Chy10G180990 (gene) Cucumber (hystrix) v1
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.ATGCAGCAACAACCCAACGAATCTAGCCCTAATGGGCAATCAGATGACAATGAAGTTCTTGATGATTTTTCTTTCGTTTGTCTAAACCCCGATGGCTCCCCTATCCGTGCCGAAGATGCCTTCCTCAACGGTCAGATTCGCCCTGTCTTTCCCCTCTTTGATCAACGGATTTTATCCGACGATGTCAACGGAACGACGTCTCAATTGAAGAACCTGTTCGTCGCAGAATTCACTGAGATTCCTCAGACTAGGGCTTCGACGACGATAACGGCGGCGCCGGTGCTAGGGAAGAAGAGCTATTCGACGGGGTTTTCGAAGCTGTGGCGGTTCGGGGATAAGATTCGACGGAGCAGTAGTGAAGGGAAGGAGGAGGCGTTTCTGTTTTTGAGGAGTGCTTCGTCAGGAAGCGGAGAGAAGGCGGAGAAGAAGACGAAGGAGAAGAAGAAGCAGCAGAATGAAACGGCGTCGTATTATCACGAACGGCATTACGCGAGGAACAGAGCGGAAAATGAAGTGAATAAACGGAAATCGTATCTGCCGTACAGAAGTAATTTAATGGGATTTTTCACTGCTCCTAATGGTTTAAACAGAAACTTTTAGCCTCTTCTTCTTCAAAAAAAAAAAAAGATTACATCAATAATTTTTATCTATTTATTCATTCATTCATTCCTTCATTTTATTTTGTTTTGTTTATATATTTGTAGTTTGTTTTTGTTGGAGATTGAGATTTTAAAAATCTCAAACTTGTATTAAGTTAAACTAACTAATTTTAACGTACTGTATTGAATCTCAAAATGTGGAAATTTGAACCAAATAATATCTTCATGGATTCACTTGACATATAAGTTTTTTGTTGAAATAGGAAACGTTTAGACGTAAATAACGAATAATTTTGTTGCACTTGGTGGCCTTATGTTCATCTGGTGAGTGTGTTTGGTGTTGGCAGGTGAAGAATTTGTTGTGGCTTTTGCAATAGGGTTAGATATGTTGCTCATTGAACAAGTCTTATCATTCTCATTTTTAAGTAAGTATTTTCGACATTTTCAATATAGGATAGCTATGGAAAAATATTGCAATTCCCATAAGAATTATCATTGATTAGACATGTACATTTTATAACAAATAACTTAACAATTGCTTAATATTTCACGTCACTTTGCCTTTCTAATTGGTTACCAATGTTTTGTATTACTTCGTATTTATTTTTCACTTATTTTTTTCGCTCTTGAGGTCATCTTACTCTATACAAACTGAATCAAGTCTTATTAAACCACCATCAAAGTTTAATTAACTGATTATACTAAATATGGGATAGTTGTAAATATACTAGTTAGATGCAAAATATTAACATTTAGCAACATTTTTCTAAAAAATGTAAATATAACAAAATTTTATCATTAGATAATTTGACAACCCGAACAATTCGGACTATCCAATCTGGATGGGTTGGGTTGAATTTTTTTTTTTTTGGTTGGATTGGATTCGAGTTACATATTTTAAAAAATTTGGGTTGACCCAACCCAAACCGAATTTCTAATATTATTAAAATATATATTACAACTTATAAGTATTACAATTCAATTCATACATATTATTGTGAAGTTTTCTTTGAAGTTTGTAATAGATATTTTGAATTTTAATATTTAACATTTGGGCTTTATGAAATTTTAGTTATTAAAATGGTTGTAGACAAATTTAAGTTAATAAATAATATACTTAAAAAAAGAAAATAAATAAATAACCTGACAACCCGACTCAATCAATTTGGAGGGTTGTGATGGAGATCTTATTTGTTTATTTGGGTTGTCAACTTGTCCAACCTAAAAATTTGGGTTGGTCCAAAAAATCTCCTCAATCCAACCCAACCTATTTGCACCCTTAATTATAGATTAGGAATAAGAGTCTATAAAAGTCTATTATTGATAAAGTTATCTATATTTACAATTTTTTAAAAAAATATTACTATATACTTAATTATTACTCCTAATATGGTGTAATACTATTTTTCACAATGGCATTTGCCCATTCTTTTGAGTTGGTTTGTTGAGGCTAATGGTTTCTATTCCTACTCTACTCTTGGAATGCCATTGATTATTAAGAATTTAAAATGTATGATCGAGTTCAAATAGTAATTTTTGGAAAATAATAACTCGGTTTCATTTAATGAAAAATAGCTACAAATATTCTAATTGGATACCAATTACATTCATCTTTCGAAGTGATATATTTGAATTCTCCCTCCCTTTTTTTACCATCGATATTGTATGTCATTTGGGTTGCGCAAACATAGACATAATCTAGATTTTTTTCTATAATAACATAATGTAAGGTGTTGATTAAGAAAAAATCGATAGCAACGTAGACCATTATCCTCATCACTCTACCTTATTCTATTTGTTTGGCTTTATTTCATTACGTTGATTGTTTGTCCTAATTAATATGAAAACTATATAACTCCACAAAAAAATATAATATTTTGACAGTATATAAAAATGAAAAACAAAAGCCAACAAAAAGAAAATTATACAGTGGTTGTTTTTATTATATTGTTTGGTTGAGGATGAGTTTGAAGAGGAATGTGGAACATGGGATTCTAATCCATAAAAAAGAAAATGAGCAGTCATATTTCCACTTTCTAATTCTCACCTCATCCATCCCTTTCCTTTCTCTATCCCAATTGATTTTTTCTTTCTTTCTTTCTAACATATTGTTTGTTTGTTTATTTTCTGTCCTTCCAATTTAATTTCCTAACTCTTCCTTTCTGTATTTACAGAAAGCTTTGTCTTGAATTTCATTGCTAGAAGAGGAAGAAACTAAGCAAAGGGCATTGCAAGTAATGGCTCCCACCTTTAAAAATTGCATCCTCATTTGCTGTTCTGCCAAAGTTTCGGTAAGGAATATAATCTCTCTCTCCTCCTCTCTTCCTCTCTTTCTCTCTTTACTTTTGTTCTAACAATAGCAATGGACCTTTTGCTTCTAAATATTTTATCAACTTCATACCTTTTGTTCTGAGTTGATAAATTAATTACCAAATTAAGTAATGTTGTTGGTGAAGTTAGGAAGTCCAACTAAGATTTTAATAATGACTATCGTCGTGGTCGTGCAGTGTGAGAGGATCGAACCTCTAACTTGGAGTTGTCCTGCATGTTTCATCTCAATTGAGTTAGACTTTGTTTTGCCCATTAACTTAAACTTTTAGGTCAATTAGTAATTTAAAATGATACTAGAGTATGTTGTTTCAGAATGTCCTGAATTCGAGCTCTTGCAATGTTATTTCCTTTTCAGTTAATATTCATTCACTTTCACTTGTTCGGTCTTTCTCAAGCCCACAAGTGAAGGGAGTGTTAATGATATATTATTAAATTTGTCTTTACCTACTAATATTGTGTACCAACTAGAAGTTGATGGAGTGGTTTATTATAGTTTGTGACACCAATTATAATAATTGTGTGTACAACTAATTGCAACTTGGTAAACTATTGTTTTTCACTCATCCTCTCTATTTAACTACTCAAATAAAAATAGTTTACAGTTCAAATACAAACTATTATAACTCATACTGAAAAAATTTGTACTCCAAACACAAACTATTATAATTTATAAGTCACTGACGGTAATAATCAACTTATCGCCTTAAACGTTATCTAAGAGTTTGTTTGTGTTTGATAGTGTAATTTAAACAAATATTTGTAAAACAAAACTCATCTCTCTTTTCAAAAGTGGTTAGACAAAATGGGGCAATTATGGAATGTGAAAAGGAGACTTTGTAAGATGTGGAATATTTAGCTCTAAATTAATCATAAACTTTGGTTTTTATTTTTCTTTTACATCTAACAGCTAATATAAAGTTATAATAAAGCTAAATTTCTCTTTTTATTTATTTATTTTTCAAGAGAACAAAAAAAAGGGACAATTAATCATATGGGTATCTTACTAAATAAATAATATAATTGAGGGATTAAGAGGTACTTTTGTGATTCTATTAATTTTTTTAAACACAATATTCTTTGAATTATTAATTATAAATAGAAATATCTAGTAACTTAAAAGCTTATAAGTTAATTATCATTTTATAATTATAATTAATTACTTAAATAAAGTGTATGATGTAAAGTAACTTATTCAAAGCTTTGAAACATTGATTTGACAAGACTAATCAACCAATAATTTTGGATTACTCTAACATTTATATATTATAAAAAATATTATCTAGAAAAAGACTAACTTTTTTGCAATTATTGAGATTTATGTTTATCCAAATGAACATAGTTTAATTTCTTGGGGTGATTTTATCGCACTCTTCTAAATTATACGATAAAAACTACTCACCCTTTTGAAATAACAATTTATAATCTTGTTAATTTAAAAAATTCTTAATACAATATAATTGATTTTTAACTTATTTTACTATTATTTCTTGTTCATCCTTCAAAGTCGATTTTCATAAAATATAACATAAACCATTGAAGAATTTAAATAACTATCATTTAATCCTCAACACATCTATATCTATATGTCAATTAATCAAGTGTTTTTACTTTGTTTTTTTAGAAAATTTTCAACTCTTTTATGCATCCTCCACTTTTTCAATATTTATTTCTAATTATAGAATTTGTGTTTTTGAAATTTTCAATTCAATTCTTATGATTTTTTCTTAACAATTAATTCTCATTATTTCAGACTCAAACTTCAATTTGATTTTTAATCTAATATATGTATAATTTATAATTTAGTCCTTAGTTAAACATCATTACCTGTTTTGTTTTTTTTTTTTTTTTTTGCTTCTTTTTTTTTGCCAAAATTGTGCAATGCTCTTACCCCATACATAAAGACCTATCAATTTCCCTCTAATTTAAACCATAAAGTTAACCAAATATAAAGTAGAAGAAAAAAATATTATGTATCCAATAAAATAATTAACAATGAACATAGTTTAATGAACAAAACAAGTATTATATTTGAAAAAAAAAAATCAATGTCAATAATTTAACTACACAATAACTAATAAAAATTAAAAATCTAAATTTATAATTAAAATTTTGTTAAAACATAAAAGAAAGTATTTGACATTATTCCTTTTCTATATTCCAAGAAAACAACAATAATTATAATTAAAACGTTGGCATTATAATAAATTAGATAGAGTCAAACAACAATTATTTTTTCTTCAACTATGAAGGTCTACTTTCCTTAAAATATATAATGACCTTTCCAACTCCCTGACCCTTTGAGGAAAAGTAGAGTTAACTTTGAGGAATTCCATTCACAGAATGGCCCCCAATGTTTGACAATTTTTATGATTTCATATAAGAATAAAACAACCAAGTTTGGTTTTACTTTTGACTTTAAATTCCTCTATGTAAAATCACTCTGGTATATGTTTTGTTATATTAATTTTGGAAGGTGTAGAGATGTTTAATGAAAAGTATGTATTTGTTTAATTTGTGTAACAGGTAAGGTAGAGATGTCTTATTCTTATATTCATATAGTTTGTATAGTTTACATTTTATTTGAATTTAATTTAATTAATAGTCACATGTTACGATGTGGACACATGGCGGTCATCCAACGGTTGTATTAACGTAGACTCGTCAACTAATCCCACCGGCATTGGCGCCATCGACGTTGACTCTCCTCCACCACTTCACTTCATCATTTCGGGTCCAAACAGCTGCTTCCTATCATATTAAATCACAGCCCTTCATCCATCCAAATTATTCTCCAATCCACGGTTGTGATTAAATCAAACCTTTTTCATTCACACCATTGAAAGTTTTTATCACAATCACACCCATCAAAATCACATCTTTCCCTTTTAGAATTTGGATAATTCCAAATTAAATTCCATTTTTTAAAATTTATTACTACTTGACTCCCTCTTTAAATTTGAAATTTTGTATTCCAATTAATACGTATAACTACATGCTGATTATAGTATGTTGGAATTACGTGTAAATAATGATTAATTAAATTTTGCAAAGAAGCGAAAAGAAGGAAGACTTAGAAAATTAAAAAGTATAAGCTTTTTCCAACGTCATTTTCCCATTATCTTAAAAAAAATTATATACACATGTATGTCCATGGCTTGTAAATAAGAAAATGCGCAATTGGGTCATTTAATTATTTAATGTCATCGATTTCTTGTTGCCTCCATTATATATATTGGACTCTCTTTAGCTACAAAACATTAATAATCCCATAAATTCTCAGATTTTCACTCTCAATTCAAAAGGTTTGTTCATCAATTCCCTTCTTTGCCTTGTTAATTTTTGGATCCTCATCATAATTCTCTTGATTTTGCATGATTTCTCATCCTAACAAAAAACCATGAGCTGAAAACCATCCTTCACCGACGATCTCTTTATTTTTTTAAAAATTATTTTGAGGACTGATTTGAAATTATCAGGAAGACATGGCGCAAGAGTCCTACGAGGAAGCAATCGCCGGACTTTCAAAGCTTCTCAGGTACCGATCCATTTCCTTCTATATCCATCCCTTCTGTCAGTTAAATTGTATAAATCCGACCACCGCTATTAGGGCGGGGGGCCGGCCGGCCCACCAAGTAGGACCGACCCCGAATTATATTGATTGTGTTTCCGTAACGGTTTCCGTTTTAAAATGTGTAGTGAGAAAGCTGATCTTCAGGATGCTGCCGCCGCAAAGATCCGGCAAATAACCGCTGAATTAGCCGGAAGCAACGCGTGTTCAAATGGATTCGACCCGGTTGATAGAATCAAAACCGGGTTCACCCATTTCAAGAAATCCAAATTCGAGTACGTTTAATTCTTTCTTTTTTTTTGTTCCGTGCTTCCGTGCTTCAGTCCTTTGATTATTTTGCTTTCTGTCTCGAATATGCTTCCCTTTTAATCATGATTTGATAATGAATCTGTTTGCCCTTATGTTATCATCATCCTGCTTATAGACGATAAATGGTAAAAGTAAAAAAAGGATTTTAAATTTTTTTTTGGTGTTCCCCAGGACAAATCCAGAGTTGTATGGTGCACTGGCGAAAGGGCAAAGCCCAAAGGTAAAGGAATTTTACAAATTGAGAAAGTAGTATAGGGTATGATATAATTGATAAGGGAATGGAATGGAATAGATAAGATAGTTGAATGGGAAGAGGGAAAAGGCGAATAACAGATATACACGTGTAAATGTAGTTTTTGGTGTTTGCGTGTTCGGATTCCCGAGTTTGCCCTTCGCACATATTGAACTTTCAACCTGGGGAGGCCTTTGTGGTTCGCAATATTGCCAACATGGTTCCACCATTTGACAAGGTTCCCTTCTCTCTCTCTCTCTCTCTCTCTCTCTTTTGTTATCCATTTAATTAAATTATAATATAAAGTTTAGAAGTTATTATTAATAATTTGGTTTTGGTATTTGTAGACAAAATATTCTGGGGCTGGGGCTGCAATCGAATATGCAATATTGCATCTTAAGGTGAGAAAGGTTTTGTATATTATTATTATTGTAATATAGTGCTATTGAATATTTGAATTAATAATGGCCTCCCCCATTTTATTGGAAATGTGTGGTCGTGATTATTTAAATAAATGATGAATTGAATATGAAAATAGGTGGAGAATATAGTGGTGATTGGACATAGTTGCTGTGGTGGCATTAAGGGCCTCATGTCCATCCCTGATGATGGGGCCATTTCCAGGCAAGTTCCTTTCTCTACCTCTCTCTCTCTCTCTCTCTCTTTTTTTTCTTCTAAAAATAATAATTTAGGGTCAATTATTCTTTAATTTTTTAAAAAATACTTCATTAAAAAAAAAAAAAAAGAATTGGAGTAGTTGACCCTCGAAATAATTTTTGAATTGCTTTTTATTTAAAAAAAGATATTGTCAAAAATTGGAAAGTGATCAAGACTTTGTGGTAAAATGTGGTAGGAGAGAATTTTGTCTTTTATAAATTTTTGAACAGAAAATGGTAAAAAAGAGTAAATTTGATAAAAATATTTATAATATATTGTAGAATTTTCAGATTTTATCAATAATAAACAGTGATAGATACCGATATGTTTTTACGAGTGACATTGATAGACCGTGGTAGAAATCTATTAGTTTCTGATGATAAAATCCAAGATTTTGCAATATTTTAACTTATTTTGTTATTTTTAAAATATTTCGTTAAAATTACTTTTGAAAATGTTATTTATTGTCGAAAATCAAGGGTGGGTACTAAATTAAATTTAAGTTATTTAGATAAAGTTTCATAGTAATTTTGAATCTAATAAAGATAATTTAAAATTTTCAAAATTTCCCTCAACATTTTTTATTTTTACGTATAGCAAACCCTAAAATTATATATTTAGGGTTTTCTTTAGATAAACTTAGATTGGTTGCTTTTAAAAAATTTCAATATGTAGAAGTTCATAAACCTTTTTTATATCGTGAGACCAAATAGGATAAAAACCTAAACTTATAACTTAAGGAACAAGACAAACTTAATTAATTTAAAGTTATCGAAAAGAGTTATTTATTTTGACCCACTTGTAATACACAATGCACATATTAAATAAATAAAAGTTAGGTGGGAATTAGGGCTAGATGAGTTCTTCCAATGTGATGGTTGGTAAAATAAATAATTAACAACAATGGGTTTAGGGTTGGCTTTTTAATGGAGTAAGTGAATGACATATGAAGGAATACACTCTTTCTCAATGAAAATCTCTTTAACCTTTCCACTCTGGTGGTACCATATTCTTGGAGGAACCAAATTTTAGATATTGCAATTACTGTTTAGTGCAGATTGATAAGTACAATTCCTTTACTTCCCACCTTTTGTCTTTTACTTTACAGATCACTCTTTTTCTTTTTGGCCCTAAAAGAGTCATTTATAACTACTTTTCTTTGCAACTTTGCGGGAATTTCTCCATTATAAAACCCACTTTTTGTATCTGTTTTTTTTTAACCTATATATCAGCCTGGATAAGAGAAGTCTATTTTATCTCTTGTTGATTCCAAGTGGAAGAATTGTCTTGGGATTTGCTTTATTAAAGCAAAAGTAACATAATTCCTTCAACTTACAGTGATTTCATTGAGAATTGGGTGAAAATTTGCACACCTGCCAAAAACAAGACCCAATCAGATTGCACAGATTTGAGTTTTGAGGACAAATGCACAAACTGCGAAAAGGTAATTTATATACAAAACCGATAAATTTTGATAGTCCCTTCATTTATTGTACTCTCGTGGTGCTAAATTTTTGTCCTACAGAAGAAACATGTGAATTCTAGAAGTTTGTTCTCTAGTTTTTTTTGTATGATTTCTTGTAATACTAAACATTAAACGTACAATTTGCAGGAGGCTGTGAATGTTTCACTTGGAAACTTACTGTCATATCCTTTTGTAAGAGAAGCTGTGGTCAACAAGCGACTGTTCATAAGGGGTGCACATTACAACTTTGTGTCTGGAGCTTTTGAGCTTTGGAATCTTGACTTTAATATTTCACCTTCTCTAGCTGTTTGA ATGCAGCAACAACCCAACGAATCTAGCCCTAATGGGCAATCAGATGACAATGAAGTTCTTGATGATTTTTCTTTCGTTTGTCTAAACCCCGATGGCTCCCCTATCCGTGCCGAAGATGCCTTCCTCAACGGTCAGATTCGCCCTGTCTTTCCCCTCTTTGATCAACGGATTTTATCCGACGATGTCAACGGAACGACGTCTCAATTGAAGAACCTGTTCGTCGCAGAATTCACTGAGATTCCTCAGACTAGGGCTTCGACGACGATAACGGCGGCGCCGGTGCTAGGGAAGAAGAGCTATTCGACGGGGTTTTCGAAGCTGTGGCGGTTCGGGGATAAGATTCGACGGAGCAGTAGTGAAGGGAAGGAGGAGGCGTTTCTGTTTTTGAGGAGTGCTTCGTCAGGAAGCGGAGAGAAGGCGGAGAAGAAGACGAAGGAGAAGAAGAAGCAGCAGAATGAAACGGCGTCGTATTATCACGAACGGCATTACGCGAGGAACAGAGCGGAAAATGAAGTGAATAAACGGAAATCGTATCTGCCGTACAGAAAAGAGGAAGAAACTAAGCAAAGGGCATTGCAAGTAATGGCTCCCACCTTTAAAAATTGCATCCTCATTTGCTGTTCTGCCAAAGTTTCGGAAGACATGGCGCAAGAGTCCTACGAGGAAGCAATCGCCGGACTTTCAAAGCTTCTCAGTGAGAAAGCTGATCTTCAGGATGCTGCCGCCGCAAAGATCCGGCAAATAACCGCTGAATTAGCCGGAAGCAACGCGTGTTCAAATGGATTCGACCCGGTTGATAGAATCAAAACCGGGTTCACCCATTTCAAGAAATCCAAATTCGAGACAAATCCAGAGTTGTATGGTGCACTGGCGAAAGGGCAAAGCCCAAAGTTTTTGGTGTTTGCGTGTTCGGATTCCCGAGTTTGCCCTTCGCACATATTGAACTTTCAACCTGGGGAGGCCTTTGTGGTTCGCAATATTGCCAACATGGTTCCACCATTTGACAAGACAAAATATTCTGGGGCTGGGGCTGCAATCGAATATGCAATATTGCATCTTAAGGTGGAGAATATAGTGGTGATTGGACATAGTTGCTGTGGTGGCATTAAGGGCCTCATGTCCATCCCTGATGATGGGGCCATTTCCAGTGATTTCATTGAGAATTGGGTGAAAATTTGCACACCTGCCAAAAACAAGACCCAATCAGATTGCACAGATTTGAGTTTTGAGGACAAATGCACAAACTGCGAAAAGGAGGCTGTGAATGTTTCACTTGGAAACTTACTGTCATATCCTTTTGTAAGAGAAGCTGTGGTCAACAAGCGACTGTTCATAAGGGGTGCACATTACAACTTTGTGTCTGGAGCTTTTGAGCTTTGGAATCTTGACTTTAATATTTCACCTTCTCTAGCTGTTTGA ATGCAGCAACAACCCAACGAATCTAGCCCTAATGGGCAATCAGATGACAATGAAGTTCTTGATGATTTTTCTTTCGTTTGTCTAAACCCCGATGGCTCCCCTATCCGTGCCGAAGATGCCTTCCTCAACGGTCAGATTCGCCCTGTCTTTCCCCTCTTTGATCAACGGATTTTATCCGACGATGTCAACGGAACGACGTCTCAATTGAAGAACCTGTTCGTCGCAGAATTCACTGAGATTCCTCAGACTAGGGCTTCGACGACGATAACGGCGGCGCCGGTGCTAGGGAAGAAGAGCTATTCGACGGGGTTTTCGAAGCTGTGGCGGTTCGGGGATAAGATTCGACGGAGCAGTAGTGAAGGGAAGGAGGAGGCGTTTCTGTTTTTGAGGAGTGCTTCGTCAGGAAGCGGAGAGAAGGCGGAGAAGAAGACGAAGGAGAAGAAGAAGCAGCAGAATGAAACGGCGTCGTATTATCACGAACGGCATTACGCGAGGAACAGAGCGGAAAATGAAGTGAATAAACGGAAATCGTATCTGCCGTACAGAAAAGAGGAAGAAACTAAGCAAAGGGCATTGCAAGTAATGGCTCCCACCTTTAAAAATTGCATCCTCATTTGCTGTTCTGCCAAAGTTTCGGAAGACATGGCGCAAGAGTCCTACGAGGAAGCAATCGCCGGACTTTCAAAGCTTCTCAGTGAGAAAGCTGATCTTCAGGATGCTGCCGCCGCAAAGATCCGGCAAATAACCGCTGAATTAGCCGGAAGCAACGCGTGTTCAAATGGATTCGACCCGGTTGATAGAATCAAAACCGGGTTCACCCATTTCAAGAAATCCAAATTCGAGACAAATCCAGAGTTGTATGGTGCACTGGCGAAAGGGCAAAGCCCAAAGTTTTTGGTGTTTGCGTGTTCGGATTCCCGAGTTTGCCCTTCGCACATATTGAACTTTCAACCTGGGGAGGCCTTTGTGGTTCGCAATATTGCCAACATGGTTCCACCATTTGACAAGACAAAATATTCTGGGGCTGGGGCTGCAATCGAATATGCAATATTGCATCTTAAGGTGGAGAATATAGTGGTGATTGGACATAGTTGCTGTGGTGGCATTAAGGGCCTCATGTCCATCCCTGATGATGGGGCCATTTCCAGTGATTTCATTGAGAATTGGGTGAAAATTTGCACACCTGCCAAAAACAAGACCCAATCAGATTGCACAGATTTGAGTTTTGAGGACAAATGCACAAACTGCGAAAAGGAGGCTGTGAATGTTTCACTTGGAAACTTACTGTCATATCCTTTTGTAAGAGAAGCTGTGGTCAACAAGCGACTGTTCATAAGGGGTGCACATTACAACTTTGTGTCTGGAGCTTTTGAGCTTTGGAATCTTGACTTTAATATTTCACCTTCTCTAGCTGTTTGA MQQQPNESSPNGQSDDNEVLDDFSFVCLNPDGSPIRAEDAFLNGQIRPVFPLFDQRILSDDVNGTTSQLKNLFVAEFTEIPQTRASTTITAAPVLGKKSYSTGFSKLWRFGDKIRRSSSEGKEEAFLFLRSASSGSGEKAEKKTKEKKKQQNETASYYHERHYARNRAENEVNKRKSYLPYRKEEETKQRALQVMAPTFKNCILICCSAKVSEDMAQESYEEAIAGLSKLLSEKADLQDAAAAKIRQITAELAGSNACSNGFDPVDRIKTGFTHFKKSKFETNPELYGALAKGQSPKFLVFACSDSRVCPSHILNFQPGEAFVVRNIANMVPPFDKTKYSGAGAAIEYAILHLKVENIVVIGHSCCGGIKGLMSIPDDGAISSDFIENWVKICTPAKNKTQSDCTDLSFEDKCTNCEKEAVNVSLGNLLSYPFVREAVVNKRLFIRGAHYNFVSGAFELWNLDFNISPSLAV* Homology
BLAST of Chy10G180990 vs. ExPASy Swiss-Prot
Match: P27141 (Carbonic anhydrase, chloroplastic OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 379.4 bits (973), Expect = 5.9e-104 Identity = 183/260 (70.38%), Postives = 214/260 (82.31%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy Swiss-Prot
Match: P42737 (Beta carbonic anhydrase 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BCA2 PE=1 SV=3) HSP 1 Score: 370.2 bits (949), Expect = 3.6e-101 Identity = 178/255 (69.80%), Postives = 209/255 (81.96%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy Swiss-Prot
Match: Q94CE4 (Beta carbonic anhydrase 4 OS=Arabidopsis thaliana OX=3702 GN=BCA4 PE=1 SV=1) HSP 1 Score: 369.0 bits (946), Expect = 8.0e-101 Identity = 186/281 (66.19%), Postives = 215/281 (76.51%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy Swiss-Prot
Match: P27140 (Beta carbonic anhydrase 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BCA1 PE=1 SV=2) HSP 1 Score: 366.3 bits (939), Expect = 5.2e-100 Identity = 176/262 (67.18%), Postives = 210/262 (80.15%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy Swiss-Prot
Match: P16016 (Carbonic anhydrase, chloroplastic OS=Spinacia oleracea OX=3562 PE=1 SV=2) HSP 1 Score: 360.5 bits (924), Expect = 2.8e-98 Identity = 173/262 (66.03%), Postives = 214/262 (81.68%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy TrEMBL
Match: A0A0A0KVM4 (Carbonic anhydrase OS=Cucumis sativus OX=3659 GN=Csa_5G601560 PE=3 SV=1) HSP 1 Score: 522.7 bits (1345), Expect = 1.6e-144 Identity = 255/258 (98.84%), Postives = 258/258 (100.00%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy TrEMBL
Match: A0A6J1DBH1 (Carbonic anhydrase OS=Momordica charantia OX=3673 GN=LOC111019165 PE=3 SV=1) HSP 1 Score: 515.0 bits (1325), Expect = 3.3e-142 Identity = 248/278 (89.21%), Postives = 263/278 (94.60%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy TrEMBL
Match: A0A1S3BEI1 (Carbonic anhydrase OS=Cucumis melo OX=3656 GN=LOC103489011 PE=3 SV=1) HSP 1 Score: 506.9 bits (1304), Expect = 9.1e-140 Identity = 245/258 (94.96%), Postives = 252/258 (97.67%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy TrEMBL
Match: A0A5D3CXD3 (Carbonic anhydrase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold35G001010 PE=3 SV=1) HSP 1 Score: 506.9 bits (1304), Expect = 9.1e-140 Identity = 245/258 (94.96%), Postives = 252/258 (97.67%), Query Frame = 0
BLAST of Chy10G180990 vs. ExPASy TrEMBL
Match: E5GBJ5 (Carbonic anhydrase OS=Cucumis melo subsp. melo OX=412675 PE=3 SV=1) HSP 1 Score: 506.9 bits (1304), Expect = 9.1e-140 Identity = 245/258 (94.96%), Postives = 252/258 (97.67%), Query Frame = 0
BLAST of Chy10G180990 vs. NCBI nr
Match: XP_004135244.2 (carbonic anhydrase 2 isoform X1 [Cucumis sativus]) HSP 1 Score: 562 bits (1449), Expect = 6.96e-199 Identity = 276/278 (99.28%), Postives = 278/278 (100.00%), Query Frame = 0
BLAST of Chy10G180990 vs. NCBI nr
Match: XP_038893413.1 (carbonic anhydrase 2-like isoform X1 [Benincasa hispida]) HSP 1 Score: 523 bits (1348), Expect = 1.54e-183 Identity = 257/278 (92.45%), Postives = 269/278 (96.76%), Query Frame = 0
BLAST of Chy10G180990 vs. NCBI nr
Match: XP_004135245.2 (carbonic anhydrase 2 isoform X2 [Cucumis sativus] >XP_011655625.2 carbonic anhydrase 2 isoform X2 [Cucumis sativus] >XP_011655626.2 carbonic anhydrase 2 isoform X2 [Cucumis sativus] >KGN52389.2 hypothetical protein Csa_009054 [Cucumis sativus]) HSP 1 Score: 521 bits (1341), Expect = 8.90e-183 Identity = 256/258 (99.22%), Postives = 258/258 (100.00%), Query Frame = 0
BLAST of Chy10G180990 vs. NCBI nr
Match: XP_022151178.1 (carbonic anhydrase 2-like isoform X1 [Momordica charantia]) HSP 1 Score: 512 bits (1318), Expect = 5.83e-179 Identity = 248/278 (89.21%), Postives = 263/278 (94.60%), Query Frame = 0
BLAST of Chy10G180990 vs. NCBI nr
Match: XP_008446208.1 (PREDICTED: carbonic anhydrase 2-like [Cucumis melo] >XP_008446210.1 PREDICTED: carbonic anhydrase 2-like [Cucumis melo] >ADN33836.1 carbonic anhydrase [Cucumis melo subsp. melo] >TYK15604.1 carbonic anhydrase 2-like [Cucumis melo var. makuwa]) HSP 1 Score: 504 bits (1297), Expect = 4.36e-176 Identity = 245/258 (94.96%), Postives = 252/258 (97.67%), Query Frame = 0
BLAST of Chy10G180990 vs. TAIR 10
Match: AT5G14740.1 (carbonic anhydrase 2 ) HSP 1 Score: 370.2 bits (949), Expect = 2.5e-102 Identity = 178/255 (69.80%), Postives = 209/255 (81.96%), Query Frame = 0
BLAST of Chy10G180990 vs. TAIR 10
Match: AT5G14740.2 (carbonic anhydrase 2 ) HSP 1 Score: 370.2 bits (949), Expect = 2.5e-102 Identity = 178/255 (69.80%), Postives = 209/255 (81.96%), Query Frame = 0
BLAST of Chy10G180990 vs. TAIR 10
Match: AT1G70410.2 (beta carbonic anhydrase 4 ) HSP 1 Score: 369.0 bits (946), Expect = 5.7e-102 Identity = 186/281 (66.19%), Postives = 215/281 (76.51%), Query Frame = 0
BLAST of Chy10G180990 vs. TAIR 10
Match: AT3G01500.2 (carbonic anhydrase 1 ) HSP 1 Score: 366.3 bits (939), Expect = 3.7e-101 Identity = 176/262 (67.18%), Postives = 210/262 (80.15%), Query Frame = 0
BLAST of Chy10G180990 vs. TAIR 10
Match: AT3G01500.3 (carbonic anhydrase 1 ) HSP 1 Score: 366.3 bits (939), Expect = 3.7e-101 Identity = 176/262 (67.18%), Postives = 210/262 (80.15%), 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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