IVF0000894 (gene) Melon (IVF77) 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.ATGGATCAGATTATAAACAAAGTTGGTTCTTATTGGTTCAACCAGAAGGCCAGTAAGGAGATCGACTCCATCGGCGATGAATCCCACTTCACTCTCTCCTCATTTCCCCCCTTTTCTTTTCCTTTATTAATTGTTGTATGATTTCGTTTGCGTTTCCTTTGTTGTTTTAATTCGTTTTTTTTAATGTTACAATTAGGGCTTTTATGATATCGACGTTGAGTTCTCCAGCTTTTGATATTAATTTGCTTCCCTTAATTAACATCTAAAACTTTAATTTTATAATGATTTGTTGTACTGATTTTTGTTCTTGTTTGTATTTTGGAGAAGAAATTTTGTTCAATAATCTAGGGTTCACAAATTGAACTCCATAGTTTTGACACTTTCTAATTGGATTGTCGTGTTGATGAGTCTACTTAGTCGGATTTCCATCTTGGCTGGCTGAGCGAGCGCACCAACTTTCTCAATTCTATTCGGACATTTGCTATGTGTCATTAAGAGTCTAGGTTAGCTCAAGAACCCCATTTATTGGAAGGACAATTGTGTCTTACTAGTTATTTGTGAAAGTAGAAAATTCATTATGATGGTGAATTGATGATCTCATTTTTAGCTAGGAAGAAGCATAAGCCCCCTTGAATATCAAAGTTTTTGGTTGAAGTATTGACTTTCCAAATGATAATGTTATTGGCCTATTGTTACAGGTGGATTCCACTTATTGCATTGCTCAAATGTATCAATCCTACGAAGAGACAGATTTATGGTAGTGACTTTAGATACTTTTTGGTTATCAACATATTCTTTTCCTTTTCAAATAGTAGTAATGCAATCTCATACGATTGTTTTGTAGAAAAATTGTGGAAGATGTTCCACGTGATGTGCATATCAATTTCTTGAAAGTTGAAAGAAGCTTGCACCGTCAGAGAATTCATGCTACAGGGGAACAGGCTGTTGAAGAGGGAGGTGGGGTTGAAATGCACGTTCTTGAGGATGTCGGTCATTGGGTATGGTTTTTTTTTCTCTTTTTACCTATCTTTTCTGAACTCATTATTTTTGTAAAATCATGATATAATGAAGAGTAAAACTATATGGTGTGTTATGTATTAACAGGTGCATGCTGATAACCCACATGGTCTCTTTCGGATCTTGTCATCCTCTTTCAAAGGGATTAGAACTTGAGGCGAGCAAGACCTTTTTCTTTCTTTTTTGGACAAGTGCAAAACTTTCTTGACACCATACATATCATATCATATGCATTGCATATCTCATTTGTTACAGATGGATTCCTTGAATATTAAAGTTTTTGGTTGAAATATTAGAGTAGTGCAACATGCTTTTCATTATCCATAATTTCTCTTGAAACGCACTCCTTCATGAAACATTGAGGAAGATTAAGCATAGTTTGGCAAAATAAATGCTTTCTTTTGTGTATTGGTTCTGGGATTCTAAAAAATAAAGATCATTGGACTATTTGAGGGTGATAACAATGACCATCATTTGAATTTGGGATTTCTTGAGCACAAAGTACTTCCTTTTCTCAACATTTGCTGCTGTTGGTTTTGCAGGACCTTTTCTGCTGTAGGTATGGATCCTACTATCATGGTTGTTGGCTTGGCTGTTGCAATTCTAGCTGCTATCAAGGCTGTTGGACATGAATCGAATGATATTTATCTTTTTGAAGTAAAAGAGGTAACCTTATGTTTTCATCACTAGTAAGGCTTAAAGTTCAAACCTATTCAATACATGTTGGCTTACTCTGGGTGCAACAGGTATGTTTCAAACATAAATAGTTTCTATGAACCAACACTTAAAATATAAGATCCTGATGAGTTAGAAAATATGTTTCTCTTTTAGTATATTTTTCTGAGTTTTTGGAGTATGTTAGTAATGAATCAATGTGTATGCAACATTTGCATTTTTTCTCTTTGTTTTTTTTACCTTACTTGGCTATTTAAAGAATAAAAAAGATATCGACTTTTTTTTTTACATTTTCTTGTGATTTTTTAACATTCGATAGGGAAAGGAAGAAGAGAAGGGGAAGATAAACATAAGTTGAGGTTTCCGAAACATATAAAGATTAAGATCGTTAGAGAGAATAATTGGATAGGAAGTTGTGTGACTTTTGATGAGTTCTTGCGTAATCCTGGCAATGGTGGTGGATTTTTGAAGCTTTACGAATCTAATGATCGACCAACTTACCGAAGCCAACATGATCGAATTTATTCACTTCGGTTCTTCTCTTCTTCAGTTTATCAGTTTTGTTGTGATGTATTGAGTTTGCTAAAAAAGGATAGTTTTTTGTTTAGGTTTGTTCTCAAAGGATTTTTTTCCTTTATAAACAAAATTGTAATGCACAGAAGATAACATATATTATTCAAGGAGATATTATATGTAAAGTTCTATGGTAATTCTTTTTTTAATAATGTGATTATGAAATGTTAATGACGCCAAATGGTTTTAATACAATACATTAAGTATTTACAACAACATAAAGACTCTAAAAGAATGCTTTCAAAACACTTCTTTATTTTGGGAAAATTACTTCACAAAACAGAAGATCACTCATAAAACACTAAGTTTCCTTTCTTTCAGAACCCCTAACTCCAGATCCTTCTCGCCTAACACTTTCTTTAGCAGCTCCACACTCAGGAAATTCTTATAATAACAATCCTTTGATCCTTTCAATCTTATTTAAACTACTCTAAAATTGCATTAGTCATCTTTGAGCCCCTCTTAGCTCACCAGCTCCTACTTACAACTTTACACATGTCGGCTTGTAACTCATCAGGTCATGCACTAAGCTTAAACTTAACACGTCACTAGTTGTCAACTCAAAATTAGACATTTTCCTAGCTCAGCTTCACTTCGCGTTACAGTATCAAAACGCTTAACTCTCTGCGTTGAACGCGTACTTCTTCCATGCCTGTTAATCTTATAGCATCGCCTAGCTTCAACGCGAACCTAAAAATGCCTACTTCTTCACAAAACGGCTTACACTACTTTCCAATCAAAATGAAACTCTTCTATTACTTGTCACGGGCTTCACACAAAAAGTTAAGTTGGGTTGCATTATTGCTTTCGGGTTCTAGTCAAGAAGTATTTCACCATCTAACCTAAATAGCTTCTTTAAATTTATCGAGGTGGAAATTATTTAGTGCATATATTATGTCTTTGATCTTAATGCTCATTAATGATAATTAGGGAATATCCCTTTATTAATTTGAAGTTGATGTGATTCAATGACTGTCCACTTAGGGTCTTAAGTGAGTGTGTATAAGTATAAACTTTGTTACCCTCCCTCCGTAGAAGTCTAGGTTTAAGAAACTAGATTGTTTATAATGCATCATTAGCTAAATCAATGATAAGAAAGAAAGAAGAATTAATACTCATCATAACCAAGCTAAGTTCACATAATTGATTAAATTTGAAATCTGGTACCATTTTCTCACATTTCTCACACAATTCACTTCACATCACCATCTTTATTTGTTTGTTTAACACATTTGGTTACTTCAATTCAAGTTTTCTCATTTATTACCGATTGCAAGTCTTTGGGTTTCAAGAAATAATCTAATAAGCTTCTTGTGGATTGTCTCTTGTCAAATTAAAAATTCTTTACGGAATAACACTACACGATATGCGATGATATGCAATAAGGACAAAACTATGCGATTGATAGTTTTGAAAGTCCTATGCGGTAGAGTTATCGAATTTTATAAATTATGTTATATTGATCATGACTATACAGTAATACTAGTTATGCGAGATGTTAGAATATCTCATTGCATACGTTGACATTCTAGGCAGAATGGTCAAGCAAGATGAGATATAATAAATGGCATGATACTTATTACATAATTAAAGAATCAAACATTTTATTACCATTTTACAGTTACTTATCAACATAATCTTCCCATAAACTACAAACGGTTTCATAACTAAAGATTGCGCTTTGACCACTAGGCATTTTGATTAGTTGGCATTCTGTTCAATTGTCGAGGTGATCAATAGGCGACTTGATCAGATGAGATACTAGTATCTTACGCGAGATACAAGGCAAAGAAAAACACGTTTTATCTAGCCGATCTATCTAGGCATTAAAGCTTCTCAACTTACTACTCCTTGGTGAAGCACAACAACAATTTTAAGACGTTTACATTCTGCTTCGATGGCCGAACAATTCGAAGGTGATTTTACATCCTCTGACCTCAGCTGTTCTTTTCGCTTTGAAAGAGTACACTTCAAAAGATGGAAGCAAAGATGTTGTTCTTCCTCACTTTTAAAAAAGTCGTCGCTACATGTACCACTGAAAAACCAAAGGTTCCAAAAATCAAACCAACGGAGGAGCAAATTAATAATTTTACCGCTTGAACAGAGATAGACTTCATCGGTAAGAATTTAATTCTTAATGATCTTCCTAATGAGTTGTATGATTATTACAGTACCATGTTTGCAGCAAAAGAAGTATGGGACGTGTTACAGAAAAAGTATGAAACTAAGGAAGCGAGATCGAAAACGTATGCAGTAAGCCGATACGTGCGATATCAAATGATAGATGATAGATTCATGGAGGCTCAATCACATGAAACTCAAAAGATAGCACATGAAATTATCAACGAAGGTATGAGGCTTGACGATCAATTTCAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAACCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACGTAATTCCTAGGAAAAAGACTATCGTAGTTCTGAAGCTGGATCTGAAGTTAAAAGAGAACAAGATGAAACACGGATCCAATAAAGAGAACAACTTCTAGAAACCCCAGTCCAGAATTACGGTACAATTAGTTTGTTATAACAGCTATAACAAAACTAGGCATATAGCTAGAATGTTTAGAAACGAGAATCGTCCTATTGCGCTAGCAAACCTGGTAGAAGAAGATTTAGTAGCTATGATCACAGAAGTAAATGTGATCGGGGGGTCTGTAGGTTGGTGGCTAGACACTGGTGCATCTCGCCACATCTGTCATGACCTTAAATTATTTAGAAAATATAATGAGACTAAGGATAAAAAAATCCTTTTGGGAGAACTAACGTGGCCGACGTTGGAGAAACAGAACTGAAATTCACATATGGCAAGACACTTATGTTGAAGGAAGTTCTACATACTCCTGAAATTCGAAAGAATTTGGTCTCCAGATATCTCCTCAACAAGGCTAGCTTCACCCAAACCATAGGATCAGACTTGTTTACTTTAACTAGAAACAAGTATTTGTGGGAAAGGGTTACGCTACTGATGGGATGTTTAAATTGAATTTGGAAATGAATAAGAAATTATCTTCTACTTACATGTTGTCTACTTCTGATATTTGGCATGCTAGACTCTGTCATGTTAATAAAAGACTAATTGGCAACATGAGTAGGTTAAATCTTATTCCTAAGTTATCTTTGCATGAATTTAAGAAATGTGCATGTTATAGTTAAGCTAAGATAACAAAGACTTCACATAAATTTGTAACTAGGGTAATAAAGCCTGTTGAATTAATTCATTTCGATTTATGTGAATTCGATGGCATGTAAACTAGGAACAGTAAAGAGTATATTATAACCTTTACAGATGATTCTTCCGAGACTACACTTTTATTTACCTACTTAAAAATAAAAGTAATGTCTTGAACATGTTCAAGGTGTTAGTAACTGAATAGCTTCTTTAAATTTATCGAGGTGGAAATTATTTAGTGCATATATTATGTCTTTGATCTTAATGCTCATTAATGATAATTAGGGAATATCCCTCTATTAATTTGAAGTTGATGTGATTCAATGACTGTCCACTTAGGGTCTTAAGTGAGTGTGTATAAGTATAAACTTTGTCACCCTCCCTCCGTAGAAGACTAGGTTTAAGAAACTAGATTGTTTATAGTGCATCATTAGCTAAATCAATGATAAGAAAGAAAGAAGAATTAATACTCATCATAACCAAGCTAAGTTCTCATAATTGATTAAATTTGAAATCTGGTACCATTTTCTCACATTTCTCACACAATTCACTTCACATCACCATCTTTATTTGTTTGTTTAACACATTTGGTTACTTCAATTCAAGTTTTCTCATTCATTACCGATTGCAAGTCTTTGGGTTTCAAGAAATAATCTAATAAGCTTCTTGTGGATTGTCTCTTGTCGAATTAAAAATTCTTTACGCAATAACACTACACGATATGCGATGATATGCGATAAGGACAAAGCTATGTGATTGATAGTTTTGAAAGTCCTATGCGGTAGAGTTATCAAATTTTATAAATTATGTTATATTGATCATGACTATACAGTAATACTAGTTATGCGAGATGTTAGAATATCTCATTGCATACGTTGACATCCTAGGCAGAATGGTCAAACAAGATGAGATATAATAAATGACATGATACTTATTACATAATTAAAGAATCAAACATTTTATTACCATTTTACAATTACTTATCAACATAATCTTCCCATAAACTACAAACGGTTTCATAACTAAAGATTGTGCTTTGACCACTAGGCATTTTGATTAGTTGGCATTCTGTTCAATTGTCGAGGTGATCAATAGGCGACTTGATCGGATGAGATACTAATATCTTACACGAGATACAAGGCAAGGAAAAACACGTTTTATCTATCCGATCTATCTAGGCATTAAAGCTTCTTAACTTACTACTCCTTAGAGAAGCACAACAACAATTTTAAGACGTTTACATTCTGCTTCGATGGTCGAACAATTCGAAGGTGATTTTACATCCTCTAACCTCAGCTGTTCTTTTCGCTTTGAAAGAGTACACTTCAAGAGATGGAAGCAAAGATGTTGTTCTTCCTCACTTTTAAGAAAGTCGTCGCTACATGTACCACTGAAAAACCAAAGGTTCCAAAAATCAAACCAACGGAGGAGCAAATTAATAATTTTACCGCGTGAACAGAGACAGACTTCATCGGTAAGAATTTTATTCTTAATGATCTTCCTAATGAGTTGTATGATTATTACAGTACCATGTCTGCAGCAAAAGAAGTATAGGACGTGTTACAGAAAAAGTATGACACTAAGGAAGCGGGATCGAAAACGTATGCAGTAAGTCGATACATGCGATATCAAATGAAAGATGATATATTCATGGAGGCTCAATCACATGAAATTCAAAAGATAGCACATAAAATTATCAACGAAGGTATGAGGCTTGAGGATCAATTACAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAGTCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACGTAATTCCTAGGAAAAAGTCTATCGTAGTTCTGAAGTTGGATCTGAAGTTGAAAGAGAACAAGATGAAACACGGATCCAATAAAGAGAACAACTTGCAGAAACCCCAGTCCAAAATTACGGTACAATTAGTTTGTTATAACAGCTGTAACAAAACTAGGCATATAGCTAGAATTTTTAGAAACGAGAATCGTCCTGTTGCGCTAGCAAACCTGGTAGAAGAAGATTTAGTAGCTATGATCACAGAAGTAAATGTGATCGGGGGGTCTGTAGGTTGGTGGCTAGACACTGGTACATCTCGCCACATCTGTCATGACCTTAAATTATTTAGAAAATATAATGAGACTAAGGATAAAAAAATCCTTTTGGGAGAACATCACACAACTAACGTGGCCGATGTTGGAGAAACAGAACTGAAATTCACATATGGCAAGACACTTATGCTGAAGGAAGTTCTACATACTCCTGAAATTTGA ATGGATCAGATTATAAACAAAGTTGGTTCTTATTGGTTCAACCAGAAGGCCAGTAAGGAGATCGACTCCATCGGCGATGAATCCCACTTCACTCTCTCCTCATTTCCCCCCTTTTCTTTTCCTTTATTAATTGTTGTGGATTCCACTTATTGCATTGCTCAAATAAAAATTGTGGAAGATGTTCCACGTGATGTGCATATCAATTTCTTGAAAGTTGAAAGAAGCTTGCACCGTCAGAGAATTCATGCTACAGGGGAACAGGCTGTTGAAGAGGGAGGTGGGGTTGAAATGCACGTTCTTGAGGATGTCGGTCATTGGGTGCATGCTGATAACCCACATGGTCTCTTTCGGATCTTGACCTTTTCTGCTGTAGGTATGGATCCTACTATCATGGTTGTTGGCTTGGCTGTTGCAATTCTAGCTGCTATCAAGGCTGTTGGACATGAATCGAATGATATTTATCTTTTTGAAGTAAAAGAGTTCTTGCGTAATCCTGGCAATGGTGGTGGATTTTTGAAGCTTTACGAATCTAATGATCGACCAACTTACCGAAGCCAACATGATCGAATTTATTCACTTCGTACCATGTTTGCAGCAAAAGAAGTATGGGACGTGTTACAGAAAAAGTATGAAACTAAGGAAGCGAGATCGAAAACGTATGCAGTAAGCCGATACGTGCGATATCAAATGATAGATGATAGATTCATGGAGGCTCAATCACATGAAACTCAAAAGATAGCACATGAAATTATCAACGAAGGTATGAGGCTTGACGATCAATTTCAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAACCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACAAAAAGTATGACACTAAGGAAGCGGGATCGAAAACGTATGCAGTAAGTCGATACATGCGATATCAAATGAAAGATGATATATTCATGGAGGCTCAATCACATGAAATTCAAAAGATAGCACATAAAATTATCAACGAAGGTATGAGGCTTGAGGATCAATTACAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAGTCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACGTAATTCCTAGGAAAAAGTCTATCGTAGTTCTGAAGTTGGATCTGAAGTTGAAAGAGAACAAGATGAAACACGGATCCAATAAAGAGAACAACTTGCAGAAACCCCAGTCCAAAATTACGGTACAATTAGTTTGTTATAACAGCTGTAACAAAACTAGGCATATAGCTAGAATTTTTAGAAACGAGAATCGTCCTGTTGCGCTAGCAAACCTGGTAGAAGAAGATTTAGTAGCTATGATCACAGAAGTAAATGTGATCGGGGGGTCTGTAGGTTGGTGGCTAGACACTGGTACATCTCGCCACATCTGTCATGACCTTAAATTATTTAGAAAATATAATGAGACTAAGGATAAAAAAATCCTTTTGGGAGAACATCACACAACTAACGTGGCCGATGTTGGAGAAACAGAACTGAAATTCACATATGGCAAGACACTTATGCTGAAGGAAGTTCTACATACTCCTGAAATTTGA ATGGATCAGATTATAAACAAAGTTGGTTCTTATTGGTTCAACCAGAAGGCCAGTAAGGAGATCGACTCCATCGGCGATGAATCCCACTTCACTCTCTCCTCATTTCCCCCCTTTTCTTTTCCTTTATTAATTGTTGTGGATTCCACTTATTGCATTGCTCAAATAAAAATTGTGGAAGATGTTCCACGTGATGTGCATATCAATTTCTTGAAAGTTGAAAGAAGCTTGCACCGTCAGAGAATTCATGCTACAGGGGAACAGGCTGTTGAAGAGGGAGGTGGGGTTGAAATGCACGTTCTTGAGGATGTCGGTCATTGGGTGCATGCTGATAACCCACATGGTCTCTTTCGGATCTTGACCTTTTCTGCTGTAGGTATGGATCCTACTATCATGGTTGTTGGCTTGGCTGTTGCAATTCTAGCTGCTATCAAGGCTGTTGGACATGAATCGAATGATATTTATCTTTTTGAAGTAAAAGAGTTCTTGCGTAATCCTGGCAATGGTGGTGGATTTTTGAAGCTTTACGAATCTAATGATCGACCAACTTACCGAAGCCAACATGATCGAATTTATTCACTTCGTACCATGTTTGCAGCAAAAGAAGTATGGGACGTGTTACAGAAAAAGTATGAAACTAAGGAAGCGAGATCGAAAACGTATGCAGTAAGCCGATACGTGCGATATCAAATGATAGATGATAGATTCATGGAGGCTCAATCACATGAAACTCAAAAGATAGCACATGAAATTATCAACGAAGGTATGAGGCTTGACGATCAATTTCAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAACCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACAAAAAGTATGACACTAAGGAAGCGGGATCGAAAACGTATGCAGTAAGTCGATACATGCGATATCAAATGAAAGATGATATATTCATGGAGGCTCAATCACATGAAATTCAAAAGATAGCACATAAAATTATCAACGAAGGTATGAGGCTTGAGGATCAATTACAAGTTGCAGTTATCATTGACAAATTGCCTCCTCTGTGGAAAGATTTCAAGAATACTCTAAGGCACAAAACCCAGGAGTTCTCGCTGGAAAGTCTCATCATGCGTCTAAGGATAGAGAAGGAGGCGAGAAAACATGATCAAAAGGAGGAAGTAAACGTAATTCCTAGGAAAAAGTCTATCGTAGTTCTGAAGTTGGATCTGAAGTTGAAAGAGAACAAGATGAAACACGGATCCAATAAAGAGAACAACTTGCAGAAACCCCAGTCCAAAATTACGGTACAATTAGTTTGTTATAACAGCTGTAACAAAACTAGGCATATAGCTAGAATTTTTAGAAACGAGAATCGTCCTGTTGCGCTAGCAAACCTGGTAGAAGAAGATTTAGTAGCTATGATCACAGAAGTAAATGTGATCGGGGGGTCTGTAGGTTGGTGGCTAGACACTGGTACATCTCGCCACATCTGTCATGACCTTAAATTATTTAGAAAATATAATGAGACTAAGGATAAAAAAATCCTTTTGGGAGAACATCACACAACTAACGTGGCCGATGTTGGAGAAACAGAACTGAAATTCACATATGGCAAGACACTTATGCTGAAGGAAGTTCTACATACTCCTGAAATTTGA MDQIINKVGSYWFNQKASKEIDSIGDESHFTLSSFPPFSFPLLIVVDSTYCIAQIKIVEDVPRDVHINFLKVERSLHRQRIHATGEQAVEEGGGVEMHVLEDVGHWVHADNPHGLFRILTFSAVGMDPTIMVVGLAVAILAAIKAVGHESNDIYLFEVKEFLRNPGNGGGFLKLYESNDRPTYRSQHDRIYSLRTMFAAKEVWDVLQKKYETKEARSKTYAVSRYVRYQMIDDRFMEAQSHETQKIAHEIINEGMRLDDQFQVAVIIDKLPPLWKDFKNTLRHKTQEFSLENLIMRLRIEKEARKHDQKEEVNKKYDTKEAGSKTYAVSRYMRYQMKDDIFMEAQSHEIQKIAHKIINEGMRLEDQLQVAVIIDKLPPLWKDFKNTLRHKTQEFSLESLIMRLRIEKEARKHDQKEEVNVIPRKKSIVVLKLDLKLKENKMKHGSNKENNLQKPQSKITVQLVCYNSCNKTRHIARIFRNENRPVALANLVEEDLVAMITEVNVIGGSVGWWLDTGTSRHICHDLKLFRKYNETKDKKILLGEHHTTNVADVGETELKFTYGKTLMLKEVLHTPEI Homology
BLAST of IVF0000894 vs. ExPASy Swiss-Prot
Match: Q8LF48 (3-ketoacyl-CoA thiolase 1, peroxisomal OS=Arabidopsis thaliana OX=3702 GN=KAT1 PE=1 SV=2) HSP 1 Score: 55.8 bits (133), Expect = 1.8e-06 Identity = 31/47 (65.96%), Postives = 36/47 (76.60%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy Swiss-Prot
Match: P10978 (Retrovirus-related Pol polyprotein from transposon TNT 1-94 OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 54.7 bits (130), Expect = 4.1e-06 Identity = 55/278 (19.78%), Postives = 116/278 (41.73%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy Swiss-Prot
Match: Q56WD9 (3-ketoacyl-CoA thiolase 2, peroxisomal OS=Arabidopsis thaliana OX=3702 GN=PED1 PE=1 SV=2) HSP 1 Score: 52.8 bits (125), Expect = 1.5e-05 Identity = 29/47 (61.70%), Postives = 36/47 (76.60%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy TrEMBL
Match: A0A5D3DE53 (Putative Polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold543G00070 PE=4 SV=1) HSP 1 Score: 486.9 bits (1252), Expect = 1.2e-133 Identity = 245/245 (100.00%), Postives = 245/245 (100.00%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy TrEMBL
Match: A0A5A7VQD4 (Putative Polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold138G00810 PE=4 SV=1) HSP 1 Score: 382.1 bits (980), Expect = 4.1e-102 Identity = 194/267 (72.66%), Postives = 221/267 (82.77%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy TrEMBL
Match: A0A5D3DCJ1 (Putative Polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1199G00010 PE=4 SV=1) HSP 1 Score: 335.5 bits (859), Expect = 4.4e-88 Identity = 172/241 (71.37%), Postives = 198/241 (82.16%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy TrEMBL
Match: A0A5A7UA92 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold1166G00260 PE=4 SV=1) HSP 1 Score: 330.5 bits (846), Expect = 1.4e-86 Identity = 174/267 (65.17%), Postives = 200/267 (74.91%), Query Frame = 0
BLAST of IVF0000894 vs. ExPASy TrEMBL
Match: A0A5A7TG34 (Pol polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold477G00910 PE=4 SV=1) HSP 1 Score: 326.6 bits (836), Expect = 2.0e-85 Identity = 173/267 (64.79%), Postives = 195/267 (73.03%), Query Frame = 0
BLAST of IVF0000894 vs. NCBI nr
Match: TYK21961.1 (putative Polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 484 bits (1247), Expect = 4.12e-167 Identity = 245/245 (100.00%), Postives = 245/245 (100.00%), Query Frame = 0
BLAST of IVF0000894 vs. NCBI nr
Match: KAA0067915.1 (putative Polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 379 bits (974), Expect = 2.88e-124 Identity = 194/265 (73.21%), Postives = 220/265 (83.02%), Query Frame = 0
BLAST of IVF0000894 vs. NCBI nr
Match: KAA0042384.1 (pol polyprotein [Cucumis melo var. makuwa] >TYK15502.1 pol polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 325 bits (832), Expect = 3.98e-103 Identity = 173/265 (65.28%), Postives = 194/265 (73.21%), Query Frame = 0
BLAST of IVF0000894 vs. NCBI nr
Match: KAA0050409.1 (hypothetical protein E6C27_scaffold1166G00260 [Cucumis melo var. makuwa]) HSP 1 Score: 328 bits (840), Expect = 1.06e-101 Identity = 174/267 (65.17%), Postives = 200/267 (74.91%), Query Frame = 0
BLAST of IVF0000894 vs. NCBI nr
Match: KAA0034938.1 (putative Polyprotein [Cucumis melo var. makuwa] >TYK21293.1 putative Polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 333 bits (853), Expect = 7.02e-100 Identity = 172/241 (71.37%), Postives = 198/241 (82.16%), Query Frame = 0
BLAST of IVF0000894 vs. TAIR 10
Match: AT4G10030.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 103.6 bits (257), Expect = 5.4e-22 Identity = 51/71 (71.83%), Postives = 55/71 (77.46%), Query Frame = 0
BLAST of IVF0000894 vs. TAIR 10
Match: AT4G00980.1 (zinc knuckle (CCHC-type) family protein ) HSP 1 Score: 67.4 bits (163), Expect = 4.3e-11 Identity = 38/111 (34.23%), Postives = 65/111 (58.56%), Query Frame = 0
BLAST of IVF0000894 vs. TAIR 10
Match: AT1G04710.1 (peroxisomal 3-ketoacyl-CoA thiolase 4 ) HSP 1 Score: 55.8 bits (133), Expect = 1.3e-07 Identity = 31/47 (65.96%), Postives = 36/47 (76.60%), Query Frame = 0
BLAST of IVF0000894 vs. TAIR 10
Match: AT2G33150.1 (peroxisomal 3-ketoacyl-CoA thiolase 3 ) HSP 1 Score: 52.8 bits (125), Expect = 1.1e-06 Identity = 29/47 (61.70%), Postives = 36/47 (76.60%), Query Frame = 0
BLAST of IVF0000894 vs. TAIR 10
Match: AT3G08890.1 (Protein of unknown function, DUF538 ) HSP 1 Score: 48.5 bits (114), Expect = 2.1e-05 Identity = 20/34 (58.82%), Postives = 28/34 (82.35%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) 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.
|