MC11g1028 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSutr3 Hold the cursor over a type above to highlight its positions in the sequence below.CTCTTCCATCCCGGCTCGGTCCCCTGCCAAAACCGGCAGCGCGCTCTCAACAAAACTTTGCTCTTCCGCCGTCGCTCTCTCTGTGAAACCCTCGCCGAAGGCTCACTTCCGCCGTCTCCCGAATGCGAGGACCTCGCCAGTTGCTTTAATCGCAAACCCTTCTTCAAAACCTCGCCTTTCTCTCGATCGACAGCCCGTGTTTCAGCTTCCAGCCGTTATTTTGAAGACACGAAACAAACCCAAGTTTCTTTTGCTGGAAATTTGTATTTCAAAGGTTCGTTTTCTCTTGTTTGGGTTCATTCTATTGAATAATGTCCATATTTTTGCACACCCCTCACATTGTAGGTTGCTGGCCGGAAATATTTGCTTGCTTCCACATTTCATATTGCATAAAATTTTCAGTTACTCTTTCTTGTTTATTCTTTATTGCTGTCGGACGAGTTGGGTTCCTTGTAGGTAGGAGTAATTTTGTAAAATTGGAAGAATAGTATTTTGCTGAATGTGAAGCTGGAGTTGAGTTTGGAATCCGTTTTTAACACTATGCTTCCTATTGTATTGCACGATCTCAATTCTCAGCAATCGGCCCTCCTGCCTAGGTGTAATTTTTTTTTTGGGGAACAAACTATTTCATTGATGCAATGAAATAAAGATTACAAAAAGGGAGCAACCCAACCCATATGGGTTACAAAAAAGCTCTCCAATTAGATAACAAAGAAGAAAAATTATAGTGATGAAAGAGAGGAGAACATTTAGACAAGATACTATTTTTATCTTGTTAGTGATTTCGGTATCTGGGATTTGAGGTTTAACTGGTTTAATTTGGCCTATATTTTCATTTTCAACGTAAACGTCTCTCCTCCTCTTCCTGCACCTTTAATCTTCTGCAGTTTGTCTCAAATTTTNTTTTTATTTTTTTTTTTTTTTTCAAAAAAGGGGGGGGGGGGGGTCGGGAGCGATGCTTGGATTCTCTCTTTTCCTCAAGCACTTTTTTCTTTTTTTTGATAAGAAACAAAATATGTGTATAAGAAGGCCCTAAAGGGGATACAAACAAAAGGCGGAGGGTAGAGCTAACCCTCCCCAAAGCTCTATACAATCACCACTTTCCAATCTTGTGTAAGCAAAAGAAGATCGTAGTTACAAAAAACTTTTTTGTGTAGTAAAGCCCACCAAAAAGCTAGATGCTTAATATTCACACAAAAAGAATCTAACAAAATCAACTTATCTTCAAAAAACCGTTCCTTCCATATTGACCATAAAAGAGCCCGGGCCGCACAATTCCAAAGAACCCAAGCTTTGCCCTTCAGCTGCCTTCTCCATAACCTTCAGCAATGAAATCCTCAATTCTTCTAGGAATACAGAGAGAGAAATCTAGCAAAGAAGCTATAAACCCCCAAAGACACAAAAGGGCAATGGAGAAAAAGGTGGTCCACTATTTCATTGTTGCTCATACACATTGTGCACACAGAGGAAGAAAGAGCCCAATGAGGTAATTTCCTTTGAAGTTTCTCTGCGGTATTTACCCCTCTATAGAACAAAATCCAAATGAAGAATTTTACCTTCTTTGGGACTCTAAAATTCCATATCAAGCTTGCAGTAGCTAAATTAAGTTGAGGAGAAGGGGACGTGAGGGCCATGAAGGCTGAATTGACTGTGGAATGGTCGAATGGGTCCGCTTTCCACCATAAAATGCCCCTTCCATTTTCGATAGCTGTACCTTCTATTTTTCCAGTGAAGTTTGCCCATCTACTCATTTCCCTTTCAAAGAGATTCCTTCTAAAACCAAGATTCCAGGCTAAGGCCTCTGTACACCAACAATCCGCAATGGACATACCTTTCTTGGAGGCTACGCAAACAAATCCGAGAAAGTGGTGGAAAGAGGGGCAGAATCAATCCATGGGTCCTCCCAAAATCTGACTTGGGCACCCGAGGATACTCTTTTCCTCAAGCACGTATGTAGATCAGAAAACATTTGTGGGATTCAAGATTGTGATTGTGATAAAGTAAAAGGATGAGAGTTCGTTGAGGTCTGGGCTTGAAAGTATATCGCAACATTTGTTTGTTTTTCCTCCATTCTTAATTCTTTTTAGATCCGATTATTTTCTCCATTATTCATTTTGATTTTTGCGAGAGTATAGCTGCCAATCATGATTAGTGAGTCTCTGTTAGGCTGTGTCATGCTGTCAAATCTTATGAATTCTTCAATGATGTGTAGTACTGTGTCGTATTTTTACAAAACCTGATTTGTTAGTCCATTACAGTAGTGTTTACATGCAATTAAAAGAATTAGAACTGTCAAGCAATAGATGCTGTGCCCAGGTAGAACATGGTGTTGAATTGTTGAATGCAATGTTCATTTTCAAAAGTAGGTATAAATTACTTTTTCCTAGATAACCACTTTAACCCTACCCGTATTACATGTCATCAATTTTGCTTATTTTTCCTGATGGGAATTTCAAGCCTTGCCATTTGATAGTGCTCCACATGGATTGCAATTTTCATATTGGAAGATTGTGTCTGTTTTCATCATTTTACGAGACTCAAAGTTTACCACTTTTCCTTCCTATTTTTTTTTTCCTTTTTAGCCCAGGCTTGTTTTTCCCTTTAATTGTTGATGTTGACTTATATTTATACAGAATATTTGATGACAATCCCTGATAAATTTCTGAGGAGACAGTTTAGTCTTTGAATGTTTGTATTTCAATATATTTTCACGTTAGTCATTTCCCCTTTTTGCTGACCATCCATTTGATTGACTTCTGATTCACCCTTCATTGTCCATACTATCTGTCAGACAAGCGAAAGTCCTTTTGTGATTGATAATTTTGTATTTCTTATATTTCTTGCAGGTGGTCTTGTAATAGTAGTAATCATTATGTCGCTTTTTAAACTTTCAAGGAATGGAGTTAGGATGATAAAAGAGCTCTTTATTGGTATGCTATCCTCCCTCATTTTAAGTACCTTTATATTCTTGTTTCTTAGTGCACATCTATTTGGACATGTGGTGGTCTTCTAGGTCGTCAGTAAGAGGGTATTTTTTACCTTTCGATTGATCCTTTTTCTGAGTTTATGTTTATGAGTCCTTTACATGTTTTTTGCAAGTTCCTTTTCCATTGAACAAAAAGAATATTCAGTAGCTGTGGTGAGTGTCCTTTTCTAGAAGAAGATTGATTATGGAGACTAGTGTGGGTGTTACTAGAATAACAAAATTTCATCAACCAAAAAGAGACAGAAATTAGAAGGATAAATCATTTTTTCAGAGGCCAAAGAGTTACAAAGAGGCTTTTAAAAAAAAGCCCCCTTTATTGACACTTTTTCATGGTCATTTCAACTTATCCTTCATTAAATAGGTCTCCCTTACTTGATTTTCTTCTTCTCACAATCCCTTTCACAATTCAACTATAGAAAATTAGAAATCTTAAGAACTTGAAGGCTTGAGTTGACTTTACTTTTCCAACATATTTAGGGTTTGATTCTCTGTTTCAATAAAGAGGATTGTTAGGATCTAATTACTTAGGTCCTTTAGTTTAGGTTCTTTATTTTGTTTTTGATTTCTCGTCATGTTGGTTTAGGACTTATTCCCTTAATGAATTATGGAAGTTTAGGTTACCAATAACTTGAGAGTTTTTAGAGGAGGTTCAAAATTTCTTGCCTCAATTTGAAAATGCAACTGTATATACTTTGTATTAGTGTTTCGGAGCACAAATGTCATCTCTTTGTTCCTTTCTACGATTTATTGGACATGTTTCTTCGTTAATTTAGGGTCAGAGACTCAGAGTTCAGTAATGTTACATGATGCAGTAATGTTAAAGTCGCTTTGATGGATTCTTTTTTTGTGAATATCAAGCATACGACTTCTTGGTGGGCTTCAATCCACAAGAAGGTTTTTTGTAATTACAATCTTATTTTGATTATGCAAGATTGGAAAGCTGTGATTGTATAGGCTTTAGTGGAGGGTTCCCTCTACCCTCCGCTTTTAGGTTGTTTCTCCCTTTGTTGGGTTTTTGATTCTTGAATATACCACCTTTTGTTTCTTATAAAAAAAATTGTTTCTGATTAGACTTTTGGTCCATTTTTCCCCAACAGGACAGTCTTTACTGGTGACTAAAGCAAACTACATTCGGGGGCCATTTTTCAATTATTTGCAACCTCTGGTTTGTTAACTTCTAGTTTACATGAGTATAAGTTTTTCCTTCAATATTCAAGCTATTGTTGTTGCTCAGATTCACAATTGATAACTGATATGAATTTAATAATAGCTATATTAGTTCATGAGCCAATATTTGGGCCACAACACATTAAATAATAGATACATTAATGTGGATAATCAATGCCAATTGAGACTTCGTCACTTTTGTGAGTTATTCCTGGGTTTTAGTTCTAAGTTATTTCGTAACATCCTTTTTATTTAATCAATGACAATTGGGATTTTTATTTGGCTAACATTTGGGTTTTTGATGGCCTTGTCCTTTGTACTTATCATTTATCGACAAGTGGTTTTCTATGAGGAAAGAAATATTCATAATTTCATCTTAACTGGATGCTGGAAACTATTTCAGATTTATTATTCCCTTTGAATTCTGATCTTTACCATGATGTGAAATTTATTATTTTATACATCGTATATTGCTTCACAATCTGTGATAAATCTTTTTTTGTCTTAAAGCATTTTATTTTATTCTTCAGCCATAGTTAAGGATAAATAGGCAATATCTAGCCTATAGCTTCTAGAATAAATTTGAATATGGATAGGTCACTAATAATGATAAAGGATACTTCAACTATTTAATGAGACATGGTGTGCGTAACGTTGGCAATTTGGCATTAGTAGAGGTGAGTAATAGTGGGACCCTTATTTTTTTACAGCCTCAGGCACAAGTTCAGGTGCTTCAAGGTTTCAAATGGCCGGAGCAGCGTTTGTATTCTACCTCCTCAGGTCCTCAGAATGGCAGTATTGAAGAGAGTGAGCAAAAAGAAACGTAAGTTATTTTAGCTTTTTACTTAACATATATACAAGAAGACTTTGATTGCTGAATCACTATCATTGATTAAGATAGTATGTAGATGCACTGTACATAATACGAGCATGACCCGTGGGGTTTGGAGCACCAGTATATGTTCAAGTTTTCATGCATTTCTCTTAGACAGTTAGTTAATAACCCAAGCACGTCTCATTACTGATTTAGTGTTGTGTATTTGTGGCTTTTCAGAAACAGTTTTTAAAAATTTTCATTTGAATGGCATTTCTCAGTACTTTTTGGAGAACCAGTGGATATAATATAGATTGTACAATTTAATTTTTTACACTAATTATACAATTGACTTTCTGTTGATGATCACGGAGTATGAGACACTAGAGACTATAGAGGTACAACCGTAGGTCCACCTCCTCTATTTAGGTCCAAAATCTTGTAAAATGTTGTTAAGCTTGAGGAACATCCTCTTCTTAAATCAACTTCCTCCAATTTGTTGTAAAATTTTGTACCACTTGTTTGGCCTTCAATTATATAGTATACTGACATCCCAGGTAAGTCTGCATTTGAATTATTCTGTTGATTCTTCTGTATCAGAAACTGTGATTTGCAGGATATCCGTTACATTTGTCCTTAAGGATGGAGAAGAGCAGCAAATTAGAGTTCCCACAGGAATGTCTATGTTAGAAGCCGCTCATCTGAATGATATAGAACTTGAAGGTAAGGAGTTTGATTCCTCCTGCTCTGAAAAGCTTAGGGTCGGTTTGACTACCATTTTGATTTCAGTTTTCTGTTTTTAAAAATTATGTTTGATTTTAGAAAATAAGAACAAGTTATTAAGAACTACGTCTTTTAGTTTTCAAAATTTTGGTTATGAAAACATTTTTAAAGAGTATATAATAAAAGAAAATTCAAATGGTTATTGAATGGGAGCTTTAAGTATCCTCTATTATCTCGTGTGATTTTGAGTATTAAGATGAAGTGTGGTATTAATATATATACACACTTTTTAATTATTTAAGCACTTCCTTTGATTAGCTTAGCGTAGATAATTGCATTTTGGCTATTGAGTTTCTACTTCCTTATTTAAAGCACCGTTTTCACTCTCATACCAGGTGCATGTGAAGGTTCATTAGCTTGTTCAACTTGTCATGTTATTGTGATGGTAAGTAGGTTTTTTAATTTCTTTCATTTTTTAAAAATGATTATATATCTATATATATAGATTTGTACAATTGTAGACTTGAATTTTGTGCTTAACCTGTTAGAATCACATCACAGGATATGGACTACTACAATAAATTGGAAGAACCCGTTGATGAGGAGAATGACATGTTGGATCTGGCGTTTGGGCTTACAGAAACGTAGGTATCTTGTGCATAAATTAGGGAATTATCATTATTTACGTCATTTACACCGTTCTTTAGTTTCCTTAATATGTTAAATGTTTCAATTTCATCTCCAACGCTTAAAACGTTTGCATCCAAGTTCATGTTCCATAACATCAAAATGGAATTATAGGATAGTGATGTAGCATTTGGTATATCTTGTCATAATGCTTAGGTTATTCTTTTAATTGAGAGGTATAATATATCATCTGATACTATCTCACTGGACGAGTTTTTAGTTCGGATAAAGAAATGTAGAGAATGAAAGTAAAACTCTTAGATGAGATTGAAAAAATGACGAATATACTCGGGGATCTAATGGTATAGTTAGCCCATTTTTGTTAAGCATAAACTTTGTTCGGATTCTGCAGGTCTCGTTTGGGATGTCAAGTTATTGCAAAGCCAGAACTTGATGGAATTCGTTTAGCCATTCCTTCAGCCACCAGAAATTTTGCTGTTGATGGCTATACTCCAAAACCACACTAAAAGCCTTTTGCCAGGAGAAGAGGATCAAACAAGGTTTACCCATTAGATTTTTTTTAGCTCTTTTATTTGTTCCATCAGATTTATTGTCGTGATCAAGTTCTACTAAAGGAGGTAGATTAAAAAATTTTGATTTCTGTTTTTACTTTTCAGAAGTTTTGAAGCTCACTTTATGTACTTTGAGGTCAATAATTTATTTGAAAATTCTTGGTGATCCTCATATATTTGTTTTGTTCTTGC CTCTTCCATCCCGGCTCGGTCCCCTGCCAAAACCGGCAGCGCGCTCTCAACAAAACTTTGCTCTTCCGCCGTCGCTCTCTCTGTGAAACCCTCGCCGAAGGCTCACTTCCGCCGTCTCCCGAATGCGAGGACCTCGCCAGTTGCTTTAATCGCAAACCCTTCTTCAAAACCTCGCCTTTCTCTCGATCGACAGCCCGTGTTTCAGCTTCCAGCCGTTATTTTGAAGACACGAAACAAACCCAAGTTTCTTTTGCTGGAAATTTGTATTTCAAAGGTGGTCTTGTAATAGTAGTAATCATTATGTCGCTTTTTAAACTTTCAAGGAATGGAGTTAGGATGATAAAAGAGCTCTTTATTGGACAGTCTTTACTGGTGACTAAAGCAAACTACATTCGGGGGCCATTTTTCAATTATTTGCAACCTCTGCCTCAGGCACAAGTTCAGGTGCTTCAAGGTTTCAAATGGCCGGAGCAGCGTTTGTATTCTACCTCCTCAGGTCCTCAGAATGGCAGTATTGAAGAGAGTGAGCAAAAAGAAACGATATCCGTTACATTTGTCCTTAAGGATGGAGAAGAGCAGCAAATTAGAGTTCCCACAGGAATGTCTATGTTAGAAGCCGCTCATCTGAATGATATAGAACTTGAAGGTGCATGTGAAGGTTCATTAGCTTGTTCAACTTGTCATGTTATTGTGATGGATATGGACTACTACAATAAATTGGAAGAACCCGTTGATGAGGAGAATGACATGTTGGATCTGGCGTTTGGGCTTACAGAAACGTCTCGTTTGGGATGTCAAGTTATTGCAAAGCCAGAACTTGATGGAATTCGTTTAGCCATTCCTTCAGCCACCAGAAATTTTGCTGTTGATGGCTATACTCCAAAACCACACTAAAAGCCTTTTGCCAGGAGAAGAGGATCAAACAAGGTTTACCCATTAGATTTTTTTTAGCTCTTTTATTTGTTCCATCAGATTTATTGTCGTGATCAAGTTCTACTAAAGGAGGTAGATTAAAAAATTTTGATTTCTGTTTTTACTTTTCAGAAGTTTTGAAGCTCACTTTATGTACTTTGAGGTCAATAATTTATTTGAAAATTCTTGGTGATCCTCATATATTTGTTTTGTTCTTGC CTCTTCCATCCCGGCTCGGTCCCCTGCCAAAACCGGCAGCGCGCTCTCAACAAAACTTTGCTCTTCCGCCGTCGCTCTCTCTGTGAAACCCTCGCCGAAGGCTCACTTCCGCCGTCTCCCGAATGCGAGGACCTCGCCAGTTGCTTTAATCGCAAACCCTTCTTCAAAACCTCGCCTTTCTCTCGATCGACAGCCCGTGTTTCAGCTTCCAGCCGTTATTTTGAAGACACGAAACAAACCCAAGTTTCTTTTGCTGGAAATTTGTATTTCAAAGGTGGTCTTGTAATAGTAGTAATCATTATGTCGCTTTTTAAACTTTCAAGGAATGGAGTTAGGATGATAAAAGAGCTCTTTATTGGACAGTCTTTACTGGTGACTAAAGCAAACTACATTCGGGGGCCATTTTTCAATTATTTGCAACCTCTGCCTCAGGCACAAGTTCAGGTGCTTCAAGGTTTCAAATGGCCGGAGCAGCGTTTGTATTCTACCTCCTCAGGTCCTCAGAATGGCAGTATTGAAGAGAGTGAGCAAAAAGAAACGATATCCGTTACATTTGTCCTTAAGGATGGAGAAGAGCAGCAAATTAGAGTTCCCACAGGAATGTCTATGTTAGAAGCCGCTCATCTGAATGATATAGAACTTGAAGGTGCATGTGAAGGTTCATTAGCTTGTTCAACTTGTCATGTTATTGTGATGGATATGGACTACTACAATAAATTGGAAGAACCCGTTGATGAGGAGAATGACATGTTGGATCTGGCGTTTGGGCTTACAGAAACGTCTCGTTTGGGATGTCAAGTTATTGCAAAGCCAGAACTTGATGGAATTCGTTTAGCCATTCCTTCAGCCACCAGAAATTTTGCTGTTGATGGCTATACTCCAAAACCACACTAA LFHPGSVPCQNRQRALNKTLLFRRRSLCETLAEGSLPPSPECEDLASCFNRKPFFKTSPFSRSTARVSASSRYFEDTKQTQVSFAGNLYFKGGLVIVVIIMSLFKLSRNGVRMIKELFIGQSLLVTKANYIRGPFFNYLQPLPQAQVQVLQGFKWPEQRLYSTSSGPQNGSIEESEQKETISVTFVLKDGEEQQIRVPTGMSMLEAAHLNDIELEGACEGSLACSTCHVIVMDMDYYNKLEEPVDEENDMLDLAFGLTETSRLGCQVIAKPELDGIRLAIPSATRNFAVDGYTPKPH Homology
BLAST of MC11g1028 vs. ExPASy Swiss-Prot
Match: Q8S904 (Adrenodoxin-like protein 2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=MFDX2 PE=2 SV=1) HSP 1 Score: 226.1 bits (575), Expect = 5.2e-58 Identity = 124/201 (61.69%), Postives = 145/201 (72.14%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy Swiss-Prot
Match: Q9M0V0 (Adrenodoxin-like protein 1, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=MFDX1 PE=1 SV=1) HSP 1 Score: 220.3 bits (560), Expect = 2.9e-56 Identity = 116/197 (58.88%), Postives = 141/197 (71.57%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy Swiss-Prot
Match: Q1RJ69 (2Fe-2S ferredoxin OS=Rickettsia bellii (strain RML369-C) OX=336407 GN=fdxB PE=3 SV=1) HSP 1 Score: 152.9 bits (385), Expect = 5.6e-36 Identity = 71/108 (65.74%), Postives = 91/108 (84.26%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy Swiss-Prot
Match: Q9AKM6 (2Fe-2S ferredoxin OS=Rickettsia montanensis OX=33991 GN=fdxB PE=3 SV=1) HSP 1 Score: 152.5 bits (384), Expect = 7.4e-36 Identity = 68/106 (64.15%), Postives = 89/106 (83.96%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy Swiss-Prot
Match: Q9AKH1 (2Fe-2S ferredoxin OS=Rickettsia rickettsii OX=783 GN=fdxB PE=3 SV=1) HSP 1 Score: 151.0 bits (380), Expect = 2.1e-35 Identity = 67/106 (63.21%), Postives = 89/106 (83.96%), Query Frame = 0
BLAST of MC11g1028 vs. NCBI nr
Match: XP_022139381.1 (uncharacterized protein LOC111010328 [Momordica charantia]) HSP 1 Score: 393 bits (1009), Expect = 4.28e-136 Identity = 197/197 (100.00%), Postives = 197/197 (100.00%), Query Frame = 0
BLAST of MC11g1028 vs. NCBI nr
Match: XP_022940672.1 (uncharacterized protein LOC111446195 isoform X1 [Cucurbita moschata]) HSP 1 Score: 361 bits (927), Expect = 5.55e-123 Identity = 191/229 (83.41%), Postives = 199/229 (86.90%), Query Frame = 0
BLAST of MC11g1028 vs. NCBI nr
Match: KAG6607763.1 (Adrenodoxin-like protein 2, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 360 bits (924), Expect = 2.69e-122 Identity = 189/219 (86.30%), Postives = 196/219 (89.50%), Query Frame = 0
BLAST of MC11g1028 vs. NCBI nr
Match: XP_038896767.1 (2Fe-2S ferredoxin-like [Benincasa hispida] >XP_038896768.1 2Fe-2S ferredoxin-like [Benincasa hispida]) HSP 1 Score: 354 bits (908), Expect = 9.79e-121 Identity = 180/197 (91.37%), Postives = 188/197 (95.43%), Query Frame = 0
BLAST of MC11g1028 vs. NCBI nr
Match: KAG6592079.1 (Adrenodoxin-like protein 2, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 356 bits (913), Expect = 1.31e-120 Identity = 186/238 (78.15%), Postives = 204/238 (85.71%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy TrEMBL
Match: A0A6J1CCH2 (uncharacterized protein LOC111010328 OS=Momordica charantia OX=3673 GN=LOC111010328 PE=4 SV=1) HSP 1 Score: 393 bits (1009), Expect = 2.07e-136 Identity = 197/197 (100.00%), Postives = 197/197 (100.00%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy TrEMBL
Match: A0A6J1FK98 (uncharacterized protein LOC111446195 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111446195 PE=4 SV=1) HSP 1 Score: 361 bits (927), Expect = 2.69e-123 Identity = 191/229 (83.41%), Postives = 199/229 (86.90%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy TrEMBL
Match: A0A0A0LGK9 (2Fe-2S ferredoxin-type domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G769620 PE=4 SV=1) HSP 1 Score: 353 bits (907), Expect = 6.73e-121 Identity = 179/197 (90.86%), Postives = 187/197 (94.92%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy TrEMBL
Match: A0A1S3CJQ1 (2Fe-2S ferredoxin-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103501227 PE=4 SV=1) HSP 1 Score: 350 bits (898), Expect = 1.57e-119 Identity = 176/197 (89.34%), Postives = 185/197 (93.91%), Query Frame = 0
BLAST of MC11g1028 vs. ExPASy TrEMBL
Match: A0A1S4E4Q5 (2Fe-2S ferredoxin-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501227 PE=4 SV=1) HSP 1 Score: 346 bits (887), Expect = 7.97e-118 Identity = 176/199 (88.44%), Postives = 185/199 (92.96%), Query Frame = 0
BLAST of MC11g1028 vs. TAIR 10
Match: AT4G21090.2 (MITOCHONDRIAL FERREDOXIN 2 ) HSP 1 Score: 226.1 bits (575), Expect = 3.7e-59 Identity = 124/201 (61.69%), Postives = 145/201 (72.14%), Query Frame = 0
BLAST of MC11g1028 vs. TAIR 10
Match: AT4G21090.1 (MITOCHONDRIAL FERREDOXIN 2 ) HSP 1 Score: 226.1 bits (575), Expect = 3.7e-59 Identity = 124/201 (61.69%), Postives = 145/201 (72.14%), Query Frame = 0
BLAST of MC11g1028 vs. TAIR 10
Match: AT4G21090.3 (MITOCHONDRIAL FERREDOXIN 2 ) HSP 1 Score: 226.1 bits (575), Expect = 3.7e-59 Identity = 124/201 (61.69%), Postives = 145/201 (72.14%), Query Frame = 0
BLAST of MC11g1028 vs. TAIR 10
Match: AT4G05450.1 (mitochondrial ferredoxin 1 ) HSP 1 Score: 220.3 bits (560), Expect = 2.0e-57 Identity = 116/197 (58.88%), Postives = 141/197 (71.57%), 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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