MC05g0542 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5polypeptideCDSutr3 Hold the cursor over a type above to highlight its positions in the sequence below.CATCGTGCAATTATCCGGGCTCAATGCTTGGTTGAGGCCCACCGAGCCCAACAATTTTAAATAATAGCGCATATGAAAGTTTAGTTCAATTATGGGCCCCAAAAGGCATAAAGCCCAAAATCATATTGGACCGACATGTAATTGTCCCGGCTTCGCAAGCTCTGGGAAAGTAATTGGGTGTCTGATTCATTTCCGGCATTCTGAACCCTCCTAAACCCCTACCACCGGCGGAGGGCCTTCAAGAATGGGGAAGAAGAAGCATAAGCGGCCGGAATCAGAATCGGAGGCACTTGACAGAGGCGACTCCGAAGCTCAGCTCGTCAATGGATGTTCTCCTGAGAAGAAAAAGAGGAAGAAGAAGAAGAAACTTGAGAATGAAGAAATTGAGGGGGAGAAGAGGGAACCGGTTTCAAAACCTACAGTGAGCATTGCGGTATCCGGTTCCATCATTGACAACGCTCAATCCCTTGAGCTTGCCACCAGAGTACGCATTTTTTTCTTTTATAGGCGAGTGTTTTTTCGAGTTCCTGCCACTCAGAGGATGATATTTTGTTATGCCTTCTCTTTGAGATACTTGATTTGTTCTCTGGCGATGTCCCAACTGAGTTATGTGATCTTCCCTTTTTCCTTATGTTTCATGATTTTTTTTTTCTCAGTTGGCTGGTCAAATTGCTCGTGCGGCAACCATATTCCGAATTGACGAGGTCTCCGTCTTTCTCTCTTTATTTTTTACATTTTGAAAATGCTGGTCCGATGTTAAAGAAACGTTGCTTCTTATTACATTTGATAAAAATACACTTTAGGAGGTAAATTCCAATGTTATAGGACATCCTTGGAAATGCTCAAGTCAGGAAGATAATTTTTGCGTGTATCAGGTGGTGGTATTTGACAGTGGAAGGAACTCAGTGACTGGCTCGGATACTGTGGCAGCGAACAATTCTGACGAGGATGAAAGCGGCGCTGCTTTTCTTATAAGGATCTTGAAGTATCTTGAGACACCACAATACTTGAGAAAAGCTCTTTTCCCAAAGCACAACAATTTGAGATTTGTGGTCCAACCTTAAATTGCTTGGTTGCTTTAATCAATTAAGTAACATTTCCTGTTTTTTTCCTTCTAATCTTCCGTCTATCGTGAATTTGGTTATAGGGGATGTTGCCCCCGCTTGATGCTCCCCACCATTTGCGCAAGCATGAATGGGGTCCCTATCGAGAAGGTAAATAGGTTCTGTATGTGAGGAGTTTATTGTTGCCTCTTCTGTTTTGAAATTCACTAGAAAACTCGCCACAAAGATTCTCTAGATTGTTCAATTTCGTACTCAAGCATTGTGTGGGTGTGGGAGGGGGTAACAAGGCACTTTCCATTGATATCAGTACACTAAGCATACAAAAATTATAGCTTTAGTTGTGTTAGACCCAAAGATCTTTGTTTTCCTTTTGAACTTTGGGCCATACTACAGTTCCTGGAGATGCATCATCACCTCGCACCAAAACACCAACGATATTGAAAAGTTCTAAAAATAGCAAACTGATAGAAAAGGGTACTGGAAGAATAAGTGAAGCTGGCCTCCGTCATTTGACCTGCACATAACGCAGATGCTTGTGTTTAAAAAAAGACCAGGAACATCTTAGTGGCAATTTTTTAGTCGATTCAGTCCTGCGTCCAGATGAAGAACTTCACTTTCTCCAGCCGAATCAGCCCCTTACCTTACAGATAGCTTTGTACATATCCTCTTTCATGACTTATTTAGTGGCAGCATGATTAAGAAATGGTGATTTGCCCTCCCACCAACTCTGCTGAGGAATGGAGAAGCCAAATTCTAGTGTCTACTCGGTTTCTTGGTTTCCTGCCATTAATCATTTCCAGCAACCTTGAGAATTTGTCCATCTCTTTCTCCTACAGATTTCTTCTACTCAAACTTCATTTACTTTTGCTAGTATTTATTTTCCTAAGGTTCCCAATGCCCAAGCTTCATTTCTTCGTTGGTGCTCTAGTTGACTAGATGCCTAAGCTTACTTTTCTCCTAACGTTCTTTCCTTTTTCCCAATGCCCAAGCTTCTTTTTTTTTTTTCCTTTTTTAGAGTCTATAAGACATTGCTAGTAACTTGTTCATCTTCGGGCAGAAAATTTCTTTAAAGATTGTGTCATAGTTTGTGAGAAGTTTTCCGCTCATCATTGATCACTTTTACATCTGTAGCCTGAGAAATCCAAGTTTATTCTATATATTTCAAGAGGCTCCTAAAAGCTGAGTTTAGGGCTAGGGCTAGGACTATATATATTTATATATGTACCTGTCTGGCTATATTGTTGGATGACTTCTCATTCATTATGTTGGTATCCTTGGCTACTGCATTTCTTCTTGTTCACATTACATTTTGGACCTCGTTTTGTCATGTTAAACTTAGGTGTTACCCTCACACAGAGAGAAAGAGCTCCGGATGCTAGAGGAACGCCAGTTGATGTTGGTCTGAGTAAGGTAAAGCTATTTTTTATTATGGCTTCCTAGTTCTATAACTACATGTATCGATAATGAAAACATTATTTTTTTTGGATAAGAAACGATTCATTTCAAAGGAGACAAAAGAACAAATATTTTGGATAATGAAAACAAATTTTCTCCTACATTAAGCGTGAGTGGTGCTAACATGTTGAGTTAGATGGATTGGAAGGTTTAAAGTATGCTAATTCAATTTCTTTGTACCATTTTTAAGTTCAATGCTCCCATCGACCATATATTACTTAAGTAGGTGTTTTTCTTTGGGTTAATAATTGCATTTAAATTATGCAGAATGTGGTAGTTGATGAAGTACTTGAACCTGGAATTAGAGTAACAGTAGCTATGGGAACTGATCGCAATTTACTTGCTGGTAATATCTGATACCTTTTTTAGTACATATTTAATAAAATATGAAAATTGACTAATTTTTCCTCACAGCTAAGCTATAGATGCCTTGATGAGTATTGGCTTTATGCTTGTACTTTTGAGGTCTGCAATATGGTCCAATGTCTGCAAGTATTAAGACAAAACTTGTTGAAACTGAAATAGAACATAGAGACCGAAAACTTCCTATCCAAAAAAAAGAGACCGAAAACTAGAGTTTTGTAACTTTACTACTTTAGCTGCAATGCAATACATCATTAGACAATATCCCATATTTTTTATCTGAAAAAGTAAAAACCAATAAAAGAGTGACTACTGCCAAAGCTTGTATAACTTACTCCTGATATCTAGCAACAACCAGTCGTGTCTCTTAAACAAATACATAATACAGACTTCTAAAAAATGACAAACCAACTTCTATTCTGGATCCCCCACCAAACTTGACTAATCCAACAACAAGAAAGTACTGATAACAAATTTCTAAACAATTATGAAAATGTTTCCAACAATCTTTTCTTTATGCTGATGTTCGACATTCTAACAAGGGTTGACAGTTCTTTTCTGCAATTCTTGAAAGGGTATCAAACCTATTTCAGTTGATTTGATAATATCCTTTGTGCACTTAAAACTAGATGATGGTATATTTCTTCTCCATTGAATGATTGTTACAACATGAGATTCTAACTTCTGGACCCTGTATTAGAGGAGAAATCTTGTCATATATTTATGCATGAATTTGACTTCAAATGGTTGAGGTAGGTAATATTTCAGCTATTGTCTGCCACAGTCATAGTTCGGCTCCCACTTTCATGGGCATTTAAGCCAGTATATAACCTTGTGTAGCCACAACACCATGAAATAATAGAAATGAATTTATGATCATTTTAATGCTCAACTTACGTGTATGTGTCATGCCAATGTGATTATGTCGGAAATGGAAACTAAGATTTGCCGATGGAATTCAAGATCTTAAACTTGATTTCTCCAGATCTACCCCGCCAGGTTGCCTCATCCTCAAGGCCTGTGGAAGAAGGACTTTATTGGGGTTATAGAGTGCGATATGCTTCTTGTCTGAGTGGTGTATTTAAGGAGAGTTCATACAAGGTATCTGATTATACCTCTCGATAAATCTTTTTAAATTTAATATCATATTCTTAACATTTTGTTGTTTTATTTCAAGGGTGGTTATGATCACGTGATTGGCACCTCAGAGCATGGAATGGTCGCTAAGTCCTCAGAACTAAAACTACCCTCTTTCAGGTATTTTACTTTAGCCACCCCCATGTGACCTGGATAGTTTGTTTCTAGCTGATACCTTCAGCATGTCATTTCTAGTTGATTTCTCGGTACCTTTATTCATGGCTGAAATTATCATCTGTAGTATCATTTGAACTATATTGGCAAGGTTGAACTCTGCCAACTCTGGAGAATTTTTTCTACCCCCTTCACGACATCCAACAAACTTATAAATTACAATTGTGTGCCTCTCTATATGCTTGCCTCCATAACATCATTGTTTGTAATGGAAAAATGTGTCCGAGAGGGGCTTTTAAGGAAGCAACAGCGTTATAGGCTTCTTGTCAATTAAATGTATAATGAGCCTCTGTCTTGTGCACCTTATCATAGTTCAAAAGGCAGTGTAAAAAGGTTCCATTTTTTTAACTAATACACATTTTCATACATGGGTAATTCTCTATCCGAGCCATTCTAAGCTGCAACTCTTTGGGCGATTGTTCTATTTGACAGGCATCTTTTCTGGTCCCGCTTTCTTTTTTCCATCATTAGTTGACTGATTGCTTAAATTTGCAGGCATCTTTTAATTGCCTTTGGTGGACTTGCCGGCTTGGAGGAGAGCATCGAGGAAGATAACAGCTTAAAGGTGTCCATGTTTAAAATGGTGTTCTTTGTTTGGGTTACTCCAGTCTCCAGTTCAGAACTGACTATATTCTTGCCATTGTTTTGATCTGTCAGGGTAAAGATCCTCGCGAGATCTTCTCTTCATACTTAAATACATGCCCGCTGCAAGGAAGTCGAACAATTCGAACAGAGGTACTCCCCCTATTCCCATCTCCTCTGTTTTCTTTTTCTTCCCTACAAATTTACTGATGCATACATGGGTGGGATTGGTGATTAGGAAGCAATATTCATCTCTCTCCAGTATTTCCAAGAACCGATAAGCCGGGCGATGCAGGTGGCAGCAGATTAGATTAGAATGTTCAGCTTCAAAACATGTGTTGTAGAATCTTCAGAGTTCATGATCATCATGTCAATGAGCTCTCCCGCTGAACTTGGCAGCTGATTCAGTTTGTGTTGTAATTGTAATTTTAGTTGTCCTGGAAATTTGGGACACTTTAATTAATGTCTTGTTTTGATTTTCTAGGCCTAGAGAATATGGACAAGATTTTTAGGGACGGAGGAAACATATCCACGATTGTGGGTAATTGAAACGGTCCCATTTTCATCACAGCCAATGGTGGGAGTCTGGGCTTCCAAATTTTTTTATAATTAAGTAATGATAATTTGAATTTCAAATTTAATGAAATATATTTTCAACATGAATAACTCAAAATTAGTAAATGATTATCACATGGGCC CATCGTGCAATTATCCGGGCTCAATGCTTGGTTGAGGCCCACCGAGCCCAACAATTTTAAATAATAGCGCATATGAAAGTTTAGTTCAATTATGGGCCCCAAAAGGCATAAAGCCCAAAATCATATTGGACCGACATGTAATTGTCCCGGCTTCGCAAGCTCTGGGAAAGTAATTGGGTGTCTGATTCATTTCCGGCATTCTGAACCCTCCTAAACCCCTACCACCGGCGGAGGGCCTTCAAGAATGGGGAAGAAGAAGCATAAGCGGCCGGAATCAGAATCGGAGGCACTTGACAGAGGCGACTCCGAAGCTCAGCTCGTCAATGGATGTTCTCCTGAGAAGAAAAAGAGGAAGAAGAAGAAGAAACTTGAGAATGAAGAAATTGAGGGGGAGAAGAGGGAACCGGTTTCAAAACCTACAGTGAGCATTGCGGTATCCGGTTCCATCATTGACAACGCTCAATCCCTTGAGCTTGCCACCAGATTGGCTGGTCAAATTGCTCGTGCGGCAACCATATTCCGAATTGACGAGGTGGTGGTATTTGACAGTGGAAGGAACTCAGTGACTGGCTCGGATACTGTGGCAGCGAACAATTCTGACGAGGATGAAAGCGGCGCTGCTTTTCTTATAAGGATCTTGAAGTATCTTGAGACACCACAATACTTGAGAAAAGCTCTTTTCCCAAAGCACAACAATTTGAGATTTGTGGGGATGTTGCCCCCGCTTGATGCTCCCCACCATTTGCGCAAGCATGAATGGGGTCCCTATCGAGAAGGTGTTACCCTCACACAGAGAGAAAGAGCTCCGGATGCTAGAGGAACGCCAGTTGATGTTGGTCTGAGTAAGAATGTGGTAGTTGATGAAGTACTTGAACCTGGAATTAGAGTAACAGTAGCTATGGGAACTGATCGCAATTTACTTGCTGATCTACCCCGCCAGGTTGCCTCATCCTCAAGGCCTGTGGAAGAAGGACTTTATTGGGGTTATAGAGTGCGATATGCTTCTTGTCTGAGTGGTGTATTTAAGGAGAGTTCATACAAGGGTGGTTATGATCACGTGATTGGCACCTCAGAGCATGGAATGGTCGCTAAGTCCTCAGAACTAAAACTACCCTCTTTCAGGCATCTTTTAATTGCCTTTGGTGGACTTGCCGGCTTGGAGGAGAGCATCGAGGAAGATAACAGCTTAAAGGGTAAAGATCCTCGCGAGATCTTCTCTTCATACTTAAATACATGCCCGCTGCAAGGAAGTCGAACAATTCGAACAGAGGAAGCAATATTCATCTCTCTCCAGTATTTCCAAGAACCGATAAGCCGGGCGATGCAGGTGGCAGCAGATTAGATTAGAATGTTCAGCTTCAAAACATGTGTTGTAGAATCTTCAGAGTTCATGATCATCATGTCAATGAGCTCTCCCGCTGAACTTGGCAGCTGATTCAGTTTGTGTTGTAATTGTAATTTTAGTTGTCCTGGAAATTTGGGACACTTTAATTAATGTCTTGTTTTGATTTTCTAGGCCTAGAGAATATGGACAAGATTTTTAGGGACGGAGGAAACATATCCACGATTGTGGGTAATTGAAACGGTCCCATTTTCATCACAGCCAATGGTGGGAGTCTGGGCTTCCAAATTTTTTTATAATTAAGTAATGATAATTTGAATTTCAAATTTAATGAAATATATTTTCAACATGAATAACTCAAAATTAGTAAATGATTATCACATGGGCC ATGGGGAAGAAGAAGCATAAGCGGCCGGAATCAGAATCGGAGGCACTTGACAGAGGCGACTCCGAAGCTCAGCTCGTCAATGGATGTTCTCCTGAGAAGAAAAAGAGGAAGAAGAAGAAGAAACTTGAGAATGAAGAAATTGAGGGGGAGAAGAGGGAACCGGTTTCAAAACCTACAGTGAGCATTGCGGTATCCGGTTCCATCATTGACAACGCTCAATCCCTTGAGCTTGCCACCAGATTGGCTGGTCAAATTGCTCGTGCGGCAACCATATTCCGAATTGACGAGGTGGTGGTATTTGACAGTGGAAGGAACTCAGTGACTGGCTCGGATACTGTGGCAGCGAACAATTCTGACGAGGATGAAAGCGGCGCTGCTTTTCTTATAAGGATCTTGAAGTATCTTGAGACACCACAATACTTGAGAAAAGCTCTTTTCCCAAAGCACAACAATTTGAGATTTGTGGGGATGTTGCCCCCGCTTGATGCTCCCCACCATTTGCGCAAGCATGAATGGGGTCCCTATCGAGAAGGTGTTACCCTCACACAGAGAGAAAGAGCTCCGGATGCTAGAGGAACGCCAGTTGATGTTGGTCTGAGTAAGAATGTGGTAGTTGATGAAGTACTTGAACCTGGAATTAGAGTAACAGTAGCTATGGGAACTGATCGCAATTTACTTGCTGATCTACCCCGCCAGGTTGCCTCATCCTCAAGGCCTGTGGAAGAAGGACTTTATTGGGGTTATAGAGTGCGATATGCTTCTTGTCTGAGTGGTGTATTTAAGGAGAGTTCATACAAGGGTGGTTATGATCACGTGATTGGCACCTCAGAGCATGGAATGGTCGCTAAGTCCTCAGAACTAAAACTACCCTCTTTCAGGCATCTTTTAATTGCCTTTGGTGGACTTGCCGGCTTGGAGGAGAGCATCGAGGAAGATAACAGCTTAAAGGGTAAAGATCCTCGCGAGATCTTCTCTTCATACTTAAATACATGCCCGCTGCAAGGAAGTCGAACAATTCGAACAGAGGAAGCAATATTCATCTCTCTCCAGTATTTCCAAGAACCGATAAGCCGGGCGATGCAGGTGGCAGCAGATTAG MGKKKHKRPESESEALDRGDSEAQLVNGCSPEKKKRKKKKKLENEEIEGEKREPVSKPTVSIAVSGSIIDNAQSLELATRLAGQIARAATIFRIDEVVVFDSGRNSVTGSDTVAANNSDEDESGAAFLIRILKYLETPQYLRKALFPKHNNLRFVGMLPPLDAPHHLRKHEWGPYREGVTLTQRERAPDARGTPVDVGLSKNVVVDEVLEPGIRVTVAMGTDRNLLADLPRQVASSSRPVEEGLYWGYRVRYASCLSGVFKESSYKGGYDHVIGTSEHGMVAKSSELKLPSFRHLLIAFGGLAGLEESIEEDNSLKGKDPREIFSSYLNTCPLQGSRTIRTEEAIFISLQYFQEPISRAMQVAAD Homology
BLAST of MC05g0542 vs. ExPASy Swiss-Prot
Match: Q5T280 (Putative methyltransferase C9orf114 OS=Homo sapiens OX=9606 GN=SPOUT1 PE=1 SV=3) HSP 1 Score: 271.9 bits (694), Expect = 1.0e-71 Identity = 159/342 (46.49%), Postives = 215/342 (62.87%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy Swiss-Prot
Match: Q3UHX9 (Putative methyltransferase C9orf114 homolog OS=Mus musculus OX=10090 GN=Spout1 PE=1 SV=1) HSP 1 Score: 268.5 bits (685), Expect = 1.1e-70 Identity = 159/339 (46.90%), Postives = 212/339 (62.54%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy Swiss-Prot
Match: Q10950 (Putative methyltransferase B0361.6 OS=Caenorhabditis elegans OX=6239 GN=B0361.6 PE=3 SV=1) HSP 1 Score: 169.9 bits (429), Expect = 5.5e-41 Identity = 129/376 (34.31%), Postives = 193/376 (51.33%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy Swiss-Prot
Match: Q06847 (Uncharacterized protein VNG_1688C OS=Halobacterium salinarum (strain ATCC 700922 / JCM 11081 / NRC-1) OX=64091 GN=VNG_1688C PE=4 SV=2) HSP 1 Score: 89.4 bits (220), Expect = 9.4e-17 Identity = 88/309 (28.48%), Postives = 125/309 (40.45%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy Swiss-Prot
Match: P20571 (Uncharacterized protein rrnAC1612 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) OX=272569 GN=rrnAC1612 PE=4 SV=2) HSP 1 Score: 84.0 bits (206), Expect = 4.0e-15 Identity = 91/314 (28.98%), Postives = 135/314 (42.99%), Query Frame = 0
BLAST of MC05g0542 vs. NCBI nr
Match: XP_022138246.1 (putative methyltransferase C9orf114 [Momordica charantia]) HSP 1 Score: 712 bits (1839), Expect = 1.05e-258 Identity = 365/365 (100.00%), Postives = 365/365 (100.00%), Query Frame = 0
BLAST of MC05g0542 vs. NCBI nr
Match: XP_038879615.1 (putative methyltransferase C9orf114 [Benincasa hispida]) HSP 1 Score: 631 bits (1628), Expect = 1.61e-226 Identity = 325/369 (88.08%), Postives = 344/369 (93.22%), Query Frame = 0
BLAST of MC05g0542 vs. NCBI nr
Match: XP_004134144.2 (putative methyltransferase C9orf114 [Cucumis sativus] >KGN57006.1 hypothetical protein Csa_010948 [Cucumis sativus]) HSP 1 Score: 623 bits (1606), Expect = 3.76e-223 Identity = 319/368 (86.68%), Postives = 340/368 (92.39%), Query Frame = 0
BLAST of MC05g0542 vs. NCBI nr
Match: XP_008438700.1 (PREDICTED: putative methyltransferase C9orf114 [Cucumis melo] >KAA0049379.1 putative methyltransferase C9orf114 [Cucumis melo var. makuwa] >TYK17180.1 putative methyltransferase C9orf114 [Cucumis melo var. makuwa]) HSP 1 Score: 622 bits (1605), Expect = 5.34e-223 Identity = 319/368 (86.68%), Postives = 340/368 (92.39%), Query Frame = 0
BLAST of MC05g0542 vs. NCBI nr
Match: KAG6582284.1 (putative methyltransferase C9orf114-like protein, partial [Cucurbita argyrosperma subsp. sororia] >KAG7018689.1 putative methyltransferase C9orf114-like protein [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 622 bits (1605), Expect = 6.19e-223 Identity = 324/374 (86.63%), Postives = 344/374 (91.98%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy TrEMBL
Match: A0A6J1C971 (putative methyltransferase C9orf114 OS=Momordica charantia OX=3673 GN=LOC111009468 PE=3 SV=1) HSP 1 Score: 712 bits (1839), Expect = 5.10e-259 Identity = 365/365 (100.00%), Postives = 365/365 (100.00%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy TrEMBL
Match: A0A0A0LAE4 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G149370 PE=3 SV=1) HSP 1 Score: 623 bits (1606), Expect = 1.82e-223 Identity = 319/368 (86.68%), Postives = 340/368 (92.39%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy TrEMBL
Match: A0A5D3D0N4 (Putative methyltransferase C9orf114 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold434G00240 PE=3 SV=1) HSP 1 Score: 622 bits (1605), Expect = 2.58e-223 Identity = 319/368 (86.68%), Postives = 340/368 (92.39%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy TrEMBL
Match: A0A1S3AWP4 (putative methyltransferase C9orf114 OS=Cucumis melo OX=3656 GN=LOC103483727 PE=3 SV=1) HSP 1 Score: 622 bits (1605), Expect = 2.58e-223 Identity = 319/368 (86.68%), Postives = 340/368 (92.39%), Query Frame = 0
BLAST of MC05g0542 vs. ExPASy TrEMBL
Match: A0A6J1GWH0 (putative methyltransferase C9orf114 homolog OS=Cucurbita moschata OX=3662 GN=LOC111458056 PE=3 SV=1) HSP 1 Score: 619 bits (1597), Expect = 4.60e-222 Identity = 322/372 (86.56%), Postives = 342/372 (91.94%), Query Frame = 0
BLAST of MC05g0542 vs. TAIR 10
Match: AT5G19300.1 (CONTAINS InterPro DOMAIN/s: Nucleic acid-binding, OB-fold-like (InterPro:IPR016027), Protein of unknown function DUF171 (InterPro:IPR003750); Has 3649 Blast hits to 1964 proteins in 291 species: Archae - 113; Bacteria - 121; Metazoa - 1082; Fungi - 399; Plants - 227; Viruses - 4; Other Eukaryotes - 1703 (source: NCBI BLink). ) HSP 1 Score: 441.8 bits (1135), Expect = 5.3e-124 Identity = 244/372 (65.59%), Postives = 293/372 (78.76%), 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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