PI0023509 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGATATCAGTTTCGGTATTAGCTTTACCAGACTGGTCATTGCCCTTTGTAGTGGAAACTAATGCTTCTGGAACAGGTTTAGGGGTTGTCCTATCTCAAAATGGCCATCCGATAGCTTTCTTCAGTAAAAAACTATCTCCCCGAGCACAAACTAAATCTATTTATGAAAGGAAATTGATGGCAGTGGTCCTAGCCTTTCAAAGATGGAGATATTATTTTCTGGGACGTCGTTTCACAGTGATATCAGATCAGAAGTGGTCGAACTGTAGGTTGTACCCAAGGGAGCAAACCGAACTTTCAAATTGGTATTAGGTTTAAAGTATAAAAGAAATAGAGCTTCAAGACACGAAAAGAGTTAGTAGTAGGGGGGTTTGTTGTATGCGAGAAAAGAAAAGGAAAATAAAAGACAGTAAAGAAATGATGGAATGAGATAGAGTAGGCGGAATAGAGATCTATAGAATCTTTTTGTCTTCCTTAGAAAATGAAGTATGCGATAAGGACTAATAACAACTAAGTACACACTACTTGTCACAGAAACAAGAGTAATTAGAAACACACTTCTTTAAAGAATATGCGAGAAGGGGGCTATGCGATAAGGTATGTTTCAATCTATAACAAAGAATTGTCTCAGCGATCTATCTTTCTTGCAAATTGAATCATGCGATTTGAACAGAAAAGAATTAACCTAGATGCATTAATGTCTCAGCGATCATAATACATTTTTGGTTGAAACTTTAAACAGATAGGCGAGGAAATTCAATCAGAATGTAAACTTATCTCAGCGACTAAGTTTGACTTTAATCAAAATGCATAGAACATTCAAGATTCACTAAGCAAGTCAGCCTATACTTAGTGAAATTGAAGTGTATCACAATATTAGCATGCGAGAAGAGCAAAGTAGGCTTATTACTTATCTACCCGGTAATCAAGCAAGCAAAGCAATCACAATTTAATTTTTGAGCTCAGCGCTCTATGCGATATGATGAATTATAGTGCATGCAAGTTTAGGGCCTAGAAACCTAAAATTACCATGCGAATTCGGGATAATTGTGAAAGGAGAATACACAGTCGAAATGAAAGAAGGCGAGGAAGATACCTTTTGTTTCTCAAAGTAGGCGAGATAGAATTATTGACCTTATCAAAAAGTTAACTCCATTGAAATTCAGTTGACAAATTGTAAAACTCTTAACATGCCTCAGCGGTCTAAACCAAAATTTTGCATAAAGGAATTTCTATGGAGAATTTGGCAGAGTAAGGCTAAGGAAATTTTATATGCAAAGGAGTATGAGAAATGAAAATTCTATAGACTTTGTATTATGAATTTGATATGAGATTCAAAGTACTTTGGAATGAAGTACATGGGGGTATATATAGGTTTCTATAGGAAGGCTAATTTGCAAAATAACCGCTATTTGACGGTTATTTTGTTACAATGGGCTTGGGCCTTGGGCTTGTGGGCTTGACGGTTATGTCAGATCGCATTCGAGCTGAATGGTGAGCTTGGCGAGCTGATGATATGCGGTGAAGCTTGCGAGCTTGAGTCAGCTGAATGAAGTGTGCGAGCTGGTGAATGAGTGTGTATGTATGTGGCAAAGTGAAGAGTGTACTTCTGCAGATGAAGTATTTCGCGAGGCTCAAGTCAGAAGGCAATGCCTTGCGGTGAAGGCAGGTTGCGTTGAGCCATGCGATCTTGAATTGGCTTTGTCGCGAAGAGGATTTGAATGCCTTAGGAAGATTACTGTTTTGCCCTTGACTTGTGTTTAGTCTATTTTGTCCGCAAGGAGCTTGTTTTAGCTCACTTTTGTGCATTAGGGCTTGTATAGGGGCTTTGTATCATATCCTATGTAAAAGTACAACATTGATAAGTAATAAAGCTTATTATTGAGAATTAGGATAGATATTTTTATACAAAATAGTTCTATCAAAACCCCTCACTTAAGACTTGATCGTCCCGATTAAGGTAGAAATTAAAGATATGCTAACATTCATTCATTCACCATGCAAGGTATTCTTGCATAATTTTGCAAAAATTAAAGTTCAAGCATTCATGCAAACTTTTGATGTTTTCAAATAGATATGCAAAGTAAGATATTCATGCCTTAACAGTCGTAAGATATTCATGCCTTAACAGTCGTACTTAGTAATCTTTGAATTTTGTTTTAAGTGGTCAAAAGAAGCAAGTGATTGATTGAGGGTTTGATTTTTAAGAAGATTCATTCAATGGTGATCATGTTTAGAGAAAACGGCCTAATTTTGATACTCCGACTCACTAGACATGCTTCGAAAGAATTAAAAAATGCCCTAGACTTGCTTTCTCTCTACTCTGAAACGGGAAGGATCCCTCTTATGCTTAGCCCTCGATCAATGCATTGAAGCTAAAATAGAAAATTTCAGGGTAGAGTTGTGTCTTATTTTACTAAAGCAAAGGATAGGCTTTTTCCGTAGGGATTCATACCACACTAACATCGGATAATCCTAACTGATCACGAAAAGAATCCTATCGTTCGACTTAACCGTACTAGAATTTTCTCTCTCTCTTGTTTTTTTTTTTTTTTGTGAGAGAATATATGGACTTTGCCATTTGCTAAAAGTATGCTTTTGCTACTTTTGATTTGGGATTCTATTTTTGGGTAACTAGCATTTGCTTAGCCCCGGTTTGGCTGACTCTTAAGCTTGACTTATTTTCTAATAGTTTCTATGTTTGACCGTTCTTTCGAGGTGACAACAAGCGAATTTAAGCATCCTACTTTTTTCTAAAGGATTCTAGGTTCGTTATGGCTAGAAAAGGGGTTTTTTCTAATTCATGGTCATTGGTGAAAAGTTTAAAAATCAAGCTTAATTTTTTTTTACATGGTTCTTTATTCGATTTAAAAGTCAAGATAAAGATTACTTAGAAGAGTGTATCATAGGCAATCATTATATAAAACTTTGCTAAGATTATAACATCCATGCATTTTTCTTTTGAACATGCATTCAATCATTCAAGCAAGCATTCATGATTTCAATCATGCAATCATCCATGGGTAAGGCAAAAATTTTATACATATTGTTTTTCTCTCTTTTTTGGAGCATGCTTTTTTGTAAACTTAGTTGTATATACTTTTGATGCTCAAGAGAAATTTAGACATTTGTCATTATAAAAAAAAAATTGATATGCATTTTTGGGCTTTCTACTTAATAGCATGCAAGTGCAATGATATGCAAGACATTGAAGCAAAATTTTAAGGCGAAGGTTACCCAACACCCCTCACTTAAAAGATGACTTTGTCCTCAAAGCATATTAATTGCTAGCTTAAAAGATAAGGGGAACAGAAAAACTCCCCTTGCTTTTAAGAATTTGAGATCCTTTAAGCAAAGTGGATGCTTCCTTTTTGGTTATTTGATTTGATTACCCTCCATGTGGAATTTGAGTAAAATTTGAGTGGAATTTCCTGTAATTGAGAAATGGAAAGTCTATTAGATTTATTTAATGTTAAAATTTAAAGACTGAATTTAAAGAAATTAAAGACAGAAAGCGAATAAAATTTTTTATGCCTGGCTACCTCCAGGAAGCGCAAATTTTTAAGGTCGTATGCTCGACCGTGCTTTCGGGCTTATGTGTAGAAGGGGAGAGTGAGGACTTCTATTGAGTTTTCTTGTGCGGTTTCTCCTTCGTAGAAGATATTAAGTCTATGCCCATTGACTTTGAAAATTTTTCCTGTTTGAAGACTTTTAATGAATACTACACCGAAGGTAGAAATGTTAGTAATAACAAAAGGTCCTATCCATTTAGATTTCAATTTTCCAGGCATTAAATTTATAGAAGAATTATATAGAAGAACTTTTTAACCTATTAAGAATTGTTTTCTAAGGATTTTCTTATCATGCAAAAGTTTGGTCTTTTCTTTGTAAATCCTGGAATTTTCATAAGCTTCTAATCTTAGTTCTTCTAGTTCTAGCATATCAAGGAATCTTTTATTACTGGCCTCTAGGAGAGAATAATTGCATTGCCTAACTGTCCAATAAGCTTTATGTTCTATTTCTACAGGTAAATGGCAAGGCTTACCAAACACAAGTTTGAATGGAGAGGTACCAATTGGAGTTTTGTAGGCCGTTCGGTATGCTCACAGTGCATCGTTCAATCGTAAGCTCCAATCTTTTCTACTTGTGTTGACTGTTTTCTCCAAGATATTCTTGATTTCTTTGTTTGAGGTTTCGGCTTGACCATTGGCTTGGGGATGATATGGAGTGGAAATAGGGTGATGAATTCCGTACTTTCGCATTAGCGCTTCAATGGTTCTATTGCAGAAGTGTGTTCCTTGATCGCTTATGATTGCACGAGGGATGCCAAATCTAGAAAAAATATTAGAAATGAGAAATCCTGAAACAGCGGTCATTAGTCCTAGTGGGGATTGCTTCCACCCACTTCGATACATAATCTACAGCTAGCAAAATGTAAAGATAGCCATGTGAAGAAGGAAAAGGACCCCTGAAATCCATACCCCATACATCAAATATTTCGCATGTTAAAATAGGGTTAAGGGGCATTTCGTTTCTCTTAGATAATGATCCTGTCTTTTGACAATTTTCACATGCTTTACAGAATGCATAAGAATCAGCAAAAAGAGTTTTCCAGAAAAATCCGCTATCTAAAATTTTTCTAGCTGTTCTTTTAGGGCTAAAGTGACCTCCATATGCATGAGAATGACAAAACGATAAAATTGATTTATATTCATGCTCAGGGACGCATTTTCTAATTATTTGATCTGAACAATATTTCCAGAGATATGGAGATTCCCAGAAATAATATTTGGCATCGCTACGTAGTTTTGATTTTTGAGAAAAAGAGAAATCTAAAGGAAAGTTACCTGTTGTGATATAATTCACTAAGTCGGCATACCAAGGTGTTGGGAGATTGGCTTGAAAGAGGTGTTCATCAGGAAAATCTTCTCTAATAGGTAAGTCTTCGGGCTCTTGCACTATTCTACTTAGGTGATCCGCTATGGCATTGTTGGCTCCTTTTCTATCTTTGATTGTTAGGTTAAATTCTTGTAAGAGCAAAACCCATCTAACTAGCCTAGGTTTTGATTCTTTTTTAGAGACTAAATACCTGCAGCGTGATCAGTGTAAATGATAACAGGAGACCCTATCACATAGCTTCTAAATTTGTCTAGTGCAAAAACTATGGCGAGAAATTCTTTTTCTGTGGTGGTGTAATTTGATTGTGCTTGATTTAGTGTTCTAGATGCAAAATAGATGGCATGCAATTTTTTGTCTACTCTTTGTCCTAAAACTGCTCCTAATGCTAAGTTACTAGCATCACGCATGATTTCAAATGGTAAATTCCAGTTAGGAGATTGAAGAATAGGAGTAGAGACTAACCTTTGTTTAAGCTCGTCAAATGCTCTTTTGCACTTGTCATCTATTATGAATGGCACATCTTTTTTAAGAAGAGAAGTTAGTGGTAAAGCAATTTTAGAAAAATCTTTTATGAATCTTCTATAAAAACCGGCGCTACTTAAAAATGATCTAACATCTTTAAGGCATGTTGGATATGGCAATTTTTGTATTACATTAATTTTAACTTCATCTAATTCTATTCCTTTAGATGATACTAGATGGCCTAGAACTATGCCATGAGAAACCATGAAATGACATTTTTCATAATTCAGAACTAAGTTGGTTTCTATGCATCTATTTAGAATTTGCTCTAAACTGTTCAAGCATGCATCAAAATTATCACCGTAAACAGTAAAATCATCCATGAAGACTTCTATACATTTTTCTATAAAATCTGAAAAGATGCTCATCATACAATGTTGGAATGTGCCAGGCGCATTACATAAACCAAAAGGCATACGCCTAAAAGCATAAGTATCATAATCGCATGTAAATGTTGTTTTACTTTGATCTTCGCATGCAATTGGAATTTGGTAAAATCCAGAAAAACCATCCAAAAAGCAAAAATACGACCTACCAGTTAAACGTTCTATCATTTGATCTAGAAAAGGTAAAGGAAAATGATCTTTCTTTGTTACCTCGTTTAGCTTGCGGTAGTCGATGCACATTCTCCATCCGTTTTGGACTCTTGTAGGAATCATTTCGCCTTTTTCATTCTTCATCACCGTCATCCCGGTCTTTTTAGGCACAACATGTATTGGGCTAACCCATGTACTATCGGGGACGGGGTAAATGATTCCAGCATCTTTTAATTTAAAGATTTCTTTCAAAACAACATCTTTCAACACAGGGTTTAACCGCCTTTGTGATTGGACTTTATCTTTTGCTCCTTCTTCTAATATTATTTGATGTGTGCAAAAAGAAGGGGAAATACCTTTAAGGTCTTCTAAAGTCCATCCAATTGCTTTTCTTTTGTTCTTTATGACTTGGATAAGTCTTTCTTCTTCTTCTTGGTGTAGTTCTTTCTAGATTATAACAGGAAACGTATTCTTTTCTCCTAAGAATACGTATTTCAGGTTGGGTGGGAGAGTCTTGAGCTCAATCCCTTGTTCCTAGGGAGAAAAGAAAAAAGTGTTAGAATTTATTCCATCAAGATTTGATTTTTCATCTGTTTCTACTTCTACTATCTCTTTTTCATCATCAATTTCATTTAAATCATGTTCAGAAAATTCAACATCGATAGGCAATTCTTCATATTCATCATGCAATTCTAGTGAGCATAAAGGTAGACATTCTTCAGGATATTTCATGGATTCGAAAATATTAAATGTCAGCCATCCTTGAAATGAGCTCTCTAGCCTCAGTAGGGGTTTTGTCAGCCAATGCACCACCTGCTGCAGCATCTACTGTATTTCTATCCATAGTTAGTAGTCTAGAATAGAAATATTGTATTAATGATGGATCAGAAATATGGTGATGGGGGAAGCTAGCGCAGAGCTCCTTAAACCTTTCCCAGTATTCAGATAAGGACTCCCCAAAAGCTTGCCTTGTTCCATAAATTTCTTTCCTAATATTATTGGCTCTAGAAGCAGGAAAGAACTTTTCTAAAAATTTCTTTTTAAGGCTTCCCCAAGTAGTGATGGACCCTGGCTCTAGATAGTAAAGCCATATTTTGGCTGTGTCAGTCAAAGAAAGTGGAAAGGCTCTCAAGTTAAGTTGTTCCTCTGAAACTCCGTGCGGTCTCATTGAGTCACAAACCATATGAAAGTCTTTGAGGTGTTTATGGGGGTTCTCTCCTGAACTATCCTTGTATATAGGTAAGAGATGGATTAGTCCAGGTTTGAGTTCGAAGGGTTGAGTGGTTGGGGGAATTACTATACAGAGGGGCCTTTGGTCCTCGTCAGGCTCGGAAAGCTCTCTTAAGGTTTTTTCTCTAACTTGGCCCATGGTTTCTCTATCAAGGTTTGGTTGTTCTAGATTAGGCTCTTGGTTTTCTATTGGATCTTGAGGGATATTATTGATGGTTTCTTCTCTCCTTTCTCTCCTAATCCTACGTATTTCCCTATTAAGGTCTTCAAAGAAAAAGAGTTCTTGGTTGGAAGAACGGGTCATACAAGGTTAAGGGAGAGAAAAAGAAATTCAAGTAACTCTTTTTGTTTTAAAGATTTTTTTTAGAAATTGAATATAGTAATCAAGAAGCTAAAATAAAATTTAAACCTAAAAGAATTAGAAAGTCATACCGTGCTCCCCAGCAACGGTGCCATTTTGGTCGAACTATAGGTCGAGCGATGAAAGTATAGTTTAAGAGGAGAGTTGTCGTACCCAAGGGAGCAAACCGTGCTTTCAAATTGGTATTAGGTTTAAAGTATAAAAGAAATAGAGCTTCAAGACTCGAAAAGAGTTAGTAGTAGGGGGGTTTGTTGTATGCGAGAAAAGAAAAGGAAAAAAAAGACAGTAAAGAAATGATGGAACGAGATAGAGTAGGCGGAATAGAGATCTATAGAATCTTTTTGTCTTCCTTAGAAAATGAAGTATGCGATAAGGACTAATAACAACTAAGTACACACTACTTGTCACAGAAACAACAATAATTAGAAACACACTTCTTTAAAGAATATGCGAGAAGGGGGCTATGCGATAAGGTATGTTTCAATCTATAACAAAGAATTGTCTCAGCGATCTATCTTTCTTGCAAATTGAATCATGAGATTTGAACAGAAAAGAATTAACCTAGATGCATTAATGTTTTAGCAATCATAATACATTTTTGGTTGAAACTTTAAACAGATAGGCGAGGAAATTCAATCAGAATGTAAACTTATCTCAGCGACTAAGTTTGACTCTAATCAAAATGCATAGAACATTCAAGATTCACTAAGCAAGTCAGCCTATACTTAGTGAAATTGAAGTGTATCACAATATTAGCATGCGAGAAGAGCAAAGTAGGCTTATTACTTATCTACCTGGTAATCAAGCAAGCAAAGCAATCACAATTTAATTTTTGAGCTCAGCGCTCTATGCGATATGATGAATTATAGTGCATGCAAGTTTAGGGCCTAGAAACCTAAAATTACCATGCGAATTTGGGATAATTGTGAAAGGAGAATACACAGTCGAAATGAAAGAAGGCGAGGAAGATACCTTTTGTTTCTCAAAGTAGGCGAGATAGAATTATTGACCTTATCAAAAAGTTAACTCCATTGAAATTCGGTTGACAAATTGTAAAACTCTTAAAATGCCTCAGCGGTCTAAACCAGAATTTTGCATAAATGAATTTCTATGGAGAATTTGGCAGAGTAAGGCTAAGGAAATATTATATGCAAAGGAGTATGAGAAATGAAAATTCTATAGACTTTGTATTATGAATTTGATATAAGATTCAAAGTAATTTGGAATGAAGTACATGGGGATATTTATAGGTTTTTATAGGAAGGCTAATTTGCAAAATAACTGTTATTTGATGGTTATTTTGTTACAATGGGCTTGGGCCTTGGGCCTTGGGCCTTGCGGGCTTGACGGTTATGCCAGATCGCATGCGAGCTGAATGGTGAGCTTGGCGAGCTGATGATATGCGGTGAAGCTTGCGAGCTTGAGTTAGCTGAATGAAGTGTGCGAGCTGGTGAATGAGTGTGTATGTATGTGGCAAAGTGAAGAGTGTACTTCTGCAGATGAAGTATTTCGCGAGGCTCAAGTCAGAAGGCAATGCCTTGTGGTGAAGGTAGGTTGCGTTGAGCCATGCGATCTTGAATTGGCTTTGCCGCGAAGAGGACTTGAATGCCTTAGGGAGATTACTGTTTTGCCTTTGACTTGTGTTTAGTCTATTTTGTCCGCAAGGAGCTTGTTTTAGCTCACTTTTGTGCATTAGGGCTTGTATAGGGGCTTTGTATCATATCCTATGTAAAAATACAACATTGATTAGTAATTGAAGCTTATTATTGAGAATTAGGATAGATATTTTTATACAAAAATAGTTCTATCAAGAAGGCATTAAAATTCTTGCTGAAACAGAGGGAAGTCCAACCTCAATTTCAGAAGTGGCTCACCAAACTCCTAGGCTACGATTTTGAAATCTTATACCAACCGGGCTTGCAGAATAAAGCAGCAGATGCCCTCTCAAGAGTGGAACCAAAGGAAGCTACTGAGGCTGAACTATCTACCATGTCCACTTGGATGTTATTAAGTACTGAAGCCATTCAGAAGGAAGTGAAAGAAGACCCTAATTTGCGGAAACTGATTGATAACTTGAAACTGAACCCAGAGGCTCATCCTAAGTACAAATGGGATAGGAAACGACTATGGTACAAAAATAGGTTGGTAATTCCCAAGCACTCCTCTATAATACCAACTCTACTGCACACTTTTCATGATTCCATCATGGGAGGCCATTCAGGGTTTCTAAGAACCTATAAAAGATTGACAGGGGAACTGTACTGGGAAGGGATGAAATTGGATGTTAAGAAATATGTTGAGCAGTGTGAGATATGTCAGCATAATAAAACAGATTCCACATTTCCAGCTGGATTACTACAACCTATTCCTATTCCTAATTTAATCTTAGAAGAATGGTCAATGGATTTTGTGGAAGGACTACCGATGTCAGGGCACATGAATGTAATTATGGTTGCGGTGGACCGACTGAGCAAATATGCCTACCTTATTACTCTCAAACATCCGTTCACAGCCAAACAAGTGGCAGCAGCTTTCATTGA ATGATATCAGTTTCGGTATTAGCTTTACCAGACTGGTCATTGCCCTTTGTAGTGGAAACTAATGCTTCTGGAACAGGTTTAGGGGTTGTCCTATCTCAAAATGGCCATCCGATAGCTTTCTTCAGTAAAAAACTATCTCCCCGAGCACAAACTAAATCTATTTATGAAAGGAAATTGATGGCAGTGGTCCTAGCCTTTCAAAGATGGAGATATTATTTTCTGGGACGTCGTTTCACAATATTTTTATACAAAAATAGTTCTATCAAGAAGGCATTAAAATTCTTGCTGAAACAGAGGGAAGTCCAACCTCAATTTCAGAAGTGGCTCACCAAACTCCTAGGCTACGATTTTGAAATCTTATACCAACCGGGCTTGCAGAATAAAGCAGCAGATGCCCTCTCAAGAGTGGAACCAAAGGAAGCTACTGAGGCTGAACTATCTACCATGTCCACTTGGATGTTATTAAGTACTGAAGCCATTCAGAAGGAAGTGAAAGAAGACCCTAATTTGCGGAAACTGATTGATAACTTGAAACTGAACCCAGAGGCTCATCCTAACCAAACAAGTGGCAGCAGCTTTCATTGA ATGATATCAGTTTCGGTATTAGCTTTACCAGACTGGTCATTGCCCTTTGTAGTGGAAACTAATGCTTCTGGAACAGGTTTAGGGGTTGTCCTATCTCAAAATGGCCATCCGATAGCTTTCTTCAGTAAAAAACTATCTCCCCGAGCACAAACTAAATCTATTTATGAAAGGAAATTGATGGCAGTGGTCCTAGCCTTTCAAAGATGGAGATATTATTTTCTGGGACGTCGTTTCACAATATTTTTATACAAAAATAGTTCTATCAAGAAGGCATTAAAATTCTTGCTGAAACAGAGGGAAGTCCAACCTCAATTTCAGAAGTGGCTCACCAAACTCCTAGGCTACGATTTTGAAATCTTATACCAACCGGGCTTGCAGAATAAAGCAGCAGATGCCCTCTCAAGAGTGGAACCAAAGGAAGCTACTGAGGCTGAACTATCTACCATGTCCACTTGGATGTTATTAAGTACTGAAGCCATTCAGAAGGAAGTGAAAGAAGACCCTAATTTGCGGAAACTGATTGATAACTTGAAACTGAACCCAGAGGCTCATCCTAACCAAACAAGTGGCAGCAGCTTTCATTGA MISVSVLALPDWSLPFVVETNASGTGLGVVLSQNGHPIAFFSKKLSPRAQTKSIYERKLMAVVLAFQRWRYYFLGRRFTIFLYKNSSIKKALKFLLKQREVQPQFQKWLTKLLGYDFEILYQPGLQNKAADALSRVEPKEATEAELSTMSTWMLLSTEAIQKEVKEDPNLRKLIDNLKLNPEAHPNQTSGSSFH Homology
BLAST of PI0023509 vs. ExPASy Swiss-Prot
Match: P20825 (Retrovirus-related Pol polyprotein from transposon 297 OS=Drosophila melanogaster OX=7227 GN=pol PE=4 SV=1) HSP 1 Score: 99.8 bits (247), Expect = 3.7e-20 Identity = 57/145 (39.31%), Postives = 88/145 (60.69%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy Swiss-Prot
Match: P04323 (Retrovirus-related Pol polyprotein from transposon 17.6 OS=Drosophila melanogaster OX=7227 GN=pol PE=4 SV=1) HSP 1 Score: 95.5 bits (236), Expect = 7.0e-19 Identity = 52/140 (37.14%), Postives = 85/140 (60.71%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy Swiss-Prot
Match: P10401 (Retrovirus-related Pol polyprotein from transposon gypsy OS=Drosophila melanogaster OX=7227 GN=pol PE=4 SV=1) HSP 1 Score: 75.9 bits (185), Expect = 5.7e-13 Identity = 44/131 (33.59%), Postives = 72/131 (54.96%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy Swiss-Prot
Match: Q8I7P9 (Retrovirus-related Pol polyprotein from transposon opus OS=Drosophila melanogaster OX=7227 GN=pol PE=4 SV=1) HSP 1 Score: 75.5 bits (184), Expect = 7.5e-13 Identity = 45/143 (31.47%), Postives = 79/143 (55.24%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy Swiss-Prot
Match: Q9UR07 (Transposon Tf2-11 polyprotein OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=Tf2-11 PE=3 SV=1) HSP 1 Score: 62.4 bits (150), Expect = 6.6e-09 Identity = 49/191 (25.65%), Postives = 94/191 (49.21%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy TrEMBL
Match: A0A5D3C1I8 (Transposon Tf2-1 polyprotein isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold108G00320 PE=4 SV=1) HSP 1 Score: 237.7 bits (605), Expect = 4.2e-59 Identity = 125/187 (66.84%), Postives = 150/187 (80.21%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy TrEMBL
Match: A0A5A7UM57 (Transposon Tf2-1 polyprotein isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold226G00430 PE=4 SV=1) HSP 1 Score: 237.7 bits (605), Expect = 4.2e-59 Identity = 125/187 (66.84%), Postives = 150/187 (80.21%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy TrEMBL
Match: A0A5D3CPQ1 (Transposon Ty3-G Gag-Pol polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold832G00210 PE=4 SV=1) HSP 1 Score: 235.3 bits (599), Expect = 2.1e-58 Identity = 123/181 (67.96%), Postives = 149/181 (82.32%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy TrEMBL
Match: A0A5A7TZ91 (Transposon Ty3-G Gag-Pol polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold63G002180 PE=4 SV=1) HSP 1 Score: 233.4 bits (594), Expect = 7.9e-58 Identity = 121/181 (66.85%), Postives = 149/181 (82.32%), Query Frame = 0
BLAST of PI0023509 vs. ExPASy TrEMBL
Match: A0A5D3C9J2 (Transposon Ty3-G Gag-Pol polyprotein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold265G001010 PE=4 SV=1) HSP 1 Score: 233.4 bits (594), Expect = 7.9e-58 Identity = 121/181 (66.85%), Postives = 149/181 (82.32%), Query Frame = 0
BLAST of PI0023509 vs. NCBI nr
Match: TYK05225.1 (transposon Tf2-1 polyprotein isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 237.7 bits (605), Expect = 8.7e-59 Identity = 125/187 (66.84%), Postives = 150/187 (80.21%), Query Frame = 0
BLAST of PI0023509 vs. NCBI nr
Match: KAA0056274.1 (transposon Tf2-1 polyprotein isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 237.7 bits (605), Expect = 8.7e-59 Identity = 125/187 (66.84%), Postives = 150/187 (80.21%), Query Frame = 0
BLAST of PI0023509 vs. NCBI nr
Match: KAA0037227.1 (Transposon Ty3-G Gag-Pol polyprotein [Cucumis melo var. makuwa] >TYK13843.1 Transposon Ty3-G Gag-Pol polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 235.3 bits (599), Expect = 4.3e-58 Identity = 123/181 (67.96%), Postives = 149/181 (82.32%), Query Frame = 0
BLAST of PI0023509 vs. NCBI nr
Match: TYK07972.1 (Transposon Ty3-G Gag-Pol polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 233.4 bits (594), Expect = 1.6e-57 Identity = 121/181 (66.85%), Postives = 149/181 (82.32%), Query Frame = 0
BLAST of PI0023509 vs. NCBI nr
Match: KAA0048288.1 (Transposon Ty3-G Gag-Pol polyprotein [Cucumis melo var. makuwa]) HSP 1 Score: 233.4 bits (594), Expect = 1.6e-57 Identity = 121/181 (66.85%), Postives = 149/181 (82.32%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) 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.
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