PI0008200 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GCATTCTTACGCTGTCATCTTCTTCCCTTTGCTAATTCCTATTTCTCTCCAATTTCCTATTCCACATTCCTTATATATATATATACTCATAAAAATAATAATAAAGATCCAATTTTATTTGTAATTAATAATATAAAAGACAGTGTAGAGAGAGAAACAGAAAGAGGGGACTTGGGATTTTTAACAAACAAACGGTAGCTTTAACCTTTTCCCTCTCTGTATTCTTCAACAAAGAAAATTTTCTAGTGTTGTTTATTTGTTTTCTCTGTTAACAGAGGAGCTGCCCTGTCCTGCCTCTCTTTCTCTGTTTTTTTTTCTTTCTCCTATGTTGTTTTCTGGTACGTGATTTCTTGTCGTTCTTCCGACATGGGTGCTTGCGTTTCCACGCCGGAGGGCTGCGTCGGAGGTAAATTTAAGAAATCTTCTAAGAGGAAGAACCGTCGTAGACGGAGGAAAGGTTCCAAAACCATCGCCTTTTCTGCTCTCTCCGATGGATCGCACCGCTCCGACCCGATTGACCACTGCTCATTTTCCAATCCCACTTTTCAAGGTTTTTCTTTCTTTCTTTCTTTTTCTGAAATGGGGTTTTCTTTTAAATATGAAAAATGTTTGCTTGTTGATGTGAAATGTACGTCTCCTGTGATGGAAGCAACTTATTCCTTCCTTTCTCTGTTTTTCTTTTTCCTACCTTAATTTTGAGCTTTTTGGGATGGTTTTACAATTGAAGAAATTGGGTTTTCTTGGTTTTAAATTGTCTTTGATGAAATAGAAAGGATGGTTTGAATATTTGGAAGCCTCAGCGAAGTCATTGGCAGATTCCCAGATCTTAATTCTTCCAGAATGAGCATAGAAGAATCCCCATTTTTGTCTTTTTTTTTTTTAAAAAAGAAATTTTTAAAGCAGAATAGAGTTGACTTTTCTCATGAATTTTCTTTGTCCAATTTGCATATCATTTTTTTAAAATTAAACTTATACGTATACTTTAGAATCTCCAGTCTTCTGTTTAAGAAATAAGCCAGCTCAACAAGTTGGGACATCTTAAGTTGTCATCCTTTTAAAGATTACGGTGCCTATTCCGAGCTTTGTTTTATGAATTTAAATTTTTCGAAGGATCTTGTTTATTGAAAGAATGGGATAATGAACTTGTCTTCAAATGCTGTTAACTACAAGCACCTTATAATTCATTTCCTGGATTTTTATCTAAATATGTATCATCTGTGGCATCTCTGCAGGAAGTTATGATGAGGCATGGTTTGATACAGTTGGAAAATTTGAATCGGATTGCGATGAAGATTACCAAAGTCTTCCTGATGGTGGGTTTTCTTTGAATATGTTGTCTGATGGGAAATTTCCTTATTCTCCATCTATTGTTTAATCAATCTGCCATTGTCCACCTTATGAGTTCTTGCAGACAATCAGTCAATTAATAGCTTTGAGGGTGCATCAACGTCGAGCATTTCATCTTCTGGCGATGCTAATCATGGGGATCATAATGTGAATCGACATAGTGCAACCCCGGATCAGATTCATAGACCAGGAAATTCAGCAAGAGTACATTCTGTGAGCAGTTCTGAGAGTCAAGTTGCAAGGGATTCACATTCGCAGGCCATGAATCCAGATGACGCAGAACCACAACTTAAGGGATATGGACACTCGAGCGAGGCAAATGAACCGGTATTCATCGACGAGATCTCCTCTACTGCTGGTGAAAGTTCTGCCAAAGGCGATGGAATATTGGATAATTGTGGGATTTTACCAAGCAATTGTTTACCCTGTCTTGCATCAACAATAAACTCTGTTGAAAAGAGAAAATCACTAAGTTCTAGTCCTCCAAGTGGACTTAAGAAGGCAGCCTTGAAACTTTCATTCAAATGGAAAGAAGGAAATCCCAATGCGGCTTTATGTGAGTGTTCAAGAAGTATACTTAGCCTTGTATACAAGCTTTATGGTTTCTTCAAATTTTGATTGATTTAGTTTTATTTCAACTCTTTCTTTCAGTTTCATCAAAAGCGCTTCTACAAAGACCTTTAGCAGGTTCTCAAGTACCCTTTTGCCCAGCTGAAAAGAAAATGCTAGATTGTTGGTCACATATTGAGCCAGATAGTTTCAAAGTTAGGGGAGTAAACTATGCAAAGTAAGTAACAAAAGTCTTACTAGTTTTTCTACTTGGCTCGCTTTTTAGCCTCGCAAAACAAAAACCAAGCAATGATCTCGTTGTTCATTCTAAGTTTTCTAACTCTGACAAAATAATCCTACAAATTTGCAGGGACAAAAAGAAAGAATTTGCTCCCAATCATGCTGCCTACTATCCCTTTGGAGTTGATGTGTTCTTGTCTCACCGAAAAGTAGATCACATTGCTCGATTTGTCGAAATGCCTGCGGCTACTTATTCTGGAACACTTCCACCTATCCTTGTTGTTAATGTTCAGGTAAATCCATCTCTTGCTTGTGTTGTGATAAATGTATATGGCCGGTAACTCCTTTTGTTGTTATATATGTTTGAATTTCTTTTGAGTGCTTTTCTTTCTTCTAATGCCTTGGACTCTTGCAACTTTAATCTTGTTATTGGATTCCTCAGATTCCATTGTATTCGGCGGCGATTTTTCAAGGAGAAACCGACGGAGAAGGAATGAGTATCGTCTTGTACTTTAAGCTTTCTGATGCATATGCAGAGGAACTTACATCTCATTTTCAAGAAAACATCAGGGTAAGATTCGGCAATTGCAAATTCTCATTCAATCTTTCTACATCTCCAATAACTTGCTTCATGAAATATTAAATTATGTTGTTATGGTCCAATTGTTTTTTTTTAACTCTGTTTACTGACTCCAAAAACAGAAGCTGATTGATGATGAAGTTGAAAGGGTGAAGGGTTTTCCAGTAGACAATGTAGTACCATTTAGGGAACGATTGAAAATTTTGGGGCGCGTTGCAAATGTAGAGGATCTTCCAATGAGCGCTGCAGAGAGAAAACTTATGCAGGCTTACAATGAAAAGCCCGTCCTTTCTCGTCCTCAACACGAATTTTACTTGGTAAGTTTAGTTTTTTCATTGTATTACAGACAGATTTATAAAGATTACATTTTCCAGAATGATTCAAATGAAAGAACTAATGAATTATAGGGAGAAAACTACTTGGAAATCGACTTGGATATGCACAGATTTAGTTACATTTCAAGGAAAGGTTTTGAAGCATTTCTTGATAGACTCAAGTGCTGCATTTTGGATGTTGGCCTAACAATTCAGGCAAGTTTCTTGTAACTTAACCATGTTTTTGTCTCTTTAATTCTGAGTTTTTTGTCCTGTTTTTCTTACTCTGTTTTGGGTTTTGAAACAGGGGAACAGACCTGAAGAATTGCCGGAGGAGATCTTATGTTGCATTAGATTAAATGGAATTGATTACGTAAATTATCAGCAATTGGGGATGGGTCAAGAGATTCTGTAAATTGCGATGCCATTGTATTCATACAAAAATTTCACTAAAAAGCAAATTTTAATGAGAATTATTTTTTTGCTTCCATTTCTACTTTCAAATATGACGTTTAGTTAAATCTATTTGATCGAAAGATGAATAATTTAACCCTGTTTAACGCTAAAATATTTCATTTCATCTTCTTCTTCTTCAAAGCTTACATGGGTTTAAAGGCTTTCCACACAAACCTTTGTTACCCATATAAGCGCTTCGTGGAAAATCACTCAATGGCTTTCCAGCTGGAATTTCTCCCACTAACAAATTATTCGACAGATCCAATTCCTTTAACTTCCGCAAATTCAGAAACCCTTTTGGTATTCTTCCTGTAAAATGGTTTCTTTGCAGCTTCAGCGTCTCTAATTCAATTGCATTCACTATTGTCTCTGGCAAGTCAAAGCCCAAATTGTTACGGCTCAAATCCAGGGTTTGTATTGATCTTAATGCTCCGATTGAAGTGGGTAATCTTCCTTTCAGATTGTTATTCGATAAATTCAGAAACTGGATCCCAGGTTGTTGCCCGATATCTGTTTGATAACAGTCCCCAGAGAACCTATTGTCCGAAAGATCAATGTATGTCAAAGAATCGTCTGGAAATCTGTGGCTTATCTTGAAGATCTGCTGTATGTTGCCTGTTAACTTGTTTGAATGAAGATCGAGCACACCCAAGTCCTGTAAATTTGTAATGGAATTGGGAATCTGGGAGATTAGTGAGTTTTCTGATAGTTTTAGGGAATAGAGCTGAGTGAGGCGTCCAATCCAGTCTGGAATTTTCCCAGTTAGATGGTTGTGAGAAAGATCTAGTTCTTGTATTGGACTTGGAGTTGTTCTCAAGAACTCTGGAATTTGGCCATGGATACCACACCCAGCAAGATAGATTTTTGAAAGAGATGGCAGTTTTGAAAGCCATTGGGGAATGGAGGACAGGTTCAGAAGGTTATAAGAAAGATCGATTGTTTGAATATTTTGAAGAGATGACATCTCAGGTAATGGCCCTTTAATGGAATTGTGAGAGAGATTCAGGAGAATGAGCTGAGACAGCTGTCCAAGTGATTTCGGTATTTGGCCGGAGAATCGGTTGCGGTCGAGATACAACTCTGATAAAGATGATAAGCTCCCTAAAGAAGAAGGAATCGTTCCCTCAAGTTTGTTGTTTGAAAGAGAAGCTCTTTTAAGAAAGACGAGTTTTCCAAAACTTTGAGGAATAGGACCACTTAAACGGTTGTCATTCAGTCTAAGAAAAGCAAGAGAAGAAGAGATTTGACCAGAAACTGATGCAAATGGAATTGGTCCCTCAAGTTTGTTATTATCCAAATACAAAACCGAAAGACCTGGCAAATTGTTTAAGGAAAGGGGAATTTTCCCACTCAAGAAGTTGTTGGAAAGATCAAGCTCTTTCAACATCTGCAACTGACCAATTCTATCAGGTATGTGACCAACCAATGAGTTGCTGTGTAAATCCATCTGAACTAAGTTTGTAAGATCTGCAAACGAATCCGGTATTGCACCCGAAAACCGATTCCCATATAGAAGAAGGCTATGGAGAGTTTTGAGACTGCCAAAACATGCTGGGAGTGAACCAGACAGCCTATTATCATGCACAGCAAGTTCTTCAAGTTTCAGAAGCTTACCTACGCTTTCTGGAAGTGGACCTCTCAGCTTGTTGCCATAAAGATAGAGCTTCCGCAGGTTGCGAAGACGCAAACCAATAAACGAAGGGATTATTCCACCGAGGCCAAGCAGTCCTCCAAGATCAATAATCTCAACGGCATTAAGCAGTGTTATTGAAGGTGAAATAAAGCCTCTCATCTCCGACTGGAAGGGGAGATCAGCAGTGGATATGAAGCCGGGCAAATTGATTTCTTTTACTCTACCTGTAATGTTGTGACAAGAAACTCCTTCCCAATCACAACAGTTTTGTCCCACCCATTTTGCAAGCCTACCAGAAGTGTCAAGGGAAATTCCAGACTTGAAACTGGTTAGACCTTTCCAATCTGCAGGGTGGCAAGCTTCAGAAAGGGTGATAATGGAGATCATAACAGCAACCCATTGCAGGTGAAAACTATCCATTTTTGCCGGTGACTGAGAATTTTGGGATTGACAGTTTTAGCTGTTTGTGATTATAATTTGCCTAAAAGGGCGTCAAAGAAAAATGGTCAATGAGTTCTTTTTAAAACATTTTGCTTTACCTTTTTCTCTCTCTCTCGAAACTCTTTTGTCATTTATCCCCTTTACA GCATTCTTACGCTGTCATCTTCTTCCCTTTGCTAATTCCTATTTCTCTCCAATTTCCTATTCCACATTCCTTATATATATATATACTCATAAAAATAATAATAAAGATCCAATTTTATTTGTAATTAATAATATAAAAGACAGTGTAGAGAGAGAAACAGAAAGAGGGGACTTGGGATTTTTAACAAACAAACGGTAGCTTTAACCTTTTCCCTCTCTGTATTCTTCAACAAAGAAAATTTTCTAGTGTTGTTTATTTGTTTTCTCTGTTAACAGAGGAGCTGCCCTGTCCTGCCTCTCTTTCTCTGTTTTTTTTTCTTTCTCCTATGTTGTTTTCTGGTACGTGATTTCTTGTCGTTCTTCCGACATGGGTGCTTGCGTTTCCACGCCGGAGGGCTGCGTCGGAGGTAAATTTAAGAAATCTTCTAAGAGGAAGAACCGTCGTAGACGGAGGAAAGGTTCCAAAACCATCGCCTTTTCTGCTCTCTCCGATGGATCGCACCGCTCCGACCCGATTGACCACTGCTCATTTTCCAATCCCACTTTTCAAGGAAGTTATGATGAGGCATGGTTTGATACAGTTGGAAAATTTGAATCGGATTGCGATGAAGATTACCAAAGTCTTCCTGATGACAATCAGTCAATTAATAGCTTTGAGGGTGCATCAACGTCGAGCATTTCATCTTCTGGCGATGCTAATCATGGGGATCATAATGTGAATCGACATAGTGCAACCCCGGATCAGATTCATAGACCAGGAAATTCAGCAAGAGTACATTCTGTGAGCAGTTCTGAGAGTCAAGTTGCAAGGGATTCACATTCGCAGGCCATGAATCCAGATGACGCAGAACCACAACTTAAGGGATATGGACACTCGAGCGAGGCAAATGAACCGGTATTCATCGACGAGATCTCCTCTACTGCTGGTGAAAGTTCTGCCAAAGGCGATGGAATATTGGATAATTGTGGGATTTTACCAAGCAATTGTTTACCCTGTCTTGCATCAACAATAAACTCTGTTGAAAAGAGAAAATCACTAAGTTCTAGTCCTCCAAGTGGACTTAAGAAGGCAGCCTTGAAACTTTCATTCAAATGGAAAGAAGGAAATCCCAATGCGGCTTTATTTTCATCAAAAGCGCTTCTACAAAGACCTTTAGCAGGTTCTCAAGTACCCTTTTGCCCAGCTGAAAAGAAAATGCTAGATTGTTGGTCACATATTGAGCCAGATAGTTTCAAAGTTAGGGGAGTAAACTATGCAAAGGACAAAAAGAAAGAATTTGCTCCCAATCATGCTGCCTACTATCCCTTTGGAGTTGATGTGTTCTTGTCTCACCGAAAAGTAGATCACATTGCTCGATTTGTCGAAATGCCTGCGGCTACTTATTCTGGAACACTTCCACCTATCCTTGTTGTTAATGTTCAGATTCCATTGTATTCGGCGGCGATTTTTCAAGGAGAAACCGACGGAGAAGGAATGAGTATCGTCTTGTACTTTAAGCTTTCTGATGCATATGCAGAGGAACTTACATCTCATTTTCAAGAAAACATCAGGAAGCTGATTGATGATGAAGTTGAAAGGGTGAAGGGTTTTCCAGTAGACAATGTAGTACCATTTAGGGAACGATTGAAAATTTTGGGGCGCGTTGCAAATGTAGAGGATCTTCCAATGAGCGCTGCAGAGAGAAAACTTATGCAGGCTTACAATGAAAAGCCCGTCCTTTCTCGTCCTCAACACGAATTTTACTTGGGAGAAAACTACTTGGAAATCGACTTGGATATGCACAGATTTAGTTACATTTCAAGGAAAGGTTTTGAAGCATTTCTTGATAGACTCAAGTGCTGCATTTTGGATGTTGGCCTAACAATTCAGGGGAACAGACCTGAAGAATTGCCGGAGGAGATCTTATGTTGCATTAGATTAAATGGAATTGATTACGTAAATTATCAGCAATTGGGGATGGGTCAAGAGATTCTGTAAATTGCGATGCCATTGTATTCATACAAAAATTTCACTAAAAAGCAAATTTTAATGAGAATTATTTTTTTGCTTCCATTTCTACTTTCAAATATGACGTTTAGTTAAATCTATTTGATCGAAAGATGAATAATTTAACCCTGTTTAACGCTAAAATATTTCATTTCATCTTCTTCTTCTTCAAAGCTTACATGGGTTTAAAGGCTTTCCACACAAACCTTTGTTACCCATATAAGCGCTTCGTGGAAAATCACTCAATGGCTTTCCAGCTGGAATTTCTCCCACTAACAAATTATTCGACAGATCCAATTCCTTTAACTTCCGCAAATTCAGAAACCCTTTTGGTATTCTTCCTGTAAAATGGTTTCTTTGCAGCTTCAGCGTCTCTAATTCAATTGCATTCACTATTGTCTCTGGCAAGTCAAAGCCCAAATTGTTACGGCTCAAATCCAGGGTTTGTATTGATCTTAATGCTCCGATTGAAGTGGGTAATCTTCCTTTCAGATTGTTATTCGATAAATTCAGAAACTGGATCCCAGGTTGTTGCCCGATATCTGTTTGATAACAGTCCCCAGAGAACCTATTGTCCGAAAGATCAATGTATGTCAAAGAATCGTCTGGAAATCTGTGGCTTATCTTGAAGATCTGCTGTATGTTGCCTGTTAACTTGTTTGAATGAAGATCGAGCACACCCAAGTCCTGTAAATTTGTAATGGAATTGGGAATCTGGGAGATTAGTGAGTTTTCTGATAGTTTTAGGGAATAGAGCTGAGTGAGGCGTCCAATCCAGTCTGGAATTTTCCCAGTTAGATGGTTGTGAGAAAGATCTAGTTCTTGTATTGGACTTGGAGTTGTTCTCAAGAACTCTGGAATTTGGCCATGGATACCACACCCAGCAAGATAGATTTTTGAAAGAGATGGCAGTTTTGAAAGCCATTGGGGAATGGAGGACAGGTTCAGAAGGTTATAAGAAAGATCGATTGTTTGAATATTTTGAAGAGATGACATCTCAGGTAATGGCCCTTTAATGGAATTGTGAGAGAGATTCAGGAGAATGAGCTGAGACAGCTGTCCAAGTGATTTCGGTATTTGGCCGGAGAATCGGTTGCGGTCGAGATACAACTCTGATAAAGATGATAAGCTCCCTAAAGAAGAAGGAATCGTTCCCTCAAGTTTGTTGTTTGAAAGAGAAGCTCTTTTAAGAAAGACGAGTTTTCCAAAACTTTGAGGAATAGGACCACTTAAACGGTTGTCATTCAGTCTAAGAAAAGCAAGAGAAGAAGAGATTTGACCAGAAACTGATGCAAATGGAATTGGTCCCTCAAGTTTGTTATTATCCAAATACAAAACCGAAAGACCTGGCAAATTGTTTAAGGAAAGGGGAATTTTCCCACTCAAGAAGTTGTTGGAAAGATCAAGCTCTTTCAACATCTGCAACTGACCAATTCTATCAGGTATGTGACCAACCAATGAGTTGCTGTGTAAATCCATCTGAACTAAGTTTGTAAGATCTGCAAACGAATCCGGTATTGCACCCGAAAACCGATTCCCATATAGAAGAAGGCTATGGAGAGTTTTGAGACTGCCAAAACATGCTGGGAGTGAACCAGACAGCCTATTATCATGCACAGCAAGTTCTTCAAGTTTCAGAAGCTTACCTACGCTTTCTGGAAGTGGACCTCTCAGCTTGTTGCCATAAAGATAGAGCTTCCGCAGGTTGCGAAGACGCAAACCAATAAACGAAGGGATTATTCCACCGAGGCCAAGCAGTCCTCCAAGATCAATAATCTCAACGGCATTAAGCAGTGTTATTGAAGGTGAAATAAAGCCTCTCATCTCCGACTGGAAGGGGAGATCAGCAGTGGATATGAAGCCGGGCAAATTGATTTCTTTTACTCTACCTGTAATGTTGTGACAAGAAACTCCTTCCCAATCACAACAGTTTTGTCCCACCCATTTTGCAAGCCTACCAGAAGTGTCAAGGGAAATTCCAGACTTGAAACTGGTTAGACCTTTCCAATCTGCAGGGTGGCAAGCTTCAGAAAGGGTGATAATGGAGATCATAACAGCAACCCATTGCAGGTGAAAACTATCCATTTTTGCCGGTGACTGAGAATTTTGGGATTGACAGTTTTAGCTGTTTGTGATTATAATTTGCCTAAAAGGGCGTCAAAGAAAAATGGTCAATGAGTTCTTTTTAAAACATTTTGCTTTACCTTTTTCTCTCTCTCTCGAAACTCTTTTGTCATTTATCCCCTTTACA ATGGGTGCTTGCGTTTCCACGCCGGAGGGCTGCGTCGGAGGTAAATTTAAGAAATCTTCTAAGAGGAAGAACCGTCGTAGACGGAGGAAAGGTTCCAAAACCATCGCCTTTTCTGCTCTCTCCGATGGATCGCACCGCTCCGACCCGATTGACCACTGCTCATTTTCCAATCCCACTTTTCAAGGAAGTTATGATGAGGCATGGTTTGATACAGTTGGAAAATTTGAATCGGATTGCGATGAAGATTACCAAAGTCTTCCTGATGACAATCAGTCAATTAATAGCTTTGAGGGTGCATCAACGTCGAGCATTTCATCTTCTGGCGATGCTAATCATGGGGATCATAATGTGAATCGACATAGTGCAACCCCGGATCAGATTCATAGACCAGGAAATTCAGCAAGAGTACATTCTGTGAGCAGTTCTGAGAGTCAAGTTGCAAGGGATTCACATTCGCAGGCCATGAATCCAGATGACGCAGAACCACAACTTAAGGGATATGGACACTCGAGCGAGGCAAATGAACCGGTATTCATCGACGAGATCTCCTCTACTGCTGGTGAAAGTTCTGCCAAAGGCGATGGAATATTGGATAATTGTGGGATTTTACCAAGCAATTGTTTACCCTGTCTTGCATCAACAATAAACTCTGTTGAAAAGAGAAAATCACTAAGTTCTAGTCCTCCAAGTGGACTTAAGAAGGCAGCCTTGAAACTTTCATTCAAATGGAAAGAAGGAAATCCCAATGCGGCTTTATTTTCATCAAAAGCGCTTCTACAAAGACCTTTAGCAGGTTCTCAAGTACCCTTTTGCCCAGCTGAAAAGAAAATGCTAGATTGTTGGTCACATATTGAGCCAGATAGTTTCAAAGTTAGGGGAGTAAACTATGCAAAGGACAAAAAGAAAGAATTTGCTCCCAATCATGCTGCCTACTATCCCTTTGGAGTTGATGTGTTCTTGTCTCACCGAAAAGTAGATCACATTGCTCGATTTGTCGAAATGCCTGCGGCTACTTATTCTGGAACACTTCCACCTATCCTTGTTGTTAATGTTCAGATTCCATTGTATTCGGCGGCGATTTTTCAAGGAGAAACCGACGGAGAAGGAATGAGTATCGTCTTGTACTTTAAGCTTTCTGATGCATATGCAGAGGAACTTACATCTCATTTTCAAGAAAACATCAGGAAGCTGATTGATGATGAAGTTGAAAGGGTGAAGGGTTTTCCAGTAGACAATGTAGTACCATTTAGGGAACGATTGAAAATTTTGGGGCGCGTTGCAAATGTAGAGGATCTTCCAATGAGCGCTGCAGAGAGAAAACTTATGCAGGCTTACAATGAAAAGCCCGTCCTTTCTCGTCCTCAACACGAATTTTACTTGGGAGAAAACTACTTGGAAATCGACTTGGATATGCACAGATTTAGTTACATTTCAAGGAAAGGTTTTGAAGCATTTCTTGATAGACTCAAGTGCTGCATTTTGGATGTTGGCCTAACAATTCAGGGGAACAGACCTGAAGAATTGCCGGAGGAGATCTTATGTTGCATTAGATTAAATGGAATTGATTACGTAAATTATCAGCAATTGGGGATGGGTCAAGAGATTCTGTAA MGACVSTPEGCVGGKFKKSSKRKNRRRRRKGSKTIAFSALSDGSHRSDPIDHCSFSNPTFQGSYDEAWFDTVGKFESDCDEDYQSLPDDNQSINSFEGASTSSISSSGDANHGDHNVNRHSATPDQIHRPGNSARVHSVSSSESQVARDSHSQAMNPDDAEPQLKGYGHSSEANEPVFIDEISSTAGESSAKGDGILDNCGILPSNCLPCLASTINSVEKRKSLSSSPPSGLKKAALKLSFKWKEGNPNAALFSSKALLQRPLAGSQVPFCPAEKKMLDCWSHIEPDSFKVRGVNYAKDKKKEFAPNHAAYYPFGVDVFLSHRKVDHIARFVEMPAATYSGTLPPILVVNVQIPLYSAAIFQGETDGEGMSIVLYFKLSDAYAEELTSHFQENIRKLIDDEVERVKGFPVDNVVPFRERLKILGRVANVEDLPMSAAERKLMQAYNEKPVLSRPQHEFYLGENYLEIDLDMHRFSYISRKGFEAFLDRLKCCILDVGLTIQGNRPEELPEEILCCIRLNGIDYVNYQQLGMGQEIL Homology
BLAST of PI0008200 vs. ExPASy Swiss-Prot
Match: F4JSE7 (Protein ENHANCED DISEASE RESISTANCE 2 OS=Arabidopsis thaliana OX=3702 GN=EDR2 PE=2 SV=1) HSP 1 Score: 63.5 bits (153), Expect = 8.1e-09 Identity = 60/246 (24.39%), Postives = 102/246 (41.46%), Query Frame = 0
BLAST of PI0008200 vs. ExPASy TrEMBL
Match: A0A1S3BE73 (uncharacterized protein LOC103489062 OS=Cucumis melo OX=3656 GN=LOC103489062 PE=4 SV=1) HSP 1 Score: 1056.2 bits (2730), Expect = 4.5e-305 Identity = 527/536 (98.32%), Postives = 532/536 (99.25%), Query Frame = 0
BLAST of PI0008200 vs. ExPASy TrEMBL
Match: A0A0A0KVS2 (DUF1336 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_5G604060 PE=4 SV=1) HSP 1 Score: 1042.3 bits (2694), Expect = 6.8e-301 Identity = 522/536 (97.39%), Postives = 528/536 (98.51%), Query Frame = 0
BLAST of PI0008200 vs. ExPASy TrEMBL
Match: A0A6J1DBF2 (uncharacterized protein LOC111019152 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111019152 PE=4 SV=1) HSP 1 Score: 984.2 bits (2543), Expect = 2.2e-283 Identity = 491/536 (91.60%), Postives = 509/536 (94.96%), Query Frame = 0
BLAST of PI0008200 vs. ExPASy TrEMBL
Match: A0A6J1DCQ8 (uncharacterized protein LOC111019152 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111019152 PE=4 SV=1) HSP 1 Score: 979.5 bits (2531), Expect = 5.4e-282 Identity = 491/537 (91.43%), Postives = 509/537 (94.79%), Query Frame = 0
BLAST of PI0008200 vs. ExPASy TrEMBL
Match: A0A6J1H2B9 (uncharacterized protein LOC111458926 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111458926 PE=4 SV=1) HSP 1 Score: 955.3 bits (2468), Expect = 1.1e-274 Identity = 482/537 (89.76%), Postives = 503/537 (93.67%), Query Frame = 0
BLAST of PI0008200 vs. NCBI nr
Match: XP_008446285.1 (PREDICTED: uncharacterized protein LOC103489062 [Cucumis melo]) HSP 1 Score: 1056.2 bits (2730), Expect = 9.4e-305 Identity = 527/536 (98.32%), Postives = 532/536 (99.25%), Query Frame = 0
BLAST of PI0008200 vs. NCBI nr
Match: XP_038892099.1 (uncharacterized protein LOC120081366 isoform X1 [Benincasa hispida] >XP_038892100.1 uncharacterized protein LOC120081366 isoform X2 [Benincasa hispida]) HSP 1 Score: 1046.6 bits (2705), Expect = 7.4e-302 Identity = 522/536 (97.39%), Postives = 530/536 (98.88%), Query Frame = 0
BLAST of PI0008200 vs. NCBI nr
Match: XP_004135210.1 (uncharacterized protein LOC101206832 [Cucumis sativus] >KGN51861.1 hypothetical protein Csa_007750 [Cucumis sativus]) HSP 1 Score: 1042.3 bits (2694), Expect = 1.4e-300 Identity = 522/536 (97.39%), Postives = 528/536 (98.51%), Query Frame = 0
BLAST of PI0008200 vs. NCBI nr
Match: XP_022151158.1 (uncharacterized protein LOC111019152 isoform X2 [Momordica charantia]) HSP 1 Score: 984.2 bits (2543), Expect = 4.5e-283 Identity = 491/536 (91.60%), Postives = 509/536 (94.96%), Query Frame = 0
BLAST of PI0008200 vs. NCBI nr
Match: XP_022151157.1 (uncharacterized protein LOC111019152 isoform X1 [Momordica charantia]) HSP 1 Score: 979.5 bits (2531), Expect = 1.1e-281 Identity = 491/537 (91.43%), Postives = 509/537 (94.79%), Query Frame = 0
BLAST of PI0008200 vs. TAIR 10
Match: AT1G59650.1 (Protein of unknown function (DUF1336) ) HSP 1 Score: 624.0 bits (1608), Expect = 1.1e-178 Identity = 329/538 (61.15%), Postives = 393/538 (73.05%), Query Frame = 0
BLAST of PI0008200 vs. TAIR 10
Match: AT1G10410.1 (Protein of unknown function (DUF1336) ) HSP 1 Score: 592.4 bits (1526), Expect = 3.6e-169 Identity = 306/538 (56.88%), Postives = 386/538 (71.75%), Query Frame = 0
BLAST of PI0008200 vs. TAIR 10
Match: AT3G29180.1 (Protein of unknown function (DUF1336) ) HSP 1 Score: 350.5 bits (898), Expect = 2.4e-96 Identity = 221/539 (41.00%), Postives = 303/539 (56.22%), Query Frame = 0
BLAST of PI0008200 vs. TAIR 10
Match: AT3G29180.2 (Protein of unknown function (DUF1336) ) HSP 1 Score: 350.5 bits (898), Expect = 2.4e-96 Identity = 221/539 (41.00%), Postives = 303/539 (56.22%), Query Frame = 0
BLAST of PI0008200 vs. TAIR 10
Match: AT5G39430.1 (Protein of unknown function (DUF1336) ) HSP 1 Score: 328.2 bits (840), Expect = 1.3e-89 Identity = 162/311 (52.09%), Postives = 220/311 (70.74%), 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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