Cla97C06G112160 (gene) Watermelon (97103) v2.5
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAAAAGTAAAGCTTTTGTTCTCTAATAATTATATGCTACAAAATAAATTCATTCTTTTTCTTTTAAGGTATTTACATCTATGTTTAGTTATGCAAATGTGAAGCGGGAATGTGGCATTCTACCTCATGGAAAAAGAAAGAGAGGTAATTTTAACTGATTCGGTTGAAGATCTCATGCATTGAAAAAAATCAAGATACCTCACAATATTTACGAGATACATGAGTTACTCATTCTCATTACCAATTGGTTTTGGGATGAAACTCATGTTATGTAATATGGTACCAAAGCCCATTAAAACCAAACGAGCATTCATTCTAAAAAAAATTTAGAATCCGATCCAAGAATGGTGAGCCCAAAGAGACATCATCTTGAAGGGACACGTTAAATGATCCACATTGAAGAAAATAAAGTTGAGCTACTCCTCTTCTTACCAATTAGTTTTGAGATGGAAGCACATGTTATCTAATACCATCTTCCTAAAGTATACTTGAACAAGGAGTACCTTTTCTGTTGGAATGTTTTGAGTCTAATACCTTGAGCTTTGAACGACAAAGTATGAGTGCCTCGCTGAATTATTGATCTAACCCTAGAGGCATCTCTGATCTGTAATCAGAATTATTCTCTTTAATAATAAACTACTCTTCATGTGTCCGTGGATGTAGCTAACATACTGTTAGTGAACTAAGTAAACTTCTGTCTCAATTCTTTACTGCTAAACACTTTTTTACTCATCTTTATTTGTCGATTTCATAACATTTTGGTTTGGTAAAATGGAATTTCAAAGAATAGTGCATAGTAGGGTGGGAAGTCGAGAGAGGGAGAGAGAGATGTATATATATAGAAGAAGAAGAAATGATTCGAAGAATTTTGGAAGATCGATGAAGCCAGAAAGAGAAGAACATGGTGGCTGGTCAAACATGCTATACAGCCTACAAACAATGCCTTCTTCTTTGGTCCCACTTCTATCCCACACATGTCCTCTCCTTATGCCCCCTTCCTTTTGGCCCCTTAATGCCTTTTAGTCTTCCCTTTCCCCCTTTCATCTCCCCATAATCATTTCCCGTTCTTTCTTTCTTTCTTGCTACTTTCTAAACTCACCAACTTTCAACAAAAATGAAGGTCTTTACATAATTAACCTCCAATCACTTTGCATTTTATCCTCTTATTGTTGTTCTCTTGACTAATTTAATCCACCCCTTTCTTGTTTTTGCTTTCTTTCCTTCAGATCTTCAACTGGGTGCACAAGACTTTTCATCATACTCTTCTTAAGGGTTTAATTTCTCTTTCAATTTTCTCATGTTATTGCATTTCTTCATTTGGGTGGACTTAGAAATTCTCATGCAAATAAATAAATAAATAAATAAAGGACTATTTACATCTTATCTACCAAGCTATGCTCAGAATGAAAATTAAATGGTTTTTATTTTTCAGAGGGTTTTGTGCAAAATGCGACGAGGAAGACTGAAAGTGCAGGCAATAATGAAGTCGATAGGCATGCATTGTTGAAGCAAGTAGAGTTTGATCATGTGGAAGCCCTTCATGACTGGAGAGGGGGGATTCTCACCATTGGCACATTCGGGTTCGAATCATTGAAACCTTCAAACGAGCAAAAGGAGTATCTCGTGCTCGAGAGCGAAGATGACGACTACGAGGATGAGGAAGAAGAGGAAGAGAAATCATTGGTTCACGATGAAGATCATGACGAAATTATTGGTTACTTGGAAGATGAAGAGCTAAATCCTTTGATGTTCACAGCATTTGGACACAAATCAAAGGATGTAAGTGCTGATCAGAAAGGTGAAGATTTGATCATGGGAACTTATGAGCTGAATATGGAATCGAAATACAGTGCGATTATGGAGATGGACAATGAGGAGAAGAAGAAGAAGAAAGGGGAGAGGAGAATAACACTGGCTGACTTGTTCTTGGCAGATGCTGAAGATGTGGCAAAAGCACTTAAGGATGATAAAGTGCTTCAAAAGAAAACAGCTGATGTGAGAAGTAAGAATGGCCTCTCCTTTGCCAAGAAGCTCATCCCTCGAGTCAAGGAGGATTCACACCCTATTAAGAACTTTCAACGAGTGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGTGGTTTATATGTTTTTGAGTCATTCGGTTAGAATAATGTTACTTTTTAAAAAATAATGTTTGTTTGCTAGTCTGGTATGCACCCGGTTTTTTTTTTTTTTTTTTTTGTCAATTCCAACCACACAACAAAAATATTATAAATATTTTTTTTAAAAAAAATTGTCACTAATTGTAACTATAAAAATCACGTGAAAATTTGTAGTTACGCCACTAAGTTGATTGACAAAAAATTGGGGGAAGCAACCAACTAGTGGGCAAAGTATTTTTCTTTTGGAGGGATAAAAATTGTGTTTTGTATTTTTTTAAAAAACGTTTATGGGGTTTTGGGAGATAATAGACTAAAAACATATGTTTTAAAATGATAAAAATAATGATCTTTGGATAACATTTTGCAAATTTTCTCAAACTAAAATGGTGAGTTTTGCCTCATTTTATAGGATTTATTTAGTTAACGTTTCTCATATTCTAATTTTTAATTATCGAATTATAATTAAAAATCTATAACAATAGATTGTTTTAACTTTATTTTTTTTTGTGGTTACCTTTAAACAACAAAATTTTAAATACATTCATATTAAATTTTTCTCGTTCCAAACAAATTTAAAAAAAAAAGTTAAAATCATTTTATTGGTAATTCCAAAGGGAGAGTGAATTATGTTCCTTAATTCTAAAAAAATCACACACCAAACAAAAAGTAACAAATGATGTAAAAATTCATTCCAAACTTAAATCTTTAAAGGAAAAAATCCCAAGAAAAGCAACCTGAAAATTCTCTATCCAAAGTACAAAACATGCATGTTGTATTGTTTATATGCTGAAAAAGAAAAGGAAAAGAAATATTGTTATAGGACAGCAAAATTGAATTTATTTACTACCAACAAAAAGGAAAAGAGAGAGAGAGAGAGAGAGAAGAAGAGTTAGAAATGATGGAATTAATAATGTATTAAATGTATGATGCCACGTGTATGCAGTTGATGAGAAGGATGCTGAAGAGGAAGATCCACCCAGAGATTGAAGACAAGATCAACAAACCATCACCTGACCTAACTCACCAAATAGGAATGGCCAACAATGGAGGATTTGAAACCTTTGAATCCCTCTCTCTTCTTCCATCTCAAGGTAATTACATACATACTCCTTTTTCATCTTAAATTAACATCGTTTTTACATTGAATCATAACAACACCAATACACCGGATTCTATCAAAATTCTATAGTTAAATGGAGTTCTTATTTTGTATCTTCTTTAAATTAACATCGGACTTTTACTTAATAAGAAATAGAAAACGGAAAATAAGATGTTTTGTAAAACTCTTCAAATTTCCAACCTAGGTTAAGGTTATTTTGGGGTTTCTTCCTAAAGTTTCGTTTGATAACAATTTCGTTTTTAGTTTTCTGTTTTTGAAATTCATGCTTGTTTATTCCCTTGTTTTTTCAATTGTGTATTTCATATTTCTTAAAAAAAAACACTTGAACTCCTAGCTAAATTCCAAAAGCAAAAACAAGTTTTTGAAAACTATTTTTTCTAGTTTTAAAATTTGGCTTGATTTTTTCAAACATTGGTAAAAAGTAGATAACAAAACATAGAAACACATAGGAAGAATTAGTTTTATAAGCTTAAATTTTCAAAAACTAAAAACAACCAATCAAACCATTATCAAATTAGACCTCAATGTTGAATTAGACTAATGGTTAGATATCTTGAATTAGACTAAAAACTCAAATCCAACGTGAAGTGTTGATACCATGTTAAAAGATAGGAGTACAATTAGAAATTGAAAAAAAGGAAATGAAAAAACAATCAAAGCCATCAAAGTCGAGTCAATTTTCGGTCTATTTGTCTCAAATAATTACTAATTGCATCCTTTTCATATAACTTTTAGATCCAAAATACAACTAATTCAACCTTAGTTTTAATTCAAAATCAAAGTAGATAGATTCACCTACACTCATGTCCAAAAGACTAAAATTTTCACTAATCCAACAACCTAAAATAGGGTATCATGGTGAGACAATTAAACAATGTAGGCCCTAAAAAATATTTGAACTTTTTTCTACTATTCTTTCAATCAAACTCTATGGTCAAATGGGATTGAAGATTAAGTTGCATATCACATATAGAAAACTTTCATTACTTTCCTTTTATTTTATCAATGTGACATTGAAATTGAATGGGACCATTTCATCACAAACAACCCAAAAGCAAATTCCAAGTAAGAAGCAGTCAAACAAATCGGTCACAAATCATCTAATCTTGTGGGCTCTCACATGTCTAATCCACACACCATTTTGTGGGGGAATTGAGTTATTTATTTACTCCACCAAAAATAGAATTGGTTTGGATTGACTTTTCGTAGATTTAAAAACAATTTTCCTTTTACAAAAGTACTTAGAAAGTTAATCAAAATATACCCTTAATTTCTTTTGTATTTGTCTAATCACTGATTAGTTTTTTTTTTTTTTTTTGGTGTGTTTCTTTATGCGCAGATGCAATTGCTTGATGGATTTAATTAATGGGTGTCTTTCAAAAGTATGTCTCTGATTGCTTAGAATTGTGCTTAATTATCTCTCATGGTAATTATTGAAAACAATGTTTATTATTATTATTTTTGTTCATTAGGTGTTGTATATGAAGCTTTAATTAAGACCTACTTGATTATTCTGTTTTGTAAGTTGTTTTGATGTTGTTTTGGGTTTAGCAAACAAGTCATGGAAGTGTGGTTTGTCGGTCAATTCTTGGCGTTTCTTAGTTGGTCAAATTATTCATTTCCAATCAATATATGTTCATTATTTATTTTTCACTTTTTTCATTTAATTTGTTATTGACAAGTAACGTTGTACAACACAACTCATATGGCAAGTTTCTTGTACGAGATACCAACATAGCATCATGTTAGCCATAAAAGAAGTCAATCATTAGTATATAGTAAGAAGAGGTCTCTATGGATATAATTCTTTCAATTAAAATTAAAATACAATATGCATTTAAAAGGTGGAATATATATAAAAAGAATTTGAATATTAGATCCATAGCCCATGTATATAAATTTTGTAGAAATGGCAAAATAATTAAGTTCAATCCAATTTCATTAATAAATTGAAAAGAAAAGGTCGAAAATATCCCCACACTTTTTTAATCAGTTTACGCTCATTTCTTCATCTTCATGTAACATTAGGGTTTGTTGCTTTTTGAATCAATTCGTACTCTCTTCAATGGCGATGCCTTTATCTTCTTCTTCCCATTTGATTTCTTAAAGAATATTCACCTATAACAGAATCACAACATCGAAATATATAGAATCATCGTGGCTGTGAAATTTTAATTTCCAATTATACTTCTCTCTCCACCCATCTATCTTAGGATTGTTGTTTTTGCTTTTGCTTCCTTTGGTTTGTGAAAGGATTCGTGGTAGAGAAGATAGAAAAAGGCACAACAGAAATAGAAAAGAAAAACATCTCATTCAAATTTTGCAGATCACAAAAAAGGAAATGTCCCAGAGAAAGAAAATCGCATAATATTTTAGATAATTAAGGCAAAAACAATTTGCAGGACTAACATTCCAAGAGACATATTGTGAGACAATTCTTGAGATAACACCGACATGGTTGCCTTGGAGATGATCGGGAGTTTCCCTTATCTTAGAGGAGCAATAAAGTGATCATATGTGCAGGTTTAGAGCAACAATGGAGACAAATGTTGGTTTGGAATTGCAAAAACAATAATAGATTGATCATGCTCGGGGGTATACATTATAATATATAATGTATATATAATGATATATTATACATGATTTAATTTAGCAAAAATAAAACAGTTTATGACAAGAAATAATATTACTTATCGAGGGTGTTATATATTTTAGAATGAAAAATTTTGCAATTTAAAATCTAGATACAATAAAAATATAAGTCCATGTACGAAAGTGATTTTAAAATTGTTAAAATTACTTTTGTCATGTTGAAAAACACTCACAAATATATCTCTAATCATTCAAAATTAATTTAATATTCAATCTTACGCTCTATTAATGTTTAAATAATTGAAAGAACATATTTCAACATGATTTTGAATATTACGAAGGTGATTTTAATCCATTCGCTACATATAAATTAAGGGCTAAAATAAAAGTAGTTTATTAAAAAAAAAATTAACATGCATTCAACTTATACTTAATTAATTTAGTTTAAGCTTATATTTTATAATTAAAATTTAAAGTTTATATTTGAGTGATCTAAAACTCTTAAAACTCTAAAGTTCTTTAATTCTAAATTTTGTAAAAAAGAAAATAAATTAATTTTATAATCTAAATGATTCAAATCAAATTACTTTTCGAAACTTAGGGATTCAACCTCTTATTTTTAATTTAGATGTAAAAAGCCGGTTTGTAAATAAAAATCAAACAAAAGGAAAAGGAAAAAGAAGAGAAAACATATACAAATTAATTTTAAAAAATGTAAGAAAGAGAAAAGAAAAATAAACAAAATGAACGAAAAAAAAAAAACACTAATTAAATAAAAGGCTTCTTTTTTGTTCTTCCTAAAAGATGAAACCCATGGGCTTTGACGGTTGGACCCAACATTTTTAGCCCAAAATAAAATTAAAGAAACGAAAAATATAAAATAAAATAAAATAAATTAAAAATTGTGGATGTGACCATTTAGTCGTTTTTCACGTGGATCGGCCTCAGATCTGGTCCACGTTTATTCACCAACTAATTATTAAAATAAATCATATAAAATTTTTATATTATTTAAATATAATTTATACTTTTAAAATGACATTACTCTTACACAAAACAGCAAGATATAAGCTTTATTCAATAATAACACATGCCCATTTTTTTTCTCAAACCCATACTTCTTTTCAATGGAACTATATTCAATTTAAAATTGAATTAATAAAAGTCTTATGTTTACAACTTAACATTTATATATTTATATATTTAAGACACCAACAACTAAAATAAATACACCCACAAAGGGAACATTTTTTTTTGAAAGAGCAATCAATTAGAAGAAATCCTTGTACTATTCTCTCTCAAGTAAGTGACTCTTAAGCTTTGATTCTTTTCATTTTGATTTCTCTTCTACTTCTTCTTCTGTTTGTGGTCTGAAATATTCAATCTCTCTTCAAGAAAGTTGCAGAGAAAAGTTGATGGAAATGGATTCAAATTCTAATGTGTATTCTTTTGATGAAGTTGCAAAGCACAACCACCAGAAAGATTGCTGGCTTATAATCAATGGTTATGTATGTCCTTTCCTTTAATTTTCTACTTTTTAACTCTCTCTCTCTCTCTCTTAGAATTGATTGGTTAATGGAGTTTCCAAAACAAATCAACTAAAGTTATTTTGGATTTTTTTTTTAAATTTATTTTTCACTTCATATCAATCCAATTAAAATGTTTGATGATTGTATCTGTTATGTTATGAATATACTACTTATAAAATCTCTCTAAATTCTCCATTTTTACTTTCTTTCTTAGGATATTAAGCATCTATGTAGTCTACGTACAATTTCATTTTCTTCTTTTTATATCTAAATTAAAAGTTCAATTCAAAATTTTAAAAAGTTAATTGGTATTTCTTTTACATCATAAAGATTTCGAACATAACTCAACTGACATATGAATATATTTGCAATTCTTTAAAAATATTATTATACACTTAAGGTGTGTTTGGAATATATTTTCAAGTGTTTAATTTAAAAAATAAGTTATTTTGAAATAAATAAGTGTTTGACAATCACTAAAAATGAATTTTGGAAGTCATTAGTATTTTTGTTTTAAACCGTTTGTATCAAAAGCATTTAAATAACCAAAAAATTTTAAAAATATTTGCCTTTAATTATTTGCCCTAAAACTGTTGAACTGCAATCCCCAACAAAAATGAACGGATACTAATTGTTTATTTAATAATTTAAATGTTTACTTCCAATACTACTTTGGTTGTTTTATATCTTTTTAAAAATTGTTTTGGTTGTACTTTTAAGAAGTTCTCTTTTTACTATTTGTTTGCAAAATTTTAAAATAACTTTTAAAAACAACAAAACATTTAGAATTTGAATAATTTCTTTAAATGAGAGTGATAGAGGATGATAATCTATAAGTAATAGATTTGTTATTTTACTATATTTATAAATATTTTAACTTATTTTATTATATTTAAAAATAACGAAGTTTATTAATTATTCGTAGTTATGTACTAAAACTATAGATGAAAATAATGAGTTAAAAAGAAAATGAAGTAATAAAAAAAAATTACCACTATGACTAATTTATAAAAGTGGATTTGTGTTAGGTGTACGATGTGACTTCATTTTTGCCGGACCATCCAGGTGGCGATGAGCTCTTGCTACTTGCCGTCGGTGAGATGCTCTAATTAATAACTTTTTCTATTGTTTTAATTACCAAAATTGAATTGACATTGACAGTTTTAGTATACTAGTTTATATATGTTTAATAAACCTTTAAATTAGTCTTCATCGTTACTTTGAAATTCACTTTTATCTAACTTTTCAAAACAACAATGGAATTTTTTTTTTTCTTTTCCGAATAATCTAATACCAAATGCGTTAATGCATAATGATCTAATTTTGGAAACCAATAAACATTGAATTTCTGCTTACGTCACATAGTATTAAAGAGCCTTCAACTTCTTCTTGAGATCGTGACTTCTCACCCATCATGAAATATATGAATCTCTAATGAGATTTGAATGATTTGCATCACGATTCTTTTTAAAAAAAAGAAAAAAAAATCCTCTCCTTGGCCATTAAAGGTTGCGAGAGTCCAACTATCGTGAAATTCTAATGGAGTTTGATCGGGAGATTCCTCAACAATCAAAAATATGAAAAATAAACTTTTGAGGATTCTAATTAATTTAAACCAGTCATGATGACAATTTAAAATTGCGACCAGGCTCCGCTAGAATTTTGCAGTGGTTGGGCACCTACAACCACGAATGAGCATCGAAGGGATTTTAAAAAAAAATGCCATGCAGATTCAAATTGCATTAGGGATGATCCACATATTCTGCCATGGGTGAGAAGCTAGCCATGATCTCTATAAGAAGTTATATGCTCTTAAGTCTTAAGTAGTCTATGACATAAACAGGCTGAAGATTGGTTTCACTGGTTTCCAAACTTGGGTCATTCTTCATTAGCGCATTTAGAACTAGGTTATTCATATAAAAAATATATATATATATATATATATATATATATATATATATATATATATATATATATATAATTTCTATTTTTTAAAACAAAACATAACATCAAGAAAGTTAATAGAGATTAATAATTTTTTTAAAAATTATATATACATTGACAATTGAGACTAGTGTAGGATTTATTAGAAGTATAAAGAATAAATTGAGTTTGGAGAGAGAAAAATAAATGAAACTTCTAACTTTAAGATTGATAGTACATGTATTGATATCAGCTCAATGAGCTATATTTTGAAAATGTTAGTGATAGATTTGAATATGTGCAGGAAAAGATGCAACATTTGATTTTAAGAGTGTTGGACACAGCGAATTGGCTCAAGAGAAGATGAAAAAGTATCGGATAGGGAAGATCGACATATCGACTCTCCCTAAAAAACAAGAATATGTGGAAACTACACCATATCAGCCAACTCCAAGTCTTTTTTCCTTCTCACCCATCCATGTTCTAATCCCTATTTTGCTCTTAGCCTTGGCATTTGCCTTTCCCTACTTCAAACTTAAAGCCTAAAATTCATTTTTTTACATTTCTATTTTACTTTCCCACAAGGATTATAGCCTAGGCTACAATAACAATTTGAAGTTTACCTTCATTATTGAATGGTTCAATGGGTT ATGAAAAAGGGTTTTGTGCAAAATGCGACGAGGAAGACTGAAAGTGCAGGCAATAATGAAGTCGATAGGCATGCATTGTTGAAGCAAGTAGAGTTTGATCATGTGGAAGCCCTTCATGACTGGAGAGGGGGGATTCTCACCATTGGCACATTCGGGTTCGAATCATTGAAACCTTCAAACGAGCAAAAGGAGTATCTCGTGCTCGAGAGCGAAGATGACGACTACGAGGATGAGGAAGAAGAGGAAGAGAAATCATTGGTTCACGATGAAGATCATGACGAAATTATTGGTTACTTGGAAGATGAAGAGCTAAATCCTTTGATGTTCACAGCATTTGGACACAAATCAAAGGATGTAAGTGCTGATCAGAAAGGTGAAGATTTGATCATGGGAACTTATGAGCTGAATATGGAATCGAAATACAGTGCGATTATGGAGATGGACAATGAGGAGAAGAAGAAGAAGAAAGGGGAGAGGAGAATAACACTGGCTGACTTGTTCTTGGCAGATGCTGAAGATGTGGCAAAAGCACTTAAGGATGATAAAGTGCTTCAAAAGAAAACAGCTGATGTGAGAAGTAAGAATGGCCTCTCCTTTGCCAAGAAGCTCATCCCTCGAGTCAAGGAGGATTCACACCCTATTAAGAACTTTCAACGATTGATGAGAAGGATGCTGAAGAGGAAGATCCACCCAGAGATTGAAGACAAGATCAACAAACCATCACCTGACCTAACTCACCAAATAGGAATGGCCAACAATGGAGGATTTGAAACCTTTGAATCCCTCTCTCTTCTTCCATCTCAAGTTGCAAAGCACAACCACCAGAAAGATTGCTGGCTTATAATCAATGGTTATGTGTACGATGTGACTTCATTTTTGCCGGACCATCCAGGTGGCGATGAGCTCTTGCTACTTGCCGTCGGAAAAGATGCAACATTTGATTTTAAGAGTGTTGGACACAGCGAATTGGCTCAAGAGAAGATGAAAAAGTATCGGATAGGGAAGATCGACATATCGACTCTCCCTAAAAAACAAGAATATGTGGAAACTACACCATATCAGCCAACTCCAAGTCTTTTTTCCTTCTCACCCATCCATGTTCTAATCCCTATTTTGCTCTTAGCCTTGGCATTTGCCTTTCCCTACTTCAAACTTAAAGCCTAAAATTCATTTTTTTACATTTCTATTTTACTTTCCCACAAGGATTATAGCCTAGGCTACAATAACAATTTGAAGTTTACCTTCATTATTGAATGGTTCAATGGGTT ATGAAAAAGGGTTTTGTGCAAAATGCGACGAGGAAGACTGAAAGTGCAGGCAATAATGAAGTCGATAGGCATGCATTGTTGAAGCAAGTAGAGTTTGATCATGTGGAAGCCCTTCATGACTGGAGAGGGGGGATTCTCACCATTGGCACATTCGGGTTCGAATCATTGAAACCTTCAAACGAGCAAAAGGAGTATCTCGTGCTCGAGAGCGAAGATGACGACTACGAGGATGAGGAAGAAGAGGAAGAGAAATCATTGGTTCACGATGAAGATCATGACGAAATTATTGGTTACTTGGAAGATGAAGAGCTAAATCCTTTGATGTTCACAGCATTTGGACACAAATCAAAGGATGTAAGTGCTGATCAGAAAGGTGAAGATTTGATCATGGGAACTTATGAGCTGAATATGGAATCGAAATACAGTGCGATTATGGAGATGGACAATGAGGAGAAGAAGAAGAAGAAAGGGGAGAGGAGAATAACACTGGCTGACTTGTTCTTGGCAGATGCTGAAGATGTGGCAAAAGCACTTAAGGATGATAAAGTGCTTCAAAAGAAAACAGCTGATGTGAGAAGTAAGAATGGCCTCTCCTTTGCCAAGAAGCTCATCCCTCGAGTCAAGGAGGATTCACACCCTATTAAGAACTTTCAACGATTGATGAGAAGGATGCTGAAGAGGAAGATCCACCCAGAGATTGAAGACAAGATCAACAAACCATCACCTGACCTAACTCACCAAATAGGAATGGCCAACAATGGAGGATTTGAAACCTTTGAATCCCTCTCTCTTCTTCCATCTCAAGTTGCAAAGCACAACCACCAGAAAGATTGCTGGCTTATAATCAATGGTTATGTGTACGATGTGACTTCATTTTTGCCGGACCATCCAGGTGGCGATGAGCTCTTGCTACTTGCCGTCGGAAAAGATGCAACATTTGATTTTAAGAGTGTTGGACACAGCGAATTGGCTCAAGAGAAGATGAAAAAGTATCGGATAGGGAAGATCGACATATCGACTCTCCCTAAAAAACAAGAATATGTGGAAACTACACCATATCAGCCAACTCCAAGTCTTTTTTCCTTCTCACCCATCCATGTTCTAATCCCTATTTTGCTCTTAGCCTTGGCATTTGCCTTTCCCTACTTCAAACTTAAAGCCTAA MKKGFVQNATRKTESAGNNEVDRHALLKQVEFDHVEALHDWRGGILTIGTFGFESLKPSNEQKEYLVLESEDDDYEDEEEEEEKSLVHDEDHDEIIGYLEDEELNPLMFTAFGHKSKDVSADQKGEDLIMGTYELNMESKYSAIMEMDNEEKKKKKGERRITLADLFLADAEDVAKALKDDKVLQKKTADVRSKNGLSFAKKLIPRVKEDSHPIKNFQRLMRRMLKRKIHPEIEDKINKPSPDLTHQIGMANNGGFETFESLSLLPSQVAKHNHQKDCWLIINGYVYDVTSFLPDHPGGDELLLLAVGKDATFDFKSVGHSELAQEKMKKYRIGKIDISTLPKKQEYVETTPYQPTPSLFSFSPIHVLIPILLLALAFAFPYFKLKA Homology
BLAST of Cla97C06G112160 vs. NCBI nr
Match: XP_038875598.1 (protein TILLER ANGLE CONTROL 1 [Benincasa hispida]) HSP 1 Score: 439.1 bits (1128), Expect = 3.9e-119 Identity = 234/270 (86.67%), Postives = 249/270 (92.22%), Query Frame = 0
BLAST of Cla97C06G112160 vs. NCBI nr
Match: XP_008459743.1 (PREDICTED: U3 small nucleolar RNA-associated protein 14 homolog A [Cucumis melo]) HSP 1 Score: 390.2 bits (1001), Expect = 2.1e-104 Identity = 215/274 (78.47%), Postives = 238/274 (86.86%), Query Frame = 0
BLAST of Cla97C06G112160 vs. NCBI nr
Match: XP_004140615.1 (uncharacterized protein LOC101216403 isoform X1 [Cucumis sativus] >KGN46544.1 hypothetical protein Csa_005546 [Cucumis sativus]) HSP 1 Score: 382.5 bits (981), Expect = 4.4e-102 Identity = 211/275 (76.73%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of Cla97C06G112160 vs. NCBI nr
Match: XP_011656860.1 (uncharacterized protein LOC101216403 isoform X2 [Cucumis sativus]) HSP 1 Score: 382.5 bits (981), Expect = 4.4e-102 Identity = 211/275 (76.73%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of Cla97C06G112160 vs. NCBI nr
Match: XP_022958918.1 (adoMet-dependent rRNA methyltransferase SPB1 [Cucurbita moschata] >XP_023549058.1 adoMet-dependent rRNA methyltransferase SPB1 isoform X2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 368.2 bits (944), Expect = 8.5e-98 Identity = 208/276 (75.36%), Postives = 237/276 (85.87%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy Swiss-Prot
Match: U3MMQ4 (Protein TILLER ANGLE CONTROL 1 OS=Prunus persica OX=3760 GN=TAC1 PE=2 SV=1) HSP 1 Score: 193.0 bits (489), Expect = 6.4e-48 Identity = 135/298 (45.30%), Postives = 172/298 (57.72%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy Swiss-Prot
Match: P40934 (Cytochrome b5 OS=Brassica oleracea var. botrytis OX=3715 GN=CYB5 PE=1 SV=1) HSP 1 Score: 120.9 bits (302), Expect = 3.1e-26 Identity = 64/125 (51.20%), Postives = 83/125 (66.40%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy Swiss-Prot
Match: Q42342 (Cytochrome b5 isoform E OS=Arabidopsis thaliana OX=3702 GN=CYTB5-E PE=1 SV=2) HSP 1 Score: 120.6 bits (301), Expect = 4.0e-26 Identity = 64/125 (51.20%), Postives = 83/125 (66.40%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy Swiss-Prot
Match: O48845 (Cytochrome b5 isoform B OS=Arabidopsis thaliana OX=3702 GN=CYTB5-B PE=1 SV=1) HSP 1 Score: 119.8 bits (299), Expect = 6.9e-26 Identity = 59/116 (50.86%), Postives = 81/116 (69.83%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy Swiss-Prot
Match: P49098 (Cytochrome b5 OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 117.9 bits (294), Expect = 2.6e-25 Identity = 58/122 (47.54%), Postives = 82/122 (67.21%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy TrEMBL
Match: A0A1S3CAZ2 (U3 small nucleolar RNA-associated protein 14 homolog A OS=Cucumis melo OX=3656 GN=LOC103498785 PE=4 SV=1) HSP 1 Score: 390.2 bits (1001), Expect = 1.0e-104 Identity = 215/274 (78.47%), Postives = 238/274 (86.86%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy TrEMBL
Match: A0A0A0KCK2 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G107930 PE=4 SV=1) HSP 1 Score: 382.5 bits (981), Expect = 2.1e-102 Identity = 211/275 (76.73%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy TrEMBL
Match: A0A6J1H4F7 (adoMet-dependent rRNA methyltransferase SPB1 OS=Cucurbita moschata OX=3662 GN=LOC111460066 PE=4 SV=1) HSP 1 Score: 368.2 bits (944), Expect = 4.1e-98 Identity = 208/276 (75.36%), Postives = 237/276 (85.87%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy TrEMBL
Match: A0A6J1L2P4 (eukaryotic translation initiation factor 5B OS=Cucurbita maxima OX=3661 GN=LOC111499297 PE=4 SV=1) HSP 1 Score: 364.4 bits (934), Expect = 5.9e-97 Identity = 206/278 (74.10%), Postives = 237/278 (85.25%), Query Frame = 0
BLAST of Cla97C06G112160 vs. ExPASy TrEMBL
Match: A0A6J1E003 (uncharacterized protein LOC111025094 OS=Momordica charantia OX=3673 GN=LOC111025094 PE=4 SV=1) HSP 1 Score: 330.1 bits (845), Expect = 1.2e-86 Identity = 190/272 (69.85%), Postives = 217/272 (79.78%), Query Frame = 0
BLAST of Cla97C06G112160 vs. TAIR 10
Match: AT5G53560.1 (cytochrome B5 isoform E ) HSP 1 Score: 120.6 bits (301), Expect = 2.9e-27 Identity = 64/125 (51.20%), Postives = 83/125 (66.40%), Query Frame = 0
BLAST of Cla97C06G112160 vs. TAIR 10
Match: AT2G32720.1 (cytochrome B5 isoform B ) HSP 1 Score: 119.8 bits (299), Expect = 4.9e-27 Identity = 59/116 (50.86%), Postives = 81/116 (69.83%), Query Frame = 0
BLAST of Cla97C06G112160 vs. TAIR 10
Match: AT5G48810.1 (cytochrome B5 isoform D ) HSP 1 Score: 116.7 bits (291), Expect = 4.1e-26 Identity = 59/127 (46.46%), Postives = 83/127 (65.35%), Query Frame = 0
BLAST of Cla97C06G112160 vs. TAIR 10
Match: AT2G46650.1 (cytochrome B5 isoform C ) HSP 1 Score: 111.7 bits (278), Expect = 1.3e-24 Identity = 55/123 (44.72%), Postives = 81/123 (65.85%), Query Frame = 0
BLAST of Cla97C06G112160 vs. TAIR 10
Match: AT1G26340.1 (cytochrome B5 isoform A ) HSP 1 Score: 106.3 bits (264), Expect = 5.6e-23 Identity = 49/115 (42.61%), Postives = 77/115 (66.96%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (97103) 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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