MC06g0657 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5CDSpolypeptideutr3 Hold the cursor over a type above to highlight its positions in the sequence below.TGAGTTTTTAATATATTATAGATTATAGATTTGCTACAGTAGTTCCAGTTCTGGAAAGATGGCTCCAATCCAATTCATGGCCTGCAAATCTCTCGCTTCACACAGTCACAGGTTTCGTAACTTCTCCACTATCTCTTCCAATTGCAATGCTTCCACAATTTCCCGGACGACGTATCCAATGGCGTCTACATTTCGGCCAACAGTAGTACACCGCTCGATATCAGTCGCCTCCCGTTCTGTGTCGGTCGCCAGCAGTTTCACTTGGGACGACGTTCTCCGCATTTCTTTACCAGAAATCTATCAGGATGATCCTTCAGATCTCACAGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGTGGATCAGTAGGTCTCTTTCTCCTTTTCTTTTTGATTTGTTGTACAAACAGAAGACGGAAGTTATAGGTTCGCGCAGCAATTGAACGCTTGAATTCATTTTACATTTTGGAATTGATTAAATCTTGTAACAGGATATGCAATCTGAATTTCTTCCGTTTGTCGTCGATGATCAAATTGTTGGCTACGTGCACCACGGGTGAGGCTCCTATGTTACATCTTTCTGGATACACTCCATCTGTATCGTCAATACCATTTATTTGCGCCCATTTCATTGTACTTGGCTTGTGTATGGTTGCTATATACAACGGATAGGTTCGATCAGTATATTTTAATGTACTTTATGCAGTTTCGCTGAACACCTGAAGCAATATGCGAATGTGTTTACCTTCTCCGGGGATGATTCTGTTCAATTTCGCGCTTACTTAACCTTGCATGAATCGTTGAAAACACCCGAAGATAGGACACAAGCAGTTGGAGATGTAGTCAAATGCTTGGGTGAAGAAATTATTCCAGGTACACGGAACGAGGTACTGTTTGTGATTCCAATTCAAATCAATGATTTCAATAATTTTCAATATGTCTTGTATATTAAAAGATAATCGCCTTCTTCTGTTTAATGCTCAAAATAGGCTGGTCCTTTTTAGATAGGTAAATTTAGAGCAAGGTAATACTTATTGAGGCTAACTGTGGATAACCATGAACTCTGTCAGCTATACCCTGTTACATCGTCCTTTGGTGCGCCAAACTTTTTCTCTCTCGAACGTGCTGCAGCTCCTTATTTTGGAATAAAGGTGCGAATGTTCACCTTCTACAGCATTGTGGAAACTTATAATTCTTGTTCTAATTTTCTGTTACATGATTTGAAAGCCATATTTTGATCCAGCCTTTTATTTAGCCCCTTGAAAATTGCAGGCCATTTGATCTGTCGAAATCTGTTTATACAAGTTTGGTTTTTAGGTCCAAATAAAATTTGAACCAATAATACGTTCTGTATATACGTACAATATTCGAAGTAACTGATGTTTTGGCAGACATCATTCTGGTACTAGTTCTAGAAAAATTTTACTTGGCGACTACATTATTTCTGTAAATACTCCTTATAGACACGTGCTCATCTCCTGCCTTGTTCAAAAGTTAAATCGTGGAGTGTGGCACCCAATAAAATCCACCAGCATTTTTCTTCTAGTTTTACCTCCTTTATGTTTCTTCAGCAGCTATTTTGACACACCTCTATGGCAAGATCGACATCATTTTTATTTTTCTTCTTCCCTGCTTTTATATGGGACTAAACTCAACCTTCCGTTGGTTGAAACTTAGAAATACTCTCACACGCACTCTCAAAAAACATAGATACACAGAATTCATATTGGGAATAAATTTCCTGCAAGAATGATATAATGAGACGTGCCTACTTTTGTGCAATAGCCCTCAAAGTAGTCCTAGTTGCCCATGGTAAGTTGGTAACACATTAAAATTTATCCTGCCTACCTTCTCAAGGTTGTGATCATGTTAAGGTTAATTTTTGGGAGGTTCCTTGGAGAAGCTGCAGACCTCTTTGTTAAATTTCTAAGACTGTATAACTTAACCAACAGAAATGTATAAAAGAGGAATGAAAAAGTGATATAAGAGGGAATTCTAATGCTAGGGAGATTGGGAATGGATTCCTTTACTTAAATTGTTGCCTTTACTCCTTGCATGATGAGAGGATTGTAGGGTTTGGAACCTGGATAAATCTAGTATCTTTTCTTGAGAGTCTGTGGATCACCTTACCACCATGTTCGATACCTGTCCTGCAGCCACAGAGCGATTCCCTTCCTGCAGTGTTTGCAATAATAAACTGTACGGAAATTAAAATTTCCCCAAAAATCAGACTTTTCTTGTGGTCCCTCGCTTGCTCATGCAAAAGTTAATTTATCCAACAGAACCTAAAAGAAAAAGCTCAGCTTAACCATATCTCCTCAAAGGTTGCAATAAGGACACTGAAAGACTGAAAATCAGGACTCAGGAGCTACTTGTAACTTTCCTTGGAATTCCTCTCTCAAAAGTTGTAGCAGGACATCGTTCCCATTCAACATTTTGGGCTCAGGACAGAAAAACCTTGTTGTCAATGTAGTGATTGCTATGTTTTAATCTTGTGGACTTTTATAGACAGTTTCTACGACAGGCAGGGGAAATATGGAGGAAATCGGTCTCAGCTTGACATCTTTTGTAATTGTTCTTCCTTTTTTAAATAAGCCAATTTGAGAGCCTTTTGTAACCCTTTTTGGCCTCTGTTGGAACTTTTCTTGTTTTCTCTTTTTTATATTCCTTTTGGATCTCATATCCTTGTTACTTGCCAGAATAAAGAATTTTCTTTAATGTGGCTTCAGTCTGGAGAAGATGAACAATGTATTGGTTCATTAGAAAATGATAGGGAAATGCCTTGAAGAATAAGCTTAAGAGGGAATTTCCTTTATATATAATTTTGCAGGTTAAGTGAAACTTTTTGAAGGGTTATCTAGAATTTTACTCGATGCTATGGTGTTTGAAACCCTTTATGTTTGGGATTTGACTCAGTAGTATTTATCCTACTGTTATCTGATGTTGTTCATACAAAGTGAGTAAATTATGTCACTTGTCTATTAAAAAGAGCCTGTACATTGAAGGGCAATTTATTGTTGAACATGCCTGTCGGAGACAGAAACTGGCCGCCTGGTTGTAGATTACTGAAAATTTTATTACTCCAATACCGGGTTTCACTAACTTCTACCTGCCTTCTTTGGCGCTTTTCTTAGCACAGGTTTATGGAGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGGTAGCAAAAAGAAGTCAAACGAAGCAAACCTTTCCTGGAATGCTGGATCATTTAGTAGCTGGAGGGCTGGTATATAACAAATAATTGCTAAATATTGCTTAGTTTCCTTGCATGTGCTTCTGTCTCGTTAAAATGTGAAAATAGAAGGCTATTCTCTTTTTCTTCTTTTCTTCATGATTGGATGGTATAAAGCATTCTGTTCCTTTTAATTTTCTTCAGCTAGATGTTAGACCTAAGTACTTTCCAGTAGGTTAATATATCGACGGGTCTTTAAACCATTTTTCAATAAGGTCATTGAAATTGAAAAAGGAATGTTACATGACATTAAAAGTATTCTTTTCTACTAGTCAAGTAGATGAAAAGTTATAAATGTTAGAAATGTGCCGAGCATCATGCTTATTGTGCTTTTGTAGCTAGTCTCTGACATTATGATAGTAATAGCCTCAGGGCATCCCTTGTGTTGAGAATCTAATGAAGGAATGTGAGGAGGAAGCATGCATACCGAGATCATTATCAAATGAGTAAGTTCCTAAGAATTTTATGATAATTTCATGATACCATTAACCTTATATTCATGGTTGTGGTGGTGGCTTCATGATATGTTTTTGTCTTAGGGCCATACCAGTTGGTGCCGTTTCATATTCAGACATTAAAGGTCACACTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTATACCAGAGAATCAAGGTTAGCTAACCTGACAAATTTTTGTTTACATCATTATTCAAAATGTATCTTACTAGATATGTTACGTTGCATTTAAATCTAGAATGGCTCTTAATAACTCTCTTTTTTGCCCCACCCCCGGTATACATACTGTTTATATTATGTTCAATACATATCTTTGTACATTTAGAAATTTCATGCCTCTAACTTGCTGACTAAACTTTCGGCAGATGGTGAGGTTGAAGGATTCATGTTGTTGCCTGTCACAAATGTTGCAAATGTGATACGGAGGACGCAGTTATTCAAGCCTAATTGTTCTCTTGTCATCATTGATTTCCTATTTCGACATGGGTATATTATATACACTATTTTCTCAAGGATTCTACATTTATTACACGACCATTATCTGCTTAAATTACTATTCAGTGTTGGTCTGTTCTTTTTTTTGAGTGAAAATTCCAATTTTCAACTGAGTTTAGTCATGAGTTGCGACTAGGGAACTATGCTCAGTGTTGATCTTAAGACTTCCGAAAAGTGGTAAACCCGACAATTTGGCTGAATCACTTATAATTTTAGATTACCAAATATTGTTAAGATAGGTGGACTGGTAGGCCATTTTTTTAAAACCATGTCCTGACCTGATGATTTTGACATAAGATCCTCTTCCCCATCTATATGGCCAATTCCAATAAGTTAATAACGACTACTTCTCAAGCGTCCTTAAAAGTCTACAGTCGTCTGTCATTAATGTCTTTCTTTTGAAACCTGCAGGTACATTTATCCCGAAAGTTCAGGGTACCTGGAGTTACTGCAGAGCTTGAGAAGTGGAACCTGTTTCTAAATAAAATCATTCGCCGGCCTACTTATTGATGAGAGAAATCAGGTTACATATTGAACTCGGATGGTGTACATTGCTTATTTTTTCCCCAGAATTTTCTTGCTTATGAGATGTATTTCTATTTGTGAAGCCAAACAAACTAACTTACCTGGCTGTGTAGTATAGAATAGTTCCATCTTTTGAACTTGAAACAAACTCCGAGAGACTAAGCTTGGTAGATCTATTGGATGAAAATACCTAACCAATTACACCTGAAAGCCATTACATGAAAACAATCTTAATTTCATCTACTCTCCAGCAACACTATGAATTTCCACACTAAATTTCACACTGACTTATTATTCATTTCCTTTTCTGACCCCACTCCAAAAGAAAAGAAAGAGAAGGGTCAAAAGCCCAAGACTGCTCCAAGAACTTGAAGCAACTGGAGGTGTGCGGTTAAGTGAGGGAAATGGCCTTGGGTGTCTATAACTTCCACTGTGGAACTGCCCTTAATCTTCTTCTGCATATAGGTAGCAACCGAGGCCGGGACGACGATGTCGGTTTTAGTTTGTACGATGGTGCATGGAATGTCGACCTTCTCAAGAACATCTCTCTCGTCTGAGCAGAAAACAGTCTTGGCCAAGCTTACTGCAACTTCAGGCCTCATCTCGTGCAAGCACTTCTGAAACCTGCCCAGCGAGACAGGATCGGATTCGTCCACAACCAGAGAAGAAAAGTTTGTAGCCCAATTCTCGTAGTTTGATTCAATATTTGCAATGATCTGCTCTATGTCCGAGTTGTCGAAACCACCTTCATAATCTTCTGTATTTATATACCTAACAACATAACGGTCAACATGATGTTAAAAAGAACACATTTACGACTCATTTTAGCATGGAATCAAACAAAGAAAAGTACTTGCTTACATCCACTAGGAGCTTTAATCGACTTATGTGGAGTGTTATTAATATAATAGAAATAAGACCAATGAAATCAGAAAGTTAGGTCAACTTGAACTTAATTAGTTAAGACACTTATTTCCGATCAACAAGTCATGAGTTTGAATTCATCCCACATGGTTTTATTAGTGTTGTTATATTAACAACAATAATAACAAAATAAAAAAAAGTCGTGGAAGTCCTACTGATGTGTAGGCAAGTATATTTTATCAAACAATTTTAACAGGATTTTGGTAAGCTCAAAAAGTATATTCCAACATCTATTTGATTGATTGGAGTTTGTT TGAGTTTTTAATATATTATAGATTATAGATTTGCTACAGTAGTTCCAGTTCTGGAAAGATGGCTCCAATCCAATTCATGGCCTGCAAATCTCTCGCTTCACACAGTCACAGGTTTCGTAACTTCTCCACTATCTCTTCCAATTGCAATGCTTCCACAATTTCCCGGACGACGTATCCAATGGCGTCTACATTTCGGCCAACAGTAGTACACCGCTCGATATCAGTCGCCTCCCGTTCTGTGTCGGTCGCCAGCAGTTTCACTTGGGACGACGTTCTCCGCATTTCTTTACCAGAAATCTATCAGGATGATCCTTCAGATCTCACAGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGTGGATCAGATATGCAATCTGAATTTCTTCCGTTTGTCGTCGATGATCAAATTGTTGGCTACGTGCACCACGGTTTCGCTGAACACCTGAAGCAATATGCGAATGTGTTTACCTTCTCCGGGGATGATTCTGTTCAATTTCGCGCTTACTTAACCTTGCATGAATCGTTGAAAACACCCGAAGATAGGACACAAGCAGTTGGAGATGTAGTCAAATGCTTGGGTGAAGAAATTATTCCAGGTACACGGAACGAGCTATACCCTGTTACATCGTCCTTTGGTGCGCCAAACTTTTTCTCTCTCGAACGTGCTGCAGCTCCTTATTTTGGAATAAAGGTTTATGGAGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGGTAGCAAAAAGAAGTCAAACGAAGCAAACCTTTCCTGGAATGCTGGATCATTTAGTAGCTGGAGGGCTGCCTCAGGGCATCCCTTGTGTTGAGAATCTAATGAAGGAATGTGAGGAGGAAGCATGCATACCGAGATCATTATCAAATGAGGCCATACCAGTTGGTGCCGTTTCATATTCAGACATTAAAGGTCACACTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTATACCAGAGAATCAAGATGGTGAGGTTGAAGGATTCATGTTGTTGCCTGTCACAAATGTTGCAAATGTGATACGGAGGACGCAGTTATTCAAGCCTAATTGTTCTCTTGTCATCATTGATTTCCTATTTCGACATGGGTACATTTATCCCGAAAGTTCAGGGTACCTGGAGTTACTGCAGAGCTTGAGAAGTGGAACCTGTTTCTAAATAAAATCATTCGCCGGCCTACTTATTGATGAGAGAAATCAGGTTACATATTGAACTCGGATGGTGTACATTGCTTATTTTTTCCCCAGAATTTTCTTGCTTATGAGATGTATTTCTATTTGTGAAGCCAAACAAACTAACTTACCTGGCTGTGTAGTATAGAATAGTTCCATCTTTTGAACTTGAAACAAACTCCGAGAGACTAAGCTTGGTAGATCTATTGGATGAAAATACCTAACCAATTACACCTGAAAGCCATTACATGAAAACAATCTTAATTTCATCTACTCTCCAGCAACACTATGAATTTCCACACTAAATTTCACACTGACTTATTATTCATTTCCTTTTCTGACCCCACTCCAAAAGAAAAGAAAGAGAAGGGTCAAAAGCCCAAGACTGCTCCAAGAACTTGAAGCAACTGGAGGTGTGCGGTTAAGTGAGGGAAATGGCCTTGGGTGTCTATAACTTCCACTGTGGAACTGCCCTTAATCTTCTTCTGCATATAGGTAGCAACCGAGGCCGGGACGACGATGTCGGTTTTAGTTTGTACGATGGTGCATGGAATGTCGACCTTCTCAAGAACATCTCTCTCGTCTGAGCAGAAAACAGTCTTGGCCAAGCTTACTGCAACTTCAGGCCTCATCTCGTGCAAGCACTTCTGAAACCTGCCCAGCGAGACAGGATCGGATTCGTCCACAACCAGAGAAGAAAAGTTTGTAGCCCAATTCTCGTAGTTTGATTCAATATTTGCAATGATCTGCTCTATGTCCGAGTTGTCGAAACCACCTTCATAATCTTCTGTATTTATATACCTAACAACATAACGGTCAACATGATGTTAAAAAGAACACATTTACGACTCATTTTAGCATGGAATCAAACAAAGAAAAGTACTTGCTTACATCCACTAGGAGCTTTAATCGACTTATGTGGAGTGTTATTAATATAATAGAAATAAGACCAATGAAATCAGAAAGTTAGGTCAACTTGAACTTAATTAGTTAAGACACTTATTTCCGATCAACAAGTCATGAGTTTGAATTCATCCCACATGGTTTTATTAGTGTTGTTATATTAACAACAATAATAACAAAATAAAAAAAAGTCGTGGAAGTCCTACTGATGTGTAGGCAAGTATATTTTATCAAACAATTTTAACAGGATTTTGGTAAGCTCAAAAAGTATATTCCAACATCTATTTGATTGATTGGAGTTTGTT ATGGCTCCAATCCAATTCATGGCCTGCAAATCTCTCGCTTCACACAGTCACAGGTTTCGTAACTTCTCCACTATCTCTTCCAATTGCAATGCTTCCACAATTTCCCGGACGACGTATCCAATGGCGTCTACATTTCGGCCAACAGTAGTACACCGCTCGATATCAGTCGCCTCCCGTTCTGTGTCGGTCGCCAGCAGTTTCACTTGGGACGACGTTCTCCGCATTTCTTTACCAGAAATCTATCAGGATGATCCTTCAGATCTCACAGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGTGGATCAGATATGCAATCTGAATTTCTTCCGTTTGTCGTCGATGATCAAATTGTTGGCTACGTGCACCACGGTTTCGCTGAACACCTGAAGCAATATGCGAATGTGTTTACCTTCTCCGGGGATGATTCTGTTCAATTTCGCGCTTACTTAACCTTGCATGAATCGTTGAAAACACCCGAAGATAGGACACAAGCAGTTGGAGATGTAGTCAAATGCTTGGGTGAAGAAATTATTCCAGGTACACGGAACGAGCTATACCCTGTTACATCGTCCTTTGGTGCGCCAAACTTTTTCTCTCTCGAACGTGCTGCAGCTCCTTATTTTGGAATAAAGGTTTATGGAGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGGTAGCAAAAAGAAGTCAAACGAAGCAAACCTTTCCTGGAATGCTGGATCATTTAGTAGCTGGAGGGCTGCCTCAGGGCATCCCTTGTGTTGAGAATCTAATGAAGGAATGTGAGGAGGAAGCATGCATACCGAGATCATTATCAAATGAGGCCATACCAGTTGGTGCCGTTTCATATTCAGACATTAAAGGTCACACTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTATACCAGAGAATCAAGATGGTGAGGTTGAAGGATTCATGTTGTTGCCTGTCACAAATGTTGCAAATGTGATACGGAGGACGCAGTTATTCAAGCCTAATTGTTCTCTTGTCATCATTGATTTCCTATTTCGACATGGGTACATTTATCCCGAAAGTTCAGGGTACCTGGAGTTACTGCAGAGCTTGAGAAGTGGAACCTGTTTCTAA MAPIQFMACKSLASHSHRFRNFSTISSNCNASTISRTTYPMASTFRPTVVHRSISVASRSVSVASSFTWDDVLRISLPEIYQDDPSDLTGYFEKVKLCNRGSDMQSEFLPFVVDDQIVGYVHHGFAEHLKQYANVFTFSGDDSVQFRAYLTLHESLKTPEDRTQAVGDVVKCLGEEIIPGTRNELYPVTSSFGAPNFFSLERAAAPYFGIKVYGVHMNGYVEKEGKKFLWVAKRSQTKQTFPGMLDHLVAGGLPQGIPCVENLMKECEEEACIPRSLSNEAIPVGAVSYSDIKGHTYKRDVQFCYDLKLPESFIPENQDGEVEGFMLLPVTNVANVIRRTQLFKPNCSLVIIDFLFRHGYIYPESSGYLELLQSLRSGTCF Homology
BLAST of MC06g0657 vs. ExPASy Swiss-Prot
Match: Q8VXZ0 (Nudix hydrolase 20, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=NUDT20 PE=2 SV=1) HSP 1 Score: 428.3 bits (1100), Expect = 8.9e-119 Identity = 206/333 (61.86%), Postives = 257/333 (77.18%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy Swiss-Prot
Match: P0C026 (Nudix hydrolase 24, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=NUDT24 PE=2 SV=1) HSP 1 Score: 402.5 bits (1033), Expect = 5.2e-111 Identity = 192/340 (56.47%), Postives = 249/340 (73.24%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy Swiss-Prot
Match: P47173 (Uncharacterized protein YJR142W OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=YJR142W PE=1 SV=1) HSP 1 Score: 154.1 bits (388), Expect = 3.2e-36 Identity = 91/210 (43.33%), Postives = 123/210 (58.57%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy Swiss-Prot
Match: P41888 (Thiamine pyrophosphokinase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=tnr3 PE=4 SV=1) HSP 1 Score: 139.4 bits (350), Expect = 8.3e-32 Identity = 81/197 (41.12%), Postives = 112/197 (56.85%), Query Frame = 0
BLAST of MC06g0657 vs. NCBI nr
Match: XP_022144905.1 (nudix hydrolase 20, chloroplastic-like [Momordica charantia]) HSP 1 Score: 773 bits (1996), Expect = 6.27e-282 Identity = 381/381 (100.00%), Postives = 381/381 (100.00%), Query Frame = 0
BLAST of MC06g0657 vs. NCBI nr
Match: XP_038879265.1 (nudix hydrolase 20, chloroplastic-like isoform X3 [Benincasa hispida]) HSP 1 Score: 666 bits (1718), Expect = 7.42e-240 Identity = 332/376 (88.30%), Postives = 352/376 (93.62%), Query Frame = 0
BLAST of MC06g0657 vs. NCBI nr
Match: XP_023515492.1 (LOW QUALITY PROTEIN: nudix hydrolase 20, chloroplastic-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 644 bits (1661), Expect = 5.00e-231 Identity = 325/381 (85.30%), Postives = 343/381 (90.03%), Query Frame = 0
BLAST of MC06g0657 vs. NCBI nr
Match: XP_008463362.1 (PREDICTED: nudix hydrolase 20, chloroplastic-like isoform X1 [Cucumis melo]) HSP 1 Score: 641 bits (1654), Expect = 4.02e-230 Identity = 322/376 (85.64%), Postives = 341/376 (90.69%), Query Frame = 0
BLAST of MC06g0657 vs. NCBI nr
Match: XP_022987880.1 (LOW QUALITY PROTEIN: nudix hydrolase 20, chloroplastic-like [Cucurbita maxima]) HSP 1 Score: 639 bits (1649), Expect = 3.36e-229 Identity = 322/381 (84.51%), Postives = 340/381 (89.24%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy TrEMBL
Match: A0A6J1CSY3 (nudix hydrolase 20, chloroplastic-like OS=Momordica charantia OX=3673 GN=LOC111014470 PE=4 SV=1) HSP 1 Score: 773 bits (1996), Expect = 3.04e-282 Identity = 381/381 (100.00%), Postives = 381/381 (100.00%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy TrEMBL
Match: A0A1S3CJ09 (nudix hydrolase 20, chloroplastic-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501537 PE=4 SV=1) HSP 1 Score: 641 bits (1654), Expect = 1.95e-230 Identity = 322/376 (85.64%), Postives = 341/376 (90.69%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy TrEMBL
Match: A0A6J1JI14 (LOW QUALITY PROTEIN: nudix hydrolase 20, chloroplastic-like OS=Cucurbita maxima OX=3661 GN=LOC111485288 PE=4 SV=1) HSP 1 Score: 639 bits (1649), Expect = 1.63e-229 Identity = 322/381 (84.51%), Postives = 340/381 (89.24%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy TrEMBL
Match: A0A6J1HA39 (LOW QUALITY PROTEIN: nudix hydrolase 20, chloroplastic-like OS=Cucurbita moschata OX=3662 GN=LOC111461857 PE=4 SV=1) HSP 1 Score: 639 bits (1648), Expect = 2.31e-229 Identity = 321/381 (84.25%), Postives = 340/381 (89.24%), Query Frame = 0
BLAST of MC06g0657 vs. ExPASy TrEMBL
Match: A0A0A0LWL2 (Nudix hydrolase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G386580 PE=4 SV=1) HSP 1 Score: 632 bits (1630), Expect = 8.17e-227 Identity = 318/376 (84.57%), Postives = 339/376 (90.16%), Query Frame = 0
BLAST of MC06g0657 vs. TAIR 10
Match: AT5G19460.1 (nudix hydrolase homolog 20 ) HSP 1 Score: 428.3 bits (1100), Expect = 6.3e-120 Identity = 206/333 (61.86%), Postives = 257/333 (77.18%), Query Frame = 0
BLAST of MC06g0657 vs. TAIR 10
Match: AT5G19470.1 (nudix hydrolase homolog 24 ) HSP 1 Score: 402.5 bits (1033), Expect = 3.7e-112 Identity = 192/340 (56.47%), Postives = 249/340 (73.24%), Query Frame = 0
BLAST of MC06g0657 vs. TAIR 10
Match: AT5G19470.2 (nudix hydrolase homolog 24 ) HSP 1 Score: 387.9 bits (995), Expect = 9.5e-108 Identity = 188/340 (55.29%), Postives = 245/340 (72.06%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (Dali-11) v1
Date Performed: 2021-10-25
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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