATACTATAAATCTAATCATAAATGGAAGAATATTAAGATATAATATCTAAGATATATTCTATAAATAATATATCTCAACAATTATGTTACTCAAAGTCTATGCGTTTATAGCAATTGGCATAACCGTAGATCAGTTAAGTTTACTTGTCACTCCTCTCAGTTAGTGTTTGACATTTTTTTTTTTTTGCCTCATGCAACATAAGCGTACTGCCCGACATAATTGAATAATAATCACATAAATAGATCACATGCAGTTTTGGAGATTAGTGTGAAAAGAAAGGGAAGAAACAAATATCCAAATCAGGTCTTGCATGGGAAACTTGCACTTGTAGATCTTGCTGGTAGTGAACGCGCTACTGAGACAAATAATGCTGGCCAAAAATTGCGAGATGGAGCTAACATTAATCGTTCACTTCTTGCTTTAGCAAACTGCATAAATGCGTTGGGAAAACAACAGAAAAAAGGTCTTGCTTATGTCCCTTACCGTAACAGGTATTTTTGTCAGTTTCTTTATACCGTCAAACTTCTTATCTGAAAAAAACTGAAGTCTGAAACTTCATTTCTGGTCATTATAGCTGTTTTTCATAGTTTACTTATGATTTATTTTTGCAGTAAATTGACACGAATTTTGAAAGATGGTTTAAGTGGTAATTCTCAGACTGTGATGATTGCTACGATATCACCTGCAGATATTCAGTATCATCACACTGTGAATACATTGAAATATGCTGACCGAGCAAAGGAAATTAAGACACACGTACAGGTCAGATTTTCAGTGCTCATATGTCACATTCGAACTTGTATTCTTGGGTGTGGGGGCAGGTTAAGTTTATTTGTGAACAAAACTTATATTCTCTCACAATCTATATTAGTGCTCTTTCTTTTCTTTTTCATGCAGCACGACAGTTTACTCTTCATCGTTTTCAATTCCAACCATATGATTTTATTTTTTCATGATGTGATTTGCAAGGTCATGTTTTTAAATATCCGTTGCATGACTTTAATGTGATCTCAAAATCTTCTGTTTTCCAGAAAAACGTTGGAGTAGTAGACACCCATGTATCAGACTACCAACGGATGATTGATAGTCTTCAGGTGCTATGTTAATTAAATTAATTATTTAAAGATTGTTGACCCTTGTATTGATCTTTAATTATTTGATTTCTTCAGACTGAGGTTTGTCAACTGAAAAAGAAACTGGCTGAAAAGGAGTCCCAGCTCAGTAGTAAACCTGCTGAACAGGCTGCAGATGATGAGCTGTCTTGGTTGAATATCACAAGTCATGAAATAAGTGAGAACGTTCAGGAAAGAATAAACTTACAGAAAGCTATGTCTGAGCTTGAGGAAACCAACCTTAATAATCGCTCAGAACTCCAACGACTTGATGACATTATTTCAAGACATCAGGTCCATCTTTATTTTTCGACTTTTTCTTCTGTTTTCTCTATTGATTTTGAATATTAGGATAGAAAAAGCATGATTTAGTGTTTTGTGACTGTCGCTTATTTCACTCTCACAGGCTGTTGAATTGGATGGAGCAATCGTAAAGGATTTGATTGCCCGACGTCTAGTAATTTTAGATAACATTCGTGAAAATGATGAAGCAGGAATCAATTATCAGAAGGTATAGGCCTATGCTTAAGTCTCCTTTAGTGTCCATATGAATTCCATATCACTCGTAATACAAATTCTACTCCTTTAGGAAATTAAAGCCAATGAAAAGCAGCGGGGTCAACTTCAAGGCATGATTGATGAAGCCGTTAGTAGAAATGGGAATAAAACCTACTTGCGGATACTTAGTCAGTATAGACTGCTGGTTAGTTTATTCTGGATTGATTTGCTGGTGTGAATGTTTGATTAATCCACCACACCTAAATGGTGTGAAAGTTATCTTATTTATAATCAAATAAATTACAAGGATATGGAAATAGTAATAAATGGAAATAACAATAAATGGAAAGATACTATAGTAATAAGGCAAATGTTAGATATTTGCCTTATAATAAAATATCAAATATAATATATATGGTAAACTATAATTTATTACTAAATATCCTTAACACCCCACCGCAAGCTAAGCGTCGGATTTAAACGAACGTGAAGCTTGAATCTGAAAAATTCAAAGAGGTTGAGAAACACTTTTCGCAAAAATGTTAACAACCTGGTTCAAAGGAGGCGTAGAGAAACACTTTCTTGGCCATCGAAAACTGCAGAGAGATCGCCGCTCAGCAGCGATGCTGCCTTGGCTTCGGTGAGAATATGTCTAACCCATGAAGAGGGATTGTCGTTTAGCGACGATGTTGACTTGGCTCTGGTGAGAATATGTCTAACCCCAAGAAGTAGAAGGGGAAACCTAGAGCAAGGGACAAAGACAATGTTGAAGCCGGAAGAGTCGCCACATTGGGCGAATGAGCCAATTTTGGCGAGAAGGGCAGCTGGAAGAGTCGCCACATTGGGGCGAAGGAGCCAATTTTGGCGAGAAGGGCAGTGGCAACTTGGTTGGCGAAGATGCCAGGGCGCCGCGAAGATTCCAAAGGTAAATCTCTGCAGAAGGTCGATGGGCTTATTGAGATTCTGTATATTTTCGAAGAGGGATGCTGATGAAGATCCTAAGATTAGGGTTTTTGTGAAGGATGAATGATGAAGGGAAAAATTGGGAAGAAAATGAAAGAGGCTATGTTTGGAAAAGGTGAGGTTGTATGTACAGAGTATGGCGAAGGATGATTTGGAGGTCAAAAAGGTGGAGCCGAAGAATAATCAATCGACTCTGCATGTGACAGCCATGACGACTGCCCCTGCGGCATCAAAGACAACAGTGGTGGTGGAGAAGAACAGTAGAAGATTTCAAAAGCCATTGAAAAGAAAGGATCTAGGTTGCTAAACCAAAATGGCTCTGATACCATGTGAATGTTTGCTTAATCCACCACACCTAAATGGTGTGAAAGTTATCTTATTTATAATCAAATAAATTACAAGGATATGGAAATAGTAATAAATGGAAATAACAATAAATGGAAAGATACCTATAGTAATAAGGCAAATGTTAGATATTTGCCTTATAATAAAATATCAAATATAATATATATGGTAAACTATAATTTATTACTAAATATCCTTAACACCCCACCGCAAGCTAAGCGTCGGATTTAAACGAACGTGAAGCTTGAATCTGAAAAATTCAAAGAGGTTGAGAAACACTTTTCGTGAAGATGTTAACAACCTGGTTCAGAGGAGGCGTAGAGAAACACTTTCTTGGCCATCGAAAACTGCAGAGAGATCGCCGCTCAGCGGCGATGCTGCCTTGGCTTCGGTGAGAATATGTCTAACCCATGAAGAGGGATTGTCGCTTAGCGACGATGTTGACTTGGCTCTGGTGAGAATATGTCTAACCCCAAGAAGTAGAAGGGGAAACCTAGAGCAAGGGACAAAGACAATGTTGAAGCCGGAAGAGTCGCCACATTGGGCGAATGAGCCAATTTTGGCGAGAAGGGCAGCTGGAAGAGTCGCCACATTGGGGCGAAGGAGCCAATTTTGGCGAGAAGGGCAGTGGCAACTTGGTTGGCGAAGATGCCAGTGCGGCGCCCAGATTCCAAAGGTAAATCTCTGCAGAAGGTCGATGGGCTTATTGAGATTCTGTATATTTTCGAAGAGGAATGCTGATGAAGATCCTAAGATTAGGGTTTTTGTGAAGGATGAAGGAAAAATTGGGAAGAAAATGAAAGAGGCTATGTTTGGAAAAGGTGAGGTTGTATGTACAGAGTATGGCGAAGGATGATTTGGAGGTCAAAAAGGTGGAGCCAAAGAATAATCAATCGACTCTGCATGTGACAGCCATGACGACTGCCCCTGCGGCATCAAAGACAACAGTGGTGGTGGAGAAGAACAGTAGAAGATTTCAAAAGCCATTGAAAAGAAAGAATCTAGGTTGCTAAACCAAAATGGCTCTGATACCATGTGAATGTTTGATTAATCCACCACACCTAAATGGTGTGAAAGTTATCTTATTTATAATCAAATAAATTACAAGGATATGGAAATAGTAATAAATGGAAATAACAATAAATGGAAAGATACTATAGTAATAAGGCAAATGTTAGATATTTGCCTTATAATAAAATATCAAATATAATATATATGGTAAACTATAATTTATTACTAAATATCCTTAACAGCTGGACCATATATAATGCAAATGATCTTATGACTTGGCACTGCTACAGTTGCATGCAGTCACTTATATAAATATTGGGGGCGGGGAGGGGGAAGAAATTGAACAGGAGTTCTGGTAATATCTGTGAAGAAAAGAAGAAATCTGATGAACTTCATAATATAGATGGTCTATGTTTTTATGGTTCTGTGATTTTCTACAGAACCTAACGTTTTGAGAAATCTTTTAGGGAATGGCTAACTCTGAGCTTCAGTTAGAGATTGCAATGAGAGATCAAGTCATTCACCATCAACGAGAAGGTCTGAAAAACTTATGGAACCTGCTTATGGGACAGGGACTTGACGAGAAACAGATATCGCACCTTGCAGTCGAGCAGGGTCTGAGAATTGAAGGCTGGACAATGACTCCTTCTCTGGCGCTTGTTGAAAAGCAGTCGTCTAGTCTCACTTCGAGTAGACCTACATCTGTTGGCCCATCTTCTGGAATAGAGTACTTGTATGCTGGATATTCACGTTTCTCTTAGCATGATGTTTGTCAAGATCATCATTTATATCGCATTTATCATGTTTCTCTTTTGCAGGGAGGGAACCAAAACTTGTGACTTCACCATCAGCATATTCAAGGGTTAAGAGTGTTGATGGGAAGCCAAACATGTGTTTTGGTTCCCCTGAGAAGCGAGATCCTTACAAGTCGTTTTTGGATATGTCAAGTCATGCTTCTCATGGTGGGAGCTGCATATCAACATCATCTGTCGTTAGCGATTTAGCGAGCGGCAGAAGGTAAGTTTGAGTCCTGTTATATAGGCAATTATCATACTAATATTTCAAAACTCATCTTAAATAGATAGCTTGTTTTGGATCGTTCTTCTCAAGAGATCAGTTTGAATTAGTCTTCTTACTCATTGAGAGCCTATCTGACGAGCTTACCGCAAGTTCTTTTCTTCGGGTGGCTCCAGACTTGTGTACAAGCACATTCATTCTGAGATGCATAGTATCTTCGAACAATGCAATTAGTTCTCTGACAGGATTACTGAGGTCACATCTTTTACTAAGAAATTATAGTGGAGGAGGGGATATAGCAACATCTATTACTAGAAATTTACTAAGCAACACAAGAAAAGGACACACAAGCCCATTCACATGGCTTTATTTAACATAGACTGTGCTAATGAAAACAAGCACTTGGATCTCGCATGCTTTGCCCATTTTCTGCTAGTGGGTAAGGGCCCTTTGGTTTTGATCTATTGACCCTGATCACAGAGGCTAGACCTCTGTTTTGTCGGACCAAGATTTCCGATGACACTACACTTATTTTTTATTTTTTATGAAGTCACTTGTTATTGGCTCTTTAGATTCTTTTTCCTCTTCCATTAGTCAATAGGAGGGGGAGAGTGGTTTGGGGCAACATAGCTAACAACCAGATGTAACACTGGTGCTAGTTTGCCTGTATATGTATATACTATTTTGATGCAAATACCATTTGTGGATGGCGAGACATTTTATGAATCGTAAAGTAAGTTGTTAAATTTTTATTTTATCAGCTCAAGGGGGCATCAAAGGTTGTGA ATGCAGTTTAAAGAAGATTTAGAAGGGTCTCTTTCTGTAGGCCCAGAAAAGAAGGGTGATGCAGGGATCCAAAATGAGACCAGATCACATGCAGTTTTGGAGATTAGTGTGAAAAGAAAGGGAAGAAACAAATATCCAAATCAGGTCTTGCATGGGAAACTTGCACTTGTAGATCTTGCTGGTAGTGAACGCGCTACTGAGACAAATAATGCTGGCCAAAAATTGCGAGATGGAGCTAACATTAATCGTTCACTTCTTGCTTTAGCAAACTGCATAAATGCGTTGGGAAAACAACAGAAAAAAGGTCTTGCTTATGTCCCTTACCGTAACAGTAAATTGACACGAATTTTGAAAGATGGTTTAAGTGGTAATTCTCAGACTGTGATGATTGCTACGATATCACCTGCAGATATTCAGTATCATCACACTGTGAATACATTGAAATATGCTGACCGAGCAAAGGAAATTAAGACACACGTACAGCACGACAGTTTACTCTTCATCGTTTTCAATTCCAACCATATGATTTTATTTTTTCATGATGTGATTTGCAAGAAAAACGTTGGAGTAGTAGACACCCATGTATCAGACTACCAACGGATGATTGATAGTCTTCAGACTGAGGTTTGTCAACTGAAAAAGAAACTGGCTGAAAAGGAGTCCCAGCTCAGTAGTAAACCTGCTGAACAGGCTGCAGATGATGAGCTGTCTTGGTTGAATATCACAAGTCATGAAATAAGTGAGAACGTTCAGGAAAGAATAAACTTACAGAAAGCTATGTCTGAGCTTGAGGAAACCAACCTTAATAATCGCTCAGAACTCCAACGACTTGATGACATTATTTCAAGACATCAGGCTGTTGAATTGGATGGAGCAATCGTAAAGGATTTGATTGCCCGACGTCTAGTAATTTTAGATAACATTCGTGAAAATGATGAAGCAGGAATCAATTATCAGAAGGAAATTAAAGCCAATGAAAAGCAGCGGGGTCAACTTCAAGGCATGATTGATGAAGCCGGAATGGCTAACTCTGAGCTTCAGTTAGAGATTGCAATGAGAGATCAAGTCATTCACCATCAACGAGAAGGTCTGAAAAACTTATGGAACCTGCTTATGGGACAGGGACTTGACGAGAAACAGATATCGCACCTTGCAGTCGAGCAGGGTCTGAGAATTGAAGGCTGGACAATGACTCCTTCTCTGGCGCTTGTTGAAAAGCAGTCGTCTAGTCTCACTTCGAGTAGACCTACATCTGTTGGCCCATCTTCTGGAATAGAGTACTTGTATGCTGGATATTCACGGAGGGAACCAAAACTTGTGACTTCACCATCAGCATATTCAAGGGTTAAGAGTGTTGATGGGAAGCCAAACATGTGTTTTGGTTCCCCTGAGAAGCGAGATCCTTACAAGTCGTTTTTGGATATGTCAAGTCATGCTTCTCATGGTGGGAGCTGCATATCAACATCATCTGTCGTTAGCGATTTAGCGAGCGGCAGAAGCTCAAGGGGGCATCAAAGGTTGTGA ATGCAGTTTAAAGAAGATTTAGAAGGGTCTCTTTCTGTAGGCCCAGAAAAGAAGGGTGATGCAGGGATCCAAAATGAGACCAGATCACATGCAGTTTTGGAGATTAGTGTGAAAAGAAAGGGAAGAAACAAATATCCAAATCAGGTCTTGCATGGGAAACTTGCACTTGTAGATCTTGCTGGTAGTGAACGCGCTACTGAGACAAATAATGCTGGCCAAAAATTGCGAGATGGAGCTAACATTAATCGTTCACTTCTTGCTTTAGCAAACTGCATAAATGCGTTGGGAAAACAACAGAAAAAAGGTCTTGCTTATGTCCCTTACCGTAACAGTAAATTGACACGAATTTTGAAAGATGGTTTAAGTGGTAATTCTCAGACTGTGATGATTGCTACGATATCACCTGCAGATATTCAGTATCATCACACTGTGAATACATTGAAATATGCTGACCGAGCAAAGGAAATTAAGACACACGTACAGCACGACAGTTTACTCTTCATCGTTTTCAATTCCAACCATATGATTTTATTTTTTCATGATGTGATTTGCAAGAAAAACGTTGGAGTAGTAGACACCCATGTATCAGACTACCAACGGATGATTGATAGTCTTCAGACTGAGGTTTGTCAACTGAAAAAGAAACTGGCTGAAAAGGAGTCCCAGCTCAGTAGTAAACCTGCTGAACAGGCTGCAGATGATGAGCTGTCTTGGTTGAATATCACAAGTCATGAAATAAGTGAGAACGTTCAGGAAAGAATAAACTTACAGAAAGCTATGTCTGAGCTTGAGGAAACCAACCTTAATAATCGCTCAGAACTCCAACGACTTGATGACATTATTTCAAGACATCAGGCTGTTGAATTGGATGGAGCAATCGTAAAGGATTTGATTGCCCGACGTCTAGTAATTTTAGATAACATTCGTGAAAATGATGAAGCAGGAATCAATTATCAGAAGGAAATTAAAGCCAATGAAAAGCAGCGGGGTCAACTTCAAGGCATGATTGATGAAGCCGGAATGGCTAACTCTGAGCTTCAGTTAGAGATTGCAATGAGAGATCAAGTCATTCACCATCAACGAGAAGGTCTGAAAAACTTATGGAACCTGCTTATGGGACAGGGACTTGACGAGAAACAGATATCGCACCTTGCAGTCGAGCAGGGTCTGAGAATTGAAGGCTGGACAATGACTCCTTCTCTGGCGCTTGTTGAAAAGCAGTCGTCTAGTCTCACTTCGAGTAGACCTACATCTGTTGGCCCATCTTCTGGAATAGAGTACTTGTATGCTGGATATTCACGGAGGGAACCAAAACTTGTGACTTCACCATCAGCATATTCAAGGGTTAAGAGTGTTGATGGGAAGCCAAACATGTGTTTTGGTTCCCCTGAGAAGCGAGATCCTTACAAGTCGTTTTTGGATATGTCAAGTCATGCTTCTCATGGTGGGAGCTGCATATCAACATCATCTGTCGTTAGCGATTTAGCGAGCGGCAGAAGCTCAAGGGGGCATCAAAGGTTGTGA
BLAST of CmoCh03G009050 vs. Swiss-Prot
Match: KIF19_XENLA (Kinesin-like protein KIF19 OS=Xenopus laevis GN=kif19 PE=2 SV=1) HSP 1 Score: 156.0 bits (393), Expect = 1.1e-36 Identity = 102/268 (38.06%), Postives = 159/268 (59.33%), Query Frame = 1
BLAST of CmoCh03G009050 vs. Swiss-Prot
Match: KI18B_HUMAN (Kinesin-like protein KIF18B OS=Homo sapiens GN=KIF18B PE=1 SV=3) HSP 1 Score: 155.2 bits (391), Expect = 1.9e-36 Identity = 91/191 (47.64%), Postives = 118/191 (61.78%), Query Frame = 1
BLAST of CmoCh03G009050 vs. Swiss-Prot
Match: KI18B_CHICK (Kinesin-like protein KIF18B OS=Gallus gallus GN=KIF18B PE=2 SV=1) HSP 1 Score: 154.5 bits (389), Expect = 3.2e-36 Identity = 91/195 (46.67%), Postives = 122/195 (62.56%), Query Frame = 1
BLAST of CmoCh03G009050 vs. Swiss-Prot
Match: KIF19_HUMAN (Kinesin-like protein KIF19 OS=Homo sapiens GN=KIF19 PE=2 SV=2) HSP 1 Score: 152.1 bits (383), Expect = 1.6e-35 Identity = 99/271 (36.53%), Postives = 153/271 (56.46%), Query Frame = 1
BLAST of CmoCh03G009050 vs. Swiss-Prot
Match: KI18B_RAT (Kinesin-like protein KIF18B OS=Rattus norvegicus GN=Kif18b PE=2 SV=1) HSP 1 Score: 151.4 bits (381), Expect = 2.7e-35 Identity = 95/218 (43.58%), Postives = 129/218 (59.17%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TrEMBL
Match: A0A0A0KIN3_CUCSA (Kinesin-like protein OS=Cucumis sativus GN=Csa_6G497150 PE=3 SV=1) HSP 1 Score: 698.7 bits (1802), Expect = 5.1e-198 Identity = 381/494 (77.13%), Postives = 414/494 (83.81%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TrEMBL
Match: A0A061DHD6_THECC (Kinesin-like protein OS=Theobroma cacao GN=TCM_000898 PE=3 SV=1) HSP 1 Score: 527.3 bits (1357), Expect = 2.0e-146 Identity = 287/407 (70.52%), Postives = 325/407 (79.85%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TrEMBL
Match: F6GYY6_VITVI (Kinesin-like protein OS=Vitis vinifera GN=VIT_07s0205g00140 PE=3 SV=1) HSP 1 Score: 524.2 bits (1349), Expect = 1.7e-145 Identity = 293/423 (69.27%), Postives = 325/423 (76.83%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TrEMBL
Match: A0A067K7Q4_JATCU (Kinesin-like protein OS=Jatropha curcas GN=JCGZ_12608 PE=3 SV=1) HSP 1 Score: 519.2 bits (1336), Expect = 5.5e-144 Identity = 279/406 (68.72%), Postives = 321/406 (79.06%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TrEMBL
Match: M5W4Z4_PRUPE (Kinesin-like protein (Fragment) OS=Prunus persica GN=PRUPE_ppa020304mg PE=3 SV=1) HSP 1 Score: 516.5 bits (1329), Expect = 3.6e-143 Identity = 296/495 (59.80%), Postives = 346/495 (69.90%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TAIR10
Match: AT3G49650.1 (AT3G49650.1 P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 465.3 bits (1196), Expect = 4.8e-131 Identity = 265/420 (63.10%), Postives = 314/420 (74.76%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TAIR10
Match: AT1G18550.1 (AT1G18550.1 ATP binding microtubule motor family protein) HSP 1 Score: 131.3 bits (329), Expect = 1.6e-30 Identity = 90/229 (39.30%), Postives = 135/229 (58.95%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TAIR10
Match: AT3G50240.1 (AT3G50240.1 ATP binding microtubule motor family protein) HSP 1 Score: 129.4 bits (324), Expect = 6.2e-30 Identity = 80/171 (46.78%), Postives = 110/171 (64.33%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TAIR10
Match: AT5G60930.1 (AT5G60930.1 P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 124.4 bits (311), Expect = 2.0e-28 Identity = 75/166 (45.18%), Postives = 107/166 (64.46%), Query Frame = 1
BLAST of CmoCh03G009050 vs. TAIR10
Match: AT5G47820.1 (AT5G47820.1 P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 123.2 bits (308), Expect = 4.5e-28 Identity = 99/276 (35.87%), Postives = 149/276 (53.99%), Query Frame = 1
BLAST of CmoCh03G009050 vs. NCBI nr
Match: gi|778718870|ref|XP_011657920.1| (PREDICTED: kinesin-like protein KIF19 isoform X2 [Cucumis sativus]) HSP 1 Score: 698.7 bits (1802), Expect = 7.3e-198 Identity = 381/494 (77.13%), Postives = 414/494 (83.81%), Query Frame = 1
BLAST of CmoCh03G009050 vs. NCBI nr
Match: gi|778718867|ref|XP_004143536.2| (PREDICTED: kinesin-like protein KIF19 isoform X1 [Cucumis sativus]) HSP 1 Score: 698.7 bits (1802), Expect = 7.3e-198 Identity = 381/494 (77.13%), Postives = 414/494 (83.81%), Query Frame = 1
BLAST of CmoCh03G009050 vs. NCBI nr
Match: gi|659079870|ref|XP_008440488.1| (PREDICTED: kinesin-like protein KIF19 isoform X2 [Cucumis melo]) HSP 1 Score: 698.4 bits (1801), Expect = 9.5e-198 Identity = 383/494 (77.53%), Postives = 412/494 (83.40%), Query Frame = 1
BLAST of CmoCh03G009050 vs. NCBI nr
Match: gi|659079872|ref|XP_008440489.1| (PREDICTED: kinesin-like protein KIF19 isoform X3 [Cucumis melo]) HSP 1 Score: 698.4 bits (1801), Expect = 9.5e-198 Identity = 383/494 (77.53%), Postives = 412/494 (83.40%), Query Frame = 1
BLAST of CmoCh03G009050 vs. NCBI nr
Match: gi|659079864|ref|XP_008440485.1| (PREDICTED: kinesin-like protein KIF19 isoform X1 [Cucumis melo]) HSP 1 Score: 698.4 bits (1801), Expect = 9.5e-198 Identity = 383/494 (77.53%), Postives = 412/494 (83.40%), 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 Cucurbita moschata
Date Performed: 2017-05-19
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: |