Tan0008763 (gene) Snake gourd 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.TGACAAGAAAGAAGGAGTGATCGATCAACCGAAAGCTCCATTTCAATCTCCTCTCTCAAAGGTACGCTTCCTTCAGGTGCTAGAGACACTGTCTAACTTCAACTGCGAGCTTCGCATTACCCGACCATGGGCACGGTTGAAGTTCTCGTGGCACAAATCCAAGGGCTGTCCAGTACCGCCGGCGATATCTCACGCCTCCACACTCTTCTCAAGCAATCAGAAGAACCGCTTCACTCCGACACCGCTCGTTTACCTTCTGCATTGGCTCAACTTGATGCTTCCAAACATTCTTTAGGATATCTCTACATTCTGTAAGCTTTTCTTCTCTGAATTATTCTATCTGGGTGTTGCTGTTTAGGCAAATTAGGGACTGCCTATCCTGTATGTTACACTACTATTGAGGTTTCATTCCTATTGGTGAGAGTTTTTTTTTTTTTTTTTTTGAGCGATCATTTCTTTTGGTAAAAGTTTGAAGCGACGGAGTTCAAGAATTGGCGTTTGACGGGTTGGAGTTTGTTTTGAGGGTTCAAGGATGGGATGACACTCATCTTGCTTTGATTTCGAGTATGTGATTGGAACAGAAATGGAGATGCATCTGATTAAACCCTCCACCATTTTAATTACTGAATATGTATATGGCGGGATTGACCTATAATGTTTTCTTTAAATATATTTGCAGAGAGGCATGCACATCTGTACCAATTTCACAAGACCAATACAGTTCAACTGCTCTTACTATTTCAAGATTTATCTCTTCTTGCAACCCGGAGCAGATTCGTTTAGCACCTGAAAAATGTAAATCATTCGTGAAAATTGATCCTTGTTATTTGTAACTTGTGTGATTACTGCTATCTGGATTTTCGACTATCTGTTATCACATTCTGCTGATTGTGCAGTCGTCTCTGTTTGCAAGAGGTTGAAAGATCAAGTTGTACTACTTGAGGCTCCAATTAGAGGGGTGGCTCCACTTCTTACTGCTATTAGAAAACTCGAGACCTCTGCAGAACATTTAACCACTTTACATCCGGAGTTTCTTCTTCTCTGCTTATTAGCCAAGTGCTACAAAACTGGCAGATCCATATTGGATAATGATATTCTTGAGGTTGATCAACCAAGAGACCTGTTTCTTTATTGTTATTACGGGTGAGTTGCTTTTCTTCTTCACGGTGAACTCTCAGTTGATGTATTTTTCCCTCTTTGCTTGAGATGTATTTTATTATCTTCATGTTCTTTGTCAAGTTTGTTATTCCTTCATTCATATGTATGTATGTATGTATGTATGTGTGTACATATTAATTTTTGCAAATGCTATGTTTCTTTATTTCTTTCTTATCCCCCTCCTCTAGGATTTCGATTTCATTCTATTGTCATCATCGAAGACTTTTATGGTGCATCTAAAATATGTTAAGTGGTCAATAATTTAGGGTGAAAAGGCTTTTTCAGTGCTTACTGCTGGAGTTTGGCTGCTTTTCTAGCAAAGCAAGAATTATAACGTTAAGAAATTTTATGCTGCATGTGAAATATGTAATGTAGTAGTTGTTGTGTTTTTTTTTTTTTAAGAAACAATTTCATTGATAAATGTAATGGAGAAAAATTCGAGCACTAAAAGGTGAATTACAAGAAAGATCAGCAATTTGGAATAAAAAATGATAAACTAAAAAAACCAAAAGGTTGTGCATTCTTGCACCACAAATAAACAATCGAAAGAACTTGATCTATAAAACGTTCAAAAGGAGAGAAAATATCCCAACAATCATTCCTCCCAATCCAAAGGTGCCACAGGAAAGCACGAACAAGGGCGAGTTGCACCTTTGAATGGAACATGTTATGTAGTTAATCTACGATTCTTTAGAAGTCCCATTGGGGTTTGATACAATTTGTGTGCAATTTGACTAATTCTAGAGGACAACCTTTTACCTTGCGACATTGATGTCTTGAAACTTTGAAGATATGTAATAGGTAGCATTGTAGTTTAAACCCATAATCCAACAGGCATCTCGGTCTATAGCTTGTTCCTTTGACCATTCAACTAACTAATGGTGTCTGTGTGTGTTTTGTTTTGTTTTATTTATTTAGAGATATCTTATCATGTCGTCTTTTAAACCTATATACGCATGGTAATTCTATCGCCATCACAGATAGGGGTACGAAAATGTTGGAGTTCCCCTTTTTTTTTTCTCTTGGATGAGATAAGGAGAGTTCTGTTTAGTTTCAAGGGGGAAGGCCTTTGAGACACTATTAAGGAGGACTTGGCCAAGGTTTCTAATGAGATTTACGATAGTGTTATTATTGATGTGACTATGAATGAGACCAATATTTTTGACAAGGAAACAAAGATTTCATTGAAATAATGAAAAGAGACTAATGCTCAAAATACAAACTCCACAAAGGAGAAAAACAAAAAGAATCAAAAGGATTACAAAGCAATAATATAAGCATGCCAAAACAAACAAATATAATAAGAAGAATAGCCTTCAATAGAAATGAAAAGATCGTACTAGGAAGAGACATTGAGATGCAACGAAAAGCCAGAAAACCCAATATGTAACTGATAAAGTTATAGACCAAGAACTAGAAACCAGCTTCAAAATGACTTTCAAAATAATAAGAATCCCCAAAATGATCTGGTACTCCACAATCTCTCCTTCCTTCATCAATCTTTATCGGTAAAACTCCATAAATTGGACAATAAATCCCAAAATTCCAAAACCCATTCGAGGGAGACCTTAAACACCAACGCACACATTGCTATCCCCATCGTTTAATTCGCGCTTGAGCTTGATCACTTCAATGGCACCAATATAAATCTTCACAAAGAGAAGACAACCCATAGATTCTGATCCAACCCGAATCCCAGCCAAAAAATGCTAACAATCGATGACTTTTTTTTTTATTTCAACTTATACTCCTAGACCCATCTCTCGAACCTCAAGAGTTCCAAGACAAAACCTTCAATTCTTTGAGACTGAGGAGGAAGATTGAGCAACTTCCTGAAATTGCAACCCACTAGATTTGATTAAAGCTTCAAATTTATGCAACTCAGGGTGTGGATGAAAATCCCTTACCATCTCAATGCCATCCCCCCACTTTGCTTTTTATCAACCAAAATTGGAGATTCGAAATGACTTTCCAAGTTGATCGCGGGAGACTTTTCCACCGACTGCTCATCAAATTGAAGAAAGTGATTAGGAGCCTCCCTCTAAAGGATTACTAAGACTCTCATCGGAGTCATAATCCTGCTCCTCAGTCCCATTTAAACAAGAAAAAAATGACCTTTTGAATAACAAAATCGTTAGGCTTCAAATTAGCTTTAAAGAAATGAGTCCCAGACAGACCTAAATTGCTTTCATCAAAGTTCACCACTTGCTCTGGAACACTCAAAGAATTCATAACACCACCGATATTTATTTTCTGTTTAGAAGGATAATACATGTGTTAGGTCTCCTATCATACACACTTATGTGAGAACGGGGAAAACGGGCAAAAACAAAGAGAATGTGGTGAGCTGAGTTGTGGGGACCATGAGGGTTGTTTGTGCAGGCGTACAGTCTGTTGTTGGGGAGGGTTTTTGTAGGGTTTGTTGGCGGGAGAGAAGGTCGGTATTTGTGTGTAGACAATGTGGTCTATGGAGAGAACCAACTCTCTCAAAAAGTTGGGTTATCCTTGTTGTTTTCCCTTCTTATTTTCTTCTATAATTTCCAAAAATTAGTACTCTATCTATTGGAGAACTCCCAATAGAACAATGTTTTCCTTGGAATCCATCTGTGTTATTGTGTTTTACTTATTGTTTGATTAAGGAAAGGTTAGATATCTAACACATTTCCTCCCCAATTAATATTGATTTCCACTTGTTGAGCCTTCTACAAATTTTCAAGCCCACAAGTGAGGGAGAGTGTTAAAGTATTGATATAAAATTAAATTTACCATAACTCAACTTAAGCTTTTGGCTTGATTGGTGATTCATTTAACATGTAGCTTATTTGAGGATTAACACCACTATCTTTGTTCAAAGGTCGTTGTCTATGGTTCTAGATGTTTAGTAGTATTGTCCTTTGTAAACGTACATTAGAGGACTTAGATCATATCTAATGGAGATGTCAATTTACTACAACTGTGTAGAATTGATTGTTGGACGCTTGGGGGCTAAGAAGCACGGACACTCTATTTTAGATACACCAATCAAAAAAAAAAAAAAAAAAACTAACCCATTTTTCTTTTAGCCCAAAGTTAAAAGCTCATTTAATTTTAAATTTTAAACACAAAAAAGACATTAAAAACATAAATAATAAAACTAAAAATTAAAAACTCTTCTACCACTCATGAACAAAACATGTTTTCTATTTTCTTTTTGTATATAATTGTATATAAAACTGTTTTCATTTTTTTTTTTTTGTATTTACTCTTATTTCATTTGAAAACTTTGTTTATTAAATGTTGGATAATGTGTTGTGTACAATTACTATGGTTAATTAACTTGACATTTTATGTTTTTTTAGTGGATTAAGTTTAGTATTTTATGTTAAATACTTAAATGTACATATATCCTAAAATAATAATAAAAAAGAACGTATCCCCTTTTTTAGAAATTGACGTATCGCCATGTCGTGTCCCATGTCCGTGTCCGTGCTTCTTAGCTTGAGGGTGTGACGTTGGCCCTAAATTGGAAATGTCTTTCAGGACAACCGGAGGGCTTTTGTGAGTTGCTTTTTTTTTTTTTTTTTGTGGAATATTTGACTAGAGAGATGGAGGAGAATTTTTAGGGTGCAATTATAAAGGAGTATTACGAGGCGGAATGGTTTGGCCCATCTCCATGCTTCCCCTTGGGCCTTTATGCCTTTTTTTTTAATTATCATTTATCTTTTATTTTTAACAATTGGAGTCTATTTGTCTAATGTTTATTTTATTTTCGTGGCTCCCTTTTGTTTCAGGCTTTTATTTGTTTGTTTAGCTTGTTTGTTGTACTTTCATTTCTTTTTAGTGAAAGTTTAGAGTCTGTTTGGTAGACAATCTGAAAACAAAAAATTGAAAACAAGGGATTCAATGAAAAAATATTTGTATTTCATGTTTTCAGATATCTGTTTGGTAGCAGATTTAAAAATTTTATTCTATTTCAAACGGTTGTTTAAAGTATTTCTATAATATATTTATAGATCATGAAATTAGTTGTAGTTGCAAAACTAAATTTTAGGTTGAATATAAGTCATTATTAATTAATTTATGAGTTTTGTTTTTATAAATTTTGTATAATTATAATTTATAATATATTATATTATATATTTTTTAATTTAACAAAAGCAAATTGAGTTTATAACATGAAATATTATATTTATTAAGATTTTTATCTTTGTTTAATATAATTATGCATTTTAAAATTTCAAATTCAGAATCTGGATACAATAAAAACATAAAAATGTTGTTTTCAGAATTTCTACTATTTGGATCACAGAATGCGAAAACAGTTTTCAAAAACAAATCTGCCAAACACATTCACTTAATTCAGTGAATCCGAAAACATAAAACAAAATTCGGATTGCCTACCAAACAGGCCCTTAGTTTCTCGTTAAAAAAAAAAAAAATATATATATATATATATATATATATATATATATATATATAAATAGGGCCTCTCGAGACTTCATTTATAAAATCATTTAACTGTCTTATAAAAGACACTTATTTAATCGGGAAGCAACAGACTATGTTTAAGCAAGCTCGTTGTAAATTATGAAAAATCTATCATCTCCTGAATGGCAATTTCGTTTTAATAAAATGTACATAATTTAATTTTATGAGATCGGTCATATGCTGAGATTCAATTTTATCTTTCCCTATAAATAGGATTTTTCTGATGATATTTTTCTTATGTGACAGGGGGATGATATGCATAGGACTAAAGCTATTTCATAAAGCACTTGAGCTTCTTCATAATGTGTACCATCTAATGGAACTCTTTCCTTTCATCTTATTGATATGAATTTATTTAATGTGTTTTTGGATGATCTGACAACCACTACCCATATTTTTGTTACAGGTTGTAACTGCCCCTATGCCATCAATGAATGCTATAGCTGTTGAAGCATACAAAAAATACATTTTGCTCTCTCTCATTTACAATGGACAAGTATGCTATTCTTTCTATTTTGCTTTATTGTTAGTTTTAGTATTGATTTTGAGGCCTCAAATATTTGGAAATGAGAAAGGAATATCTGGAGGTTGTTCTTTTAGATTTCATCATGTTAGCAGTATGAAATATGACTTCTATTCTTGCTTCTTACATATATTGAAACTGGTACATTTGTCTACTCTAATCAGATCTTAGCATTAATAAATATTCTCAAATCTCCTTTTCTTCCTTTTTTTTTTTTAGTTTTTTATGGCTTTACTATCTCCATATTTGTCATCTTTCTGTTGGTAACTATTAGCCTCTACCTACAGAAAAAATGAGACGTTCCACCAAGGAGGTGGACCACGAGTAATTATGCTCTCAACAAGGATGTAAATTATCATTGTTGAATTTGACTAGCTGAGCAAATTATCTTGCGTATTTGTTTTATAGAATGTTAAACATAGTAACACTTAGCAGCATAAAGGGGTTCTAGTTGCTTTTAGCTTTGAGTCACTTAGTAAGCATATATGTTCTTGTGATGTTATGAAGACTAATATGCCTCTTCATGCATCTGGTGGCAGTTTTCGACCAGTCTCCCAAAGTACACTTCTTCAGTAGCACAGAGAAATTTAAAGAACTTCTGTCAGGTACTCTGTAAATTTGAAGTGAAGAGCTTCTCTTTGTTCATGGACAGATTAAGTACTTTGATTTCAACAAAATGTGAATTTACCTCGTTTTGAAAGTGTAGGAATCAATGATCATTTTTGGGTTTAGTTATCAAATTTAGAAATTAAGACCATAATCATCAATGGAACTATGGATCCAGATTTGCTTGAAATTAGAAAATTTCTTCTAGGATTCCATATAGTAGTTCTCCTTATTGAATGGTGGGTATACAGATGCCATGAGTGATGCCAGTCTTTATTGCAATCTTGAAAAATTGACAATCAAGCTCTAGAGCTAGATGCTATCTAGATTGTATTTAGGTGGAGCACAATCTTGTTTCTGACTGATCTTAGCAGCATTATCTGGATAATTTAAATAAATTGCTTTTAGAGTGAATGGTTTGATCCTGGGTCTATTTTGGTATATCTTTGCAATCAAATTTGCTGATGGAAACTACGCATTTGGGTTACCAGATCCAGTTGATATTTTGTCTGTTTCTTCTTCTACAGCCCTACATTGAACTGGCAAATAGTTATAGCACAGGAAATGTTGACGAATTAGACACTGTTTTTCAAACAAACAGGGAGAAATTTGAAAGTGTAAGAATTCCTACTTCACATTATGGTATCATATCAGATTGGTCCAATTAAATGGTATATGCATTGCAGAGAAGAGACCTTGGTTATTTAGATCTTGATTTGTCGATCCATCATCTGCGTGCTTCTGGGTTCTTGATATGAGTTACTGGTGTTATACCAGGACAACAATCTTGGACTCGTAAAGCAGGCTGTATCTTCAATGTATAAACGCAACATTCAGAGATTGACGCAGACGTACTTGACCCTCTCTCTTCAAGATATAGCCAATACTGTTAAACTCAACAGCCCTAAGGAAGCTGAAATGCATGTGCTACGAATGGTAATTTCATAATTGCAGGATTAATCTATTAATCTACCACCATCTCTAGTAATATCAGTTTTTGGTACAATTTTAGATCCAGGACGGCGAGATTTTTGCAACGATTAATCAGAAGGATGGAATGGTCAGATTTCTAGAGGATTCTGAACAGTACAAATCCTGCAAGATGATCGAGCACATTGACTCGTCGATCCAGAGGTATGATGTTTGGAATTGAATGATTGTGGGATGATGATATGGAGTGTCGGAGTTGTTATTATATCATGATAATAATGCATCCTGACTCCCTAAGCATGAGTGTTCTGCTTACGCTTATAGTTGTTCTTTCAATTTGAAACTTCTTTTATCAAAAAGATGATCATCTTATTTTTCCTGAGCTTTGTGGCAAGATAAGCAGCGTTGGCTGAATTCCCATATACATTGCGATTATGTTTGAACCGACTTATGATACTGTAATATATACTCGGCTTAGGTTTGAGCATGCTTCTTTGTTCTTTTCCTTTCTTCCTCTGTTCATTACAGAATAATGACACTTGCGAAGAAATTGACTGCTATGGATGAAAATATATCATCTGATCCTCTGTATCTAGCAAAGGTGAGCATCTCTAAATCAAAATCTCATTTCGAATTGTAGATGGGTAAACTGAAAAAAGAAAATTGTTGTTTTCAGGCCGGAAGAGAGAGGCAGAGATTCGATTACGACGACTTTGATTCTGTTCCTCAAAAATTTAATATTTGAATGGATAACCACCTTGTGTGAACAGGGAATTTTGAGGGGAGCAACGCATAGTGATTTGTATCTTTTTCCCTCCGCTCGTTATTGTTCCAAGAGACAAAGCCTGTCAAGGTCATTTGCTCCTTGTGAGAAGTCTATGTTTGTAATCCATCCTCTGTCCTCAAAAACTAATTTTGTGATTGCACTTTTTTTTAAGTTTTTATTCCATGTAATATCCTGCTCCTTTGATCAAATCCAATCCTCCA TGACAAGAAAGAAGGAGTGATCGATCAACCGAAAGCTCCATTTCAATCTCCTCTCTCAAAGGTACGCTTCCTTCAGGTGCTAGAGACACTGTCTAACTTCAACTGCGAGCTTCGCATTACCCGACCATGGGCACGGTTGAAGTTCTCGTGGCACAAATCCAAGGGCTGTCCAGTACCGCCGGCGATATCTCACGCCTCCACACTCTTCTCAAGCAATCAGAAGAACCGCTTCACTCCGACACCGCTCGTTTACCTTCTGCATTGGCTCAACTTGATGCTTCCAAACATTCTTTAGGATATCTCTACATTCTAGAGGCATGCACATCTGTACCAATTTCACAAGACCAATACAGTTCAACTGCTCTTACTATTTCAAGATTTATCTCTTCTTGCAACCCGGAGCAGATTCGTTTAGCACCTGAAAAATTCGTCTCTGTTTGCAAGAGGTTGAAAGATCAAGTTGTACTACTTGAGGCTCCAATTAGAGGGGTGGCTCCACTTCTTACTGCTATTAGAAAACTCGAGACCTCTGCAGAACATTTAACCACTTTACATCCGGAGTTTCTTCTTCTCTGCTTATTAGCCAAGTGCTACAAAACTGGCAGATCCATATTGGATAATGATATTCTTGAGGTTGATCAACCAAGAGACCTGTTTCTTTATTGTTATTACGGGGGGATGATATGCATAGGACTAAAGCTATTTCATAAAGCACTTGAGCTTCTTCATAATGTTGTAACTGCCCCTATGCCATCAATGAATGCTATAGCTGTTGAAGCATACAAAAAATACATTTTGCTCTCTCTCATTTACAATGGACAATTTTCGACCAGTCTCCCAAAGTACACTTCTTCAGTAGCACAGAGAAATTTAAAGAACTTCTGTCAGCCCTACATTGAACTGGCAAATAGTTATAGCACAGGAAATGTTGACGAATTAGACACTGTTTTTCAAACAAACAGGGAGAAATTTGAAAGTGACAACAATCTTGGACTCGTAAAGCAGGCTGTATCTTCAATGTATAAACGCAACATTCAGAGATTGACGCAGACGTACTTGACCCTCTCTCTTCAAGATATAGCCAATACTGTTAAACTCAACAGCCCTAAGGAAGCTGAAATGCATGTGCTACGAATGATCCAGGACGGCGAGATTTTTGCAACGATTAATCAGAAGGATGGAATGGTCAGATTTCTAGAGGATTCTGAACAGTACAAATCCTGCAAGATGATCGAGCACATTGACTCGTCGATCCAGAGAATAATGACACTTGCGAAGAAATTGACTGCTATGGATGAAAATATATCATCTGATCCTCTGTATCTAGCAAAGGCCGGAAGAGAGAGGCAGAGATTCGATTACGACGACTTTGATTCTGTTCCTCAAAAATTTAATATTTGAATGGATAACCACCTTGTGTGAACAGGGAATTTTGAGGGGAGCAACGCATAGTGATTTGTATCTTTTTCCCTCCGCTCGTTATTGTTCCAAGAGACAAAGCCTGTCAAGGTCATTTGCTCCTTGTGAGAAGTCTATGTTTGTAATCCATCCTCTGTCCTCAAAAACTAATTTTGTGATTGCACTTTTTTTTAAGTTTTTATTCCATGTAATATCCTGCTCCTTTGATCAAATCCAATCCTCCA ATGGGCACGGTTGAAGTTCTCGTGGCACAAATCCAAGGGCTGTCCAGTACCGCCGGCGATATCTCACGCCTCCACACTCTTCTCAAGCAATCAGAAGAACCGCTTCACTCCGACACCGCTCGTTTACCTTCTGCATTGGCTCAACTTGATGCTTCCAAACATTCTTTAGGATATCTCTACATTCTAGAGGCATGCACATCTGTACCAATTTCACAAGACCAATACAGTTCAACTGCTCTTACTATTTCAAGATTTATCTCTTCTTGCAACCCGGAGCAGATTCGTTTAGCACCTGAAAAATTCGTCTCTGTTTGCAAGAGGTTGAAAGATCAAGTTGTACTACTTGAGGCTCCAATTAGAGGGGTGGCTCCACTTCTTACTGCTATTAGAAAACTCGAGACCTCTGCAGAACATTTAACCACTTTACATCCGGAGTTTCTTCTTCTCTGCTTATTAGCCAAGTGCTACAAAACTGGCAGATCCATATTGGATAATGATATTCTTGAGGTTGATCAACCAAGAGACCTGTTTCTTTATTGTTATTACGGGGGGATGATATGCATAGGACTAAAGCTATTTCATAAAGCACTTGAGCTTCTTCATAATGTTGTAACTGCCCCTATGCCATCAATGAATGCTATAGCTGTTGAAGCATACAAAAAATACATTTTGCTCTCTCTCATTTACAATGGACAATTTTCGACCAGTCTCCCAAAGTACACTTCTTCAGTAGCACAGAGAAATTTAAAGAACTTCTGTCAGCCCTACATTGAACTGGCAAATAGTTATAGCACAGGAAATGTTGACGAATTAGACACTGTTTTTCAAACAAACAGGGAGAAATTTGAAAGTGACAACAATCTTGGACTCGTAAAGCAGGCTGTATCTTCAATGTATAAACGCAACATTCAGAGATTGACGCAGACGTACTTGACCCTCTCTCTTCAAGATATAGCCAATACTGTTAAACTCAACAGCCCTAAGGAAGCTGAAATGCATGTGCTACGAATGATCCAGGACGGCGAGATTTTTGCAACGATTAATCAGAAGGATGGAATGGTCAGATTTCTAGAGGATTCTGAACAGTACAAATCCTGCAAGATGATCGAGCACATTGACTCGTCGATCCAGAGAATAATGACACTTGCGAAGAAATTGACTGCTATGGATGAAAATATATCATCTGATCCTCTGTATCTAGCAAAGGCCGGAAGAGAGAGGCAGAGATTCGATTACGACGACTTTGATTCTGTTCCTCAAAAATTTAATATTTGA MGTVEVLVAQIQGLSSTAGDISRLHTLLKQSEEPLHSDTARLPSALAQLDASKHSLGYLYILEACTSVPISQDQYSSTALTISRFISSCNPEQIRLAPEKFVSVCKRLKDQVVLLEAPIRGVAPLLTAIRKLETSAEHLTTLHPEFLLLCLLAKCYKTGRSILDNDILEVDQPRDLFLYCYYGGMICIGLKLFHKALELLHNVVTAPMPSMNAIAVEAYKKYILLSLIYNGQFSTSLPKYTSSVAQRNLKNFCQPYIELANSYSTGNVDELDTVFQTNREKFESDNNLGLVKQAVSSMYKRNIQRLTQTYLTLSLQDIANTVKLNSPKEAEMHVLRMIQDGEIFATINQKDGMVRFLEDSEQYKSCKMIEHIDSSIQRIMTLAKKLTAMDENISSDPLYLAKAGRERQRFDYDDFDSVPQKFNI Homology
BLAST of Tan0008763 vs. ExPASy Swiss-Prot
Match: Q8W575 (COP9 signalosome complex subunit 3 OS=Arabidopsis thaliana OX=3702 GN=CSN3 PE=1 SV=2) HSP 1 Score: 511.5 bits (1316), Expect = 8.9e-144 Identity = 265/425 (62.35%), Postives = 329/425 (77.41%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy Swiss-Prot
Match: Q9UNS2 (COP9 signalosome complex subunit 3 OS=Homo sapiens OX=9606 GN=COPS3 PE=1 SV=3) HSP 1 Score: 300.1 bits (767), Expect = 4.1e-80 Identity = 172/426 (40.38%), Postives = 261/426 (61.27%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy Swiss-Prot
Match: Q4R898 (COP9 signalosome complex subunit 3 OS=Macaca fascicularis OX=9541 GN=COPS3 PE=2 SV=1) HSP 1 Score: 300.1 bits (767), Expect = 4.1e-80 Identity = 172/426 (40.38%), Postives = 261/426 (61.27%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy Swiss-Prot
Match: Q5RFS2 (COP9 signalosome complex subunit 3 OS=Pongo abelii OX=9601 GN=COPS3 PE=2 SV=1) HSP 1 Score: 300.1 bits (767), Expect = 4.1e-80 Identity = 172/426 (40.38%), Postives = 261/426 (61.27%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy Swiss-Prot
Match: O88543 (COP9 signalosome complex subunit 3 OS=Mus musculus OX=10090 GN=Cops3 PE=1 SV=3) HSP 1 Score: 299.7 bits (766), Expect = 5.3e-80 Identity = 172/426 (40.38%), Postives = 261/426 (61.27%), Query Frame = 0
BLAST of Tan0008763 vs. NCBI nr
Match: XP_038886130.1 (COP9 signalosome complex subunit 3 [Benincasa hispida]) HSP 1 Score: 786.6 bits (2030), Expect = 1.1e-223 Identity = 404/424 (95.28%), Postives = 415/424 (97.88%), Query Frame = 0
BLAST of Tan0008763 vs. NCBI nr
Match: XP_022992614.1 (COP9 signalosome complex subunit 3-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 779.6 bits (2012), Expect = 1.3e-221 Identity = 400/424 (94.34%), Postives = 414/424 (97.64%), Query Frame = 0
BLAST of Tan0008763 vs. NCBI nr
Match: KAG6578376.1 (COP9 signalosome complex subunit 3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 778.1 bits (2008), Expect = 3.9e-221 Identity = 400/424 (94.34%), Postives = 413/424 (97.41%), Query Frame = 0
BLAST of Tan0008763 vs. NCBI nr
Match: KAG6602681.1 (COP9 signalosome complex subunit 3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 776.9 bits (2005), Expect = 8.7e-221 Identity = 399/424 (94.10%), Postives = 412/424 (97.17%), Query Frame = 0
BLAST of Tan0008763 vs. NCBI nr
Match: XP_008441368.1 (PREDICTED: COP9 signalosome complex subunit 3 isoform X1 [Cucumis melo] >KAA0056600.1 COP9 signalosome complex subunit 3 isoform X1 [Cucumis melo var. makuwa] >TYK24283.1 COP9 signalosome complex subunit 3 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 775.8 bits (2002), Expect = 1.9e-220 Identity = 398/424 (93.87%), Postives = 414/424 (97.64%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy TrEMBL
Match: A0A6J1JY07 (COP9 signalosome complex subunit 3-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111488907 PE=4 SV=1) HSP 1 Score: 779.6 bits (2012), Expect = 6.5e-222 Identity = 400/424 (94.34%), Postives = 414/424 (97.64%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy TrEMBL
Match: A0A5A7UNF8 (COP9 signalosome complex subunit 3 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold205G00480 PE=4 SV=1) HSP 1 Score: 775.8 bits (2002), Expect = 9.4e-221 Identity = 398/424 (93.87%), Postives = 414/424 (97.64%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy TrEMBL
Match: A0A1S3B2T4 (COP9 signalosome complex subunit 3 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103485502 PE=4 SV=1) HSP 1 Score: 775.8 bits (2002), Expect = 9.4e-221 Identity = 398/424 (93.87%), Postives = 414/424 (97.64%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy TrEMBL
Match: A0A6J1E551 (COP9 signalosome complex subunit 3 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111430682 PE=4 SV=1) HSP 1 Score: 775.4 bits (2001), Expect = 1.2e-220 Identity = 398/424 (93.87%), Postives = 412/424 (97.17%), Query Frame = 0
BLAST of Tan0008763 vs. ExPASy TrEMBL
Match: A0A6J1FEQ3 (COP9 signalosome complex subunit 3-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111444821 PE=4 SV=1) HSP 1 Score: 775.0 bits (2000), Expect = 1.6e-220 Identity = 397/424 (93.63%), Postives = 412/424 (97.17%), Query Frame = 0
BLAST of Tan0008763 vs. TAIR 10
Match: AT5G14250.1 (Proteasome component (PCI) domain protein ) HSP 1 Score: 511.5 bits (1316), Expect = 6.3e-145 Identity = 265/425 (62.35%), Postives = 329/425 (77.41%), Query Frame = 0
BLAST of Tan0008763 vs. TAIR 10
Match: AT5G14250.2 (Proteasome component (PCI) domain protein ) HSP 1 Score: 393.7 bits (1010), Expect = 1.9e-109 Identity = 203/338 (60.06%), Postives = 256/338 (75.74%), Query Frame = 0
BLAST of Tan0008763 vs. TAIR 10
Match: AT1G75990.1 (PAM domain (PCI/PINT associated module) protein ) HSP 1 Score: 59.7 bits (143), Expect = 6.6e-09 Identity = 49/191 (25.65%), Postives = 93/191 (48.69%), Query Frame = 0
BLAST of Tan0008763 vs. TAIR 10
Match: AT1G20200.1 (PAM domain (PCI/PINT associated module) protein ) HSP 1 Score: 59.3 bits (142), Expect = 8.6e-09 Identity = 50/191 (26.18%), Postives = 93/191 (48.69%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) 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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