ClCG04G003730 (gene) Watermelon (Charleston Gray) v2.5
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TGGAGAGCAGCCATGGCCTTCTTCTTCAAAAATTATAGACCCAATTTTCTTTTTCTCTTTTCTGTTTTATTCCTTCTCTCATCATTTTCTCTCCCCTCCATTTCCATGGCATCTCAACCCGAAGTTGGTATGTTTCCTTACTCTCTATAAAATAGGCAAAATTATTAATCACAATAATCGTTGAATGTAGATCTAAAATTTGCATGTCTATATAATTATTCGATAAGATTTGAAATACTTTTGTAATTATTCGAGATTGATCTTCTTTTTTTTTTTTTTTCCTTCTTATTTTTTATTGTGCATTATTGTTTGGTTTGGTAATTTGGTTCATATGAAAAATAGGCATTTAGGTGTATGAAAAATGTTCCTTTTTCACACTTTTTTTTTTTTTTTTTTTTAAGAAGAATTCTTCTTGTTTCCTTCTTTTTTTCTATCAATCTCTTCCTTGAGAAATGGAGAAAGCATTGTGTTTGAGTGAGATTTAGTCTTTAGTTTTTTAATATTCTTGTGGTAAAATAAAATGGGGTTTCTTAATAAATCTCATCCTCTAATATTGAGAAAGAAAAAAGTTAAAATTTTTACTCTAATTACATACGTAAATATAATATAATAATAAAGATGCGTAATGCATGTGTGAACTTATATATATGTTTTTTCCTCCTTTTCAACACTATACTCTAACTTTTTGTTCTTTTGTTTATGATTTCTTTTGATTACTCTAACTTTCAAATTTAATGTCAGTATACATTTAGATTTGCTCATATAAGCAAACAAAAACTTTTCCATCCATGAATTAATTAGTGACAAAAACTTTGGAAGTCAAAATTAAAAGATTCAAAGTTTAAGGGTATAATTCAAATCAACTCCTTATTTGAAAATATTTTTGGATGATTTAACCTAAGAAACTAAAATTTTGGTTTCTTAATATTCTCAAGTCATTAGTTTTAGATATATCAAGTTAAATTGTTTGCAAGATTCATGATGAAAAGTAAATGTTTGATCTATATGACCCGTCAAAATAAGTATGGAAGTTTCAAATTAAAGTTTTGTTTGATACTTATTCAGTTTTCTATTTGTAATTTGATATTTGAAATGAAGCTTACGGACACTAATTTCACATACCTATATAATATTCTTTATTTTGGCATATCCACCTTTTGCTAATTTTTTAAAAAAGCAAGTCAAGTTTTGAAAAAAGAAAAAAGAAGTTTTAGAACTTTGTTTTAGTTTTTGAAATTAGTTAAATTATAGCAATTACTCTTGAACTTTGCCATTTGTTTCAAAGGTACCCTTATACTTTGAAATGGTACTTTTGAAACGTTACATTATTACCCTTGAGCTTTAATAAACGTTTCAAAAAAAAAAAAAAAAATACTAACGAAAATCCTTCAAAATTTCTAATGAAAATCACAACTTAAAACTGAGTGGCAATAACCTAAAACAATGTAGTGATCCAAATCTTTGTTCTACTTTATTGCTACAGTACCCTTTCATATCTCATTTTCCATCCACAATTCTAAATTATTTCGACTTCAAGAGTATTTTTTAAATGATCATGGATGTTCGAAATTATTTGAAACAAATGACAAAGTTCAAGGGTATTTCTTATAATTTAAGCTTTAATAATTTCCAAATGAAAAAAATATTCAAATATTTGCAAATATAGAAAAATTTTAAGAGTCTATCGCGGTCTATTGCTCAATGATAGGAGTCTATCATTGTCTACTGCAGATAGATAGGGAAATTTATTTATATTCATAAATATTTTGGCTCATTTTGCTATATTTGAAAACAACTCTTAAAATTTAACTAAAAGTTTAAATGTTTCCTTACTGAAGATGAAAATAATAATAAGAAATTGAGAAGAAAAAAACACAAAATTGAAAAAATAAAAAAGAAAAAGGAAAATTTTATGAAAGAACTACTCTAGTTTAGTCTGATATTTTACCCATTATTATTTGAAAAGATAAAAATGGTTGCAAATATATAGGTGATGAATCTCCATTCAGTTACAATGAGGGAAGTGGAAATGGACCAAAAGAATGGGGAAAGCTAAAAGCAGATTGGAAATCTTGTGAGAAAGGGAAGTATCAATCTCCCATTAATATTGTTGAAGAAGATGTGCAAGTTCTTCCTCAGCTTGGAAAACTCAGAAGGGACTACAACCCTTCTCCTGCTGTCGTCAAGAATCGAGGACACGATATTGTGGTAATCTCCGTTTTGTCGTTTGTTTTATTATATTGCATGCTTCTAGTTTTATTAGAATTTAGTTTTTATAGTTTAATAATACTTGTAAATAGTTCCTATTGTTTCGTTGCATGCTTCTAGTTTATTAAAATTTAATTTTTATACTTTAATAATACTCGTAAATAATTCCTATTATATGAAACAAGTGGAAATAATAAAGGAAACTTGAAGTGAATTATTACAAAACAAAAATTACATGTAAATAAAAACAAATATGTGTTTTGTTTGATTCAAATGAATGGAGTGCAATGTAAGCATTGAATAAAATTCTCTAAAAAGTATTTTTTTTTTTATCTTTTATTAAATAATAATAATTATGTTCTTCAGATAAGGTGGGAAAAAGATGCTGGAAAAATTACAATTAATGGGACTCAATACAAATTGACCCAATGTCATTGGCATGCCCCATCTGAACACTCTTTCAATGGAACAAGGTTTCTCTCCTTCTCTCTATCCTTCAACTTTAGGGTTCTATTTGCAAATTTCATGAAATTTGTAGAGTTATCTCTACTTTAGGGTGTTTGGCTCATGGGTTTAGTTCGTGTAGCGCCCTCGAAGTTAACTAGTCGAGTACGTGTCTATTGTATGAGAACTAGTTTAGCTATTTAACTAAATTAACGATCACTTGTATAAGTTAGGATAAATTGATCAAGTTGATTGATTAAATTTATTTGTTATGTATTAACTTTTTTGAGTTAAAGTCTCAAGAGTTATACCATAAAAGAAAAGGATTTAGAACCTTGCTAATAAACAAGATCTAAAGAACTCAACCTTGTAGCCCCAAAAGCCATTTTGATCTTAGCCCCTTAAGATAGACTAGATTATAGATTTTACTTAAATCATCAAATGAACCAAAAATGAGATAAAACTTGTGGCTCTCATCCATCATTGGTCTACAAAAAGCACTCTACAAGCAGGATATATCAATTATCACTTGAACGCTCTAAATATCTATATATTACATCACAAGAACACTCAAGACAGTACAAAGCTTAATTAAAAGCTTTCAAGGTTTAAAACCTGAAATTCTACATTTCCAAATACTTCATCCTCTAAATACAAATTACTTAGCTTTATATAGTCTCAAAATGAAACCTTAGATATTCTATGAGGCATTTTAATAGTTGTTGTCTTCCTGCAATTATGACCCTAATCAGTCATTTATGTAAATGTAACATAAAATGACTTAAAACTGGAAATACATTTAATAAACACCATAAATTCTTTAATCAGTCATCTAAGAATTTGTAACAATCCAGAGTTAAGCCTCACTTGAAGTAGTCTTCTTGATTTGAATTCCTCTTTGACTTCACTTGTGTGACTTCTTTTGATTGTAAATTTAGACAACATATAGGGTTTATTCTTAACGTCTTTTCTTGGAGGTCATATTGTTGGAAAGGAACTTTTGGAGGTTGGAGGTAAGTTAAGAAAGAGGCTACTTGTGTTATTGATCACTTCTAATTTTTTTTTAGCCTGATCCAAATTATATGACATTCTTCTTATTTATACTAGTTGACATCCCAAAATTTATGGCTAGGATTTTGCAAACACATTCATGATCTAGTGACTAAAAATGTCTTTCTAGACTATTATTTACAATTACACATTTTTCTCACAAAGAGTTCTATAATATACTCTAAGCACTCCTCCGAGTAATTTCTTTATAATATTCTGATACTTGATACTTCTAGAAATTGGTCTTTTGGATTAGCTCTAAATACTTCTAACCCAAAATCAAGTTTATATTTCAACATCCCCTCTTAAACTTGATTTTGTTACTCCAAGCAAATTTCTCAATGTTGTGAGGTTTTCTTTCTTAAGAGGCTTAGTGAAAATATCATGCTACCTAATCATGTGTCTTCACATACTCTAACTGCACATATTTTCTTCTGATACACTCTTTAATGTAATTGTTGATTGGTTGTCTATGAAAATTTTGGTTGGCTCCTCTTGTGACAATCTCAACTCCTTTCGTAGATTTCTTAGCCGAATTGTATGACAAACACATGAGGCAACAACCACATATTTTGCTTCTTTTATAGATTAGATTGAGAGTCTTCTTGTCTCTCTTTCTTGAATTTCTCAAATTATCCCTTTGTGCTTGAGAAAGACCCCCATCATTCTCCAGTTCAACATATTCTTTCTCTATGATCTCCCACACGTCTTGTGAGCTAAGGAGAGCCTTCATCTTGATACTCCAATTATCATAGTTGCTCTTGTTGAACATTGACACTTGGAATGGAACTTTAGAAAGGATCTTTTAGCTTTGATACCACTTTGTTAGAAAGGAACTTTTGGAGGTTGGAGATAATTTGAAAGATAAAGTTAAGAAAGAGGCTACTTGTGTTACTGATCACTTCTAATTTTTGTGGATTGATCCAAATTCAACTCCTCCTATTTATACTAGTTGATACCCATAAATGTATGGTTATATTTTGTTAACACATTCATGATCTAGTGACTATAAATGTCTTTTTAGACTATTGTTTACAATTACACATTTTTCTCATATATTCTAGAGAGTTCTACAATATGTTCTAAGCATCTCCTACAAGTAATTTCTCTAAAATCTTCTTATAGTTAGATACCTCTAGAAATTTGGTTTTTTTTGTTTGGATTAGGTCTAAATACTTCTAACCCAAAATCAAGTTTATATTTCAATAATATAACGTGATTGAAATTCCTTCATTCATTCGTATCAACAAACGTCATCCAAATTTGTTATAACCACAAGCCAAAAGAAACTTTTGGTTTACTTTGCTCTGTTTGAAATGGCTTATAAATACTAAGACACTTTTCTTTTTCACCTAATAATAATTTTTTAAAGCATTAGAAAGACATCCCAAACTCAACATCTCTCCCACAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATTTATTCTTCTTCTTATTATTATTGAATAAAAAGTTGTAACATTTTTTTTAAAATAAACACACACAAGTTCTTTATTGAGTAAACTTTTATGTCAATAAAATGGTCAAAGATTTATAATACAAAAAACAATAACATAGAAGATTTTTTTTTTTTTTTTTCCTAAATTCGACAATTATAGGAGTGAAAGATTGAACCATCGAACTTTAAAATGGTAATGAAGATGGTAATAAAGAGAAGAGATATAATTGAGTTTAAATAGTATTTTATTTGTTTAGAAATGCAAATGTTGATTAATTAAAAATAGTTATTGTAAATGTTTGTAGATATGATTTGGAGATGCATGTAGTTCATATAAGCGATTATAATGAGATTGCTGTGGTTGCAATTCTTTACAAATTTGGACGCCCTGATCGCTTCCTTTCAAGAGTACGTTGACTTTTCCCTTCTTTTCTTTCTTCCCATTTTCGATTAAAATGTCATTTTAAATCTATACTTTGGAGAATTTTGTAAAACTTTAATTCCTATACTTTAACAAATTTTAAATTTAGTACTTCAAAATTAGCTAAGTAATAACAATAATTTTTATGCAAAACAAATATAATATATGAGTATGTTTTCAAAATTTACAGGAGAAATGCTAATAAATATAAAAAAAAAAAATTCCTAAAAAAATCAACAATATACAAGGTAGTAGGGACTAAATTTTAGATTTATTCAAAGAATAGGGACTAAAATTTGATATTTAATAAAGGAAACTAAAATTGAATAAACTTCAAAGTACAAGAATCAAAATGGTACTTTAACCTAAAATAAAAGTATCTTTTTGGTTTCTAAATTTTTTATATGATTTCTATTTGATCCTTAAATTTTCAAATGTTATGCATTTTCTCTTGAGTTTTGAGTTTACTTTTCCTTTTGGTCCCTAAATTCCAAATTGTTAAATTTTTATTTAAGTATAGTTTGTATTCAATCTATAGGCTTCATAATGTTTCACTTTTATCCCTAAGTTTTGAGTTTAGTTTTCATTTGGTTTCTAAGTTCCAAAATGGTATCTTTATCCTTTGATTTTTTTTGTTTTAGTTTCCATTTGATCCATAAGTTTCAAGATTTTATACTTTAATTTTCAATATTGCTCAACTTTTTATTTTTTTTTATTTTTATTTTTAACTTTATATTAATTAATCTTAAACAATTTACTTAGTTTACATCAATTTTTAGTCACGGATAAAATTAATTAAAAAATCCCCATTAATGTCTCAAACTATAATTGGTCTTTAGACTTTTAGGTTTATGTATAATTCAGTCCTTAAACGGTAAAAAGTATCTCACAAATCCTTAAATTTTCAAGTCAAATAAGTCTTTGAATTCTTATTTTATTTTATTTTTTTTTTATTTTGTGTTTAATAGGTTTTTAGTCTATTCGACTTTATATATATATATGTATATGTGTATATATGTATAGGTATATGTGTATACATATCATAGACCTACAATCACAAAGAAGAAAGTTTAGGGTCCTATTATAAATTGTAACCTATTGAAATCTAAGGACAAGAATGAAACTAAACTCAAAACTTAAAGGACTAAAGGGGTAGCATTTTGAAACTTGGAGACTAACATAAAAGCCAGATCTAAAATTTAGGAACTGAAGAGGTATTTTTTCCTTCCTTTTGTTCTTTTGTTTTTAATTAATTTTGATGATGATTAATTTTGGTGGTGTGAAATTAGTTTTTCCACCAAATAAAATCAATAGGGAAAGAAGAAAAAGAAATTGGGATTGTGAATCCAGGAGATATCAAGTTTGGGGGCAGAAAGTATTACAGATACATTGGTTCTCTCACGGTTCCTCCTTGTACTGAAGGAGTCATTTGGACAATACAAAAGAAGGTTTCTTTTCTTTTTTTATTCTTCCTCTTCTTTTATAATTATTTCGGTCCCGCGGTTTGATAATTATTTTGTTTTTGATTTTTTATTTTTAAAAATTAAACCTATTTCTTTCACATTTATTACAATGATTTGCAAATTTCAAAACCAAAACAAATTTTTAAAAACTACTTTTTTTTTAGTTTTCAAAATTTGGCTTAGTTTTTTAAACCATTGGTAAAAAAAGCTGTAGGCTTAAATTTCAAAAACAAAAACTAAAAGCGATATCATTACTAAACGGAGCCTTCGTTTTTAGTTTTCTATTTTTATAATTTATTTTTCTCCCAATTTCTTAATTATGATTCTAACCTTTTCTTAAACAAACACTCAAATTCCTTACCAAATTCTAGAAATAAAAACTTTTTTTAGTTTTCAAAACTTGACTTGATTTTTTAAAACGTTATGAGACAGTAAATAATAAAACATAGATTCTTAGGATGAGAGTTTATAAACTTAATTTTAAAAAAAATAAAAAAACAAAAAAATTAAATGTTTATCGAATGAAATTTAACAAGTTATAAATTATAACTCCCATTTGTTAGCATTTTTTCCTTAAAAAATTATAAATTATAACAAGTTAATTCTTGAATTTAGTTTGTAATTATTTGATCTATATGTTATAAAATTTGTCACGTTCATAAATTTTAAAATTTGTGATAGTTTATCGATTTTTATTATGTACTGACATAATTAATATTTGTTATTTATAAACACATGATTTCTAGTATGTTTATTGATTTGCATATAAGAGATTCTATTAAATTTTAACAATAGGAACTACATTTATATAAAATTTAAAACATGGAGAATATATTATTACATATTTAATATAGTACAATGACAGCTAAATTATTACAAAATTAGAAGTATAAGAACTAACATATTGTGAACTAAGTTGTTATTTTTATGAAAATTCAAGGACAAAAATGTTGCTTTTAACCAAAATTTATCTTATTCATCTTAGAATGGAAGTAGAGTTTTTTTTAACCAAAATCTAAAATTAAAGATCCTTTTGATAGATAATAAAATTATAACACTTTTTTCTAATTTAATATATTTTATTTAGAAAAATTAAAAAAACATAGCTAAAATTTGAAAACTAGAAACTAGAAAGAAAGTAATTTTAAAAATCTAGAAGTATTATTTAATTTCAATAAAGCATAATTTGGGTTTCGTAGGTGAGAACGGCTTCAAGGGAACAAGTGAGGGCTTTGAAGAATGCTATTCATGATGTGAGTGGCCCTTCCTTCCTTTTCTTTTAGATTGTGGTTTCTCAAATAAAGATTTTGTTCTATAGATATTAAAATATTACTTTTGTCTCTTTTGGTATCTCTATTTTCAATGATAAATGCATTTAATTGCTAATATTTTAAATTGACCATTTTAGTCCCTGAATTTTAAACCGTAGGTTAAAAGGTCACTCTTAATTTAAAAATAGAGTTTGACTAAATATATGATGTGTCAAGAGGACATAGAAAGAATATAATTTTTTAATATTTGTCATCTCTCACTCTTCTTTCTCTTTCTTCCTCCTCTCTCTTCTTTTACTTGTTCTCTCTTATATATTTAGGCAAATTTATTAGTTGAGTTAACTTTTAAACCTATTCTTGAAAACTCAGTGAACTAAAATGTTTAATTTGAAACATTAGGGACTAAGTGCACCTATTCATAAAAATTTAGGGACCAAAATGGCGTTCTTTTCTATAAATAAATAAATAAATATATATATATATATATATATATATATATATATACATTTTGTAAAAATTATTACTTTTCTTTTACCAATGATCCAATAAAAGTAAAACTTCAAACTGATGGTAAGAATTCATTTTAAAGAAAACTAGGATGACTACATTTAAATATGGAGATCAAAATAAAACTATTTTATATATTTTAATATACAGCCGCAAAATATAATAACTGAAATAATATTTTAATATTTTTATAAACTAAATTAAAACTATTTTATATATTTTAATACAGAGTCTAAGTACAATGACTAAAATAATATTTTAATATTTTTATGAACTATTTTATATATTAAAAATAAAGGAATGTTTTTCAAATATAGCAAAATTTGATAGATGATAGAGCGCAATAGACTTAGCGATAGAGGGCGATAGAAATCTATCATCCGTAAACATTAAAATTTTTCTATATTTGTAAATAGTTTGATACTGTTTCTATTTATAAAATAATTTTCCTAAGATAAAACTATTTTCTCTGTACTAGTCCTATTTTAAAATTTTGTTTCAAAGTAAATAATTCATTTTGTGGATTTCATTTCTTCTTTCAATAATTTAAAAATACACAATTTGCCAGAAGGTAATCATGATTATAGATAAACAATAAATTTACCAACATATGAAAGAATACAATGAAAACAAATGGCTTCCAAACCAAATTTTAACTTGTTTATATATACATAATTCTCATACTCTTTCTTCATATATTCTTCTTTCTATTATTTTTTTTTGAACTGTAGTGTGAAAAATCATACCCGTGCCTTTATAGGATTTATCGTACAAACACTATGGTAGTGGAGCTATGCTTAGTTTTAACAATTTTATTCCCCTTTCATCATCTTTATTATACTTTCAATCTCTTGAGTTGCATGTTTCACTCTTTAGGGTTTGAAGAAAAATGCAAGGCCAATACAAGCATTAGATGGAAGAAGAATTCAATTTTATACTCCACATAAGTGAAGGGTTCTTTATTTATTTATTTATTATTATTATTATTTTGGCGGTTAAACACAGAGCCTAAGGAAACTTCAATAAGATCATCAAACTGTTAAATGTATTCATATCCAATAAAGTATCTTAAATATTATATAATGAGGCATAAAGTATCTTAAATGTTACATAATGAGGCTCTTCAGCCTTGTATTAGTTTCATAAGTTTGG TGGAGAGCAGCCATGGCCTTCTTCTTCAAAAATTATAGACCCAATTTTCTTTTTCTCTTTTCTGTTTTATTCCTTCTCTCATCATTTTCTCTCCCCTCCATTTCCATGGCATCTCAACCCGAAGTTGGTGATGAATCTCCATTCAGTTACAATGAGGGAAGTGGAAATGGACCAAAAGAATGGGGAAAGCTAAAAGCAGATTGGAAATCTTGTGAGAAAGGGAAGTATCAATCTCCCATTAATATTGTTGAAGAAGATGTGCAAGTTCTTCCTCAGCTTGGAAAACTCAGAAGGGACTACAACCCTTCTCCTGCTGTCGTCAAGAATCGAGGACACGATATTGTGATAAGGTGGGAAAAAGATGCTGGAAAAATTACAATTAATGGGACTCAATACAAATTGACCCAATGTCATTGGCATGCCCCATCTGAACACTCTTTCAATGGAACAAGATATGATTTGGAGATGCATGTAGTTCATATAAGCGATTATAATGAGATTGCTGTGGTTGCAATTCTTTACAAATTTGGACGCCCTGATCGCTTCCTTTCAAGATTTTTCCACCAAATAAAATCAATAGGGAAAGAAGAAAAAGAAATTGGGATTGTGAATCCAGGAGATATCAAGTTTGGGGGCAGAAAGTATTACAGATACATTGGTTCTCTCACGGTTCCTCCTTGTACTGAAGGAGTCATTTGGACAATACAAAAGAAGGTGAGAACGGCTTCAAGGGAACAAGTGAGGGCTTTGAAGAATGCTATTCATGATGGTTTGAAGAAAAATGCAAGGCCAATACAAGCATTAGATGGAAGAAGAATTCAATTTTATACTCCACATAAGTGAAGGGTTCTTTATTTATTTATTTATTATTATTATTATTTTGGCGGTTAAACACAGAGCCTAAGGAAACTTCAATAAGATCATCAAACTGTTAAATGTATTCATATCCAATAAAGTATCTTAAATATTATATAATGAGGCATAAAGTATCTTAAATGTTACATAATGAGGCTCTTCAGCCTTGTATTAGTTTCATAAGTTTGG ATGGCCTTCTTCTTCAAAAATTATAGACCCAATTTTCTTTTTCTCTTTTCTGTTTTATTCCTTCTCTCATCATTTTCTCTCCCCTCCATTTCCATGGCATCTCAACCCGAAGTTGGTGATGAATCTCCATTCAGTTACAATGAGGGAAGTGGAAATGGACCAAAAGAATGGGGAAAGCTAAAAGCAGATTGGAAATCTTGTGAGAAAGGGAAGTATCAATCTCCCATTAATATTGTTGAAGAAGATGTGCAAGTTCTTCCTCAGCTTGGAAAACTCAGAAGGGACTACAACCCTTCTCCTGCTGTCGTCAAGAATCGAGGACACGATATTGTGATAAGGTGGGAAAAAGATGCTGGAAAAATTACAATTAATGGGACTCAATACAAATTGACCCAATGTCATTGGCATGCCCCATCTGAACACTCTTTCAATGGAACAAGATATGATTTGGAGATGCATGTAGTTCATATAAGCGATTATAATGAGATTGCTGTGGTTGCAATTCTTTACAAATTTGGACGCCCTGATCGCTTCCTTTCAAGATTTTTCCACCAAATAAAATCAATAGGGAAAGAAGAAAAAGAAATTGGGATTGTGAATCCAGGAGATATCAAGTTTGGGGGCAGAAAGTATTACAGATACATTGGTTCTCTCACGGTTCCTCCTTGTACTGAAGGAGTCATTTGGACAATACAAAAGAAGGTGAGAACGGCTTCAAGGGAACAAGTGAGGGCTTTGAAGAATGCTATTCATGATGGTTTGAAGAAAAATGCAAGGCCAATACAAGCATTAGATGGAAGAAGAATTCAATTTTATACTCCACATAAGTGA MAFFFKNYRPNFLFLFSVLFLLSSFSLPSISMASQPEVGDESPFSYNEGSGNGPKEWGKLKADWKSCEKGKYQSPINIVEEDVQVLPQLGKLRRDYNPSPAVVKNRGHDIVIRWEKDAGKITINGTQYKLTQCHWHAPSEHSFNGTRYDLEMHVVHISDYNEIAVVAILYKFGRPDRFLSRFFHQIKSIGKEEKEIGIVNPGDIKFGGRKYYRYIGSLTVPPCTEGVIWTIQKKVRTASREQVRALKNAIHDGLKKNARPIQALDGRRIQFYTPHK Homology
BLAST of ClCG04G003730 vs. NCBI nr
Match: XP_038883754.1 (alpha carbonic anhydrase 4-like [Benincasa hispida]) HSP 1 Score: 506.5 bits (1303), Expect = 1.4e-139 Identity = 244/276 (88.41%), Postives = 257/276 (93.12%), Query Frame = 0
BLAST of ClCG04G003730 vs. NCBI nr
Match: XP_011653762.1 (alpha carbonic anhydrase 4 [Cucumis sativus] >KAE8649607.1 hypothetical protein Csa_012720 [Cucumis sativus]) HSP 1 Score: 495.0 bits (1273), Expect = 4.3e-136 Identity = 238/275 (86.55%), Postives = 255/275 (92.73%), Query Frame = 0
BLAST of ClCG04G003730 vs. NCBI nr
Match: XP_008464600.2 (PREDICTED: alpha carbonic anhydrase 4-like [Cucumis melo]) HSP 1 Score: 426.8 bits (1096), Expect = 1.4e-115 Identity = 199/223 (89.24%), Postives = 211/223 (94.62%), Query Frame = 0
BLAST of ClCG04G003730 vs. NCBI nr
Match: XP_022966427.1 (alpha carbonic anhydrase 4-like [Cucurbita maxima]) HSP 1 Score: 412.1 bits (1058), Expect = 3.7e-111 Identity = 198/276 (71.74%), Postives = 226/276 (81.88%), Query Frame = 0
BLAST of ClCG04G003730 vs. NCBI nr
Match: XP_022153919.1 (LOW QUALITY PROTEIN: alpha carbonic anhydrase 4-like [Momordica charantia]) HSP 1 Score: 407.1 bits (1045), Expect = 1.2e-109 Identity = 183/224 (81.70%), Postives = 206/224 (91.96%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy Swiss-Prot
Match: F4JIK2 (Alpha carbonic anhydrase 4 OS=Arabidopsis thaliana OX=3702 GN=ACA4 PE=3 SV=1) HSP 1 Score: 288.1 bits (736), Expect = 1.0e-76 Identity = 131/263 (49.81%), Postives = 184/263 (69.96%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy Swiss-Prot
Match: Q8L817 (Alpha carbonic anhydrase 7 OS=Arabidopsis thaliana OX=3702 GN=ACA7 PE=2 SV=1) HSP 1 Score: 268.1 bits (684), Expect = 1.1e-70 Identity = 129/273 (47.25%), Postives = 179/273 (65.57%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy Swiss-Prot
Match: Q9SUB4 (Alpha carbonic anhydrase 6 OS=Arabidopsis thaliana OX=3702 GN=ACA6 PE=3 SV=1) HSP 1 Score: 250.8 bits (639), Expect = 1.8e-65 Identity = 113/221 (51.13%), Postives = 156/221 (70.59%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy Swiss-Prot
Match: Q84UV8 (Bifunctional monodehydroascorbate reductase and carbonic anhydrase nectarin-3 OS=Nicotiana langsdorffii x Nicotiana sanderae OX=164110 GN=NEC3 PE=1 SV=1) HSP 1 Score: 248.8 bits (634), Expect = 7.0e-65 Identity = 123/255 (48.24%), Postives = 169/255 (66.27%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy Swiss-Prot
Match: Q9FM99 (Alpha carbonic anhydrase 8 OS=Arabidopsis thaliana OX=3702 GN=ACA8 PE=3 SV=3) HSP 1 Score: 235.3 bits (599), Expect = 8.0e-61 Identity = 116/253 (45.85%), Postives = 160/253 (63.24%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy TrEMBL
Match: A0A1S3CMC3 (alpha carbonic anhydrase 4-like OS=Cucumis melo OX=3656 GN=LOC103502444 PE=3 SV=1) HSP 1 Score: 426.8 bits (1096), Expect = 6.9e-116 Identity = 199/223 (89.24%), Postives = 211/223 (94.62%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy TrEMBL
Match: A0A6J1HMY4 (alpha carbonic anhydrase 4-like OS=Cucurbita maxima OX=3661 GN=LOC111466081 PE=3 SV=1) HSP 1 Score: 412.1 bits (1058), Expect = 1.8e-111 Identity = 198/276 (71.74%), Postives = 226/276 (81.88%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy TrEMBL
Match: A0A6J1DKH9 (LOW QUALITY PROTEIN: alpha carbonic anhydrase 4-like OS=Momordica charantia OX=3673 GN=LOC111021319 PE=3 SV=1) HSP 1 Score: 407.1 bits (1045), Expect = 5.7e-110 Identity = 183/224 (81.70%), Postives = 206/224 (91.96%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy TrEMBL
Match: A0A061EXL7 (Alpha carbonic anhydrase 4, putative OS=Theobroma cacao OX=3641 GN=TCM_024529 PE=3 SV=1) HSP 1 Score: 388.7 bits (997), Expect = 2.1e-104 Identity = 176/259 (67.95%), Postives = 214/259 (82.63%), Query Frame = 0
BLAST of ClCG04G003730 vs. ExPASy TrEMBL
Match: A0A6J1A7M9 (alpha carbonic anhydrase 4-like OS=Herrania umbratica OX=108875 GN=LOC110415607 PE=3 SV=1) HSP 1 Score: 383.6 bits (984), Expect = 6.7e-103 Identity = 173/260 (66.54%), Postives = 214/260 (82.31%), Query Frame = 0
BLAST of ClCG04G003730 vs. TAIR 10
Match: AT4G20990.1 (alpha carbonic anhydrase 4 ) HSP 1 Score: 288.1 bits (736), Expect = 7.4e-78 Identity = 131/263 (49.81%), Postives = 184/263 (69.96%), Query Frame = 0
BLAST of ClCG04G003730 vs. TAIR 10
Match: AT1G08080.1 (alpha carbonic anhydrase 7 ) HSP 1 Score: 268.1 bits (684), Expect = 7.9e-72 Identity = 129/273 (47.25%), Postives = 179/273 (65.57%), Query Frame = 0
BLAST of ClCG04G003730 vs. TAIR 10
Match: AT4G21000.1 (alpha carbonic anhydrase 6 ) HSP 1 Score: 250.8 bits (639), Expect = 1.3e-66 Identity = 113/221 (51.13%), Postives = 156/221 (70.59%), Query Frame = 0
BLAST of ClCG04G003730 vs. TAIR 10
Match: AT2G28210.1 (alpha carbonic anhydrase 2 ) HSP 1 Score: 229.2 bits (583), Expect = 4.1e-60 Identity = 104/204 (50.98%), Postives = 145/204 (71.08%), Query Frame = 0
BLAST of ClCG04G003730 vs. TAIR 10
Match: AT1G08065.1 (alpha carbonic anhydrase 5 ) HSP 1 Score: 228.8 bits (582), Expect = 5.3e-60 Identity = 119/270 (44.07%), Postives = 171/270 (63.33%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (Charleston Gray) v2.5
Date Performed: 2022-01-31
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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