Clc01G12180 (gene) Watermelon (cordophanus) v2
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.ATGCCAACCAAAATTCCTTTACAGCTACATGGATTACCCATAATATTGTTGCTCCTCAGCTTGGCAGCACCTACCTCCGCTGCCCTCCAGGTGGGATTCTACAAGGGAAAATGTGGCTTTAGAGATGTTGAATCTGTTGTCAGAGACGTTGTCACCGCCGCACTCGAAGGAGATCGAACCCTCGTTGCTGCTCTTCTTCGCTTACACTTCCATGACTGCTTTGTCTCTGTAAGCCTGTCTCTCTTAACAATACTTCGGAGTAGAAGAAAAATACTTAGGTTCATCTTAGGCCTTCACTCATCTTTGTGCATCCCACTAAATTGTCTAACTATAGTTTGTCACGTGACAAATTCTTCTTACATCTTTCTTTAAATATTAAAAAAAGAAGTTTTGGTGTTGCCTAGGTTGCATTTATCTTTGTGCCACCCATTTAATTTCTCAATAAAAATTTATCATGTGGTCATTTTTTAAAACAACTGAATTATTTTATATTTTTTACTAACAAAAGGAGTAATGCATGGGATAAGTTCAACCCAAGCTGCACCTAATCATTGCATTAAATATTTTAATTCTTATTTTGCGTATGATAAAAGTGATCAAGATGTAAGTGCATCTTGGAGTCCACTACAATATTTTTTTTATTACAAATACAAAATAATAACTTTTTAATTTAAAGGGATGTGACGCTTCCCTCCTCCTAGATGGAAGCAATAGCGAGAAGGAAGCTCCTCCAAACTTCAGCGTGCGAGGCTATGATCTCATTGATGCAGTCAAGATTCAGGTTGAGAAGGCATGTCCTCGAGTTGTCTCTTGTGCTGATATCATTGCCATGGCTACTAGAGATGCTGTCAATTGGGTTGCTTCACTTGTCCCCTCTCTATACAACCTTTTTCAGATATACCACTGTGAATTATATTTGTTAATGTGTGTCGTTCTTCACAGGCTGGGGGAGGACGATATAGCGTTGAAACCGGACGACGAGATGCCTTCCGACCAGCTGATATTGTCGATCTTCCTGGGCCTTCAATATCTGTCTCAGATTCCATTGCAGCCTTCTCCAAAAGGAACCTTAATGTTACAGATATGGTTTATCTTCTTGGTGAGTACTCCTAGTCTACATAATAAATACCCATTTTTTAAATATATTTACATATTTTATGAAAAAATATTGGAAAAATATGAATTGAATCTCAAACCTTTTAGCCTTTGTAAAGCCACGAGTTTGTCACATATCAAATTGTAGATGGAGACAACTGAGTTAGGTTACGAGTGTAGTCTGATGTGCACCAAAGTATTAGTATTTATAGAATAGTGTATGTGTTACATTACTTATTTTTAGACAATTGAAACCCAAACTTTTTAGTCGAGGGCGTATTGAAAGAGTTAGGAACACACATGGGAAACAATTTGGATCTAAAGCACTCTAACTACATCAATAAAAGGATTAAACATGCTTGTTCAAGAACCCAAAAACAGAGTTATGAAACTGACATTAGTTGTAGCTCAAAATTGAAGCATTTTATTGATTTTTTTTTTTATCACAGACACTTTGTGGACTATCTCTAGAGTCCTCCCCATTAATCTCTGGTCTTAGAATGGATTGTAGGATCCAAATTGTGATGAATTTAGAATGAATTTAAGGGTTATCAAGAGTTTTTGGAGAGTTGAGAGTTTGAGAGAATTTTCCAACAATTCCCACTATAGTCTTTGCTAATTTTCATTCTTTCAACCCTCTATATATATAGGAAATCGTGCAAATTAGCAACTTCTCCGAATGACACCAAAATGTGATTAATTATGTGGAAAATAGATGTTTATGAGAAATAGGTTTAAACCTTAATTCATGCAAAATTTGATTTTCCCAAAATCGTTTTAAAATGAATTTATTTCTTTTTCTAATTAAAATAAATTCATTTAATTAATTTTAAATAAATTCATTTAATTAAACAATTTAATTAATATTAATTTAATATCAAATATTAAATTAATTTAAATAATAATTAATTAAACAATTTAATTAATTATATTAAATTAATAATTTTTCCACTTATCTCGACATTTTCCAATCTAATGAATCTCTATTCATGTGGTTAATATTTAAATCATATTTAAATATTTTCTAACTTTTCAATATCATTTAATTCATAATTAAATAACTATATGTTTAAGCAAAACGTTTTACTTACTTCTAAAACTAAATTTGAACATTTTCAAATTCTCTCATCACACTGTTCTAAGGTTTAGTCCGTTATGAGCTAACAAGGGAACCTAATAGACCTAAAGATCATGGGCTACAACGATCCAAAATTAACCGGCTAAGCTCTTTAACCTAGTTAATTAACATTTTTTAACTACCAAGACATTTCATTATAGCCCAGTAGCTGTACTCTCCTCACTGTAAATATATTTTTGTCCACTTGGTATAACCATGATTAGTAAATCGATCCTTCACAGGTTGTTTGTAATTACAGCTAGGTCAAAATTACCATTTTACCCCTATAAGTACATCTTGTTCCTTAAGTCCCACTGATCCTCTAATAAACAATTAGTTTGTGATCCAACCACCAAATTGAGTCCCTATCGGGCCAATGAGAGGGTGAGGCCCCTTGTCCAATATCCGGAGTCAGTACTTGCGAGAACAAATTCTCTACTAACCTTGAATAAGGTAGGAGCGAAATCCATCTTGCAAGATTATGTCCCTAGCTATCTACCTGGTGTTATCTCTAAAATGGTAGGCTTATTGAGTCGGCGAACTTGAGCCACTCTCACCCATAGAGATTAAAGGATAATCCCAAATAAATAGGAGTTCATAGTTAGCTCAAGATTAAAATCGAGTTACTTAGGTCATCATATTGAAATAATCAAACTTATCAGTAAACGGTGTTATAAAGTAAAAGTAATTATCTCATGATCCGGTCTTAAGCAAACTCATTGCATAGGATGCCCCACTTCACGTCTTTACATGAACGATATAGGATCACATCATTCGTATCAAATATAAAGTGGGCCGCATCTATAGTGTCTCTAAGATAAGATACCCAACCTTGTGCCTATACTATACACCATCTGACTTTTACTTAAACTTGATTTATTTTTATGTCTTCACATAATGTCTAAGTATTCAAGTTATAGCCGGATGTTCTTAGTTTATTAGATTTTAGATTTATACATAACTTACATATTCAATGTCATCTATGTTGAATAAACTTCAATATCAATTTTATTGAAAATAAACCACGAGTTTTAGGACATAAAATCCAACACGCATACGCTTGTGCTAAGTTATGCTATATGCTCACTTGAAAACCTTTATTGGACATAAAATGTTACAATTGTAATTTCATCCTAGAAAAAATATAGGAAAAATATGATTTATACTCTAAACTTTCGGTTGTATCAATTGGAACCATCAATTTGGACCATTTGTTAATAATTTATAGTTAGTTTCGCTTAGTTTCATTATTCTTCTAAAAAATCACACTAGAGCGACAAATAAATTATCACATAATCCTTTCTAAATAAGTAAAGTAAAATAGTAGAAGACGAGCATATGAAAACTACCTCAAATTTAATAAAATCTGCTACTATAAAGTTTAAGATTTTAGTGGATACAATTATAAATTTATAACATTTTAATTAATTGATCCTACAACTCTTGGTTAGGGGTGCAAATCGATCTTGGCCTTTTCAATTTTTTTTTTTTTTTTTTGAAATTTGCCGAAAATGGCAAAGCATTAGCTAAGTAAAAACACAAAGGATGGCTTCTCACAAAAAAGCTTAAAGTTTGTGATCATTTCTGTTTGCTTGAAATTAAACACAAGCAGGTGGCCACACTGTTGGTGTATCACAATGCATTTTCTTCAAGGATCGCCTCTATAATTACAAAGACACAGGGGGACCGGACCCCACCATCGATCCGTGGTTTCTCAATGACCTACAAAGCCAATGCCCTCAAGATTCCAACGACGACAACACCGTATTTCTTGACCAGAACCGTATGAGTTCTTTCGTCGTTGACAAGTCGTTTCATAGGCAGATATCGCAACAAAGAGGAATATTGGAAATTGATCAACAGCTTGCTTTGGATCCATTGACAAAGGACTTCGTATGGAATGTGGCGTTCCGATCCGACTTCGCCTTCAAGTTTGGACAAGCATTGATCAAGATGGGAAGAATTCAAGTTCTTACTGGCTCAGAAGGGGAGATTAGAAGAACATGTGGGGCTGTTAATTGAATAACGTATATGATGATAAATCCCACCTTAGTTTACTGTTATGATTGAATATTATTAAGATGTCATCATCGTATATGCATATCATCCTAATCCTTTTTGTGCGGATTGAATTCATTTATACAAACATAACTTTCAATTTCCTCCATTTTAATTTCAATCTAGCCTGTATCACATATGTCAGGCAAATTAACTATAATTCGTCGGCTTCTTTTAAAACTTATTAGTTCAATTGGTATCAAATATGTATTCTGAACAAAGAAATTTTAAGGTAGGTATTCTTCTCATATGTAAATGAAAAGCATTCAAATTTATTTTAAAATACATTTTAGTAATCCAATTTGTAATTTTCATAATAGCTTCAACTTTTTGGATGTGATTATTGGATATGAAAAATATTTTAGTACTTAAGATCCAAAAGTTATACATTTTAGAGGTAATCCAATCGATAATTTTCCTTTTTCGAAGTTTTGAGATGATCTCTTTTTTTCTCTGATTCTCGTGAGCAATTTTGTTCTCTATGAATTAATTTTAAGATACGTTACGTTACTAGATATTTTTATTATTAGAGAAAATATCAATTTGTACTGTTTAATTTTGGGGTTTATCAATACAAACTCAAAATTAATAATTGTTTCAATTCTAATTGTGCACTTTCTTGTTTTTCATTGCAAAAGTTATGTATTAATGCAGAAACATGAGAACCCAACAACCCAGAGCCAAAGCAACACAGAAATCATAGAGAAACACCTCACAAACAAGGTAGAGGCAACTAAAAGACCAATAGAGGAGCCAAGAAATAATAACTCCTAAGGCGTGCCACGTTCGTTCCCGTTGTGAGCTTCACGATTTCAAGCTTTGAGTGTTTTCTATAGCTCTCAAGATGTCACTCCACAACTTCTTCAATGTGCATAAATTTTTAAGAGAATTTTCCCTCTAATTGGCCTCTCCTTATAATGTAGTAAATGGTTTGAGGGAAGGTCAAAATATCTTAATGGATTAACCTATGTAGGTTCCTTAAATACTTTAGGAATTCTAATTAGATACAAACTAACTCTCCTTCACAAAGAATTAGAAGATAAAAATATAGAATGCACATTATCTTGCTTGAAATTAACCATAGCACCACAACGCTTTTTATTTTTTTCGTTGCAACGCTCTTTTGGCCTCATCTTCTCACTCTTTGACCTTTCTTGTTTGATCCACTTTAATCCCCCAAAACCTCCAATTTATCCATAAATTCTTACTGTTATACTCTAATTTCTCAAATGCTTGAAATTTAAACAAATAACACATGAAAGCCCAACTACCTTCATACAAAAATTAACTAAAGCATTAAGCCTATAAGTGATATAAATATGCCACTTATCACCACTCCAAACCCTCCACCTGAACGCACACTTACAAACAGCCCATCTCTCGATTCAACACCATTAGAACACAAAAGACAAGTAGTAGGTAGTGAAGCAGCGTACTAATACAACCATTCACTAGTACCTTAACCTATCCTTCATCCCCAACCAAACAATGAACGAATGCTTAGGGATATTACCCCAAACAAAGTCAAACAAAATCTAGGCACCTAAGGCCTACAAGGATGCAAAGCATCATGGTCATGATTGTCCAAGGGTGTTGCCTGTGGACAGTATGTCCATTTCAACCTCCTTTTTGTCATGCTTTCATCTTATATATTTCAATACACAAGTTAGTTTACTTGTCTTGTATTTTTTGTTGGAAGTGACTCTCACCATTATCATATGCAAACTTGATTATCACAAAAAAGCTTATGATATACTAAATGGGTGTAAGACTAGTAATCATATTTTCATAGCCAGAGTTTGCTATTTGGATAGATTGGTTGAGAAAGAAGAGCAAATTGCTCTATTTAAGGGAAAGTCACTAATAGTATTTATTTTCGGCAAACTCGGTTGCAGGAAATTTCTATAAAATCCAATAGAATTAATGCGACAATGATCACTTGAACGAAATGCCCATCAAAGAGTTAATGATGTGTATTGATGCACTAGAAGGAAAAAAAAAAATCTACAATAATTACTAGCCTTGAGCATGGAGAACGAAACCAAAGTAGTTTATGATCTATCGAAAGTAAAATAATGTGATTAAATTTAAGATTTATTCAAACTAAGGTTCTCCTTTTTTTTTCGTTTCTAATTTATTATAATTCATTTCTTTCATAAGCTAAAAATTAAGCAACTTATTATAATTCATTTCTTTCGTAAGCTAAAAATTAAGCTTGGCTTTTTTTAGATAGGTATAACTCAAGCTACCCTTGGGCGTTCAATTCGCAGGTAAGTTATATTTCTTTTATTTCTTTCATTTTGTTATAGTTCCTTTATTTTTCTTTCATTTTTTTTTTTTATATTTATATGTTAATTTGATTTGAATTTTAAAATTTCCGACCTTCAAATTTATATGTTATTTTGATTTTCAAATTTCATGTTTTCAATATTCATATTTAAATATTTTTTGACTTTTGAATTTTAAATTTTGAAATATGCATACTTATATATTATTTAAAATTTTAAATTATTATTTGTAGTACATCCGAAACCACTTAAAATTTTACAATATACAAATTTAGTTTACTAAGATACTCATTTAGGTTCACTTTACTATTTTATAACTACAACATTTACATAATAATATAATTAAGTTAGTTTTGTGTTAACACCATTTAAGACAAATAACTTGAGTGAGAAACAATATTGCAAATCAAATTTTAATAGCATATTAATGATATAAACAATTATTAATTTTGCTTCGGGACTTATGTGAATTTAATAATGTAAATGTTTTATAATTAAATTTTTATATTTAATGCATGCTATATATTTTCTTATTTTACATAATTAAATTATATTTAAACTATAAAATAAGAGAAAAATTTAGGAGAAAAAAATATGAGAAACGAGAAACAAGAAATGATTATCAAATAAGTTTCTATGTCTAGTTTTTTTTTCAATAAAAAAGAAATATAAATTGTTATCAAACATCTTTATGTTTCTATTTCTTAAAAAACGAGAAATAATAAAAAATAAAAAAACAAGAATATTATCAAACAGGCCTAAAATTCAAAAATTAAAATAGAATGGAACAGACCAAAATAGCACTTTCTCATTTTGATTTTGTACTCTTTAAATAATGGAAGATGATGATCGAGGAGATCAAATTAAAGTATACTCCCTATAGTCTCTACTATACCTATAGAACTTTGTTGTTAAACCAAACTCCAATGTTTGAAATGTACCACTTCGGTGTCTAGCATAGCTCTAGAAGCATTGCACATTAAGTTTCAATATTGAAATCTTCGCATTACCACTTACACATGTCTCTCAAAATAATAATAAAAAAAAAAATAATAATAAAATAACAATAATAATAATAATAACAATAATAAATAATGGATTAAAAATCACTTTTAGACCCTAGACTTTCATAAAAGTAACAACTTAGTCCCTATACTTTAGTTTGTAACAATTTAGTCCCTAAATTTTTAATTTTGTAACAATTTAGTCCTTGTACTTTAAAATTTGTAACAATTTAGTCTTTATTGTAGACATTAGTGCTAAAATTTAATGAAATTTCTTGCACATACAAAACCGATAAACTAATTAGAGACTCAATATTTTTTATAAAATACAAAGTTTACATCTTAAAATAATAAAAATTGACATCTAATTTTGAAAAATTCTTTTTATGTTAGGGACTAAATTGTTACAAATTTGAAAGTAGAATGACTAAATTGTTATATATTAAAGTTCAGGAATCTAATTGTTGCAAAATTGAAAGTACAAGGATTAAATTATTACAAACCAAAGTGCAAGGACTAAATTGTTACTTTCATGAAAGTTTAGGGACCAAAATGTTTTTTTACTAAATAATATTAATAAAAATGTTAGAAAACACTTTTGGTCCTTATATTTTCAGGGAAGTAACAATTTGGTCCCTAAACTTTATTTTGTAATGATTTAGTCCTTGTACTTTCAATTTTGTAACAATTTAGTCCCTAAACTTTAGTGTGTAACAATTTAGTCCCTAACATAAAAAAATAATCAAAATTAGATGTTAATTTTTATTATTTTATGATATAGACTATGTATTTTGTAAAAAATAATGAATCTCTAATTAGCTTATTAGTTTATTTATGCAAGAAATTTTATTGAATTTTAACACTAATTTCTACAATAAGGACTAAAGAGTTACAAATTTTAAAGTATACGTACTAAATTATTATATGGTAAAGTGTAGGGACTAAATTGATAAAAAGTTGAAAGTACAGGGACTAAATTGTCACAACTCAAAGTTCAGAGACTAACTTGTTACTTTTACAAAAGTTTAAGGCGTAAAAGTGATTTTTAACTTAATAAAAAATAAAAAAAGTAAATAATTAAAAATAAAAATTAGTATTATGAAGAAGTAAACGGGAGTAAGTTGCCGAAGGAATTGAATGTTTTCTTCAAAATGTAAGATGTAACTCCAAATGTGTATATATTAATAAATCAAGGCATTCCCATTTGCTAGGAAAAAACGAACATTCCTTTCATACTACATAGAATAACTAGGATTTTTTTTTTTAAAAAAAAATATTTATCTAGCATAGAGATCACAGACAAGACAACCTTCAATCAAACCCAGGACCTGTCCTCATTTTCTCATGCATATCAATTTCTATCAAAACACCCCAATTCAGCATTTTCAAATCCTTCCAAACACCTCCAACCAAAATCCCCATTTTTATATATTTAAATCCCACAAATCAAAAAGAGAAAACCCGTCTTTGTGATTATCATACCCCAATATTATAGCTGTATTATTATATCTAGAATAAACCATGAATAACTCCATAACCCCCCGGCAAGAAATTAGTAAGCATGCTCCAACAATTTTGATAATTAAAAAAAAAAAAAAAAAAAAAAAAAAATTCAAAAAACAAAAAGTATAGTATAGTCTAATATGCACTAGGTAATTTTCATTATAAATTAGTAAAAACTTGGGTGTAATCTTCTGGTTAAAAATTGTCACATGGTAATTTATTTTATTTTAAAAATATATATATAAAAAATTGTTTTGTTGGTTGGGTGGAGGGAGGGGAAGCAATGGGATTTGAGGGGTAGCTTGCTCTATAAATTATGAAGTCTTTCGCTTTTTAGACATATATCCTCCACAATTTCCCACTCCTTTTCCCCCATAAAATCACACCTTAATTAGCTTGTTGGATCTCAAATTCAACTCATCTCTAAAATGGCTTTCCTCTCTACAAAATCAGTTACATTATTCTTCTTCTTCATTTTAGGCATCTTTTCCACGGCGGAATCCGGCGACCCAGATCCGATCGTGGACTACTTGACATTCCCACTAGGCGCCACCGCCAACGGTACTTTCTTCACCTTCACAGGCCTTCGCTCAGCCTTCACTGAATTCCCTCCAAATTTCAAACCCACAAAAGCCACCTTCGTTGAGTTCCCAGCCCTTCTCAGCCAGAGTGTCTCTATGGCCATCCTCCAGTACCCTGCCGGCTCCCTCAACCCGCCCCACACCCACCCCCGCTCCGCCGAGCTCCTCCTCGTTGTCAGCGGTAGCCTACAGGTCGGCTTCGTGGATACCACCAACCAGCTCTTCAACCAGACCCTTCAGCTTGGGGACATGTTTTTGTTCCCTAAAGGGTTGGTCCATTTCCAGTTCAATGCGGACCCTCGAAACTCCGCCACCGCCATTGCTGCCTTCGCCAGTGCTAACCCTGGCACCGTGTCTTTGCCCCCAACCGTGTTTACCAGTGGGATTAGTGATGAGGTTCTTGCTCAGGCTTTCAAGACTGATGTGGTTGTTATTCAAAGCATAAAGGCTGGCCTTGCACCACCACCGAGTTAG ATGCCAACCAAAATTCCTTTACAGCTACATGGATTACCCATAATATTGTTGCTCCTCAGCTTGGCAGCACCTACCTCCGCTGCCCTCCAGGTGGGATTCTACAAGGGAAAATGTGGCTTTAGAGATGTTGAATCTGTTGTCAGAGACGTTGTCACCGCCGCACTCGAAGGAGATCGAACCCTCGTTGCTGCTCTTCTTCGCTTACACTTCCATGACTGCTTTGTCTCTGGATGTGACGCTTCCCTCCTCCTAGATGGAAGCAATAGCGAGAAGGAAGCTCCTCCAAACTTCAGCGTGCGAGGCTATGATCTCATTGATGCAGTCAAGATTCAGGTTGAGAAGGCATGTCCTCGAGTTGTCTCTTGTGCTGATATCATTGCCATGGCTACTAGAGATGCTGTCAATTGGGTTGCTTCACTTGCTGGGGGAGGACGATATAGCGTTGAAACCGGACGACGAGATGCCTTCCGACCAGCTGATATTGTCGATCTTCCTGGGCCTTCAATATCTGTCTCAGATTCCATTGCAGCCTTCTCCAAAAGGAACCTTAATGTTACAGATATGGTTTATCTTCTTGGTGGCCACACTGTTGGTGTATCACAATGCATTTTCTTCAAGGATCGCCTCTATAATTACAAAGACACAGGGGGACCGGACCCCACCATCGATCCGTGGTTTCTCAATGACCTACAAAGCCAATGCCCTCAAGATTCCAACGACGACAACACCGTATTTCTTGACCAGAACCGTATGAGTTCTTTCGTCGTTGACAAGTCGTTTCATAGGCAGATATCGCAACAAAGAGGAATATTGGAAATTGATCAACAGCTTGCTTTGGATCCATTGACAAAGGACTTCGTATGGAATGTGGCGTTCCGATCCGACTTCGCCTTCAAGTTTGGACAAGCATTGATCAAGATGGGAAGAATTCAAGTTCTTACTGGCTCAGAAGGGGAGATTAGAAGAACATGCATCTTTTCCACGGCGGAATCCGGCGACCCAGATCCGATCGTGGACTACTTGACATTCCCACTAGGCGCCACCGCCAACGGTACTTTCTTCACCTTCACAGGCCTTCGCTCAGCCTTCACTGAATTCCCTCCAAATTTCAAACCCACAAAAGCCACCTTCGTTGAGTTCCCAGCCCTTCTCAGCCAGAGTGTCTCTATGGCCATCCTCCAGTACCCTGCCGGCTCCCTCAACCCGCCCCACACCCACCCCCGCTCCGCCGAGCTCCTCCTCGTTGTCAGCGGTAGCCTACAGGTCGGCTTCGTGGATACCACCAACCAGCTCTTCAACCAGACCCTTCAGCTTGGGGACATGTTTTTGTTCCCTAAAGGGTTGGTCCATTTCCAGTTCAATGCGGACCCTCGAAACTCCGCCACCGCCATTGCTGCCTTCGCCAGTGCTAACCCTGGCACCGTGTCTTTGCCCCCAACCGTGTTTACCAGTGGGATTAGTGATGAGGTTCTTGCTCAGGCTTTCAAGACTGATGTGGTTGTTATTCAAAGCATAAAGGCTGGCCTTGCACCACCACCGAGTTAG ATGCCAACCAAAATTCCTTTACAGCTACATGGATTACCCATAATATTGTTGCTCCTCAGCTTGGCAGCACCTACCTCCGCTGCCCTCCAGGTGGGATTCTACAAGGGAAAATGTGGCTTTAGAGATGTTGAATCTGTTGTCAGAGACGTTGTCACCGCCGCACTCGAAGGAGATCGAACCCTCGTTGCTGCTCTTCTTCGCTTACACTTCCATGACTGCTTTGTCTCTGGATGTGACGCTTCCCTCCTCCTAGATGGAAGCAATAGCGAGAAGGAAGCTCCTCCAAACTTCAGCGTGCGAGGCTATGATCTCATTGATGCAGTCAAGATTCAGGTTGAGAAGGCATGTCCTCGAGTTGTCTCTTGTGCTGATATCATTGCCATGGCTACTAGAGATGCTGTCAATTGGGTTGCTTCACTTGCTGGGGGAGGACGATATAGCGTTGAAACCGGACGACGAGATGCCTTCCGACCAGCTGATATTGTCGATCTTCCTGGGCCTTCAATATCTGTCTCAGATTCCATTGCAGCCTTCTCCAAAAGGAACCTTAATGTTACAGATATGGTTTATCTTCTTGGTGGCCACACTGTTGGTGTATCACAATGCATTTTCTTCAAGGATCGCCTCTATAATTACAAAGACACAGGGGGACCGGACCCCACCATCGATCCGTGGTTTCTCAATGACCTACAAAGCCAATGCCCTCAAGATTCCAACGACGACAACACCGTATTTCTTGACCAGAACCGTATGAGTTCTTTCGTCGTTGACAAGTCGTTTCATAGGCAGATATCGCAACAAAGAGGAATATTGGAAATTGATCAACAGCTTGCTTTGGATCCATTGACAAAGGACTTCGTATGGAATGTGGCGTTCCGATCCGACTTCGCCTTCAAGTTTGGACAAGCATTGATCAAGATGGGAAGAATTCAAGTTCTTACTGGCTCAGAAGGGGAGATTAGAAGAACATGCATCTTTTCCACGGCGGAATCCGGCGACCCAGATCCGATCGTGGACTACTTGACATTCCCACTAGGCGCCACCGCCAACGGTACTTTCTTCACCTTCACAGGCCTTCGCTCAGCCTTCACTGAATTCCCTCCAAATTTCAAACCCACAAAAGCCACCTTCGTTGAGTTCCCAGCCCTTCTCAGCCAGAGTGTCTCTATGGCCATCCTCCAGTACCCTGCCGGCTCCCTCAACCCGCCCCACACCCACCCCCGCTCCGCCGAGCTCCTCCTCGTTGTCAGCGGTAGCCTACAGGTCGGCTTCGTGGATACCACCAACCAGCTCTTCAACCAGACCCTTCAGCTTGGGGACATGTTTTTGTTCCCTAAAGGGTTGGTCCATTTCCAGTTCAATGCGGACCCTCGAAACTCCGCCACCGCCATTGCTGCCTTCGCCAGTGCTAACCCTGGCACCGTGTCTTTGCCCCCAACCGTGTTTACCAGTGGGATTAGTGATGAGGTTCTTGCTCAGGCTTTCAAGACTGATGTGGTTGTTATTCAAAGCATAAAGGCTGGCCTTGCACCACCACCGAGTTAG MPTKIPLQLHGLPIILLLLSLAAPTSAALQVGFYKGKCGFRDVESVVRDVVTAALEGDRTLVAALLRLHFHDCFVSGCDASLLLDGSNSEKEAPPNFSVRGYDLIDAVKIQVEKACPRVVSCADIIAMATRDAVNWVASLAGGGRYSVETGRRDAFRPADIVDLPGPSISVSDSIAAFSKRNLNVTDMVYLLGGHTVGVSQCIFFKDRLYNYKDTGGPDPTIDPWFLNDLQSQCPQDSNDDNTVFLDQNRMSSFVVDKSFHRQISQQRGILEIDQQLALDPLTKDFVWNVAFRSDFAFKFGQALIKMGRIQVLTGSEGEIRRTCIFSTAESGDPDPIVDYLTFPLGATANGTFFTFTGLRSAFTEFPPNFKPTKATFVEFPALLSQSVSMAILQYPAGSLNPPHTHPRSAELLLVVSGSLQVGFVDTTNQLFNQTLQLGDMFLFPKGLVHFQFNADPRNSATAIAAFASANPGTVSLPPTVFTSGISDEVLAQAFKTDVVVIQSIKAGLAPPPS Homology
BLAST of Clc01G12180 vs. NCBI nr
Match: XP_038893695.1 (peroxidase 60 [Benincasa hispida]) HSP 1 Score: 556.2 bits (1432), Expect = 2.9e-154 Identity = 280/325 (86.15%), Postives = 300/325 (92.31%), Query Frame = 0
BLAST of Clc01G12180 vs. NCBI nr
Match: KAA0035510.1 (peroxidase 60-like [Cucumis melo var. makuwa] >TYK31020.1 peroxidase 60-like [Cucumis melo var. makuwa]) HSP 1 Score: 550.1 bits (1416), Expect = 2.1e-152 Identity = 275/326 (84.36%), Postives = 299/326 (91.72%), Query Frame = 0
BLAST of Clc01G12180 vs. NCBI nr
Match: RXI04831.1 (hypothetical protein DVH24_039105 [Malus domestica]) HSP 1 Score: 534.6 bits (1376), Expect = 9.1e-148 Identity = 283/504 (56.15%), Postives = 364/504 (72.22%), Query Frame = 0
BLAST of Clc01G12180 vs. NCBI nr
Match: XP_011648460.2 (peroxidase 60 [Cucumis sativus] >KGN64946.1 hypothetical protein Csa_022776 [Cucumis sativus]) HSP 1 Score: 527.7 bits (1358), Expect = 1.1e-145 Identity = 265/326 (81.29%), Postives = 287/326 (88.04%), Query Frame = 0
BLAST of Clc01G12180 vs. NCBI nr
Match: XP_022142636.1 (peroxidase 60 [Momordica charantia]) HSP 1 Score: 502.3 bits (1292), Expect = 5.0e-138 Identity = 250/322 (77.64%), Postives = 280/322 (86.96%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy Swiss-Prot
Match: Q9FMR0 (Peroxidase 60 OS=Arabidopsis thaliana OX=3702 GN=PER60 PE=1 SV=1) HSP 1 Score: 305.4 bits (781), Expect = 1.2e-81 Identity = 157/317 (49.53%), Postives = 220/317 (69.40%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy Swiss-Prot
Match: Q43729 (Peroxidase 57 OS=Arabidopsis thaliana OX=3702 GN=PER57 PE=1 SV=1) HSP 1 Score: 269.2 bits (687), Expect = 9.4e-71 Identity = 148/313 (47.28%), Postives = 201/313 (64.22%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy Swiss-Prot
Match: Q93V93 (Peroxidase 44 OS=Arabidopsis thaliana OX=3702 GN=PER44 PE=2 SV=1) HSP 1 Score: 257.7 bits (657), Expect = 2.8e-67 Identity = 154/318 (48.43%), Postives = 195/318 (61.32%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy Swiss-Prot
Match: P22196 (Cationic peroxidase 2 OS=Arachis hypogaea OX=3818 GN=PNC2 PE=2 SV=1) HSP 1 Score: 256.5 bits (654), Expect = 6.3e-67 Identity = 138/315 (43.81%), Postives = 191/315 (60.63%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy Swiss-Prot
Match: Q43387 (Peroxidase 71 OS=Arabidopsis thaliana OX=3702 GN=PER71 PE=1 SV=1) HSP 1 Score: 241.5 bits (615), Expect = 2.1e-62 Identity = 132/299 (44.15%), Postives = 186/299 (62.21%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy TrEMBL
Match: A0A5A7SWW0 (Peroxidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G002700 PE=3 SV=1) HSP 1 Score: 550.1 bits (1416), Expect = 1.0e-152 Identity = 275/326 (84.36%), Postives = 299/326 (91.72%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy TrEMBL
Match: A0A498KBM5 (Peroxidase OS=Malus domestica OX=3750 GN=DVH24_039105 PE=3 SV=1) HSP 1 Score: 534.6 bits (1376), Expect = 4.4e-148 Identity = 283/504 (56.15%), Postives = 364/504 (72.22%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy TrEMBL
Match: A0A0A0LYA7 (Peroxidase OS=Cucumis sativus OX=3659 GN=Csa_1G166260 PE=3 SV=1) HSP 1 Score: 527.7 bits (1358), Expect = 5.4e-146 Identity = 265/326 (81.29%), Postives = 287/326 (88.04%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy TrEMBL
Match: A0A6J1CMS4 (Peroxidase OS=Momordica charantia OX=3673 GN=LOC111012699 PE=3 SV=1) HSP 1 Score: 502.3 bits (1292), Expect = 2.4e-138 Identity = 250/322 (77.64%), Postives = 280/322 (86.96%), Query Frame = 0
BLAST of Clc01G12180 vs. ExPASy TrEMBL
Match: A0A6J1HU47 (Peroxidase OS=Cucurbita maxima OX=3661 GN=LOC111466598 PE=3 SV=1) HSP 1 Score: 474.6 bits (1220), Expect = 5.4e-130 Identity = 240/310 (77.42%), Postives = 259/310 (83.55%), Query Frame = 0
BLAST of Clc01G12180 vs. TAIR 10
Match: AT5G22410.1 (root hair specific 18 ) HSP 1 Score: 305.4 bits (781), Expect = 8.4e-83 Identity = 157/317 (49.53%), Postives = 220/317 (69.40%), Query Frame = 0
BLAST of Clc01G12180 vs. TAIR 10
Match: AT5G17820.1 (Peroxidase superfamily protein ) HSP 1 Score: 269.2 bits (687), Expect = 6.6e-72 Identity = 148/313 (47.28%), Postives = 201/313 (64.22%), Query Frame = 0
BLAST of Clc01G12180 vs. TAIR 10
Match: AT4G26010.1 (Peroxidase superfamily protein ) HSP 1 Score: 257.7 bits (657), Expect = 2.0e-68 Identity = 154/318 (48.43%), Postives = 195/318 (61.32%), Query Frame = 0
BLAST of Clc01G12180 vs. TAIR 10
Match: AT5G64120.1 (Peroxidase superfamily protein ) HSP 1 Score: 241.5 bits (615), Expect = 1.5e-63 Identity = 132/299 (44.15%), Postives = 186/299 (62.21%), Query Frame = 0
BLAST of Clc01G12180 vs. TAIR 10
Match: AT3G03670.1 (Peroxidase superfamily protein ) HSP 1 Score: 240.7 bits (613), Expect = 2.5e-63 Identity = 141/319 (44.20%), Postives = 190/319 (59.56%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (cordophanus) v2
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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