Cucsat.G3153 (gene) Cucumber (B10) v3
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.TTTAAAAAATAAAACACACCACTCCTTTTATTGTATAACGTTCAGCCCCTTTCATTCAAATCAAACCCTGCTCTACTCCTCTCCAATCTTCAACGTTCTGCTCCTCCCCTCCGATCAAACGACGCCGGCAACTGCAGCTCCGATCATACCAGCAGCGCTCGCCCTCCGTTTTGGTTACTTGCCGTCTCGGTTTAAAGGTTTTTCCCTTCTTTTTTCTTTTCTTTTTTTATGTCTCAGTGTTTGAGGAATGTTTCAACTGGTTTGACAGAAATATATATATATATATGTATCTATATGCTTCTTTATTCATTACTTCATATTGATATGTAGTCCCAATTTATATGAAACATGGTTTAGGCCTTGGGCTTTTGGGTGCATTTTAAAAAAAATAATAATGAATTTTTGTATTTATTTAATGTGAAATTTGTACACTTGGTGTGAATTTTTGGAATAGTATCTGGAATTTTTGGTATGGTTTAATCAGATTTGAGAGACATGATGTGTTCTTTGGAAAGGTGTATGTTAATGTTTTTGTTTTGAGAACATTTTTTTTAATGAATTCATTCCAATTTTTATACTAGATGGCATCTTTCTCCTTGTCTACATCTACAAATAGTAGCCAGTCATCAACTTTTTTACATTTTGTTTTGGATGAAAGTGTGATCTCTATTTAGGATTTTGTATTTGTATTATAGTTTGAAACTTTTTAATGAACTCAGACAACTGATGTACTCTCTACGTTTTCGAGAAGTATTGTTATGTTTTAACATATATGAGTAATTTATATGCAAGTATTATCACATATATTATTTTTAAAAAATTAAAACGTGTCTCTAACGTATCGTGCCCTACTTTTCTAAATATTGAGCGTATTCTCGTGTCATGTCGTGTCACATGTTGCGTGTCAGCGTTCGTGCTTCCTAGTTTATAGAGAGGTGGAAGGGAGCATTCTTTTGTGCCCTTTAAGTTGGGTTCTACGGTGGTGGTTCTATCGCATCTGCAATTTGCTGATGATATGATGTTCTTCTGCTTTAATAAAGAGGACTTCTTCCTTATCCTTAATTACATTCTGGGATTCTTTAAGGCAATGTCAGGCTTAAAACTAATAGGAGTAAGTGTCATATTTTCAGCATAAAGAAATTGTGAGCAAGGGAAGCTTATTAGATTGGTGACTCTGGTTGGTTGCAAGGTTGGGCCTTTTCCCACTTCCTATCTCGACCTCCCCTTGGTAGGTAATATGAGCGCTCTCTTTTTGGGATGCATCCCATGGAGAAAATAAGGAAGAGGTTAGCTTCAAGGAAGAAAAAATTCTTTTCCAGAGCTGGGACATTAACACTAATCAAATCAGTGCTGAGTGGTATTCCCATTTATTACTTTTCTCTTTTTTGCACGTCTGTTTTGGTTCACAAAAGCATTGAGAAGCTCACGAGAAACTTCCTCTTGGAAGGGGTTGAGGAAGGGAAAGGGTCTCATCTGGGTAGCTGAGAAGTTGTGGGGAAACTTGTGAGTTGGGAGTGTTAGAGTTGGAAAATTTAAGGTTACCCAACAAAGCCCTGTTGGCTAAATGGTTGTGGTGTTTTGCTCTTGAGCCCAAATCCTTGTGGCATAGAATTATTGTGAGCAAACATGGTCTTCATCCCTGTGATTGGGTGGTGAAAGGGGTCAAAGGCATGAACCGAAATCTGTGGAAAGATATTTTTCTTCAACTCCCCTCTTTTCCCCATTTTGTTTTTGTGTTGTGGGAGATGACAAGTGTTAAAGGAAATTAGTGTTTATTGGGTTTATTCTTATTTAATATTTTCCATATTTGTATTTTTCCTTTTTTAGTATTTTGGTCTCAATTTATTCACCAATGTGATAGGTTATTACGTTATTAAGAAGAACAAACAAACCAACTCTTTCTTGAGGGCTGGAAATCCTCTCCTTCATGCTATGCTTGGCTCTAATTCTTGATAGTTGCTATCCTTCAGCGGAACTTCTCTTAACCCCTCCATTTCTCATGGTTCCTCTCACCTCAACAAACTATATTCCAGTGATTCCCATCAGCTAACTAGCTTCCCTCTCCACAACTGATATTTTCCCCCACTTTTCCTTTTTTATCCTTCCGTTTACAAGTGTGTACAATTCGAGGCCTTGCAGAACAATAGAGTGTTTTGAGAGTGGGGAGGGACCCAGTGAGCTTTAGTCTTTGGTGAGGTTTCATGTTTCTTTTTGGGCTTCAGTTTTGAGGATTTTTTTGTTATTATTCCCTAGGCAATCTCTTACTTAGTTGTAAACCCTTTATGCATTGGGGTTTTTTGCGAGCTTGGTTTCTTCTATGTCCTTGTATTCTTCCATTTTTTCTGCATGAAAGTTGTTTCTATAAAAAAATCGTGTTTCTTTGATGCTTTTGATGGGATCCCAAAAAGAAAACTCTTATTCTTATTTATTCTTTAAAGTTGTTTTTATTTCTTCATTTTAAAATCTTTGGATTTACCATTTTAACCAATTTTGAGTTTTACATTTATGAGTAACATCAGTAAAATTTAATTTGGGAAACACGGTTAGTTACATCTCCACTTTTCTCAATGGACTTCCTCAATCAATGTTTTGTGAATGATTTTATTTCATGTGTGCTATTGTAAATTAATGAATACCTTTGTTGATGATAGGTGTTGCTTTACGTGGAGGTGGAGATGAAAGTAAAAGTAATGCGTATCCTTGTGTATCTTTTTTCCTGTACATTCTCTAAATATTTGTTGCTATATGGGGTCACATTTTTTCCTCAAACTTTGCCTGCAAATAAAAAGAGACTAATGCTCAAGTTATATAAATCTTGAAGGAGTGCAAGAAAATGAAAAACTAGAAGTGCAAAGCAACAATATAAAAATAAGCAACTATAACACTGATAGAGGAAATATTAAGCATGTGAAATAAGACGTAAAACTTGAATAGAGGAGCCAATAAAGTGATGTAATCAAATTGAGATGAGTTGACTCCAGATGAACAAAGCTACTAGACTAGTGAGGAGCTAACCTTGAAAAGGACAATAAGACCTTTCAAACCAAAATACCAAGAATGAGGCCTACAATGCTTAAACCAGACGAACTGTAATCTTCCAGCAACTTTGCACCAAAAACAAATTAATAGCATTTTTTTTTTTGAAAGGTATTGTAATAATTGGGGGTGGGGATTTGAACCCAGGACCTCTTGTCCACAAGTACATACAGTGTCAGTTGAGCTAAGCTCTTGTTGACAATTAATAGCATTTTTATCTGTGAGAATTTCTTTAAAACTACACAAATGGATTTGACCCGAGACCATGAGAGGTCCAAGAAATTGATTCAAGTTATATTAGAGAGCTTTGCTCTTTCATGTTGATATCGATGAAAATTTGGGTGATATACTTCTTGATTAGAGTCAATAAATGTCAACCAAATTAGAACTTTTGGATGGAATTTGATTAGGATATAGAAAATGGGATGTCAACCCTTGGTTCTATTAAGCTCAAATTCTCAACTTCATATGCATATAAATTTTCAAACTTATTTGGTCGAAAGCCTCTTCCTTGGTTATCTTGAAACGCCCCTTGGAGATAATCTCTGTTCCTTATCTTTGGAACTCAATGATAGAAAGAACCTTTAGAAGATCTTATATGTATGTATATAAAAATTCTCTATATGATTGAATAGATGAAAAACTGCTCATCTATATGCAGTTTATTTCTAAGAAGTATTGACTAACTTTTATTCAATTCTTCTTGTCTAGCTTCACCGTTGATTTCATATTGATAGACCTCCAATACTATATCAATATAGTAGGAGAGGGAAGAAGGGTAGTGGCACGACACGTGTGTAGAGTGACACGTGTGAGTTAGGTTAGTATAAATAAAGAACAAATGTGGGGCGGGAAAGTTAGTTAGAAACTTTGAAGAAGTAGGTTTCTGTTCTTCCTTGAGAGATAGGATAACAAGAGAGAGTTTTCAGTTTTAGTGTGTGATCGCATTAGTGTGTGTAACCTAGATTCAGTTTGAATCTATTATCAATAAAAGTAGAATTCTATTCTCTTAGTTTCTGGATTCCATCAAATTGGTATCAGAGCGTGTGATTCTGGCCAAGAAGAAAGATGGTGTAGACGAGAATTGAAGAAAAGATTGAAACGATAGATTAAGAGATTCACGGCATTAAGAAGGAGGTTGGGAAGTTGTCGGCGATTGAGAAAACGTTAATGGAAATCTCGAAGAATATGGAAAGGCAAAATCAAGTAATGTTGAGAGTTATGGAATCAGCCGCACAGGAAAGATCAATGATGAATGAAAGGATATCCGAATTGTCTATGCGGACTTTTCCGACAAAGATGAACGATGAATGCGAAGGATCTTCGAGGCGAGAAAACGAAACGAAAAATGAAGAGAAGAAACCGAATGACGAAGGGAACAATGACCGAAACAAATTCAAGAAGGTGGAGATGCCGATATTCAACGGAGATGATCCTGATTCGTGGTTATTTTGCGCTGAGAGGTATTTTCGTATCCATAAATTCACTGAATCTGAGAAGATGACAGTTTCTACTATAAGTTTCGAAGGACCAGCGCTGAATTGGTTTCGTTCTCAAGAGGAACGGGAGAAGTTTCTTGATTGGGCGAATATGAAGGAGAGGTTGTTAGAGAGATTCCGTTCATCGAGAGAAGGATCCTTGTATGGCCAATTTTTGCGTATCCAACAAACAACAACTGTGGATGAATATTGAAATTTATTCGATAAGTGGGTAGCACCACTAACTGATTTACCCGAAAAATTAGTAGAAGAGACTTTTGTTTCGGGATTGAAACCATGAATTCAAGCAGAGATGGACTTTTGCGAACTGAAAGGTTTAGCCCGTATGATGAAGATAGCGCAAAAGATTGAAAACAGAGAAGATATTCGGCGTGAGGCAAATCTTCCTGGATATTCCGGAGGAAGAACGACTAATCCACAGAATAATACTAAGGCTAACACGAATTCGAACGTTGGAGAAAATAAGGGGGGGTACGAATTGGCCAATGAGAACCATTACTCGACGTGGGACATCAAAGGAGGAAGTTCCAAAAGAAGGACCATCAAAGCGTTTATTTGATGCGGAATTCCAAGCTCGGAAGGAGAAAGGATTGTGTTTCGGTGTAATGAGAAATATTCTCATGACCATAAATGCAAAACTAAGGAGTTGAGGGAATTACGAATGCTAGTAGTTAATGGGGATGATAAAGAGTACGAAATTATTGAGGAAGGAGAGGAGACAATGAAGGAGTTGAAGACTATTGAAATAATGGAAGAAATCCAGGCGATAGTAGAGTTATCTATCAACTTTGTGGTTGGATTATCTAATCCAGGGACGATGAAGGTGAAGGGAAGGATACAAGAGAGAGATGTGGTGGTGTTGATTGATTGTGGAGCGACACACAATTTTGTTTCTGAAACACTTGTGAAGGAATTACAACTGGAGACAAAAGAAACCTCAAATTATGGGGTAATTTTTGGGTTTCGGTACTGCTGTAAAAGGAAAAAGGGATATGTGAAGCTGTGGAACTGATGATAGGAAACTGGAAAGTGATTGATGAATTCTTACCTTTGGAATTAGGGGGAGTAGATGCCATTTTAGGGATGAAGTGGCTTAATTCCTTGGGGATAACGGAGGTAGATTGGAAGAACTTGATATTGTCTTTTATGTATCAAGGAAAGAAGATTATAATACGAGGAGACCCTAGTTTGACTAAGGCTAGAGTAAGCCTGAAAAATTTAGTTAAAACATGGGGAGAAGAGGATCAAGGCTATTTGGTAGAGTACAGAGCCTTGGAAAGATGTGAAATATCGAAGGAAGTATTGACTGAGGAGGAGTCGGTTGCTGTTGTGTTGAAAAGATTTGACGATGTTTTTGATTGGCCAGAAACTTTACCTCCCCGGCGGGTAATAGAGCATCACATTCATCTGAAGGAGGGTGTAAATCCAGTAAATGTGCGAACATATCGATATGCTTACCAACAAAAAACTGAGATGGAGAAGTTAGTTGAAGAAATGTTATCGTCAGGGATAATACGGCCCAGCACAAGTCCTTACTCGAGCCCTGTATTATTGGTGAGAAAAAAAGATGGTAGTTGGCGGTTTTGCGTAGATTACAGAGCCTTGAACAATGTGACTGTGCCTGATAAATTTCCAATACCAGTAATTGAAGAGTTATTTGATGAGTTAAATGGAGCTGTGATATTCACTAAGCTGGATCTGAAGGCAGGATATCATCAGATTAGAATGAATGCCGATGATATTGAAAAGATCGCATTCAGGACGCATGAAGGTCATTATGAGTTCATGGTGATACCTTTCGGACTAACGAATGCACCTTCAACTTTCCAATCCTTAATGAATGCTGTATTCAAGCCGTTTCTCAGAAAGTTTGTGCTGGTATTCTTTGACGATATATTGATCTATAGCAGAGATTTGAAAGCTCATTTGGATCACCTCAAAGCAGTGTTAGAAATACTGCGAAAGAATGAATTATATGTTAACAAGAAAAAGTGCAGTTTTGCCAAGGCAAGGGTAGAATATCTGGGGCATATCATATCTGGAAGGGGAGTTGAGGTGGATCCGGAGAAAATTAGAGCCATCAAAGAATGGCCTATTCCAGTTAACGTGAGAGAAGTCCGAGGATTTTTGGGTTTAACTGGATATTATCGTAAGGTTGTAAGGCATTATGGTACGATTGCAGCACCACTGACTCAATTGTTGAAGAAAGGTGGATTTAGATGGACTGAAGAGGCTCAGGAAGCTTTCGTCAGACTGCGGAGAACCATGATGACACTACCGGTATTAGCAATGCCAGATTTCAGCATTCCCCTTTGAAATTGAAACGGATGCTTCGGGGCTATGGTTTAGGTGCTGTGTTGATACAAAACCATAGGCCTATTGCTTATTATAGCCACACTCTAGCAGTTAGAGATAGAGTTAAACCTGTTTATGAACGGGAATTGATGGCTGTAGTAATGGCAGTACAGAGGTGGCGACCCTATTTGCTGGGGGAAGAGATTCAAGGTAAAAACTGATCAACGGTCATTAAAATTCCTGCTGGAACAACGGGTGATACAACCCCAGTACCAAAAATGGATATCTAAGCTTTTAGGATATTCGTTTGAGGTAATATATAAACCAGGATTAGAAAATAAGGCTGCTGATGCATTGTCTAGAGTACCACCTACTGTCCATCTGAATCATTTGATAGCTCCGAATATAATTGATGTGGCAATGATTAAAGAAGAGGTTAATCAAGATGAGAAGTTTAAGAAGATCAGAGAAGAATTAGCAGAAAAAGGTGAGGAGCAGACCAGTAAATACTCTATGAAGCAGGGGATGTTAATGTATAAGAATCGAATGGTAATTTCTAAAACTTCTAAACCGATTCCTATGATCTTAGGTTAGTATAAATAAATATAGTAGGAGAGGGAAGAAGGGTAGTGGCACGGCACGTGTGTAGAGTGACACGTGTGAGTTAGGTTAGTATAAATAAAGAACAAATGTGTGGTGGGAAAGTTAGTTAGAAACTTTGAAGAAGTAGGTTTCTGTTCTTCCTTGAGAGATAGGATAACAGGAGAGAGTTTTCAGTTTTAGTGTGTGATCGCATTAGTGTGTGTAACCTAGATTCAGTTTGAATCTATTATCAATAAAAGTAGAATTCTATTCTCTTAGTTTCTGGATTCCATCACATTTCCATCTTTCAGTTGCCTAGCAAAGTTGCTTTAACGTTTCAATGTAGAATGAGGAATGCCCTCTTGGCCAAAGGATTTGATGATGGTAGTGATCTTATTAGAACGAAAAATTTCTAATGCCAAAAATGGTGGTGGGCTCGCCCTTGCCAAACTCAAAGATGCCAATATAGATCAAATGGGTCCAGATTACCCCATGAAAGAGTCTAGACACGTACCTGATTTTCATCCGTGGTTCACAAATTGCCATGGCAAACTTTGAAGAAATAGCCCTTGAAAACTTTATGTTACATGCAAGTCTCTCTTACAGATTTCTTTGGTTTCAAGATTGGCAGTAGCCATAATATTAGCTTTTAGGGAATGACGCTCTTTCCTTATATTTCCCTGCCTTAAGGTAGGAATTCAGAGGTTTTCAATCTTCTCTTTCTACCCTGTTGAACTACTCGAGCTTTTGCTTTCCTCTTCTCAGTTCTCACAATTAAGCTTGAATTGGTGCTATCCATGTCCAACTCAAGCCATTGATGAGGTACTTTTGGGCCGCCTCTTTTGGGGCAAAGGAATGGTTTTTGGAAGTGTAGTCATGAGTGTTTTGTGGGAGGCTTGGGTTGGAAAAACCCACAAAATCGTCCAACCAAAAATTTGCCACTATAAAATTAGGTAGATTAGTAACTTGAAGTTTCTTACATTGTGTTCTTTTCTGGTACTCCCTTTTGTAGTTTAAAACCTCTTTTGACGCGGTTGGCTTCACTTCTTGTCATGTGCTTTTTGTATCTTCTTTTTCTTGTCATTCTCGATCAATTATAATAAGACCATCTGAATTATGTACATGTCAGTATGGTAGCTTTGTTGGCTGTTTCACAATATTCATCTGCATCAATACATTAGAAAGGATATCTTTCAAATTTTTAGTCTACTGTATCTGCAATTAGATTTTCCTTGACTTAGATGCCCTCCGTAAACGTATGTTCGGGGTTTGGAAAGAGTATGTTCCCACATTTTTTCCCTTATAGTTCCTACCCTTGAGTGAGTATAATTAACTATATTGTTATCCACCCTTCTGTAAAATATAGGTGGCATGCTGTTGCATCATGGACTTGGAATGCCCAAGATGAAACATGTGGAATTTGTAGGATGGCCTTTGATGGTTGTTGCCCTGATTGCAAGCTCCCTGGAGATGATTGCCCATTGAGTGAGTCAACTTGCATTGTCTTCATATCCTCAAACTTTTTCTTCTACTATCAACCATTGCAACTCACAGTTGATTCGTGTTGTTTAAGGTTATACACACACATATTAAGAGAGCTCGAAAGACCATCAAACTTGGACATTTTTCCTTGAACATGATGGTAATGACCCCTTTATTTTGTTTTTCTTTAAATGCAGTTTGGGGTGCATGCAACCATGCTTTCCATCTTCATTGCATCCTAAAATGGGTGAATTCACAGACTTCTCAGGCTCATTGCCCCA ATGATAGGAAACTGGAAAGTGATTGATGAATTCTTACCTTTGGAATTAGGGGGAGTAGATGCCATTTTAGGGATGAAGTGGCTTAATTCCTTGGGGATAACGGAGGTAGATTGGAAGAACTTGATATTGTCTTTTATGTATCAAGGAAAGAAGATTATAATACGAGGAGACCCTAGTTTGACTAAGGCTAGAGTAAGCCTGAAAAATTTAGTTAAAACATGGGGAGAAGAGGATCAAGGCTATTTGGTAGAGTACAGAGCCTTGGAAAGATGTGAAATATCGAAGGAAGTATTGACTGAGGAGGAGTCGGTTGCTGTTGTGTTGAAAAGATTTGACGATGTTTTTGATTGGCCAGAAACTTTACCTCCCCGGCGGGTAATAGAGCATCACATTCATCTGAAGGAGGGTGTAAATCCAGTAAATGTGCGAACATATCGATATGCTTACCAACAAAAAACTGAGATGGAGAAGTTAGTTGAAGAAATGTTATCGTCAGGGATAATACGGCCCAGCACAAGTCCTTACTCGAGCCCTGTATTATTGGTGAGAAAAAAAGATGGTAGTTGGCGGTTTTGCGTAGATTACAGAGCCTTGAACAATGTGACTGTGCCTGATAAATTTCCAATACCAGTAATTGAAGAGTTATTTGATGAGTTAAATGGAGCTGTGATATTCACTAAGCTGGATCTGAAGGCAGGATATCATCAGATTAGAATGAATGCCGATGATATTGAAAAGATCGCATTCAGGACGCATGAAGGTCATTATGAGTTCATGGTGATACCTTTCGGACTAACGAATGCACCTTCAACTTTCCAATCCTTAATGAATGCTGTATTCAAGCCGTTTCTCAGAAAGTTTGTGCTGGTATTCTTTGACGATATATTGATCTATAGCAGAGATTTGAAAGCTCATTTGGATCACCTCAAAGCAGTGTTAGAAATACTGCGAAAGAATGAATTATATGTTAACAAGAAAAAGTGCAGTTTTGCCAAGGCAAGGGTAGAATATCTGGGGCATATCATATCTGGAAGGGGAGTTGAGGTGGATCCGGAGAAAATTAGAGCCATCAAAGAATGGCCTATTCCAGTTAACGTGAGAGAAGTCCGAGGATTTTTGGGTTTAACTGGATATTATCGTAAGGTTGTAAGGCATTATGGTACGATTGCAGCACCACTGACTCAATTGTTGAAGAAAGGTGGATTTAGATGGACTGAAGAGGCTCAGGAAGCTTTCGTCAGACTGCGGAGAACCATGATGACACTACCGGTATTAGCAATGCCAGATTTCAGCATTCCCCTTTGA MIGNWKVIDEFLPLELGGVDAILGMKWLNSLGITEVDWKNLILSFMYQGKKIIIRGDPSLTKARVSLKNLVKTWGEEDQGYLVEYRALERCEISKEVLTEEESVAVVLKRFDDVFDWPETLPPRRVIEHHIHLKEGVNPVNVRTYRYAYQQKTEMEKLVEEMLSSGIIRPSTSPYSSPVLLVRKKDGSWRFCVDYRALNNVTVPDKFPIPVIEELFDELNGAVIFTKLDLKAGYHQIRMNADDIEKIAFRTHEGHYEFMVIPFGLTNAPSTFQSLMNAVFKPFLRKFVLVFFDDILIYSRDLKAHLDHLKAVLEILRKNELYVNKKKCSFAKARVEYLGHIISGRGVEVDPEKIRAIKEWPIPVNVREVRGFLGLTGYYRKVVRHYGTIAAPLTQLLKKGGFRWTEEAQEAFVRLRRTMMTLPVLAMPDFSIPL Homology
BLAST of Cucsat.G3153 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: 264.2 bits (674), Expect = 2.5e-69 Identity = 149/421 (35.39%), Postives = 240/421 (57.01%), Query Frame = 0
BLAST of Cucsat.G3153 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: 260.8 bits (665), Expect = 2.8e-68 Identity = 134/340 (39.41%), Postives = 207/340 (60.88%), Query Frame = 0
BLAST of Cucsat.G3153 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: 249.6 bits (636), Expect = 6.5e-65 Identity = 155/450 (34.44%), Postives = 236/450 (52.44%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy Swiss-Prot
Match: Q7LHG5 (Transposon Ty3-I Gag-Pol polyprotein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=TY3B-I PE=1 SV=2) HSP 1 Score: 242.3 bits (617), Expect = 1.0e-62 Identity = 130/311 (41.80%), Postives = 180/311 (57.88%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy Swiss-Prot
Match: Q99315 (Transposon Ty3-G Gag-Pol polyprotein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=TY3B-G PE=1 SV=3) HSP 1 Score: 241.5 bits (615), Expect = 1.8e-62 Identity = 130/311 (41.80%), Postives = 180/311 (57.88%), Query Frame = 0
BLAST of Cucsat.G3153 vs. NCBI nr
Match: KAA0067256.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa] >TYK10865.1 Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 654 bits (1687), Expect = 3.98e-228 Identity = 311/436 (71.33%), Postives = 367/436 (84.17%), Query Frame = 0
BLAST of Cucsat.G3153 vs. NCBI nr
Match: TYK15157.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 661 bits (1705), Expect = 3.66e-227 Identity = 313/438 (71.46%), Postives = 374/438 (85.39%), Query Frame = 0
BLAST of Cucsat.G3153 vs. NCBI nr
Match: KAA0066118.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 661 bits (1705), Expect = 4.91e-226 Identity = 313/438 (71.46%), Postives = 374/438 (85.39%), Query Frame = 0
BLAST of Cucsat.G3153 vs. NCBI nr
Match: KAA0053639.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa] >TYK00808.1 Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 645 bits (1663), Expect = 7.52e-225 Identity = 302/437 (69.11%), Postives = 366/437 (83.75%), Query Frame = 0
BLAST of Cucsat.G3153 vs. NCBI nr
Match: KAA0061635.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 656 bits (1692), Expect = 6.05e-224 Identity = 310/438 (70.78%), Postives = 373/438 (85.16%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy TrEMBL
Match: A0A5A7VLC6 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold231G00370 PE=4 SV=1) HSP 1 Score: 654 bits (1687), Expect = 1.93e-228 Identity = 311/436 (71.33%), Postives = 367/436 (84.17%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy TrEMBL
Match: A0A5D3CTA1 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold790G00220 PE=4 SV=1) HSP 1 Score: 661 bits (1705), Expect = 1.77e-227 Identity = 313/438 (71.46%), Postives = 374/438 (85.39%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy TrEMBL
Match: A0A5A7VEI2 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold21G001140 PE=4 SV=1) HSP 1 Score: 661 bits (1705), Expect = 2.38e-226 Identity = 313/438 (71.46%), Postives = 374/438 (85.39%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy TrEMBL
Match: A0A5A7UJK0 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1545G00090 PE=4 SV=1) HSP 1 Score: 645 bits (1663), Expect = 3.64e-225 Identity = 302/437 (69.11%), Postives = 366/437 (83.75%), Query Frame = 0
BLAST of Cucsat.G3153 vs. ExPASy TrEMBL
Match: A0A5A7V707 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold212G00030 PE=4 SV=1) HSP 1 Score: 656 bits (1692), Expect = 2.93e-224 Identity = 310/438 (70.78%), Postives = 373/438 (85.16%), Query Frame = 0
BLAST of Cucsat.G3153 vs. TAIR 10
Match: ATMG00860.1 (DNA/RNA polymerases superfamily protein ) HSP 1 Score: 146.7 bits (369), Expect = 4.2e-35 Identity = 68/130 (52.31%), Postives = 91/130 (70.00%), Query Frame = 0
BLAST of Cucsat.G3153 vs. TAIR 10
Match: ATMG00850.1 (DNA/RNA polymerases superfamily protein ) HSP 1 Score: 52.4 bits (124), Expect = 1.1e-06 Identity = 23/39 (58.97%), Postives = 31/39 (79.49%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (B10) v3
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.
|