CmUC08G152510 (gene) Watermelon (USVL531) v1
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.TTTTCTCTTTTGACCATCAAATCCCAAATCCCCCTCCTCTCCCTCCCCTGTTTTGACCCAACCCCACCGCCAGATCCGCTTCAGCCGCAACTTTCTCCATCTGGGTTTCTCTCCTTTCTGCCCTAACAATCCTCATTCATCTCGCTACTCTTCCATGGAGTTCCACATCCTCTTCAACCCTCCATTCTGAAAACATATGGACAATGGCCGAATTTATCCCCTGCTGTAGCAATGTGCAGGATTTTGCATTCCTCTCCAAATTCTGAACCACCACGAACAATAGTTTGTATATCATATATATATTTTTTTCTTTAGCATGTCTGATTTGGTGGCCCGCACTGGACGGCATCAGCAGCGGTACGATGCCGGTTGTCGCCTTATTGCTGGGTACATTCCCGCCGATATATTTTAAGCTTCGTAGACTTCAGCGATTTGCCGTTATTTATTTATCTGTATCTCTATGTTTCTCCTAGATTCTTAGTCATTTTCGTGGACCATTCTTGTCGAAGTTTGGTGAAAAATGAGGTTGTCGTCATTGTCATTTACGTTTTTTTTTCCCTTTTTGACTACATAATGGAAATTGACTGCTTTGATTTTCACTGTGGTTCTTGTTTGGGTATTGGTGGTTGGAGATTCGTTGGTGGGTTCTTCTGTAGATTAGGGGTTTCGAGAAGTTTGGATTTGGATCGGAGAATTTTTGATAAATGACGTGTAACACTGGGAATTTGATTGGTTGGTTTGGTGAGTCCTAATTTCTACGTTTCTGATACTGTTGCGCTTCAAACAATTTCGATATTGGTGGTAAGTTTATCGCAAAGATGAAGATAAATTACCCCCTTCTTTCCAATTACCACAGAAGCTAAGGAAATTTCTAAGAGAGCAGTGGCATTAGAGATTTTACCTATGTTTTCCAAGTTGTGCTATTGTAGTGGATTCTTTGAATTTTTCTTTATGGACCATTATATTTCAGTGAGATCCAGCGGGGTCATTTAGGTCATGAGATAATTTTTAGGAATTTTTTAGTTTAGGTCTGCAGAAATTTTAACTTTTCTCTCTTTTTAATTATCAGTGAATCAGACCTAAGAGTAGAAGTTCTGCCAGATTTGATTCGTGGTTGGGTATCTAGAATATTAATTTGTCAAACAAAGTCCTCTGGTGACAACTTAGTGGTTGTTATGGTGGATGGACGGCCAGACGATGGTTGGACGGGCACCAACGGGAAACTAGGAAACCAGAGGAAGTCTGTGATTTATATACGCTGGAGGAAACGTGATGTGTCCCTAATCTGTCATTACTCACAGTGATAGATATGGTAGCTGATTCATGATTTTTGAGATTAGTGCATTGTCTTTTGGCTTAAGTGTATTGCATAGCCATTTATATGCGTCCCACAAAATTAAAAATAATTTCTTCTCCTCTTCGTCCTGTCTTTGCATTGTTGAAACGACGCAGGAAATGTAAAGAATAAATCTGCATAACTCGAATAGCACCACTCTTTTATACTTCTATTCTTTCTTATTGCTAATAAGTGATGGCTCATTTGAAATTTTTCTTAATGTCCCTTTTGCATTGCATTATATACTTTGGTGCTGCTCCTGTACATCTCCTATGATGCTGTATATTATTCACAACTCATCATTCTCTCTTATACTTCTTTTTTATTTATTTTTTATTTATTTTTATTTTTATAAATACTCTCTTGTTGTTAATAAGTGATGGTTCATTTGAAACTTACCTCAGTTTCCCTTATGCATAGCATTATATACTTCGGAGCTGCTTCTGTACCTTGGACTTGTATATTGTTCAACAATTCATAAAGTTTTTATGTTTTATTTTAAACTAATGAAATGCAGTTTATGCCTGTATGATAACTTTCATGTCTAGCCACGAGGTTATCATATGATGTGATGCTAATTTTGCTATTCTTTTGTAGGTGTATTCCTTTTAGGTATAGAAGTTCCGATGGCAGTAGTGATGAAAGTTCAGATAAAGTAGTGGAGGTGCTTATGATTGACACACCTAGTGGACCGGGCCTTTTGTTCCCAAAGGTATGAAATTATTCCCCTCCTCCATTAACTTTCTCAGAGAAATTATTCCCCTCTCCCATTAACTTTCTCAGAACTTATTATTTATTTCAACATGAGTTTGTTTAAAAAAACCCTATATGAGATTACATAGATTTGATTTGATTTTGACCGTATATATTATCTCACGGTTTGCAACATTTTCTGTGTTGGGAACTTAAGGTTGAACTTCTGCTTTTTTGTTTCTCTCATATGAAGAAAGTGTACAAGCTTATTTTATCTCTAACATCAGCATTTTCTCTGAAAGGGAGGCTGGGAGAATGACGAGACAGTGGAGGAGGCTGCTGTAAGGGAAGCTATTGAAGAAGCGGGTGTTCGTGGTGAACTTATGGTGAAATAGTACTTTAATTTAACATTTGCAATGATTTTTCTTGAGCTTCAAAATTTTGATGTTACTCTATGACAGTGATAGCTCTGTTCTCATTGCTTTTGGTGAAAATTGAAGGTCTTTCCATCTAACATATATAAAGACTATATGGTTGAAATCGGAGTGTTTGAGAGTGTTGAGGGGTGGGGTGTATGGTTTATCATTTTTAATACCTTTCTGTAGGACTATGCAACTAGTTTATTTTTCCTTTGGATCGTTTTTGTTGTTGTGAAGGAGTAATGATTGCTGCTAACTCCTCATTAGTTGAACAGATATAATTAGGATAAAGACTGAAGTTATTGATTTTTTGCTGATAAGAATTTCCAATCACTTGTAATGTAGCAAATGAGAAAGTTAGGACATGACACACTTTTTTTTTTTGGATAAGAAACATTTCATTGATGAATGAAATATCCAAAAAGGTACAAGAGAGATCATTGATAGATACATTGATGCCAAAGAAAAAAGAAGAGAATACCTAGGATACTACAAATGAAGAACAAAAAGAGAAATAAAGCCATAACATCCATACTAAAAAAATGTATGAACCCAAAACCAAAAGTGAGTAAATGGAGTAGCAAATCCAAAAAAGGATATTCAAAGAAACTCAGATTGATGCTTCATCTAAGCCGCTATCTGGGGATAAGAGAGCAGACTCACGCTAATGTGGATTCTTCTTTAAGGAGAGCTTTTGTCTTTTTTTCTTTGTAGAGGACCTGGTTGGAATACTTGCGAGCCGCTATCCGGGCATGACACACCACAATTGTTTGTTCCTTGAATACATGTGAGGAACTATTATAAGACGGAACACTTTCTTTCTAATTGAACACGATAAGTTTTAGTTGACGCTTCTATTGGAGTTAATTAACCTTTTGTTCCTTTGAACTAGTATTTCATGGATTTCCTGGCTAACCATTTGATATTTCAACGGTAGTTCCATGAGCCATATGCAACTTGCATTTTGCTTTAATCTTAATGAAACAGTAGTGGAATTTAGCTGGTCTATTGTCGCTAAGTCTAAGTCCAAGGGTGGTTAAGCCTAGGGTTGAAAGCATAGAGCTTTCTTGAGTTTCAGTGATAAATCTAGAGGAAGCAATGATTACTTTAAAGTTACTGATTGATAGTTGGAGCTTTATCTTGATTTTTCAAGATTTAGGGTTTGCTGCCTCGTTGGTGATTACTTTAACGTGTATGTATTGTTTACATCTAGCCAGAAATTTCTAATGGGAAAAAGACGAAGAACCCAAATCATTCTTTGGGTTGATCTAATATATGATTGGCGTATCTATACATAAAGTATGAGGGTTAAGAATTACAAATCAAAGTTCATTATTATCCATCTCTAAGGCTAGCATAACTCAGGTTTGTTCAATCTTTCTTTCCAAGGAGAATGATTGGACAGCCTGTTCTTTTAGGCTTCTGTAAGGAAGATGGAAGAGTGGGTGAATGTATTTCCATCAATTCAACAATATTGATACCTCTTAGTTAAGTAAATTTCTAATATTTTTGCCATTATTTTTAGGAAAAAATACATATTTGGTCATTGAGATTTCGAGATGGTGTCTATTTGGTCTATGAGAATTCAAAGTGATTACTTTTAGGCCTTTTGGTAGTAGTTACTAGTTTGTTGACTTGACAAACTAAATTAATTTGATATTAATTTTTGATGACTAGACAAGTGAGTTGAAAATTTTCTTCCCTTCTTTGACTTCTTCCTCTCTTCTTCCCCTCCTTTGGAAAACTTTTCGGTGGGTGTTCATTGTCTCCTTGTCGATGCTCACAAGAGTGGAAAATGGCTGCTCGCGAGCGAACAACTAGATCAAAATGGAGATATACTGAGTTTGGCTTGGCACCGCCATTGCTACCTGTGTTGTTGTTGGAAGAACATCGTTGGCTGGAGGCTGCAGGAGTTGATGCGATTTAATGGTTTACAGTTGTAGTTTGAGTCCATTGTCGGCAAGGTTGTGTCTCTGTTGTGAGAGTACTTGTGCAACAAATATGTATTCGATGTTAAGCGCCACCGTGGGTGGAGGTAATCACCATTCATGTGTCGGGTCTGCACGCCCATGCTGGAAATGAGTGCTCAATAACACCCCACCATTGCATACATGATTTTCCATGCCTGAAGAAGTTCATTCCTAACTTGCGTTACTGATGTTTGTTTTATCAATATCCATGGTCGCGATTTAGAGATTTGGGATCATTCATAGATATGTTTCCATCAACAATAATGCAGTAGTGGATGACGATAGCAAGTGGTGAGTGGACAACTTCAAGAGGGAGAAAAAGGGAGAAGGAAAAAAGGAGAGTGAGAGAGAGAAGTTGGCCACCTCAGCCTCCAATCAACAAAAATGCCACACCACCGAAGTTCCTTGGGACAACTAACTCAAAGGTTAGAGACCATTTATAATCATCCATTAAACTTTAGGAACAAAAAGTGTCAGTTTTGAAGTATAGGGACAAATAGACACCTACCTAAACCTTAGGATGCAAAAATGTATTTTGTCCTTATTTTAAGAAACAATGTTATAGATGGTACAGAATTAGAGAAAGGGAGGAGAGCAAAACCTCAATCCTGTGAAGATTTTGAAAAACTCTACCAATTAACTAAAAGAGTGTTTCAACCAGCTATTGCTAGGACTATAGCGTTTAAGTGGAGTGTTAGTTTCTACGAGGTTATCAAAAGTATATTGTTGGAAAGTTTCTAGTCGTTTTCAAGCCTTAGAAGCCTAAAGAATGCTTCAATAAAATGAACCCATATAACTTTCTTTTCATTCCTGAGAGGGTGGTTGACCAATGTAGAACATCGGAGCTTGTTGACATGTTGAGGTAGAGCTGTCTGAAGTGTCACTTGAAGGTCAAATTGAAAAAAGCCCAAACCTTCTTGCAAAGGAACATGTGGGGGGAGATATGACCTCGTGACTCTAATTCCTTTTATAAAGAGTGCACCATCTTGGCAAGAGGGGAAAATTGGAGAGCTGCTTTAATAACTTATCATATCAGCGTGTCTATCCTTGCTAGTTGAGTTCCCACATGAAGAATTTAACTTCCTTTTGGGCATTTGTTGTGCCAAATCTTTTTGTGAAGAAAGAATGGTTCTTAAGGGCAATGATCAGACCAATAACAAGAGTGTGGAAGCAAAAGGAACTAGCAGGATCTAAAGGCCAAATCAACTTGGACAGTAGAGATGGTTGGGCAAAAATTGTACAGCTTACGATAGGAGAGTTCATTCTTCAATTTCTTCTTCTAAAATGTTCTTCCTGAAAACAAGGTCCCAAGAATTTAAGGTAGTTTTCTAGACACGCTTTATGGAGAGAGATTTGGTTGCTTTGAGAGCTGAAAAAACCGTGGGGAAGTCAAGTCCTAGAGGAGAGAAGTGTTTCCAATCCAACAATCGGTCCAAACATAAGGCGTACAGAACTATTATGATAACTAGGTAATGCTTCCCTGGTGACTGACAAGATTCTCTTAACTCATCAAGAGTTAGCGAGTCCTTAAAGCCTTTTCATCTATGTAAAGTTATAAACCTCTTCTTCTTATGCTTCAAATGATGAACGTAGGCAGTTATCAAATGGGGGATGGTTCTAGCTTGCATAGCTGCGGCTTAGGATGAAGGAGATCATGGGAAGGTTGACATATGTTGCCTTCAATTAAATAGAACCACTAATTAACATTGGGGAAGAGGGTGGAAGCTCTGGGAAGTATGGTAGGAAAAGATTGTAACTGAAAGAGTTAGTGGAAGCGACCATTAAAATCAAACAAAATATTTCTCACCTTATTCCTTCGGGAAGGAGGAAGTTTCTAAGTCCAAACTGTAGCCTTCTCTCATGCAAGACTCTTCTATGTTGGAAAAGTGGTTGGCCGTTTTTGGAGGTTTGTTTAAAGAGATGTCGCAGTTCTGTTATTTTCAACAAGAAAAACTGCCCATATGCTTAGCTGACAAAAACCATAAAGTGAGGTGAGATGTCTTTGAATTCAAAGACATAGAACAATGAACCCAGGAAAGGTGATAATGACAGGTGAAAGCTCTGCTGCTCTGGTATGAAATATAAGGATTTTTAGTGCTTATCCATGTCATTCTCCAGATGAAAGGACAGAATAATAATAAATGAGTTAGCAGACAAATTTTATAACCACTTTTTTGGGAGGCGTCGGACCTTTTTTATTTGGAATTGGAGGGTTTGATAGTTATGCTCTTGCAAAGGTGTCCAAAACTGAAGAAAAAGAAAGTGGTCCGACGCAAAAAATCTATATTTTGTAAAGAAGGGGAGAAGGAAAACTCATACCCCTCCAGTAGTAACTTGTCACCCTCCCCTGCTTGTTCTTGATCCACCCCCCAGGAAAAGCATTTTTTTGGATAGAGGAAACTTCGCTGCTAGAAGTAGCATAAGGAACATGATGAACTGTAGTGTTTTGTCATTGTCAATTTAGATATGGAAGGACTGAGGAATGACTACTTTGCTTCCCCAGAACAATGCCAGTCAGAAAAGAAGCAGGCCAACCCTAAGGCCCTGGAAATTTATGGTGGGAGATATGAAGTGGACGTCCAGGAGGATCTCGAGCCTATTACCGTGGCTGGTAGATATGAGTAAATGCGAACTTTAGGGAGATTGGAGAGTTATTTTCTCACCGAGGAAAAAGTTTTGCTGGAGTGAACTATGAAGTTTGGAAAGTTTTTTTTTTGGGGTTTGGCTGGAAAGAAATGCTGTTTTTGAAGGGACAAGAGAAGTTTATCTTTGGAAGATAGTAAGATTTAACGACTTCCTTTGCTGCTCTCTAAGAAGACGAACCCTTCTGTAATTACAATTCCTCTTTTTGATCGACACCAATTGGATGGTTTTCTTAAGACTCTTTTTGGTTAATAGGATGCTTTGTTTTTCCTCCTCATATTTTGAGTATGACATCTAATGCATGATTGGATATGGACAAATCTTTGTTTTGGTGACAATATTAGGAAGTAGATCTGTAGAAGCGGATAGTTTTTTTGCCAAATGCATCACAAGAAGATAAATCGTTTGACATGAATATATTCAATTAGTAACTTCCGTGTTTAAAACACCTTTTATTAATAATGAGTCGATAGACAATGACTACTACAATCTCATACTTAAGAAACTTGAATTACCTTTCTTATATCTTCCATCCATAAGAGACCAAAAATCAACAGGGATGGAAAAGCCATAGAAAGTTCAACTAATTAACTGTTGTTCTTTGATTGTCATTCTTTCTTTTATTTTTTCTTCCTCTATATATATTTTTTTCTCCTTAGTTACTTTATATCAAACTTGATTGTTTTAGGTTGATGACTGTCATGCAATAAGCTCAATATGTTAGCTTGGGCACAATAAAAATCATATTCTTTCTGTATTTCCAAGAATGCCTTGTCCTCCATCCCCTCTTTTCTTTATCCTGCTATTTTGTTTGCTAAAAAGATTTCTTATCACAAAAAACAAAAAACTGACATGTCCAAGAGCATTATCTTATTGTTGAATTCTGAAAATGATCAATTTCAAGGATGAATGAGATAAGAATGGCACATCACAAAAGCTGAGGTATAAGTAGATCATGCTTTGAGATGTCAAAGTAGAACTTCATTTGACTTTACCTGGTTTAATTTTATGTTGTAGTGTTTTAAATAATTTTTTTTTTTGTTAACTAAAACGTCCAAATTGGAGGACTGTCAGAAGAAATATAGGTAATAATGTCATGTTCATTAAATGTTGTAACATTTGTTCTCTTACATGGATATGTGTGGCTGAGGAACTGCCTCTTGTTGTTTAGCAATCTCTTTGTTAATTGGTTTGTTTATGAGAAAAGAACTCTTTAGCGTGTAAATGTTGAGTGTACTCTTAATTTAATATTCCTTATTTTTTCCTCTATTCTTTTCTCTTTCTAGAAACATAATTAATATTCTCACCCAAAAATAACAAAAGGCCGGGTTAGGCCAGGGACAATAGGTTTTGGTTTAATAAAAGAATTAGAGCTAATGTGTGAAGCAAAATGGGTTTTGCTCATTAAAAGTTGAAGCGTAGAATTTATGAGATAGGGCAATTACTCCTCGGAGGAGATGCTCACAACTTTTCTCTCATTCTCTCATTTATTGTCTTTTTTCCCTCCTATTTTGATGAGCCTGACATAAAGTCTGTTAAAATCTTGCTTTACAGGGTTTTTTGGGAGACTATCACTTCAAGAGTAAAACACAACAAGATGAGTTTAGTCCAGATGGATTGTGTAGAGCAGCAATGTATGCTTTATTTGTCAATGAGGAGCTTGAGTTCTGGCCGGAGCAGAACACGAGAAACAGAAGTTGGGTGACCATACCTGAGGCAATTGAAAATTGCAGGCACGCATGGATGAGGGATGCCCTTGTCATTGGTTTCAACAAATGGCATGCAGAAAATATGAATGATGAATAACTTGAATCTTCAGATCCAAGCAATGTATGCACATTACGAAGTATCGTGCATACTAATGAACATCTAGAGGATTGTTTTCAAGAGTCTCTTTTTCCCTTCGCCAACCAATCATGAAGAATCAAATAGTAAATTAACGTGTTCAGGATTACATAGGCAATGTTTTTTGTTGCTCATTTATACATTTTGACCCCTGATGTTTTTGATTCGGAGGGAATTCAATCCTTATATAAGCACTCGTTAAGCTTCCTCGAAGCTTTTACAAATGTATTTCAAATTTTATTGTTCATTTACAAGTCCGATGAATTACATGCCATGATATGCGATATGGTGTATTG TTTTCTCTTTTGACCATCAAATCCCAAATCCCCCTCCTCTCCCTCCCCTGTTTTGACCCAACCCCACCGCCAGATCCGCTTCAGCCGCAACTTTCTCCATCTGGGTTTCTCTCCTTTCTGCCCTAACAATCCTCATTCATCTCGCTACTCTTCCATGGAGTTCCACATCCTCTTCAACCCTCCATTCTGAAAACATATGGACAATGGCCGAATTTATCCCCTGCTGTAGCAATGTGCAGGATTTTGCATTCCTCTCCAAATTCTGAACCACCACGAACAATAGTTTGTATATCATATATATATTTTTTTCTTTAGCATGTCTGATTTGGTGGCCCGCACTGGACGGCATCAGCAGCGGTACGATGCCGGTTGTCGCCTTATTGCTGGTGAATCAGACCTAAGAGTAGAAGTTCTGCCAGATTTGATTCGTGGTTGGGTATCTAGAATATTAATTTGTCAAACAAAGTCCTCTGGTGACAACTTAGTGGTTGTTATGGTGGATGGACGGCCAGACGATGGTTGGACGGGCACCAACGGGAAACTAGGAAACCAGAGGAAGTGTATTCCTTTTAGGTATAGAAGTTCCGATGGCAGTAGTGATGAAAGTTCAGATAAAGTAGTGGAGGTGCTTATGATTGACACACCTAGTGGACCGGGCCTTTTGTTCCCAAAGGGAGGCTGGGAGAATGACGAGACAGTGGAGGAGGCTGCTGTAAGGGAAGCTATTGAAGAAGCGGGTGTTCGTGTGATAGCTCTGTTCTCATTGCTTTTGGTGAAAATTGAAGATATGGAAGGACTGAGGAATGACTACTTTGCTTCCCCAGAACAATGCCAGTCAGAAAAGAAGCAGGCCAACCCTAAGGCCCTGGAAATTTATGGTGGGAGATATGAAGTGGACGTCCAGGAGGATCTCGAGCCTATTACCGGTTTTTTGGGAGACTATCACTTCAAGAGTAAAACACAACAAGATGAGTTTAGTCCAGATGGATTGTGTAGAGCAGCAATGTATGCTTTATTTGTCAATGAGGAGCTTGAGTTCTGGCCGGAGCAGAACACGAGAAACAGAAGTTGGGTGACCATACCTGAGGCAATTGAAAATTGCAGGCACGCATGGATGAGGGATGCCCTTGTCATTGGTTTCAACAAATGGCATGCAGAAAATATGAATGATGAATAACTTGAATCTTCAGATCCAAGCAATGTATGCACATTACGAAGTATCGTGCATACTAATGAACATCTAGAGGATTGTTTTCAAGAGTCTCTTTTTCCCTTCGCCAACCAATCATGAAGAATCAAATAGTAAATTAACGTGTTCAGGATTACATAGGCAATGTTTTTTGTTGCTCATTTATACATTTTGACCCCTGATGTTTTTGATTCGGAGGGAATTCAATCCTTATATAAGCACTCGTTAAGCTTCCTCGAAGCTTTTACAAATGTATTTCAAATTTTATTGTTCATTTACAAGTCCGATGAATTACATGCCATGATATGCGATATGGTGTATTG ATGTCTGATTTGGTGGCCCGCACTGGACGGCATCAGCAGCGGTACGATGCCGGTTGTCGCCTTATTGCTGGTGAATCAGACCTAAGAGTAGAAGTTCTGCCAGATTTGATTCGTGGTTGGGTATCTAGAATATTAATTTGTCAAACAAAGTCCTCTGGTGACAACTTAGTGGTTGTTATGGTGGATGGACGGCCAGACGATGGTTGGACGGGCACCAACGGGAAACTAGGAAACCAGAGGAAGTGTATTCCTTTTAGGTATAGAAGTTCCGATGGCAGTAGTGATGAAAGTTCAGATAAAGTAGTGGAGGTGCTTATGATTGACACACCTAGTGGACCGGGCCTTTTGTTCCCAAAGGGAGGCTGGGAGAATGACGAGACAGTGGAGGAGGCTGCTGTAAGGGAAGCTATTGAAGAAGCGGGTGTTCGTGTGATAGCTCTGTTCTCATTGCTTTTGGTGAAAATTGAAGATATGGAAGGACTGAGGAATGACTACTTTGCTTCCCCAGAACAATGCCAGTCAGAAAAGAAGCAGGCCAACCCTAAGGCCCTGGAAATTTATGGTGGGAGATATGAAGTGGACGTCCAGGAGGATCTCGAGCCTATTACCGGTTTTTTGGGAGACTATCACTTCAAGAGTAAAACACAACAAGATGAGTTTAGTCCAGATGGATTGTGTAGAGCAGCAATGTATGCTTTATTTGTCAATGAGGAGCTTGAGTTCTGGCCGGAGCAGAACACGAGAAACAGAAGTTGGGTGACCATACCTGAGGCAATTGAAAATTGCAGGCACGCATGGATGAGGGATGCCCTTGTCATTGGTTTCAACAAATGGCATGCAGAAAATATGAATGATGAATAA MSDLVARTGRHQQRYDAGCRLIAGESDLRVEVLPDLIRGWVSRILICQTKSSGDNLVVVMVDGRPDDGWTGTNGKLGNQRKCIPFRYRSSDGSSDESSDKVVEVLMIDTPSGPGLLFPKGGWENDETVEEAAVREAIEEAGVRVIALFSLLLVKIEDMEGLRNDYFASPEQCQSEKKQANPKALEIYGGRYEVDVQEDLEPITGFLGDYHFKSKTQQDEFSPDGLCRAAMYALFVNEELEFWPEQNTRNRSWVTIPEAIENCRHAWMRDALVIGFNKWHAENMNDE Homology
BLAST of CmUC08G152510 vs. NCBI nr
Match: XP_038886652.1 (nudix hydrolase 16, mitochondrial isoform X2 [Benincasa hispida]) HSP 1 Score: 305.4 bits (781), Expect = 5.0e-79 Identity = 167/286 (58.39%), Postives = 168/286 (58.74%), Query Frame = 0
BLAST of CmUC08G152510 vs. NCBI nr
Match: XP_022961746.1 (nudix hydrolase 16, mitochondrial-like isoform X1 [Cucurbita moschata]) HSP 1 Score: 298.9 bits (764), Expect = 4.7e-77 Identity = 164/286 (57.34%), Postives = 167/286 (58.39%), Query Frame = 0
BLAST of CmUC08G152510 vs. NCBI nr
Match: XP_023545558.1 (nudix hydrolase 16, mitochondrial-like isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 297.0 bits (759), Expect = 1.8e-76 Identity = 163/286 (56.99%), Postives = 166/286 (58.04%), Query Frame = 0
BLAST of CmUC08G152510 vs. NCBI nr
Match: XP_022997276.1 (nudix hydrolase 16, mitochondrial-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 296.6 bits (758), Expect = 2.3e-76 Identity = 162/286 (56.64%), Postives = 167/286 (58.39%), Query Frame = 0
BLAST of CmUC08G152510 vs. NCBI nr
Match: KAG6598656.1 (RNA pseudouridine synthase 3, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 295.8 bits (756), Expect = 4.0e-76 Identity = 162/286 (56.64%), Postives = 167/286 (58.39%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy Swiss-Prot
Match: Q9LHK1 (Nudix hydrolase 16, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NUDT16 PE=2 SV=1) HSP 1 Score: 208.8 bits (530), Expect = 8.3e-53 Identity = 119/283 (42.05%), Postives = 137/283 (48.41%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy Swiss-Prot
Match: Q93ZY7 (Nudix hydrolase 12, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NUDT12 PE=2 SV=1) HSP 1 Score: 111.3 bits (277), Expect = 1.8e-23 Identity = 69/193 (35.75%), Postives = 94/193 (48.70%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy Swiss-Prot
Match: Q52K88 (Nudix hydrolase 13, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NUDT13 PE=1 SV=1) HSP 1 Score: 109.0 bits (271), Expect = 9.0e-23 Identity = 84/275 (30.55%), Postives = 108/275 (39.27%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy Swiss-Prot
Match: Q9LE73 (Nudix hydrolase 4 OS=Arabidopsis thaliana OX=3702 GN=NUDT4 PE=1 SV=1) HSP 1 Score: 100.5 bits (249), Expect = 3.2e-20 Identity = 63/190 (33.16%), Postives = 91/190 (47.89%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy Swiss-Prot
Match: Q9ZU95 (Nudix hydrolase 17, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NUDT17 PE=2 SV=1) HSP 1 Score: 97.4 bits (241), Expect = 2.7e-19 Identity = 66/192 (34.38%), Postives = 90/192 (46.88%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy TrEMBL
Match: A0A6J1HB74 (nudix hydrolase 16, mitochondrial-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111462424 PE=4 SV=1) HSP 1 Score: 298.9 bits (764), Expect = 2.3e-77 Identity = 164/286 (57.34%), Postives = 167/286 (58.39%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy TrEMBL
Match: A0A6J1K726 (nudix hydrolase 16, mitochondrial-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111492230 PE=4 SV=1) HSP 1 Score: 296.6 bits (758), Expect = 1.1e-76 Identity = 162/286 (56.64%), Postives = 167/286 (58.39%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy TrEMBL
Match: A0A5A7VFY1 (Nudix hydrolase 16 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G001020 PE=4 SV=1) HSP 1 Score: 292.7 bits (748), Expect = 1.6e-75 Identity = 161/286 (56.29%), Postives = 164/286 (57.34%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy TrEMBL
Match: A0A1S3BDF1 (nudix hydrolase 16, mitochondrial isoform X1 OS=Cucumis melo OX=3656 GN=LOC103488433 PE=4 SV=1) HSP 1 Score: 292.7 bits (748), Expect = 1.6e-75 Identity = 161/286 (56.29%), Postives = 164/286 (57.34%), Query Frame = 0
BLAST of CmUC08G152510 vs. ExPASy TrEMBL
Match: A0A6J1KKB0 (nudix hydrolase 16, mitochondrial-like OS=Cucurbita maxima OX=3661 GN=LOC111496053 PE=4 SV=1) HSP 1 Score: 290.0 bits (741), Expect = 1.1e-74 Identity = 160/286 (55.94%), Postives = 166/286 (58.04%), Query Frame = 0
BLAST of CmUC08G152510 vs. TAIR 10
Match: AT3G12600.1 (nudix hydrolase homolog 16 ) HSP 1 Score: 208.8 bits (530), Expect = 5.9e-54 Identity = 119/283 (42.05%), Postives = 137/283 (48.41%), Query Frame = 0
BLAST of CmUC08G152510 vs. TAIR 10
Match: AT3G12600.2 (nudix hydrolase homolog 16 ) HSP 1 Score: 200.7 bits (509), Expect = 1.6e-51 Identity = 107/224 (47.77%), Postives = 125/224 (55.80%), Query Frame = 0
BLAST of CmUC08G152510 vs. TAIR 10
Match: AT1G12880.1 (nudix hydrolase homolog 12 ) HSP 1 Score: 111.3 bits (277), Expect = 1.3e-24 Identity = 69/193 (35.75%), Postives = 94/193 (48.70%), Query Frame = 0
BLAST of CmUC08G152510 vs. TAIR 10
Match: AT3G26690.1 (nudix hydrolase homolog 13 ) HSP 1 Score: 109.0 bits (271), Expect = 6.4e-24 Identity = 84/275 (30.55%), Postives = 108/275 (39.27%), Query Frame = 0
BLAST of CmUC08G152510 vs. TAIR 10
Match: AT3G26690.2 (nudix hydrolase homolog 13 ) HSP 1 Score: 109.0 bits (271), Expect = 6.4e-24 Identity = 84/275 (30.55%), Postives = 108/275 (39.27%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (USVL531) v1
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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