PI0016873 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTTGTGAGTCGGCCTCTTTCCTTATTTAGAAGGTCACCAAGCAGCGTTTCGATGCCTGTGGCGGCGTCGGAGGGTCCATTTTCGGGGGTTTTCGTGGTGAAAGATGAGGAAGCTGAGGCCGAGGATTCATACTGTTGGGGGATTTGCAAGAGAAGGAGGATTAAGAAGCCACCATTTCCACAAGATAGAATATTGACCATTCTTCATAGTTCTTCTCGATATGAAGAAACAAAATCCACTAAAGTTTGGTTTCTTCCTGTTCTTGATCGTCCTCTTTCTTCTAACCGTTACTATCTTATCAAAGCTCGTGGCAAACATAAAGGGTTAGTTTCCTTTCTCTTGTTTGCCTCCTCCTTTTCTCTAATATTATATTGCTATGAGAAGATGTTTGGTTTTCACTCAACTCAATATTTGACTCCCCAAGTTTACAAAAGTCGGTGCTAATTAACTTAATTCTATCGATATACTAATGGTATTTAATATTTAATATCGTGGAACTTTTAGATGTCTAATTTTTTAATTATTATTTCTTATGCATATATATCTTAACACACTTACTGACTTTTTCTTTAAACATAAGAGTTTGGTCTTGCTTAGTCAAATCTTATTTGGTTTTTTGTTTTTAGGTTTTTTGAAGATTAAACTCTATAAATACTCCTTATTATCTCTAAATTTTTTTTCTTTTTCACTTTAACTAATGTATTTTAGAATCAAGCAGCCAAGTTTTGAAACTAAAGATAGTAGTTTTTTTATTTTCAAAAGTTGGTTGAACAACTCAAATCCTTTATTTAAATGATTAGTTTGATTTTTGAATTTCTAAGTTTGTGTTTGTTTCCTTATTTAATGAAACTTTAAAAACTATCTAACTATTCTTTTAAATTGTTGTTTATATATAAATCTCTAATGTATAGTTGTATTTACTAAGACTTGTACGCAATATTTTTTGATACATTACTAAACTAATTTTACATGATGTTTTGAGCAATAGACATCTTACGCTTTAGAAGGTTAAACTTAATGGGTTTAAGAACTATGTTAGTAGGGTAATTAGTATATCAACTTTTAAGTTTAGAAAATATGTAGGGGGGAATTAGTCTAGGGAGAGGTTTGTCTAATAAATTCTAGGAATAACAAATAAATTTAAGAGAAAAAGAAATAATTGTCATTTAATTTAATACATAAATTTGTTTCCATTTTAAAATGGACAAAACCAAATGGTTTGAATACCAAACTTTGTACTTTTAACTTCCAAAATTATTATCACCTCTTTTAATGTCATACAAAATATTTGTCAAAATTTTAATTAAAATATTTTGAAGATATTATATTAAATAGAACATATGTAGGAAGCCTTTTAACTTAATTGTCTCTTCTTCTCCCTTCCCTTAAATTATTTATATATCATTTTTTGTCTCTTTCAATGATTTTCCTTCATAATATTCATTATATATATCCTAAAAGGGTTTGCTTTCCCTTTTATCTCCACTTTCTCTTTATTTTTCCATTATTTATATGTATTTAAATTAAATGTAACATAAAACTCTCTCTCATCTTCATCTAGAACAGCATATAATTATATGCACTATACTTAAAAAAAAATAAATAAATAACAAGATCGTTTGGACGGATTAGAGAATATTTACAAAATATAGTAAAATTTCAGATTCTATTAATAATAGATATTAATAGACGTTAATAGACATTCTGTCAGTGTCTCTACTAATCAATGTCTGATAAACGCCAATAAAAATCTATCAGCGTCTATTAATATCTATCATTGATAAAATCTGATATTTTGGTATATTTTGCTATATTTGAAAATGTTTCTATTTTAAATTCTCTTTCTTCCCATATTATTTAATTAGGTAATCGTTTTAAATGACAAAACACTTAAAATATTTACAAATATAACAAAATTTTATTGTCTATTAATGATAGACATTAGTGTCTATCATTGTATATCAATTATAGATGATAATAGTTAATCAAGTGATAGATGAGAGTAGTCAATCAGTATGTATCATTAAAAGTCAACAGTATCTTATTATATTTTACTATATTTTATTATATTTGTAAATATTTTGATTATTCTTTATATTTACAAACAACCATTTAAATTTCTCTCTATTTGTCAACTTGATCTGGCATATAAATGTGATTGACTGAAAGGTTAGAAGATTAAATTATTAACTTCTGCTCAAAAAAGAAAAGAAAAGAAATCTATATTTCCATAGTATTTCTATTTATCTCAAAAGGCTACTTTATCTTTCTATCTCTAATTTTCATGCATATTTAAATGTGAAAATCACTTTTATTGTCATTCAAAATTCATCTTAAAACATGTAATCAATCACTTAAAATTAATTTATCATTTAATTTTATATTTTTAAATGCAATCATAAAAAATTAGTTTTGAACAATAGAAAAAATATTTAAGGATAATTTGAAAATGACAAAATTGATAGGATACGTGTCTTGTCAACCAAGAGATCATTTAAATTATGAATCCAAGACCGCTTCATGTCAAATTGTAAAAAGAAAAATTGTGAATTATAAAACATAAAATAGAAAATCTTAAAAATTTAACAACCTATTACACATAAATTTAAAACACATGACAAAATTGACACTAGTTCTAACTTTATAATCTACGGTTTTTTCAAAACTATAACAAAACGGTAAAATTTACATTTTATAAAATAATTTTGAAAACGAAAAAAGTTTACAGGTGTTTTATATTTGTTAGATTTGGTTGTAGCCAAATCTAAACATATAATAAGATCTTTTATATTTCGTACATAATCTTGAACAACGAAATAACACAGTTTGAATAAAAATAAAAGAAAAAAAGATTTTTTATATTTGGTATACAATCTTGAACCAAATAACAGTTTGAAAAAAAAATAAAAGAAAAATTGTATAAAAAGAAAAAAAGACTATGAAAATGAAAAAAAAAATTGCAGAAAAAAGAAGAAAAGAAATAAATGGAAAGGAAGGGCAAACCTTTGAAAAAAATGACTGGTTTTATAGATTTTTTAATTTTGTAATACGAGCCGTAAATATTTAGGTTTTGTTATATTTAGGTAAATTATCTTATAATTTATGAAAACAATCAATTTATACTCATAAAGTTAAGAGGATTATCTTTATGGAAACTTGAACAATTTAAATGGTAATCTTTCATTTTTTTAGTACTACTTTAGACCAATTCATTAATAAATAAAGAAAAACAAAATTAGATGATAATATTAAAAACCTAAAATAATTAAAGAAAAGCACTACATGTCATTTATTTCAATATTTATTTCTAATAAATTGCTACTATTACATTCTTTCATCTCCAATCACTTTCAAAATCCACCTTCTTCCTTTTTAACAAATAGTTTATTTTTCTTCTTTTAAAGCTAGTTTTTTAAAATCTAGTTAGCTATAAACTTCAGACGCCTGAATGTATGAATATTTAAGTAACAATTTCTTTTTAGTTTTTAGTTTTTGGTTTCTGATTATTAAATTTACGTCAAATTCATCTTTTACTATGATTTATATCTTTTCTTAAATACAATGTTTTAATTTTTTAGTCAAAGTCAAAAATAAAAATGACTTTTTAAAAGCTACTCCTTTTTACTTTTTAAAAGCCAACTTGATTTTTTAAATTATTGGTAAAAGTATATAACAAATGAAGAAATTTAGATGTGAAAAATATGAATTGAGTAGTCCAGGTTATTTGGGTTGTCGATGGAAATAATATTTTTAGACTTTATTTTTTAAAAAAATCAAATGATTATCAAATAAAATTTAGATAATCATGTTTATTTTGCTTTAACTTGTATATGAAAATATCTTAAAAGATTATGTATTATACCAATAATGTATATATGATAAGTGTCTTAATATTTTAGTGAATCTTTATGGTATAATTTAAATATATGAATTAATTTAAATATTAGTTGGAGGTTTTTATAAATTGTAAAACATTCAATTTCAATTTTACTTCATTAATATAATTGATGATATTTTAGTGTTGTATACATTAGGGTATTTTTAAATATAGTAAAACGAATCCAACATTTATAAAATATTGCAAATTTTTATATTATATGTCTATCAGTTTCTTTCATTGAAAGAACCTAAAATTTTGATATGTTAGGTAAATATTTTTAACAATTTTATCATTTACAATATTTTTTGTATACCATTAATTTATTTTGTAAATAAAAGTTATTTTTTATCTTAACTTTTCTTATCATTAAGACTCAAAAAACATGGTAGAATGTCATTTTCTCTCTTGATTTGAGGAACAATGACAATCTGATCGATTGTAATCTAAAATCCATCCAAAAAAGTTGTAGCAACGAAAACCTAAGTGATGAAGGAAAAAGAAGACATGAACGTAACTTTATCTTTATTAAATCAGTTAAATTAATGTAAAAACATATATTTTTAACGTGATTTTTAACCATTTCAAAATCATTTATAAATATATTTGTCAGGTTTAAAATCAGAGTATATGTTTAGAATTATTGTGGGTAACATACCTCTTATAATATAAAATTGATATAGTATTTTATTAAAATGAGACTTTAATTTGACAATCTCAAATGATCCAACATAGAAGTCAGCTTGCTTAGAGTTTTTTTGCTAGATATGATATATAAATTATCTAATTCTATTGGCATTTCGACAATCTGTATTATTTGATATTCCTTTGGGTTAATTAATAATATTATTATTTTCGTCTATACATTGAAATAAATAATACACTATTAGTAAATCACATAAATTTTTATATTGATGTTTATTTTTTACGCGTTCTAACTATTTCTTTTATTCTCGATTTCATAAAAACATTTTAATTAAAATGAAAATTTTTATACCATCGATTTTGAGTGATCTAAACACAACAAAAGAGATTTTAACCCTCTCATATCTCCCCATCCAATAGGAAGGCATACAAATGCTCAAGAGAAAACGACATAAGAACATGTTGCTTCGGGGACGTTTTGAGCGACAAGAAGCCATCACCCTTCAACTTGAAAGACATCTACCAACAGTTTCAGATTCACAGGTACCATGGCGGCGGTTTCTTTGCTCAGTCGGTCGCCCCCGATGGTGTTCCGCCGAAGTTTCTTCGAACCAAAGGATGGAAACTTCGTTCTTCTTCTTCTTCGTCGACTTTGCATCTTCCATTTGAGGAAGCTCTTGGCTTAGACTCCTCTAGTAGAGAGCTTCTTCCTGACTTTAACTTCCCCATCTTTACCACTCGCTCTCCTCCTGTGGTTGTCGGAAAATGGTAACCTCTTTTTTTTCCTTTCATTCTCCAAACTCACTTTCCACTCCTATTTGTTTTTAGAATTTGAAATTCAACTCTAATAATAAAAAAGATGCTAAATCACAGTTAGAAAATGAGTAGAAATATACCTAATTTTCAAAAACCAAAATATTACCAAATAGATTTTAGTATTTTAAAAATTACCTCTATCAATATCCATTCTATCTCAAAATTTCTGCTTTTGTTATCTAAAAAACAATCCAAGTTTTGAAAACTAAGAAGAGTGGTTGTTAAACACTTGTGTTATGTTTTTCAAATTCGTTTAATAATTCAACTCTTTTACTTTAAAAAAAAATGAAAATGATTGAAAGAAATTGAAAGAACATTTAGTTAGTTTTCAAAAATTAATGATTACCAAACAATGAGATCTTTGATTTTTGTTTTAGAAATTGGACCCAAATGAAAAAAAAAAAAAAAGAACTTTGAAACTTATGGAATAATTATAATTTCAACAATTTTGTTAAGTTCAAGAGCCCAATTTTAAAACATGTATAAATGTGAGATCTCAATTTTTTTCCATTGAAAATTTGAGAATATAAGGGTCCGTTTGGTAACGTTCATGTTTTTTGTTTCTTGTTCCTTATTTCTCGTTCCTTATTTCTTCTTTTTTTAAACAAGAAATGAGACTGTGTTTGATAACTATTCTCGTTTCCTGTTTCTTGAAAAAATGAAACAGAAACAGAAATTTGTTTGGTAATAATTTCTTATTTCTCGTTTCTTGTGTTATTTCTCATAACATTTTTCGCTTATTTTTTTAGTTTAAATATAATTTAATTATGAAAAAATAAATATATATATATAATTCATTAAAATATTAAAAAAATAATTATAAAACATTAACATTATCAAATACACATAAATCTCATAGCAAAATTAATAACCATTATTCAATAGGTTTTATCAATCATAATGTTGTTAAAATTTGATTTGAAATATTATTTCTCATTTAATTCATTTGCCTTAAATGGTGTTGATTCAAATTCAACTCAATTATATTATTATGTAAATATCGTGGTTGTAAAATATTAAAAATAACCAAGATAAATATTTTAGTAAAAAAATGTATATAATGTAAAATTCTGACTAATTTAAAAGGAACTAAAAATAATAAATTTAAATGTAAAATAACATACAGACATGCCTATTGCAAAATTTAAATTTTAAAATTTAGAATATATTTAAATAAACATATTAAATATTTAAATTTAGAATATCAAAATAATATATAAATTTAAATATTGAACAATTTAAAATTCAAAATTAAATTAAAGATGTATATACGAAAAAATAAAAAATAAATGTAGTTAAATAGAAAAGAAAATTTAAAAATCAAATAATACATAAATCTAAATATTAAAAAATTCAAAATTCAAAATTAAAAATTAAGTTAAACATATAAATATGAAAAATAATAAAGAAAGGAAAAGAATATTAAACATATATGAAAAATTAATAATAAAAGGAAAAAATAAATTAAATTAAGAAATATAAAACATATAAATATGAAAGATAATTACGAAGAATTAATAAATGAAGGGAGAAAAAGAATACAAAATCATCATTTAAGGAATACCACCCTACCAATGAATCAGAACTAGAAGTGGAAATGGAATTAAATAAAATGAATCAGAACTAGAAAAAATTATTTTCCATAGTTTCTCAATTTTTGCCAAATTTTGAGAAACGTTTCTGAAAATTTGGCAATGAAAAACGGAAACGGTTACCAAACATATTTGTTTCTTAAAAAATGAGAAACAGAAATAAGAAATAGGAAACAAGAACGTTATCAAATGGACTCTAAGCAACCGCTATCCTATTTTAGGAGGCACGTTTTTCCAATTTGCTTTTCTCTTTACCAGTCAATCTAACCTTTTTTTTTTTTTTTCAAGGACGATTCTGGTCTATATAATTTTGTCTTCTTTATTGATTTGTCATACTCATAGATCATTTTCAATCTATGAGATCACCACACTAACATCTATATTTTCTTCTTTTCTTCTTCTTACTTCTCCCTTCTTTCTTTTATTTCTTTCTTTCTTCTCTTTTCTTTCTTTTTCTTTATAATTCAATAGTTTAGTTTTCACTTTAATTTAAATTTGATTTTGCTTATAGAATAATTAAGTAAATATTGCATTCAAATTTCTTTTCATGTGTCATCGTTATCTTCATCATTTCACTTTCGATTATGAATAATTTTAATGTGCGAATTATAACTTGAATGATGCTTAAGTTTTCTTTAATGTCTAGTTAATAATTTTTGAACTACAAATAGGTTTTTAATTATTTTTCTATACTTTTCATCGTTTGGATTAGCAATAAGTTTCTATTAATGACATCATTTACTTAATTCTTAACCAAATGATTTTGCACAATACACAATAATAGATTCTCCAGAAAAAATTAAGTCAAGTAAGCCAAAAATTATAAAGGTTGAATGACTAGACAAGTAGGAACAAACGTATCATATATTACAAATCCAACCTTTTGGCACATGTCCATCCTTAAAGTTTATTTAGTTGGCTTACTATATTATTTTTATATATTTTTCATTCTCTTCTGAATTAGGTTATGCCCATTTGTTTTTGTGAGGGAGAACTCAATGAGCATAAGAAAGCAAATGAAAAGATCACCAACTTACTCTCTCACTCTCGAACAATGTTGGGAAGAAATGTTCTCTTGTGAGAGCCCTAACGACGAAACTAGCTCCATCGTGACCGTCACCATCGACGTGGCTAGAGAGGTCGTGTTGGTAGCCGGGAGAGAAGCGGAGAGAGAGAAAGGAGATGAGCATAGAAAAGGATTCATTTGGTTTAAGGTTTGTAATAGATTAGATTGTGGTGGGAAAGCTATGGGCATAGGACTAAGCATTGCCCTATTAGAGAAGATGAGATGGGTGCAAGAAGCAGGCGGCTGGTTTGGCGGCGGCGACAACGGTGGAGAGAAAGTAGTGAGGGTGGAGAAAGTAGAAGAAATTACAAGTGAGAATGGTTGGAGAAGATTTAGCCTTTATATGTTGGTGGAAAGCTTTGTTCTTAGGAGATCCAATGGATGCTTGGTTTGGAAATATAATTTCAGGCATACTCATACCATTAAATGTAAATGGGAATAGCAAGCAACATCATCATCTTTTTCCTTCTTATTACAACCAAATATTTTTTTAGTTTGAG ATGCTTGTGAGTCGGCCTCTTTCCTTATTTAGAAGGTCACCAAGCAGCGTTTCGATGCCTGTGGCGGCGTCGGAGGGTCCATTTTCGGGGGTTTTCGTGGTGAAAGATGAGGAAGCTGAGGCCGAGGATTCATACTGTTGGGGGATTTGCAAGAGAAGGAGGATTAAGAAGCCACCATTTCCACAAGATAGAATATTGACCATTCTTCATAGTTCTTCTCGATATGAAGAAACAAAATCCACTAAAGTTTGGTTTCTTCCTGTTCTTGATCGTCCTCTTTCTTCTAACCGTTACTATCTTATCAAAGCTCGTGGCAAACATAAAGGGAAGGCATACAAATGCTCAAGAGAAAACGACATAAGAACATGTTGCTTCGGGGACGTTTTGAGCGACAAGAAGCCATCACCCTTCAACTTGAAAGACATCTACCAACAGTTTCAGATTCACAGGTACCATGGCGGCGGTTTCTTTGCTCAGTCGGTCGCCCCCGATGGTGTTCCGCCGAAGTTTCTTCGAACCAAAGGATGGAAACTTCGTTCTTCTTCTTCTTCGTCGACTTTGCATCTTCCATTTGAGGAAGCTCTTGGCTTAGACTCCTCTAGTAGAGAGCTTCTTCCTGACTTTAACTTCCCCATCTTTACCACTCGCTCTCCTCCTGTGGTTGTCGGAAAATGGTTATGCCCATTTGTTTTTGTGAGGGAGAACTCAATGAGCATAAGAAAGCAAATGAAAAGATCACCAACTTACTCTCTCACTCTCGAACAATGTTGGGAAGAAATGTTCTCTTGTGAGAGCCCTAACGACGAAACTAGCTCCATCGTGACCGTCACCATCGACGTGGCTAGAGAGGTCGTGTTGGTAGCCGGGAGAGAAGCGGAGAGAGAGAAAGGAGATGAGCATAGAAAAGGATTCATTTGGTTTAAGGTTTGTAATAGATTAGATTGTGGTGGGAAAGCTATGGGCATAGGACTAAGCATTGCCCTATTAGAGAAGATGAGATGGGTGCAAGAAGCAGGCGGCTGGTTTGGCGGCGGCGACAACGGTGGAGAGAAAGTAGTGAGGGTGGAGAAAGTAGAAGAAATTACAAGTGAGAATGGTTGGAGAAGATTTAGCCTTTATATGTTGGTGGAAAGCTTTGTTCTTAGGAGATCCAATGGATGCTTGGTTTGGAAATATAATTTCAGGCATACTCATACCATTAAATGTAAATGGGAATAGCAAGCAACATCATCATCTTTTTCCTTCTTATTACAACCAAATATTTTTTTAGTTTGAG ATGCTTGTGAGTCGGCCTCTTTCCTTATTTAGAAGGTCACCAAGCAGCGTTTCGATGCCTGTGGCGGCGTCGGAGGGTCCATTTTCGGGGGTTTTCGTGGTGAAAGATGAGGAAGCTGAGGCCGAGGATTCATACTGTTGGGGGATTTGCAAGAGAAGGAGGATTAAGAAGCCACCATTTCCACAAGATAGAATATTGACCATTCTTCATAGTTCTTCTCGATATGAAGAAACAAAATCCACTAAAGTTTGGTTTCTTCCTGTTCTTGATCGTCCTCTTTCTTCTAACCGTTACTATCTTATCAAAGCTCGTGGCAAACATAAAGGGAAGGCATACAAATGCTCAAGAGAAAACGACATAAGAACATGTTGCTTCGGGGACGTTTTGAGCGACAAGAAGCCATCACCCTTCAACTTGAAAGACATCTACCAACAGTTTCAGATTCACAGGTACCATGGCGGCGGTTTCTTTGCTCAGTCGGTCGCCCCCGATGGTGTTCCGCCGAAGTTTCTTCGAACCAAAGGATGGAAACTTCGTTCTTCTTCTTCTTCGTCGACTTTGCATCTTCCATTTGAGGAAGCTCTTGGCTTAGACTCCTCTAGTAGAGAGCTTCTTCCTGACTTTAACTTCCCCATCTTTACCACTCGCTCTCCTCCTGTGGTTGTCGGAAAATGGTTATGCCCATTTGTTTTTGTGAGGGAGAACTCAATGAGCATAAGAAAGCAAATGAAAAGATCACCAACTTACTCTCTCACTCTCGAACAATGTTGGGAAGAAATGTTCTCTTGTGAGAGCCCTAACGACGAAACTAGCTCCATCGTGACCGTCACCATCGACGTGGCTAGAGAGGTCGTGTTGGTAGCCGGGAGAGAAGCGGAGAGAGAGAAAGGAGATGAGCATAGAAAAGGATTCATTTGGTTTAAGGTTTGTAATAGATTAGATTGTGGTGGGAAAGCTATGGGCATAGGACTAAGCATTGCCCTATTAGAGAAGATGAGATGGGTGCAAGAAGCAGGCGGCTGGTTTGGCGGCGGCGACAACGGTGGAGAGAAAGTAGTGAGGGTGGAGAAAGTAGAAGAAATTACAAGTGAGAATGGTTGGAGAAGATTTAGCCTTTATATGTTGGTGGAAAGCTTTGTTCTTAGGAGATCCAATGGATGCTTGGTTTGGAAATATAATTTCAGGCATACTCATACCATTAAATGTAAATGGGAATAG MLVSRPLSLFRRSPSSVSMPVAASEGPFSGVFVVKDEEAEAEDSYCWGICKRRRIKKPPFPQDRILTILHSSSRYEETKSTKVWFLPVLDRPLSSNRYYLIKARGKHKGKAYKCSRENDIRTCCFGDVLSDKKPSPFNLKDIYQQFQIHRYHGGGFFAQSVAPDGVPPKFLRTKGWKLRSSSSSSTLHLPFEEALGLDSSSRELLPDFNFPIFTTRSPPVVVGKWLCPFVFVRENSMSIRKQMKRSPTYSLTLEQCWEEMFSCESPNDETSSIVTVTIDVAREVVLVAGREAEREKGDEHRKGFIWFKVCNRLDCGGKAMGIGLSIALLEKMRWVQEAGGWFGGGDNGGEKVVRVEKVEEITSENGWRRFSLYMLVESFVLRRSNGCLVWKYNFRHTHTIKCKWE Homology
BLAST of PI0016873 vs. ExPASy TrEMBL
Match: A0A1S3C461 (uncharacterized protein LOC103496674 OS=Cucumis melo OX=3656 GN=LOC103496674 PE=4 SV=1) HSP 1 Score: 803.1 bits (2073), Expect = 5.2e-229 Identity = 387/409 (94.62%), Postives = 396/409 (96.82%), Query Frame = 0
BLAST of PI0016873 vs. ExPASy TrEMBL
Match: A0A0A0KR18 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G290170 PE=4 SV=1) HSP 1 Score: 794.7 bits (2051), Expect = 1.9e-226 Identity = 384/407 (94.35%), Postives = 393/407 (96.56%), Query Frame = 0
BLAST of PI0016873 vs. ExPASy TrEMBL
Match: A0A6J1E1Y2 (uncharacterized protein LOC111025679 OS=Momordica charantia OX=3673 GN=LOC111025679 PE=4 SV=1) HSP 1 Score: 723.0 bits (1865), Expect = 6.9e-205 Identity = 341/405 (84.20%), Postives = 374/405 (92.35%), Query Frame = 0
BLAST of PI0016873 vs. ExPASy TrEMBL
Match: A0A6J1JJ80 (uncharacterized protein LOC111487427 OS=Cucurbita maxima OX=3661 GN=LOC111487427 PE=4 SV=1) HSP 1 Score: 700.3 bits (1806), Expect = 4.8e-198 Identity = 338/408 (82.84%), Postives = 369/408 (90.44%), Query Frame = 0
BLAST of PI0016873 vs. ExPASy TrEMBL
Match: A0A6J1FQM2 (uncharacterized protein LOC111447568 OS=Cucurbita moschata OX=3662 GN=LOC111447568 PE=4 SV=1) HSP 1 Score: 698.7 bits (1802), Expect = 1.4e-197 Identity = 337/408 (82.60%), Postives = 369/408 (90.44%), Query Frame = 0
BLAST of PI0016873 vs. NCBI nr
Match: XP_008456844.1 (PREDICTED: uncharacterized protein LOC103496674 [Cucumis melo]) HSP 1 Score: 803.1 bits (2073), Expect = 1.1e-228 Identity = 387/409 (94.62%), Postives = 396/409 (96.82%), Query Frame = 0
BLAST of PI0016873 vs. NCBI nr
Match: XP_004140425.1 (uncharacterized protein LOC101206442 [Cucumis sativus] >KGN50857.1 hypothetical protein Csa_004693 [Cucumis sativus]) HSP 1 Score: 794.7 bits (2051), Expect = 3.8e-226 Identity = 384/407 (94.35%), Postives = 393/407 (96.56%), Query Frame = 0
BLAST of PI0016873 vs. NCBI nr
Match: XP_038891784.1 (uncharacterized protein LOC120081171 [Benincasa hispida]) HSP 1 Score: 765.0 bits (1974), Expect = 3.3e-217 Identity = 368/406 (90.64%), Postives = 386/406 (95.07%), Query Frame = 0
BLAST of PI0016873 vs. NCBI nr
Match: XP_022159269.1 (uncharacterized protein LOC111025679 [Momordica charantia]) HSP 1 Score: 723.0 bits (1865), Expect = 1.4e-204 Identity = 341/405 (84.20%), Postives = 374/405 (92.35%), Query Frame = 0
BLAST of PI0016873 vs. NCBI nr
Match: XP_022990597.1 (uncharacterized protein LOC111487427 [Cucurbita maxima]) HSP 1 Score: 700.3 bits (1806), Expect = 9.9e-198 Identity = 338/408 (82.84%), Postives = 369/408 (90.44%), Query Frame = 0
BLAST of PI0016873 vs. TAIR 10
Match: AT1G61600.1 (Protein of unknown function (DUF1262) ) HSP 1 Score: 367.5 bits (942), Expect = 1.4e-101 Identity = 200/432 (46.30%), Postives = 270/432 (62.50%), Query Frame = 0
BLAST of PI0016873 vs. TAIR 10
Match: AT1G13540.1 (Protein of unknown function (DUF1262) ) HSP 1 Score: 253.1 bits (645), Expect = 3.9e-67 Identity = 154/413 (37.29%), Postives = 230/413 (55.69%), Query Frame = 0
BLAST of PI0016873 vs. TAIR 10
Match: AT1G13520.1 (Protein of unknown function (DUF1262) ) HSP 1 Score: 246.5 bits (628), Expect = 3.6e-65 Identity = 154/412 (37.38%), Postives = 234/412 (56.80%), Query Frame = 0
BLAST of PI0016873 vs. TAIR 10
Match: AT1G13530.1 (Protein of unknown function (DUF1262) ) HSP 1 Score: 244.2 bits (622), Expect = 1.8e-64 Identity = 151/411 (36.74%), Postives = 231/411 (56.20%), Query Frame = 0
BLAST of PI0016873 vs. TAIR 10
Match: AT1G13480.1 (Protein of unknown function (DUF1262) ) HSP 1 Score: 243.4 bits (620), Expect = 3.1e-64 Identity = 157/417 (37.65%), Postives = 233/417 (55.88%), 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:
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