Chy12G221030 (gene) Cucumber (hystrix) 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.ATGGTCCTTAGCAGACCAGCACTGTATGTGCAGTTGAAGCAGGTGATAACTTATTGCGGTGCTGAATGTTGATTTCTGTATCGGTTAATGGCGGTAAGTTCGTTTGCATTGTTGTGTATTTGTACTTCGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCCAAACCGGACGTAGACGGCATATTTGTATGCTATATTTGAGAAGACGAAACTTAGTTGGATTAAAATAATTTTCTTGGACCCGGAGTTTGCCTGCTTGTTTCTGTTATCGGAATCTGCGTTTGGGTGAATATTATAATGTTTAGCATGCGCTGCTCTTTGGACGCTTGTATGTTCAGTCCAGTGTGTTTTGAGTGAAATTCATCACTTTAGGTTTTGACTTTTTTTCCCTGTGGTTTACATGAGTTAACAAACTACGTGGAGATTGAATGATGCTTCATATATGTTTGTATATTTTAATGCAGTATTACTAATTTCAAAGTTAGGGCATGTTTGGAAGCAAAATGCTAGTTAAAATCATTTTTGTTTTGTTCAAAATCTCGTTTAAAAATAAAATCTGATTCATGAAAGTCTATTTAAAAGTGTACATTTCCAAACATTAAATTAATTTTTAACGATTGAAGGCTTGTTTCAAAATGATTTTAACCATTTTAGAATCACTTTCGAAATATGTTCTTAGTTACTTGTAACAATCCTTAATCCAGGAATCCAAATTTTAGTTTCCATTTTGTCATATGTTAACATGGTAGATAAATTAGAAAACACAAAATCTTTATTTCCCATATTTTTAATTTTCTGCATGCCACATGCGTATATATTATTCTGCATTCAATTCATCTTCCCATTTTATGAGAATGGCAGGTTAGTTGACTGCTCGGCAGTTATCCTTTCAGTTATGTTTTAGTAAGGAATCATTTCCATATTGGGAACAAATTTGAACACGTGTTTAGTGCTTCTACTTCTCTAGTACTACTCTCTACCTCAATTCTAGAGTCTAGACTTGCTTTCAATCATTTATGTTGATCCTTGGGTTTCTACTTTGATTTTCAGGATCAGTTGTGTTACATTTGTGGGGATGTTGGTTATGCAGAGCTGATGATAACCTGTACCAAGTGCAAAGTAGTTCGTGAACATCTGTATGGTTAACTCTTCAGTTCTTTTTCTTTGATACTGTTCAAGTTCATTTTCCTTGTTTCATTTCGTTATTGTGGGCTGTTGGTCTTTCTTGTTCTTCAGTTGGTGAATACTACGATACAACACTTTGTTGAGTTTCAATTTGGGGATATTCCGAGGAGAAACATACACGTAGTATATATACTTAAGGGAGATTATGTGTATTGTCTTCTGGTTGTGTAGGTTTAAACCTCAGCTAGTTGGACTTAAAAGGTTGCTGAAAAATTGACTGATTTAACTTTAGGCTCGAGATTAGAAAATAAGTAATTGTAATGTTGGTGATGTTAATCCCTTTAATTCCATTAGTGCTTTTGATCGTGGGATTTGATATGATTAGCTTGATTGTTCCTTAAAGTTTTGTCCATCCAATGTCCTAATGAACGTTCCCCATTTGTGACCCTTCTCATACGCTGCCATATCTCTGTTTTTAGTTATTGCATGCCCGACAGGTGTGATGAAGCCCCCAATACCTGGCTTTGTTGTAATTGTACATTGGATGAGGCCAAAAGTCCCGATGGTTCAGGGTTGCAGGTTCAACCCAAAATGCCAAGACATGCTAAAATTGGTAAAGTGAAGTTCATACCTACCGAAGAAGTAATAAAGCTATCATCGGGAGGGGTTAAGGTGCCTTCAAAGTTGAACACAACTTTTGCACCGCCGCAGAAAACATCCAAATTCAGAAAAGTCTTCGAAAGCTCTATGCCCCGGCCACTTTTCCAAGCATCAAAAGAATCTCAAGGTAGGTTCTTGAGCATGTTCTTATCCTTTTTTGCATTTGTTACTGCGGGAGTTCATCTATGAACCGTGTATTACAAGATATGGATACAACATGACATCACATCTTTTTAAATATCTAGACATGAACATGATTATGACATATTTATTAGGATATAAAATTTAAAATACATCAATCGTTTTTAAACAAGAAGGAAATTGAAGGTCAATTAGTTTATAAATTTACATGGTTAAACGCGATCGATTTATTTCGCGTCCAAAATTTATTACTTTCTAGTTGTGTTTGACAATTGATATGTGCACAAGTGTGCATATGTATATTATGAGAAACGACCTTTCATTAAGAAAAGAAAAAAAAGAATGAACTTGCATCCAAAAAAGCAAGCTCACACAAGGCAAGGCAGCTAAGGAAGACCATGTAACGTACTAGTAATGATGAAATCGCCGCGTAGTCAAAAAGAAATATGGAATCTAACAACGGACCATACATCTTGTGGATCCCTTTCCAGACCTCTAGGCACTCATTTGTTTAAAAGGCAGACGAAGAAGTAACTCCTTGATAATCTCTTTCACATCTCAGCAGTGGGCTAACTAAAGACCAAATTTGTCCAAAAATAATTCCATACAAAGTGGTTGAAGCCGCATTCCTAAAGATATGCCCATCAAGTGTCAAAGTGTGACATGTGTCAGCGCCATTAGCCGAACAAAGTGTCAATACTTCTCTAATGTATACTTTTTTGCCAATTGATCTCCGTTTTTGTTTTATTGGAAGAAATTGCGGTGTAAGGTTCTATTTTATGTTATGCTAGGTCCAATAGTTTATGTTATGAAAGCTCAATTTTTTTGTAATAAAAGCCAAATTATTTGGCGACAAAGCTGTAGGTCACGCAGTATTTTTTAAGTATGAATCTCAGGATGTGTGTGAAGGTATTTTTGTGAACCAAAGAGAGCGACCTTTAAGGGGGGTCAATGAATATATAGTGCCAAAAAATCATCGGTCCATCATATCCTTTTAGACAAAAAAGCATTCTACTTTTTATTCAATTTTTGACTTATGTTTAGTTGAATGTTTAATTTGAATTTTGTTTTTTCTTTCAGAACGAAGTCCTTTGATGCCTTCAAAGACGTGTGGCTTGAAGAAACAGGCATTAGCTACTTGTTTTCCTTCAATGCCAGTAGGCCCAGTACAAACTTTAAAAAAGGTGAAGGTTACAGATACTCCTGCTTGCACTTCTTCTGTGTCAAGGCATGGTTTTCCTGTCACAAATACAGGTAAGAGAAAAGAGGTTTGCAATCTTTATGAAACTCCTAAATTTGGTTATCATGGTGGGATCCAATCCCAAGCTAAACAGTATAGCCTCTTGCTTAGTTTTAATTTCCATTTCTAGTGGTATGATACCATTAGCTTGTTTTATAGCCAATATTATGATAACACAGGAAAGAAAGATCCTTCACCTTCCAATAAGTTGCAAGATACGCAAAAACAAAGGAAGGATGCTTTGTTTACTCATGAAGTATATGCATATCGTGACAACAGAGGAAAACAAGTTCCTTCACCTTCCATTAAGTTGCAGGATACACAAAAACAAAGGAAGGATACTATGTTTACACATGAAGAATATGCATATTGTGACAACACAGGAAAAGATGTTCCTTCACCTTCCAAAGAGAAGAAGGATAGCTCGTTTACGTATCAAATACATCCATCTTGTGACAACAAAGGGAAAGAAGTTCTTTCACCTTTCATTAAGTTGGAGGATACACAAAAAGAGAAGGATACTTTGATTACACATCAAATACATGCATATCATGACAGAAAAGAAGTTCCTTCACCCTCTACTAAGTTAGAGGATATGCAAAAAAAATTGAAGGATGCTTTGATGATACAAGAAATCCATGCATACCGTGACTATCTCCCATCATTACATGCCTCTTGGAAGTGAGTCCTATCCTTTATTATTTGCTTCTTCGTTTCCATCATTATAATGGGTATATCTAAATGTAGCAAACTATTTTAGTACAAGTTATTATTTGTGTTAAGGGTGCAAAACTATTTTAGTTTGTATTGAAAATAGTAAACAAAGAGGGAGAGAGGATACATGAGAAATAGTGAACACTGTAACAAAGAGGGATTCCAAATAGCATTACTAATGCAACGGAAAAGATCTCAGACCGACTCCTATGACCAAGAACAAAAAATTCATCACTTGGAGACTAGAGAATGCCAGAACAATGTTCTTGTTCTATATTCAAAGGAATAATCAAAAGCTCCCATTACAAACCTTTGGCTTTTTATGGCGTTTCAAGGAAACACGAAAATAACCAGTTAAATTCTAGTTAATCTAAATTATCAACTAAACTAGATACTAACTAAAATATTCTAATTATCTTATAATTATCTTCATCAATTGTTGTAGTTGTTCGTAGGTTATAAATAGTTGTAAACACCATTGTTATAATTGAAGCTCCAACTCTTACCAACTTCAAGTTGGGTTGCCAACACTGATCACTATTTCTTACTCATTTATCTTTTTGTTATAGTGTTTACTATTTTCTACCTAGACTAAAATAGTTTGTGCTCCAAGTATAAGCTATTATAATTCAGACTAAAATAGTATCCATCCCAAACATATACTATTATAATCCATAGACTAGAACAACCACTAACTATAATAACCAACTCAATGCTCCAAATGCCCTCTTAGTGTTTGATGAGTGAAACTTTTACCAATTCTCTTTTTTCTATTTAATTGATGCATCCTTTTCTTGCACGTGTATTTAATGGATTATGAATCCCCATCCCATTTTTTCAAACTTGCTCTTTCTTATGGGGTTTTAAAATTTTATGACTGTTCTTCTGGAGTGATTGTTGATGGATCAGTACTTCATATTCTTTGTTCCAACCTTATGTGAGTGCTAGTTATAGACATGGTAGGATTAATTGTAGAATGTTGATACGGTTGTTAGTCGGGGCATATTAGTAAATAGGTAGTAAGTTTGTTAGGGCTTTTAGTTATAAATATAGGGAGTGGGTCCGGGAGGTGTGTCTTGGGAATTTTGTGGGATTTCTTTTGGGGAATTTTGGGAGAGCTTGAAATGTTATGGTATATTGTAATTTCCTCCTTCATATTGCAACATATATTTCTATTTTTTTTAGTGTTTTTTATGATCCTTGAGTTTCCTTGTTAGGTGGCATTCCAACACATTACTGATATTACATATATGTACAACAGTTTTATTGATAAAGGAAATACAGGCATTATCTATATGATTCACTGAAAATTAAAATTATTTACTACTTTCAGAAATTTCTATTCTTTAGGGGAGGCTTCCAATTTGTTGGTACACGTATGGCTGGTCAATTTTATGATGGTTTCCTGGCAAAGCCTCCATGTGCAGTACATGGTAGAGTTTATGAATTGTCGCGGAAGATTCCTCCCATTCTTCAAGTGAAGCTAGTTAGTCGTTCTGATATTTGGAATGATCTATTTCATGATGAATGTCCGGATCTTGCTGATGTTGCCTTGTACTTCTTTCCGTGCAATATTGAAAGGTTTGTTTTGAGTTTTGATTTAGTGGATACAATTCCAGTTATTGTATAGCCATGTAAAAACAATTGTCGATTTAAGTGTAGGTCCAGAAAGAACAACTCTTGCCTATTTGAACTTATGGAGAGAGAAGATTTATTGATAAGAAGTCTTGTTGACGGTGCAGAGATGGTTCTATTTACATGTAGACAGCTGGATCGCCTCTCACAGTGTAAATGCTTTTACATTCGTTATTTTCCTGACATTCTTTAGTGTATGTAACCATTGACATCCCGAAGAGATGCAATTGGCTTGAATTTGATATTCTAAAGTTGGTTTATTGATTTTTAATTAATAACATTGGGTTTACTTGTGCTAGCTTTATGACATGTGTGCAACTCTTTCTGCAGATATTATCAACATGTTTAATGCCGAATACCTCATTTTCGGAGTCTTCCGTGAAATTAAAGACGACCAGTCTCCTTTTCCTGTGTCACAGGATGGTCCTGCAGTTTCTTCAGTAGAATCTAATTCCAAAGTTCCCCTACTGGAGTTCACGTCAAAGAAAACTGGAAAGCACGACAATGCCGTTAAAAGGGAAATTGACATCGAGGGTGCAAAGACTGCTGGAAAGTCTTCAGCTGCAAACGATGTAGACTCTACCATTCAACGATTATTCTTAGAATTTGGGTCACAAAAACCCAAAGATTCCGATGACAATACATCAAATATGAATGCTCAGAAAAGAGATAAGGTAGAAAAATTTCACACTCGCTGCCGAACTGAGCCTTTTCCTCTTGATTTGTTTACATTTTCTCGTCGCCGTTCAATAAAAAGAAAAAAAAAAGGATGAGCTAACTGAATGTTTCTTTAGTTTGTGTACGATGATGATACGAGAATCATTCAACCTCAAATCCCTCTCTTTACATTATTTTGCAAACCATATGATAGGAACGTACTCCAATTGCACCGACTGACTCCTACTCTTTGTCCGCGTCAAAAGTAAAGACCGAACATTCATCGGATACGAAGGCAGAAGGAAGTGAAGGAATAAAAGGCTTGGAAACGGAGCGTTGCTTGAAGACGGCGCCAACATTTAGTATCAGTGGGTCTCAAAGCATGAGTGAACAAGATGTTCCCAAGAGAGTTGCAGAAAAGTATCTCCAAATCTTTAATGCTGGGATTAAAAAGGAGCGACGGTAG ATGGTCCTTAGCAGACCAGCACTGTATGTGCAGTTGAAGCAGGATCAGTTGTGTTACATTTGTGGGGATGTTGGTTATGCAGAGCTGATGATAACCTGTACCAAGTGCAAAGTAGTTCGTGAACATCTTTATTGCATGCCCGACAGGTGTGATGAAGCCCCCAATACCTGGCTTTGTTGTAATTGTACATTGGATGAGGCCAAAAGTCCCGATGGTTCAGGGTTGCAGGTTCAACCCAAAATGCCAAGACATGCTAAAATTGGTAAAGTGAAGTTCATACCTACCGAAGAAGTAATAAAGCTATCATCGGGAGGGGTTAAGGTGCCTTCAAAGTTGAACACAACTTTTGCACCGCCGCAGAAAACATCCAAATTCAGAAAAGTCTTCGAAAGCTCTATGCCCCGGCCACTTTTCCAAGCATCAAAAGAATCTCAAGAACGAAGTCCTTTGATGCCTTCAAAGACGTGTGGCTTGAAGAAACAGGCATTAGCTACTTGTTTTCCTTCAATGCCAGTAGGCCCAGTACAAACTTTAAAAAAGGTGAAGGTTACAGATACTCCTGCTTGCACTTCTTCTGTGTCAAGGCATGGTTTTCCTGTCACAAATACAGGAAAGAAAGATCCTTCACCTTCCAATAAGTTGCAAGATACGCAAAAACAAAGGAAGGATGCTTTGTTTACTCATGAAGTATATGCATATCGTGACAACAGAGGAAAACAAGTTCCTTCACCTTCCATTAAGTTGCAGGATACACAAAAACAAAGGAAGGATACTATGTTTACACATGAAGAATATGCATATTGTGACAACACAGGAAAAGATGTTCCTTCACCTTCCAAAGAGAAGAAGGATAGCTCGTTTACGTATCAAATACATCCATCTTGTGACAACAAAGGGAAAGAAGTTCTTTCACCTTTCATTAAGTTGGAGGATACACAAAAAGAGAAGGATACTTTGATTACACATCAAATACATGCATATCATGACAGAAAAGAAGTTCCTTCACCCTCTACTAAGTTAGAGGATATGCAAAAAAAATTGAAGGATGCTTTGATGATACAAGAAATCCATGCATACCGTGACTATCTCCCATCATTACATGCCTCTTGGAAGGGAGGCTTCCAATTTGTTGGTACACGTATGGCTGGTCAATTTTATGATGGTTTCCTGGCAAAGCCTCCATGTGCAGTACATGGTAGAGTTTATGAATTGTCGCGGAAGATTCCTCCCATTCTTCAAGTGAAGCTAGTTAGTCGTTCTGATATTTGGAATGATCTATTTCATGATGAATGTCCGGATCTTGCTGATGTTGCCTTGTACTTCTTTCCGTGCAATATTGAAAGGTCCAGAAAGAACAACTCTTGCCTATTTGAACTTATGGAGAGAGAAGATTTATTGATAAGAAGTCTTGTTGACGGTGCAGAGATGGTTCTATTTACATGTAGACAGCTGGATCGCCTCTCACAGTATATTATCAACATGTTTAATGCCGAATACCTCATTTTCGGAGTCTTCCGTGAAATTAAAGACGACCAGTCTCCTTTTCCTGTGTCACAGGATGGTCCTGCAGTTTCTTCAGTAGAATCTAATTCCAAAGTTCCCCTACTGGAGTTCACGTCAAAGAAAACTGGAAAGCACGACAATGCCGTTAAAAGGGAAATTGACATCGAGGGTGCAAAGACTGCTGGAAAGTCTTCAGCTGCAAACGATGTAGACTCTACCATTCAACGATTATTCTTAGAATTTGGGTCACAAAAACCCAAAGATTCCGATGACAATACATCAAATATGAATGCTCAGAAAAGAGATAAGGAACGTACTCCAATTGCACCGACTGACTCCTACTCTTTGTCCGCGTCAAAAGTAAAGACCGAACATTCATCGGATACGAAGGCAGAAGGAAGTGAAGGAATAAAAGGCTTGGAAACGGAGCGTTGCTTGAAGACGGCGCCAACATTTAGTATCAGTGGGTCTCAAAGCATGAGTGAACAAGATGTTCCCAAGAGAGTTGCAGAAAAGTATCTCCAAATCTTTAATGCTGGGATTAAAAAGGAGCGACGGTAG ATGGTCCTTAGCAGACCAGCACTGTATGTGCAGTTGAAGCAGGATCAGTTGTGTTACATTTGTGGGGATGTTGGTTATGCAGAGCTGATGATAACCTGTACCAAGTGCAAAGTAGTTCGTGAACATCTTTATTGCATGCCCGACAGGTGTGATGAAGCCCCCAATACCTGGCTTTGTTGTAATTGTACATTGGATGAGGCCAAAAGTCCCGATGGTTCAGGGTTGCAGGTTCAACCCAAAATGCCAAGACATGCTAAAATTGGTAAAGTGAAGTTCATACCTACCGAAGAAGTAATAAAGCTATCATCGGGAGGGGTTAAGGTGCCTTCAAAGTTGAACACAACTTTTGCACCGCCGCAGAAAACATCCAAATTCAGAAAAGTCTTCGAAAGCTCTATGCCCCGGCCACTTTTCCAAGCATCAAAAGAATCTCAAGAACGAAGTCCTTTGATGCCTTCAAAGACGTGTGGCTTGAAGAAACAGGCATTAGCTACTTGTTTTCCTTCAATGCCAGTAGGCCCAGTACAAACTTTAAAAAAGGTGAAGGTTACAGATACTCCTGCTTGCACTTCTTCTGTGTCAAGGCATGGTTTTCCTGTCACAAATACAGGAAAGAAAGATCCTTCACCTTCCAATAAGTTGCAAGATACGCAAAAACAAAGGAAGGATGCTTTGTTTACTCATGAAGTATATGCATATCGTGACAACAGAGGAAAACAAGTTCCTTCACCTTCCATTAAGTTGCAGGATACACAAAAACAAAGGAAGGATACTATGTTTACACATGAAGAATATGCATATTGTGACAACACAGGAAAAGATGTTCCTTCACCTTCCAAAGAGAAGAAGGATAGCTCGTTTACGTATCAAATACATCCATCTTGTGACAACAAAGGGAAAGAAGTTCTTTCACCTTTCATTAAGTTGGAGGATACACAAAAAGAGAAGGATACTTTGATTACACATCAAATACATGCATATCATGACAGAAAAGAAGTTCCTTCACCCTCTACTAAGTTAGAGGATATGCAAAAAAAATTGAAGGATGCTTTGATGATACAAGAAATCCATGCATACCGTGACTATCTCCCATCATTACATGCCTCTTGGAAGGGAGGCTTCCAATTTGTTGGTACACGTATGGCTGGTCAATTTTATGATGGTTTCCTGGCAAAGCCTCCATGTGCAGTACATGGTAGAGTTTATGAATTGTCGCGGAAGATTCCTCCCATTCTTCAAGTGAAGCTAGTTAGTCGTTCTGATATTTGGAATGATCTATTTCATGATGAATGTCCGGATCTTGCTGATGTTGCCTTGTACTTCTTTCCGTGCAATATTGAAAGGTCCAGAAAGAACAACTCTTGCCTATTTGAACTTATGGAGAGAGAAGATTTATTGATAAGAAGTCTTGTTGACGGTGCAGAGATGGTTCTATTTACATGTAGACAGCTGGATCGCCTCTCACAGTATATTATCAACATGTTTAATGCCGAATACCTCATTTTCGGAGTCTTCCGTGAAATTAAAGACGACCAGTCTCCTTTTCCTGTGTCACAGGATGGTCCTGCAGTTTCTTCAGTAGAATCTAATTCCAAAGTTCCCCTACTGGAGTTCACGTCAAAGAAAACTGGAAAGCACGACAATGCCGTTAAAAGGGAAATTGACATCGAGGGTGCAAAGACTGCTGGAAAGTCTTCAGCTGCAAACGATGTAGACTCTACCATTCAACGATTATTCTTAGAATTTGGGTCACAAAAACCCAAAGATTCCGATGACAATACATCAAATATGAATGCTCAGAAAAGAGATAAGGAACGTACTCCAATTGCACCGACTGACTCCTACTCTTTGTCCGCGTCAAAAGTAAAGACCGAACATTCATCGGATACGAAGGCAGAAGGAAGTGAAGGAATAAAAGGCTTGGAAACGGAGCGTTGCTTGAAGACGGCGCCAACATTTAGTATCAGTGGGTCTCAAAGCATGAGTGAACAAGATGTTCCCAAGAGAGTTGCAGAAAAGTATCTCCAAATCTTTAATGCTGGGATTAAAAAGGAGCGACGGTAG MVLSRPALYVQLKQDQLCYICGDVGYAELMITCTKCKVVREHLYCMPDRCDEAPNTWLCCNCTLDEAKSPDGSGLQVQPKMPRHAKIGKVKFIPTEEVIKLSSGGVKVPSKLNTTFAPPQKTSKFRKVFESSMPRPLFQASKESQERSPLMPSKTCGLKKQALATCFPSMPVGPVQTLKKVKVTDTPACTSSVSRHGFPVTNTGKKDPSPSNKLQDTQKQRKDALFTHEVYAYRDNRGKQVPSPSIKLQDTQKQRKDTMFTHEEYAYCDNTGKDVPSPSKEKKDSSFTYQIHPSCDNKGKEVLSPFIKLEDTQKEKDTLITHQIHAYHDRKEVPSPSTKLEDMQKKLKDALMIQEIHAYRDYLPSLHASWKGGFQFVGTRMAGQFYDGFLAKPPCAVHGRVYELSRKIPPILQVKLVSRSDIWNDLFHDECPDLADVALYFFPCNIERSRKNNSCLFELMEREDLLIRSLVDGAEMVLFTCRQLDRLSQYIINMFNAEYLIFGVFREIKDDQSPFPVSQDGPAVSSVESNSKVPLLEFTSKKTGKHDNAVKREIDIEGAKTAGKSSAANDVDSTIQRLFLEFGSQKPKDSDDNTSNMNAQKRDKERTPIAPTDSYSLSASKVKTEHSSDTKAEGSEGIKGLETERCLKTAPTFSISGSQSMSEQDVPKRVAEKYLQIFNAGIKKERR* Homology
BLAST of Chy12G221030 vs. ExPASy TrEMBL
Match: A0A0A0LSU6 (X8 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G039150 PE=4 SV=1) HSP 1 Score: 1269.6 bits (3284), Expect = 0.0e+00 Identity = 648/707 (91.65%), Postives = 662/707 (93.64%), Query Frame = 0
BLAST of Chy12G221030 vs. ExPASy TrEMBL
Match: A0A1S3BMJ2 (uncharacterized protein LOC103491456 OS=Cucumis melo OX=3656 GN=LOC103491456 PE=4 SV=1) HSP 1 Score: 1181.4 bits (3055), Expect = 0.0e+00 Identity = 606/679 (89.25%), Postives = 626/679 (92.19%), Query Frame = 0
BLAST of Chy12G221030 vs. ExPASy TrEMBL
Match: A0A6J1KPN9 (uncharacterized protein LOC111495374 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111495374 PE=4 SV=1) HSP 1 Score: 750.4 bits (1936), Expect = 6.8e-213 Identity = 422/682 (61.88%), Postives = 472/682 (69.21%), Query Frame = 0
BLAST of Chy12G221030 vs. ExPASy TrEMBL
Match: A0A6J1ECK6 (uncharacterized protein LOC111431323 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111431323 PE=4 SV=1) HSP 1 Score: 749.6 bits (1934), Expect = 1.2e-212 Identity = 421/682 (61.73%), Postives = 472/682 (69.21%), Query Frame = 0
BLAST of Chy12G221030 vs. ExPASy TrEMBL
Match: A0A6J1KFN8 (uncharacterized protein LOC111495374 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111495374 PE=4 SV=1) HSP 1 Score: 748.4 bits (1931), Expect = 2.6e-212 Identity = 422/685 (61.61%), Postives = 472/685 (68.91%), Query Frame = 0
BLAST of Chy12G221030 vs. NCBI nr
Match: KGN64054.2 (hypothetical protein Csa_013042 [Cucumis sativus]) HSP 1 Score: 1263 bits (3267), Expect = 0.0 Identity = 638/677 (94.24%), Postives = 650/677 (96.01%), Query Frame = 0
BLAST of Chy12G221030 vs. NCBI nr
Match: XP_031736580.1 (uncharacterized protein LOC101223019 [Cucumis sativus]) HSP 1 Score: 1253 bits (3243), Expect = 0.0 Identity = 637/681 (93.54%), Postives = 649/681 (95.30%), Query Frame = 0
BLAST of Chy12G221030 vs. NCBI nr
Match: XP_008449671.1 (PREDICTED: uncharacterized protein LOC103491456 [Cucumis melo]) HSP 1 Score: 1183 bits (3060), Expect = 0.0 Identity = 606/679 (89.25%), Postives = 626/679 (92.19%), Query Frame = 0
BLAST of Chy12G221030 vs. NCBI nr
Match: XP_038895189.1 (uncharacterized protein LOC120083490 isoform X1 [Benincasa hispida] >XP_038895190.1 uncharacterized protein LOC120083490 isoform X1 [Benincasa hispida] >XP_038895192.1 uncharacterized protein LOC120083490 isoform X1 [Benincasa hispida]) HSP 1 Score: 784 bits (2024), Expect = 4.47e-278 Identity = 430/678 (63.42%), Postives = 478/678 (70.50%), Query Frame = 0
BLAST of Chy12G221030 vs. NCBI nr
Match: XP_038895193.1 (uncharacterized protein LOC120083490 isoform X2 [Benincasa hispida]) HSP 1 Score: 781 bits (2016), Expect = 5.67e-277 Identity = 428/678 (63.13%), Postives = 474/678 (69.91%), Query Frame = 0
BLAST of Chy12G221030 vs. TAIR 10
Match: AT5G61120.1 (BEST Arabidopsis thaliana protein match is: Polynucleotidyl transferase, ribonuclease H-like superfamily protein (TAIR:AT5G61090.1); Has 125 Blast hits to 115 proteins in 16 species: Archae - 0; Bacteria - 0; Metazoa - 22; Fungi - 0; Plants - 102; Viruses - 0; Other Eukaryotes - 1 (source: NCBI BLink). ) HSP 1 Score: 90.9 bits (224), Expect = 4.3e-18 Identity = 52/158 (32.91%), Postives = 85/158 (53.80%), Query Frame = 0
HSP 2 Score: 50.1 bits (118), Expect = 8.5e-06 Identity = 32/142 (22.54%), Postives = 62/142 (43.66%), Query Frame = 0
BLAST of Chy12G221030 vs. TAIR 10
Match: AT5G61090.1 (Polynucleotidyl transferase, ribonuclease H-like superfamily protein ) HSP 1 Score: 73.9 bits (180), Expect = 5.5e-13 Identity = 43/174 (24.71%), Postives = 90/174 (51.72%), Query Frame = 0
BLAST of Chy12G221030 vs. TAIR 10
Match: AT3G02890.1 (RING/FYVE/PHD zinc finger superfamily protein ) HSP 1 Score: 66.2 bits (160), Expect = 1.1e-10 Identity = 49/207 (23.67%), Postives = 86/207 (41.55%), Query Frame = 0
BLAST of Chy12G221030 vs. TAIR 10
Match: AT4G17850.1 (BEST Arabidopsis thaliana protein match is: RING/FYVE/PHD zinc finger superfamily protein (TAIR:AT3G02890.1); Has 200 Blast hits to 194 proteins in 51 species: Archae - 0; Bacteria - 0; Metazoa - 61; Fungi - 11; Plants - 116; Viruses - 0; Other Eukaryotes - 12 (source: NCBI BLink). ) HSP 1 Score: 60.1 bits (144), Expect = 8.2e-09 Identity = 24/59 (40.68%), Postives = 36/59 (61.02%), Query Frame = 0
BLAST of Chy12G221030 vs. TAIR 10
Match: AT1G43770.2 (RING/FYVE/PHD zinc finger superfamily protein ) HSP 1 Score: 58.2 bits (139), Expect = 3.1e-08 Identity = 34/121 (28.10%), Postives = 62/121 (51.24%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (hystrix) 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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