ClCG06G009850 (gene) Watermelon (Charleston Gray)
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAGATGGAGATTGAGAGCAGGGATGAAGATTTGAAGTCCATGTTGCCCTTTCTGCCGCTGGCACTGAGGTCATCGACTTTATTCTGGCCCTCCCAAGTAGTGGAAACTCTCAAGTCTATGGCAGCAGGCCCTGATCAGAGCGGTGTAAATTCTGGTGAAGCCCTCTTCTACTCCATCTCTAACATCAGGCACTCTCTCTCTCTCTCCAACCAACGCCTCGCTTCTTCTGCCCAACATGGCTATGTTCTTTTCTTCGACAAGGTACTTCGCTTTTCCTGCTTCTTGTTCCTATTCACAATTCCGCTTTCACATGCAAATACTGGTACCATTTTGTGAAGTGAAGTAATATCAAAAGGGAATTGAGTATCTGTTATTTTAATTTGGACAATAACACTCGTTGCAGAACAATTTGATCCGTACTTCCCTTGAAAAAAATCCTAGTTCTAGTACACTAGGACAATGATTAGAGTTGAAGGGCACCCTTGCAATCAAGGCAAACGGTTCCCCACGTTTTCCTACCATTATTTTACGTCTACTTGAACTACATATGGATTTGATCTTCGACACTTCTGTTACGAAGCACACACTAATCAGGTAAAAAGTGAGATTTCAGGATTCTTGTGAATTACGTCTAAAGTGTTGTTAATGATTCTGCCACTGGATATGGACCGAACGAAGAGAACATACCTTTTCAGGGACTTCAAGATTTCACAACTTTGTAGCAATTAACTCTTTTGTTTTCCTTCTGAATGAAAAATCCGACCTTTCATTAAGAAAGAAAATGAAAGAATAAAATACAGGGCATTCAGGAAAAAAAAGCCCACGAAAGGAAATCTGCTATAGAAATGGACTCCAATTGAGTAACAAAAGACCTAAAAAATAATTACTAAAAGACTTTTGAGCCCATAGAGAAACATGAAGCCTAACAAGGGACTAAACATCCCAAGGTCACTCTTCCCCTACTCTAAGGATTCTATTTGTTCCTTTGCTCCCACATTCCCCATAATAAAGCATGCACCTCTCGACTTGCCTCAAAAACCTCCCCTTCTTAGGAAAATGCAGATGGAAGAGGAACTCTTGGATCGTCTCCTTGTATTCTCTGTGTGAAAGGAGGCCACCTCAAAACCAAAGGCGTCATAAAAATAACTCCAAATTTACTGCAAAAGATCACAATTCCGAAGTATATGATCTAAGTCTTTGCTGAAAATAGTTTATTTCTCTCTTATTTTCTTTGTTAGACAAGGGTTTTCTTAAATAAAAGAAAACCTATTACAAATAAGGAAAAAATAAATATAGCAAATATCTTTACAATAAATACAAAGGGAGAATATAAACAAAAAAGGAAATAATCAACACTCCCCTGGTTTGAAGATATCACTCATGGCCAACTTGTCTGTTAACTTGTTGAATTGTAACTTAGGAAGACCTTTAGTTAATACATTTGCAATTTGTTCTGTTGTTGGGAGGTAGGGAATGCATATCACTCCTGCATCAATCTTTTCTTTTATGAAATGTTTATCGACTTGAATGTGTTTTGTCCGATCATGAAGGACTGGATTATGGGCAATGGAGATTGCTGCCTTGTTATCACAATAAATGCGTATGGGCATTGTCTGAGCGAATTTCAATTCTTCCAGCAGCCTTTTTATCCATATGCCTTCACAAATACCATGGGCCAATGTCCTAAATTCTGCTTCAGCACTACTTCTTGCAACTACTCTCTGTTTTTTGCTACGCCAAGTAACTAAGTTTCCTCCAACAAAGGAGCAATACCTAGAAGTCAATCTCCTATCTGTCGTGCTATCTGGCCAATCAACATCAGTATAAACTTCAACTTGTAGGTGGCCATGTTTTTTGAAAAGTATCCCTTTCCCTGGAGTACCTTTCAAATGTCTCAGGATTCTAAAGACAATTTCAAAATGAGCTGGCCCGGGGGCATGCATGAATTGGCTTATCATACTAACTGCAAAGGCAATGTTGGGACGTGTGTGAGAGAGGTATATTAGTCTTCCCACAAGTCTCTGGTACTTCCCGTTTTCTTTTACATCATTTTCTATTGCAGCTTCCAATTTTAAGTTCTGCTCAATGGGAGTTTCTACAATTCGGCAACCAAGTAAACCTGTCTCTTTGAGTAGATCAAGGATATACTTTCTTTGATTGACAAGAATACCACTTTTAGACCTAGCAAACTCCATGCCAAGGAAGTACTTTACGGATCCTAGGTCTTTGATCTTGAAATCATTTGCCAATTTTTCCTTTACAATAGACATTCCTGTCTCATCATTGCCTGTAAGAATGATATCATCGACATACACTATCAGAACAACAACCTTGTCATTTCCCGTATACTTGTAGAACATAGTGTGATCGGCTTGACTTTGGCTGAATCTATAGCTTGTGACTGCCTTTCCAAAACGTTCAAACCAAGCTCTAGGAGACTGTTTTAAGGCCGTATAGTGATTTTTTTTTTAATTTACATAACTTGTTAATCCCAAGGTCAGCTTCAACACCAGGTGGTAAGTCTATAAATACTTCTTCTTCAAGTTCCCCATTAAGAAACACATTTTTAACATCAAGTTGATAAAGTGGCCAATCAAAATTAATTGCAACAGAGAGCAAAATTCTAATTGAGTCAATTTTAGCTACAGGAGCAAATGTCTCTTGATAATCAATTCCATAGGTCTGGGTGAATCCCTTAGCCACTAATCTGGCCTTGTACCTTTCGATACTACCATCAACATTACATTTTATTGTGAAAACCCACTTACATTCCACTGCTTTCTTGTCTTTTGGTAGATCAACTATGTCCCAAGTACCACTTTGTTTCAGCGCGTTCATCTCTTCCATCACTGCTAATTTCCAATTCAAATCATTTAGGGCTTCCTGTATATTCTTTGGAACAAATAGGTTGGTTATTTTGGATGTGAAAACTCTATGACTATCAGATAATCTATGATAGGAGAGATAGTTCGCAATGGGATATTTTGTACATTGGCGGGTACCTTTTCTCTGGGCAATTGGAATATCAAAATCAGAGACATCAGGCAACATATTATGAGAGGAAGGACTAAGAGACATACCTAGATTTTCAGGATCATTCATTGGAGTATCAGATTGGTCTTGTGTTAGCTTGACTGTCTGATTTCTATCCCTCTGAGTTATGTTTCTTCTAGTATAAAACTGAAGTTCAGAATTTCGACCTGTCAGATCTGTTTGTAGTGTTTCTCCCCCTGTCGGAGAATTTCCCACACTTGAGATCGGAGGACTAGGGCTCATAATTTCAGGACTAATGATGTTTGGGAGAGGTGAAGTGTCCCAAAAATTCTCTTCAAGGAGATGACTCCCCCTAAAGAGAAGTTGGGCTAAAAAAAGATTGATTTTCTATGAAGGACACATCCATACTCTCAAAATACTTGTTAGTTAGGGGGTCAAAACATTTGTACGCCTTCTTAAGGGGAACATAGCCTACAAAAACACATTTAATGGCCCGAGAGTCCAATGTAGTTTGGGAAAGGAGGGTTCGATGAACATAAGTAGTACTCCCAAAAACTTTTAAAGGTAACTTTGAGAACAGTCGGGCAGTAGGAAAAAACTCTTTGAGGTGTTGCAGTGGAGTTTTAAAATTCAACATCTTAGTAGGCATTCTATTGATTAGGTAAGCAGCGGTTAGAACAGCATCTCCCCACAAATATTTTGGAACATGCATAGAAAACATAAGGGCACGAGCAACTTCAAGCAAATGTCGATTTTTCCGTTCAGCAACACCATTTTGCTGAGGAGTATCACGACATGTAGCTTGATGAACGATGCCTTTATCATTTTAAAAGATGGTTAGTGGTTCGTTAAAAAATTCAGTTCCATTATTAGAGTGAAGAATGCGAATTTTAGCTTGAAACTAAGTCTCAATCATTTTATAAAAACGAACAAAGACCTCTTTTACATTTGACTTTTTTGTTAGCAAGTAAAACCAAGTTAAACGGGTGTGATCATCGATAAAGGTAACAAACCAACGCTTGCCATTTTTTGTCAAAACCTTAGACGGACCCCAAACATTAGTATGAATTAAGTAAAAGGTGATGAAGATTTATAAGATTTGGGTGAAAAGGTAGATCGATGATGTAAATGCAGTCTTCGCATTGAAAAATAGAACAATCAATTCCTTCAAATAAATCAAGAAACAAGTACTTTAAATAAACGAAATTAGGATGTCCTAATCTACGATGCCAAAGCATAATAGTTTCTTGAACAGAAAGAGAACTGACACTACTCAAGCCCTGAATCTTTTTATGACTAGTTGAAACTTCATCAAAGTAATAGAGACCATCAATCATCCTAGCACGTCCAATCGTCTCCCCCGAGTCTTGATCCTGAAAGAGACAATGAGTTTGACAAAAGATAACACGACAGTTAGCATCTTTAGATATTTTGCTCACAAATAATAAATTACACGCTAGTTGAGGAACATGAAGGACAGAACGTAGTATGAGTTTTGTACTTGGGGGAATAGTTCCTTTGCCTGCAATAGATGTAAAACTACCATCAGCAATATGGACTTTTTCTTTACAATAAACAGGGGGGTATGACTCAAATAAACACGAGAAACTAGTCATATGATCAGCAGCTCCGGAATCGATGATCCACAGAGAGGAATTTAGACATGAGAGGGCTTGAGGGGAATTACCCGATCAATTGGATTTTAGTAGCTTCAGGATTTGATCAATTTGCTCTTTGAGTGGACTGGAATCAACAATGTTTGCATTGGAGGCATGCTGATGAGAATTTCTCTCAAATTGCTTAAAGCTCTTCCAATTTGCAGGTTTGCCATGTAGTTTCTAACAAGTTTCCCTCGTATGACGGGGTTTGTTGTAGTGATCACACCAGACACGAGGCTTGTCATGAGTTTTGTTGGATTGATCAGAAGCTTTTATTGTAGTATTTTCAAACACTAATGCGGAACTTTCAACTGAGTCAACTGCCTTCTTTCCAATCATAACATTCCTACGACTTTCCTCCCTGCAAACTTCAGAAAAAACATCGTTAATATTTGGAAGAGTACTTTTCCCAAGTATCCTGCCTCTAACCTCATCAAACTCAACATTGAGGCCAGTAAGGAATTTGTTAATGTGACCATCTTCAACAGTTTTCCGATAATGTTTTTGGTCGTCTATGGACTTCCACTCGTATGTATCAAACAGATCAAGTTCTTGCCACATCCTCTTCAGAGAGTGAAAATATTGTGTAACTGAGTTGCCTCCTTGTCGTATATCATCCAACTTAAGATTCAGCTCGAACACTTGTGACTGGTTACCCAAATCAGAATACATTTGAGTCACACTTTCCCATAATTCCTTGGTCGTAGTGTAGCACATGTAGTTACTACTGATGTCTTCCACCATAGAGTTGACGAGCCATGTCATAACCATGGAGTTTTCTGCGTCCCACACAGCAAATAAAGGGTCATCTTGACTTGGAGTGATTTTTTCTCTGGTGAGATACCCTATCTTCCCTTGGCCACGAATATACATCTGAACACTCTGGGACCAACGAAGAAAATTATCCCCGTTAAGTCGAATGGTGGTGATTTGGACAGTGGGAGTGTTGATGGATCCGATTGTCGAAGACTTTGGCGGCAGATACCTTAGTCTCTGACGTATTGAAGAGATAAAAACACACAACCCAAACAAAAAATAGATCTTAAAAGAAAAAAGAACCAAAAACGGTTTTAACAAACCCAAAAAACTTCCACTCAGCGGCAGAACAAGGAACCACCGGAGATTCGCCAGAACTGGCCGGAATCCCTTGGCCACTGGTGCAGACTTGGTCGGTCGGCGGAGAAGGAGTAAACCCAGGAAACGGCAGTGTCGGCATCGACGACGGCTAAGGCACCCGGCTTTCTTCTGCGCTCACGAGATCCACGAACAACCGGTAGTCTGGTGTTGACTGGTGACTAAGGCGAGACGTTCGGTGACTGAGGTGAGACGTTCGGCGAAGATCTGGAGTGCGGCGGCGGCAGCGGCAGATTAGGTTAGATTAGGGTTTATGTTTCTTTTTCAGAAAAATTAGGGTTTCAAGCAATAGGCTATGATACCATGCTGAAAATAGTTTATTTCTCTCTTATTTTCTTTGTTAGACAAGGGTTTTCTTAAATAAAAGAAAACCTATTACAAATAAGGAAAAAATAAATATAGCAAATATCTTTACAATAAATACAAAGGGAGAATATAAACAAAAAAGGAAATAATCAACCGTCTTCCTTTACCTTTTGACAAAGAATACAACAAAATGGTTTGATCAAGGAGGGCAACTTCCTCAGAAGCATTATACTTGTTAATTTGTTTGTGGGTTGCTTTGCCAAATGGAAAACACCTATGGAAGGAAGAAGGGCTGAACAAACTATGAAAGAACTGAGTTACAGGAAATGTCCCTAGTAGGCTCAGGGCTCCAAATGTGAAAATCCCTTTCTCCAAGGTCTAAACTTTAACTCTGCAATCAAATATAAAAGAGCCATTAACCGTGGTTCTCCCTATCTGGACAAAGAACAATGAAAATTGAACAATAAAGAGAGCTCTCATTGATATAATGAATCGAGACAATATCTTAATCTCAAGGATATAGTAGTAAATAATAGTAAAAGTAAAAGAAGGATCAGTGAGTACACCAGGACATCTCAACTATGTTGACACCTCCCTAGCACTCTCATCATATCCTAATGAATCAAAAATTACACTATTGGTACTTGGGGAATGCTCCCCATTACAAAAGACAAATTTTGCAAGAAAGCCGAAAATACAACACTAAAAAAGAATCTATAAAATGACTGCACAAACAATGATATTGTCCATGAAAAAGAGAGCTCAAACAATGATATTGTCCATGAAATGATTTCTCATTCAATTGATGTAAATGAGGAAATGCAATGTAGAAGGGTCGATCCTCCACGGCTCCACCTATTTCTCTTCCCAAAAGTACCTTAACTTCCTGTCATTAACGAAATAGTGGGGATCATGTTATAAAAAGAAGGGAGCTCATAGGATATTTCTTTTTACAAATTGCGGTAAGTGCCTTTTATCCCAGTCATCATCCACTAAAAATGAGGACCATATTTACACGAGTAGCCCATTACCAAAGGGTATTAGGCTCAAGGGCCTGTGTTATGAGTCTTCAAATTTCCTATCTTTTTTTATGAAACAGAAATAAACTTTTCATTGATATAATATAAAGAGATTGGAGCACAAATATAAAGAGACATGAGATTCATACAACTCAAATAGAACTATGGTTGACTAAACAAACTTTTCTTTAAATTTCCTAATTCAAACTTCTCAAGGTTGACCAACTTCCCCACCACCTCCCAACTTACATGATGGACTCCTCTCTTCTCCTCAATCGCTTCTCATAAAAAGTCCTTCATAGGCCTTTCTAAATCCTTGCAAACAGAACGATGAGCCCTAAAAAGGGAGAAAAAATAGATCGGGATTCTGCTCATAAATTTTTTTAGACAGGGATTCTGCTCATGAATTTTTTTAGACAGGGATTCTGCTCATGAATTTTTTCCAGCGTGGTTCACCAGAGAGGAGTTAAGGAAGGAAGGAGGAGGGGGAGAGAGGAGAGAGCATTCTTGTCCCCAACGTGTTGTGTTCTACTTTTTTGTATATTGACGTGTTTCCATGTTGATGTCGTGTCGTAGTCGTGTCGCGTGTCAATGTCCGTGCTTCTTAGATCTAGGGGAATATTTAAATGCCACTGTCCAATCTCCCATTATACCACCTTTCCCCATCCTGGTGTTGCCTTTGCCAGAGGGATTGTGAGTCACAAAGTCACATCTTCTTCTTCGGCCTGTTTCTTGCTGATATTTGGGATGAATTGTTTTCTACTTTTGGATGGTCCAAGGCTCTTCCTTGGGCTTCCCATGATTGGATCAGAATGTTATTGATTGATCACCCCTTCAAATCTACCCAGGAGCTCCTCTGATCTAGCATTGTTAGAGGGGTATTATGGAAGATTTGGGAAGAAAAAATGCTAGGCTTTTCCAAGACATAGCGAGATCTTTCAGAGAAGTTCTTGAGATTTCAGTAAATTTACATCCCCTCAGTAGTCATAGTGTAAATTTCTTAGTTGCAAATTGGGAACATCCCGGGAGGCTAACATCTCTAAAAGTCAAACCAATAATAACCTATTGAACTAGTTATTATCTAATAACTAATTAATCCAACTGGTGGGCTGTTTTAAAGAACTCCCCTACATCATTTTGATTTAACCTATTTTTTATTTTATTTTATTTTCTTTCATGAGTGTAGAGAGAGGATCAACCATCATCTGTTGATCTAGCAGTAAATAAAGGGCATAAGTTTAATAAAGGGCCAAGAGGGGATGAGTTCAATCCATGGTGACCAACTACTTAGGATTTAATATCCTAAGAGTTTCCTTGGCATACAAATTGTTGTAGGGTCAAGCGGGTAGGTTAAAAAAAAAAATGTAGATACAAGATCATTTTGTCTTCTATTCGAGGTTGAAACATGCATTCATTTCTGGAAGGATGCATTCCATTTCAAGGCGGATCTCCCTTCTTATGAAGTCATTCCAATAAGAAAGGATAACGAGAGTGTGAGGAAGAGGAAGAAGAAAGCAAGATGACTTAAAAAAATAATTTTGATTTTTTTTTTCTTTTTTAATGTACACTTTCTAGTGATAGTTGTATTGAGCATGGTAAGTAGTTAGCTAATAAACCATGACAATGTGCCTTGTTGCCCAATTCTAACTTTTACTTAATTATTGTACTATCACGCCGGACTTGGGAAGCTTAGCAATGAATTGAAAGAGGATTTTTCTTTTAATTTTTTTAAATTTTTTTTAATTTGCTCGTGGAAAAAAAATATTTCCAGATCTTGGAATGAGTGTGTTTTCATAATCTATGGTCTACAATACATATGCTGTAGAATTGAACATAATTGTAAATTCATTGCATGGTTTTAGCCTCGAGATGTATACTACTCTTGGGTCAATTTCAAATTATCATGCACAAGTGTTTCAGCCAGCCAAGAGGTTCTATTTTAAAACATATGACAAAAAAAAAGAGAAGAAAAAACTAGTCAGGATCTACTGTACTCTAGTTGCTTTTTGGTTGTTGAATGGTGGTCGTGGAACTGTGGATTTTTGTTAATCACCTTGAATGCGAGGTGCAGTTGTTACTGCCAACATAAATATGACATTGTAATATGAACTTTGAGACTAATCAAGTTGCTATGAACAGCTTATGTCCGAAACAGAATCTATGCAGTGGTTTGGTGAGGTTATTCCAGCATTGGGAAATCTGCTTCTTCAGTTACCATCTTTGCTGGAAACTCATTATCAAAATGCCGACCAGCTTGCTAGTAAAGGAAGTGGCAAATCCAAAACTAGTCTTCGTTTGTTAGCTTCTCAAGTTGCAGGCACTGTGTATCTTAGTCAG ATGGAGATGGAGATTGAGAGCAGGGATGAAGATTTGAAGTCCATGTTGCCCTTTCTGCCGCTGGCACTGAGGTCATCGACTTTATTCTGGCCCTCCCAAGTAGTGGAAACTCTCAAGTCTATGGCAGCAGGCCCTGATCAGAGCGGTGTAAATTCTGGTGAAGCCCTCTTCTACTCCATCTCTAACATCAGGCACTCTCTCTCTCTCTCCAACCAACGCCTCGCTTCTTCTGCCCAACATGGCTATGTTCTTTTCTTCGACAAGCTTATGTCCGAAACAGAATCTATGCAGTGGTTTGGTGAGGTTATTCCAGCATTGGGAAATCTGCTTCTTCAGTTACCATCTTTGCTGGAAACTCATTATCAAAATGCCGACCAGCTTGCTAGTAAAGGAAGTGGCAAATCCAAAACTAGTCTTCGTTTGTTAGCTTCTCAAGTTGCAGGCACTGTGTATCTTAGTCAG ATGGAGATGGAGATTGAGAGCAGGGATGAAGATTTGAAGTCCATGTTGCCCTTTCTGCCGCTGGCACTGAGGTCATCGACTTTATTCTGGCCCTCCCAAGTAGTGGAAACTCTCAAGTCTATGGCAGCAGGCCCTGATCAGAGCGGTGTAAATTCTGGTGAAGCCCTCTTCTACTCCATCTCTAACATCAGGCACTCTCTCTCTCTCTCCAACCAACGCCTCGCTTCTTCTGCCCAACATGGCTATGTTCTTTTCTTCGACAAGCTTATGTCCGAAACAGAATCTATGCAGTGGTTTGGTGAGGTTATTCCAGCATTGGGAAATCTGCTTCTTCAGTTACCATCTTTGCTGGAAACTCATTATCAAAATGCCGACCAGCTTGCTAGTAAAGGAAGTGGCAAATCCAAAACTAGTCTTCGTTTGTTAGCTTCTCAAGTTGCAGGCACTGTGTATCTTAGTCAG MEMEIESRDEDLKSMLPFLPLALRSSTLFWPSQVVETLKSMAAGPDQSGVNSGEALFYSISNIRHSLSLSNQRLASSAQHGYVLFFDKLMSETESMQWFGEVIPALGNLLLQLPSLLETHYQNADQLASKGSGKSKTSLRLLASQVAGTVYLSQ
BLAST of ClCG06G009850 vs. Swiss-Prot
Match: PARG1_ARATH (Poly(ADP-ribose) glycohydrolase 1 OS=Arabidopsis thaliana GN=PARG1 PE=1 SV=2) HSP 1 Score: 153.3 bits (386), Expect = 2.2e-36 Identity = 82/145 (56.55%), Postives = 101/145 (69.66%), Query Frame = 1
BLAST of ClCG06G009850 vs. Swiss-Prot
Match: PARG2_ARATH (Probable poly(ADP-ribose) glycohydrolase 2 OS=Arabidopsis thaliana GN=PARG2 PE=2 SV=1) HSP 1 Score: 138.7 bits (348), Expect = 5.5e-32 Identity = 78/144 (54.17%), Postives = 95/144 (65.97%), Query Frame = 1
BLAST of ClCG06G009850 vs. TrEMBL
Match: A0A0A0LHP6_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G123070 PE=4 SV=1) HSP 1 Score: 255.4 bits (651), Expect = 4.5e-65 Identity = 135/154 (87.66%), Postives = 140/154 (90.91%), Query Frame = 1
BLAST of ClCG06G009850 vs. TrEMBL
Match: M5VQA0_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa004452mg PE=4 SV=1) HSP 1 Score: 183.3 bits (464), Expect = 2.2e-43 Identity = 93/145 (64.14%), Postives = 114/145 (78.62%), Query Frame = 1
BLAST of ClCG06G009850 vs. TrEMBL
Match: B9T530_RICCO (Poly(ADP-ribose) glycohydrolase, putative OS=Ricinus communis GN=RCOM_0211520 PE=4 SV=1) HSP 1 Score: 182.2 bits (461), Expect = 4.8e-43 Identity = 98/150 (65.33%), Postives = 113/150 (75.33%), Query Frame = 1
BLAST of ClCG06G009850 vs. TrEMBL
Match: A0A067K079_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_19255 PE=4 SV=1) HSP 1 Score: 177.9 bits (450), Expect = 9.1e-42 Identity = 91/145 (62.76%), Postives = 113/145 (77.93%), Query Frame = 1
BLAST of ClCG06G009850 vs. TrEMBL
Match: W9RGD8_9ROSA (Poly(ADP-ribose) glycohydrolase 1 OS=Morus notabilis GN=L484_009352 PE=4 SV=1) HSP 1 Score: 173.3 bits (438), Expect = 2.3e-40 Identity = 88/145 (60.69%), Postives = 110/145 (75.86%), Query Frame = 1
BLAST of ClCG06G009850 vs. TAIR10
Match: AT2G31870.1 (AT2G31870.1 Poly (ADP-ribose) glycohydrolase (PARG)) HSP 1 Score: 153.3 bits (386), Expect = 1.2e-37 Identity = 82/145 (56.55%), Postives = 101/145 (69.66%), Query Frame = 1
BLAST of ClCG06G009850 vs. TAIR10
Match: AT2G31865.2 (AT2G31865.2 poly(ADP-ribose) glycohydrolase 2) HSP 1 Score: 138.7 bits (348), Expect = 3.1e-33 Identity = 78/144 (54.17%), Postives = 95/144 (65.97%), Query Frame = 1
BLAST of ClCG06G009850 vs. NCBI nr
Match: gi|659082105|ref|XP_008441673.1| (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X3 [Cucumis melo]) HSP 1 Score: 260.8 bits (665), Expect = 1.5e-66 Identity = 136/154 (88.31%), Postives = 142/154 (92.21%), Query Frame = 1
BLAST of ClCG06G009850 vs. NCBI nr
Match: gi|659082103|ref|XP_008441672.1| (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X2 [Cucumis melo]) HSP 1 Score: 260.8 bits (665), Expect = 1.5e-66 Identity = 136/154 (88.31%), Postives = 142/154 (92.21%), Query Frame = 1
BLAST of ClCG06G009850 vs. NCBI nr
Match: gi|659082095|ref|XP_008441668.1| (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 260.8 bits (665), Expect = 1.5e-66 Identity = 136/154 (88.31%), Postives = 142/154 (92.21%), Query Frame = 1
BLAST of ClCG06G009850 vs. NCBI nr
Match: gi|449442353|ref|XP_004138946.1| (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis sativus]) HSP 1 Score: 255.4 bits (651), Expect = 6.5e-65 Identity = 135/154 (87.66%), Postives = 140/154 (90.91%), Query Frame = 1
BLAST of ClCG06G009850 vs. NCBI nr
Match: gi|700206326|gb|KGN61445.1| (hypothetical protein Csa_2G123070 [Cucumis sativus]) HSP 1 Score: 255.4 bits (651), Expect = 6.5e-65 Identity = 135/154 (87.66%), Postives = 140/154 (90.91%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of watermelon (Charleston Gray)
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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