MS010133 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAGGTAGCTCCCGAAGAAAGTGAAGACAAGGGCATCGGATCCTCAATTTCATTACACTCCCTTCGTTTATGGAACCGAATTGCAGCATTTTTCCCATCATCTCGCGATTCCAATTTTCTTTGGAAACTTTCGAGTTTCCTTCGCCGGAGGAGACGTAAGACTGGTCTTCCTCTTCCTCTACCTTTGTACTCGACAAACTCTTCCCTGTAAGTCACTTTTATCTCGGTGGAACTGGTTTGTTAGATTTAGCCAAATACGTGTAGAATTATTATTGTCAATGAGGAAGGAAAAAGAATGGAGGAGATTTGGTTCGATTGTACTCCTCGTCTTTGCTTGTAAGTTGTAATATATAGCATCATTACTTCTGTTGAAATGCATGTTTGTTATGCGGTTTATAGTTGCAATTGTTTTTATCTTTAATGACACGAGTCCTCACTCTGTAGTGCCGGGCGAAATGGAAATTGATTTCCTTAATTTAAATTTTCACGGGAAGTAAAGGCCAAAGCAACGATGATGTATGTTCCCTAAAGAAATTTTCCCAATGACCACCCCAATGACAGAAATTCCTACCGAGTTGAACCTTGGGTTTTCTTAAGCAAGAAGGGTTAATAAAATAAGTAAACCAAGAAGTAGGTTGGTGCAATATAATGGATATTAGTAATCAAGGCCTCAGGTTTTCATATTCGCTTTGATCATTATGAAGACGTTTCTGTTGTCCTCGATTACTAATATCCATTACATTGTACTCTCTACTTCTTGGTTTACTTATTTTATTAACCCTTCTTGCTTGAAAAAAATAATTTAGAAGCTTGGTCTGTCTGGGTCTTCTTATACCAAATCTTAATTTATTGTTGGATGCTTTGAATTCTTCTCAAGTTAGTATCCAGACCATCTGGTGATTGAAGGTGATTAATAAGGTTTGCCTCTATAATTGGTTGCTAGCTATTGGGGATTTTTTATTTCATAAGAAACAATTTCATTGATGGGGAAATGAATAGTGAATACCGATGAGTGAACTCAAATTAGATACAATAACCATAGTAGTTTTTATGACTTTTTTCATTATATAGCCTCATGTCGAAGTGTCTTCACACAGAAAATTGTTCGTTGACCACCTTGTTTCTCTTGATCGACCTTGATTGGAAGGTTTTATATGTAATAGGTTTATTTCATGGGCATTTCCTCCGCCCTGATGTTAGTTTGTTTTGTTTATTCATTTTGATATGAGTATATGGTCTCTTATAAAAAAATTAGATACAAATAATATTGGCTTAAACATCAACAGAATGTTATTAACTTTATTGCTGTGGTGAAGCTACGTGAGCTGAGTTTAAAAATTTGTGAGACAGTTTGGTCAACATCTGGTGAAGGTGTTAGAGGATTGAGACGAACTTTTATCATTATTAATCTCAACAGATTGTTATTTGCCAAAAGGCAAGCGGGATCATTGGAAAGTCCATTGCCCATTTTATTTGTAACCTGGCTTTCATCTGTTTTGGCATCTTGCGCCTATCTTTCAAGTCATAATGCTATCTACCCGCAAGAGAGATTATTTATAAATCCACTGCCATCTGCGCTAATCATTTAGACTATAATTCTAACTTTATAATTTTAATGTAACTTATTGAGGGAGTTTCGATAATAAAAGCAGACCTTCATTGAAAGTTAGTAAAATTCAGTCAATCATATTCTGCCAAATGGACTGAATATTTCTATTTTATTGAGCATACAAGACCAACTGTTTTCATTTTGTTAAATCCATGGAAACATTACAATTTTGGTAAACTTTTTGGACCAGATAACGTATTAGTGCTAATACTTGGGGTTTTTATTTTTATTTTATTTATTTTTCCTATTTTGAATCTTGAGGACACACTTAATATTTTGGGTTTCATTTTCTATTTAATATAGGATTTTGTTTTAGACAAATTTTTGAATGTGAAGTTTTATTCCAGACTTTACACCTACGATCTGTATCCTTTCATGACTGTAAGTTCTTACATAAAATCAAGTCCAATGTTTATATTTCTGTATAACATATTGGAATAGTTAGTCTCTATTAATTAAAAGCATAATTTTCATGTGAGAATAAATATAGATGCACGATTAGGACTTACATTTAGTCAAAAAGTTAATTCTATATATTTTCTTCACATTGATTTTTGTGTTTAAAGCTTGAGTTGATTGTTGGGGATCTTTTGCATCAGTTGATGCACATTGTGACATATGTAACATGTGATAAAATTCAATGATACTTCATGTCAGAACTATCTGATTATTGCGAGGAATATAATTTTTATGCCATATACATACTTTGTTGACAAATGGATGTCTGCTCAATTTACTTGGTTCATGGAAACTGCAAACAGTTTAACAGTAACAGGCAGGGAACCAGCAGAGGCATCTAGGCTGTATGATGTTTTGGGCGATCTTTTGGAGCACTGTTTCTCGAATTTGCATAACATTTGGAAGAACTTGCAATTCTGGCAATCTCGTGCGGAGGTTAGTCTTTTGTTGCCTAGTCCTTTTAATAAATTATTTTATGTGTACAGAGATTCCCGGAAGGAAATTTTGGTACACTTAAGTTTGTCTTTCGAGTGTCTTCAAAAGACCCATTACCAAGTATATTTTCAACATGCAACATTAGATTATCACAATGATACTCTAGTTGTCCCTCCTCATGCTTCTAGCATCTTCCACTCTATCTAATCAATATATAGGGGTTTCAGTTCTGTTCACCCAAAATATACCAAAAAACTGAGAAGAATGTGTCTCCCTAAAAGTAGTTAGGAGCAATGATGAAATCTTCGTGTATGTGTACGAAGATGCTAGAATGGAAAGTTTGCTTAGTCGATTTGGGGGCAGTTTTTGGAGCCTTTGATAATCTCTGGGGCGAGAAACAGAGATTGCAGAGTGATGGTGTCAGAGGTTTTGTTGTATCCCCTTTCAGGATAAGGGTAAAATTTTTTGGCAGGCTTGTTTTTTTTACATTTCATGGGGTATTGGATTGAGAGAAACAATATAGTTTTTAGAGGTCTTGGGAGGCTACTTGGAGCTTATAAGATTGAATACTTCTTCGTGAGCTTCTGTTACTAAGGAGTTTAAGTAATTATTAGTTAAGTGTTATTTTTTTGGATAGGAGTTTAAGTAATTATTAGTTAGGTGTTATTCTTTTGGATTGGAGCTCCAGACTTGACTTCCTTTTGTAAGATTGATTTTTTTGTATGCATTGTACATTCTTTCATTTGTATTAATGTAAGCTCAATTTCTTAAAAGAAAAAAAATGATAATAAAGGATCTTTTGCAACATATCTTCAGTAATGATCATTTTGCAATTCTCCTGGAGAAGTTGAACCTTTTTTTGGCACCTTGTCATTCTAAACCAACTCTTCAGGAACAAATTCAATTGGAATCTAAAGAATATGAAGGAACTACAATGAGAATTTCCTCTAGTCAAAAGTTATTACCTCATTATTGATGAAAGATCTGTCGGTCCCTTTTCAATTAACTAAGCTCAATAACTTTTTAATGAAAAGCATATGATTATTATCTTTCTAATGCCTGTTAAATTTTGGTTGTGTGTTTTATGCCATTATTTTCATGAAATTTTCAGGGTACAAATGCTCAAAAAGTTTACTTTCTGATTTGTGAGAGAGGTCCACGGGCTTTTTTCAGTGGAACAGTGCAGTTAATACGCCAAAGTTTTACGGATGGTTTTTCTTTACAACATCAAGCTCGTGATGCATCTGTTTACATAGCCGACCGGATAACTATATTGAGTAACTTAAGATGTCATCTTGCAGTTTTTGTGGCTCAGGTTTGATTGACCTTCTCAGCACTCAAATTTTCAAACACAATTTTATTTCTCTTGCGGTTTTATTCTATCCTTGAAAAGTTAGTCGCTCCTTTGAGTCTCACTTCTATCTCCCTCTCTCTCTCACACGCACACTTCCTGGATATGGACCAGTGAGACTGGAAAATTAGTTGGAGATCAGATTTGGAGCCTTTTTTGGCTTCTTTATAGGCTTCTGAGACAATGTTTTCTTAAATAGCTCTATTCTTTAATCATATAATGTTCTCTTAACTTTTATTTTCTTTATTCTAATTTTTTTAGGTAGGAAACATGATTTCTCAAAGAGGTCAAATATGAAAGGGGAAAACAAAAAATCCTCCCATTTAATGGCCAAAGGAGATAATAGATTAACCTCTCCTATTGGATTTAATAACGGTGTTTTCACATGCCCTTTCTTGAGGTGGTCTCGCCAAAAATAGAGGAGTGATACCCAAATTTCTATCTCGACTTGAAGTAGTGTTTACCATATGAAAGGGATATGGAAGATGCAGTCCATCTCTTTTGTTTTTCCCAGAGGCACTTATTCTGTGGAAAAAACTGATAAAGGTGTTTCATTTTAACCTCCCCCTTCTTAGTTTGCTAAGGTTTAAGGATTTACTTGCAAGGACTTTATGGTTACCGCTTCAAGTAGACAACATATGTAGCTTTGAATGGTTTTGATGGGCTCCCTTGAGCAGTTTGGACTGGGTAGAGTAGACGAATCTTCAAGGATGGAGTCATAAGTTTTGAACCAGTTGGAAATATTTTTCTAACTCCTTTGGTCCTTCACCTCGTTGCATCCATCAATAATGAAATATCAATTAAATAGTTTCTTACAAAAAAGTGTTAAAGTGGCCTTTAAATACTTGGGAGCTGTTGGATGGAAATAATTTTTCAGAAACTTTTTGGGTGGTAATGAGTGAGAAACTTCAAGGGCTTTACAACGATAATGAATGCTTGCTGATCACAAGGGAACTTCTCCTCACCCTCTCTTTCTGCCTTTCCTTCCTGCGACGGTTTAACTGATGAACATTTAAATTTTAGCTCTCTCAAATTATTTTTGGCTTATTTTGACTTTGTTCTGTCATGGTTCTTGTAGGTCTTCATAGAAATTGACAGAATTGGGGCAGAAGCGGTGAATGATCCAGAAAATCACTTGCCTTCATTGTTGCTTACAATGAATGGCTTATTTCTCAATCTAGAGGCATCCATTTGTCAACTGCATGCAGCATATCATGTAACATTGAGATTATTTGTAAATTTATTGCTTAAAAACGCTGAAGCAGAATGCATTCCAATTTCACGTTTCAAGTCCCAATGTCTACTTTGTATACAACTATGCAGATGGATTTTATCGATGGCAGCTTTTTATTTCCACTATTTGAAAAATTACCAGATGTGAATAAGGAGGGATCTCAGTGGACAAGTTGTGAAATTGGAGACGCCATCAACTTGCTTTATCAGAACCTTCACAAGTTGGACTCTTTCATATCTTTTCTCGTAAGATCTCATTTCTGATGCTCCTATTATTACTTTTGATTTTGCACCCTCGAATAGTTTGGTGAATCAAAATAATTCTAATTTGATCTGTTTCAACTGTTTGAACCTCTGGCCACAAATTCTCAATCAAAGGGAAGACGATGACCACTTTTTAAAGCTGTTTGATAATTTAGAATTCCACCTTTATGCAAACAGTATATAAATTTAAGATTATTTTATCATGTAGTGTTTTGAAAGGGATTATTATTAATGATCATAGCCTGCCCTGTGAGCTCAAAATGAAAGCTGGTTGTCTTTCCCTTCTCTCCGGGGGGGTTCTTTTGAATATATTTTGCCAGTTTCTTGTAAAAAGATGAATATTCCAAAACAGCAACCCTTGACTTCACAAACAGAACTAACGGACAAAACTTGTCAAAAACTTCATAATAAGAGCCATAATTTTACTAAGACAAACACAAGCGTCAAAATAAAATAAATCCTGTCTTCACGATCAAACAGGAGCCTAATTCGTAAGTCTATGGATCCTCTTCACTAAGCAGAGTTGATTTATGTGTTTTCCTCATGAGGCTTCTTGTTGTATTATTCCTTACCATAGTATGAAGTATTGATGTGCACCTATCTTTTATTTTTTAGGTTTTCAAACATCGAAAGCCAAAGAAACTAACTCAATACTGGCTTGGATATACTTGTGGTGTAATTGGTCTTTCAGTGTGTTCTGTTTGGCTTCTTCAACATAGTAGCTTAATGGGGAGCCATGACCTTGAGAATTGGGTTCGTGAAGCACATAATTCAGCAGCTAGCTTTTTCAAGGACCATGTAGAACAACCGGTATTATTTTTACTAAGCTGATTTGATTTTCTTTGTCCCATTTGATGATCTGGAGCTCTATTGTCAATTTTCTTTACCATTGTAGTTTCTTTTTCTTGGGTTAGGTCTTTAATTACTTTTTCTTATTAGGAGTAGAAAGACAGACTTACTAAGCCATTCAGGGCAATAGATAGAAAAGCCAACATAAGAATGAGCTTTATCCAAAATTTGCTTACATGAGATGCACCGGCTAGGAATTAAGTACATTTCAGGAAAAAGAAAAACTAGGAATTAAATAACTTTGAAGTCTCTCTTCATGTCACAATGGATCTTTCTTCATTTATAAATTGTAAGAAGGGATGTTTCGTTTCTCAGTATGAATGGTTGAGTAGAATGATCATGCCTTTGAACCAATGAGGAAAAGAGAAGTGGTTAAAGACTTAGAAGAGTCTATTTTAAGGGAAATCATTGTATTGTAATCTTATAGGACGTTAGCTTAAGTTGTGGATAGAAATATAGTTTTAGTCGGTGGAGCTTGAGGGAAGGGTTAGGTTACTGTCAAGGCTTCAAGTCAACTTAGAAGTAACCTAATTCTTCAGGATAAGTCAATACTGTTGGTCGGAGGAGATGATTGAGGGTATTTATTCCTTCCCTATTAAATTCTCTATGCATGATGACCAATCATTGGTGGTACGTGTTCATTATAAAGGATTTATGGGTAGAGCTCGGTCGACGGATGCTCCTATTACACTCGTAGTATCTGAAAGATGAGAACCAACTATGTAGTATGACATCTTTTTGGGCATGATGATGATGATCATTGGGGTCTTGGAGGGGTCAGGGATCTTTAATGTTGCCGTTGAGTTGAGAGACTTCAAATTTAATTTTATTTATTTTTAGCCAGGTGATCCATATAGCAAAAAAAAACTTGTCTACCTAACGCTTCCGCTTCCCCAAAATAGATTACTATCAGTGTTTGGTTAATTACTATTATATTAGTTGCTGCATAGTTGCGTAGTTTCTTATTGTTAGTGATTAGTTAGTTATGGCAGCTCCTACAAACAGGGTTTGGTGCCCATGCTAGGGTGCATCAACGAATTCTACATTAATGTAACTTAATAATGATTGATTACTAATGGTTGATATTCTTACTCCCTATTTTGCAGCTTATTTCCATAAGAGACGAACTCTTTGATACATTTAGAAAGAGGCATAAAGGTGTCATGGAGGTTGAAGAGCTTCAGTTAACTGCTACCTCGCTGCACAGGTGATTGATTGTCTTTCATATACTTGATTTTTCTCCAAGTGAGGACTAAACTATTTACTTTGAGCTCTTAGTTTAACTTTATCATGAGAAATGCCCATCTTGCACTCCTTAATTGGTGTCTCTAATCATAAAATTGGGGACTTCTTAGAACTCAAGGACATAGAGGTAAAACCTATGGAACAAATCCGGTTCAAGTAAGGTCTTTAAAATTGGGGACTCCTTATAAAATTGTTTTAATCTTTTAATGCACATTGAAATCCCTATTTATAAATTTGTGATTTTAAACGGAAAAACAACTTCAATTTTGTTTTCCTGAAAAAAGGTCATTTATTTCCCACACTATTAGAAAATAAGAAAAAATAACTTTTAAAAGACAATTATCCAAACATGTTTTAAAGAATTTTTGTTCCGAATAACATAAAACTATGTCAAAAACAATTTTCAAACAACCCCTATTTACTCATCCATTTGGGATGAGTATGACCTGTGTCAATATGATGGAGGTTGATGACATTTAGTTAACTTTTATTCTTTCCACATGATATTTTCTTCCCTGCCCATTGACTTTTACTTTAGACTAATAATTGATAAAGATTAGGTTTGGTTTCTCGTAAAAAAAAAAAAAAAAGAAAAATAAAGATTGGGAGTTTGTTTTGGGAAATTGTTAGTTCAGCACTTTTCCGATTTTGTTTCCAAAATTGCTTTAAAGAATTGTGATCTACCATAAAGGTTTATATTGCCATGGATATTGAAACCACTATTCATAAACCCATAATTTTGGAAGAAAGAAAATTTTCATTTGTTTTGTGGATCATGTAATTTGTGAAAAAACATTTTTGCAAAATGTCTTTCATTGAATTTTAAATTCTGAAAAATGAAACTATTTTGAAAAAAAATTCTCATTCAAGTACTAAATTTACAGCAATATCCATATGTTATTATTTGGAAATGCAAGAATTATTAAGCAATCATCCTCTTCTTTCCAGAATGTTGCTTGCTTTCAGTGAACACACGAAAGGCCAGAAGTTCCCAGATGATGCATCGGATCAAGAAATGCTTGCAATTGTTATGGCCAGGTTATCTTACTTATCTTGTTTCTAGTTTTATATACTGTTGAGCTCTGTCAGGAAGGCTGCCATTTCCCATAATCAGTGTCATTGGATCTTCTTTGGACCATGTTTTTCTTGATTCTATTGATTCTGTAATCAGTGCATTGGCAGATGTCGACAAGTCATTGATGTGAACATCTACTAGTGTCGCTCCTTGTATTATGTCTCAAAGTCAACTTTCTGCTCTTGGGTTTCTAACGACTCCTTTAATCGCATGGGACACATCTTTTGGCCCTTATATTGAAGTTTACACCAACAGCTTTGTCAACATTCAGCAACATGCATGCTTCCTCTTACTTTCTTGCTCTCTCCATGTGGCTGTTCTAATGTGATTTTGACATCAGACACCTTTTTTTCCATGTTCTTTTCTTCTGCAAATTTGTTGGAAGATAACTAGGTTGTTTAGGGGTTAGATTGGCTATTTTCTAAAATAGTAAAGCCATGTTTGTACAGCTTGTTTACTGGATATATAAAGGGAACGGCAACACTCCTTTGGCTAAATGCCATTAGAACTGTTATGTGGCATGCTTGGCTAGAAATACACAATAATTTTCAGAAAGTTCTACAAAGAACCTTTGTGTTTTAGGAGAATGTTTTTCTTTTTGTTGCTTCCTAATTCTAGCCGAGATTTCGCTTAAAAACTTCATAACTGTTCTTATATTAACGCTAACTTTATGAAATCATGTTTCATTGGAAAAGAACATTGCAATAAACTGATGATTGATATCCATTGTTTCCTTAAATTTAGGTATGAGAAAGAACTGATGCATCCCATTCAAAACCTTCTTAGTGGAGAGTTGGCCCGTGCTTTGCTTATCCAGGTTGTTACATGTTCAATTATTCCCTCCATATGTACCCGTAAATCATACTGATATCTTTTGCTTTGTGTTGATGCAGGTACAGAAGCTAAAATTGGATATTGAGACGTAAGTTTCAAAAGCTTGCATTTTTTGGTTCGCAATACGTTGTGTATCTTGATCTTCCTTATTTGGTTTCATGTCCCATGGCTTTATATTTTGATGGTTTTTAAATAGGGCAATGCTTGAGCTCGACCAGATTCTCAAGGCAAATGAAATCAATTTCGCTGTTCTAGCTGCATTGCCTGCATTCTTTCTCTCACTTCTTTTGCTGATGCTTTTGCGCGCCTGGTACAAACAGGTAAGTGAACTAAAATCACTGGCTGTTTTTAAAGTCAACTTCAAAATTAACTTGAAATTTCCTCAACAGAAACTGTGGGTTTCTAGAGATTTTCTTTCGTCTTACAGCCTACCTCTTTCATTCTTGCTTGAGTTGACATGCATGACTGACTTTATTTAAGAGTAATATCCATTTTCATTTGGGTGATCGAATATATATGTTATTCTTATAGCTACACTTTTTTATTTTCTGGTTGTGTTACAAGTCTTTTAATTTTATAGAGCGGAATTATATTACTCTATCTAAATTATATTTTAAAAAATGACTATTTTATTTACTGATTATGACAATTAGGACTCTAGAGCTGAAGGTAAGGGGAGAGCTGCTCGGCTTCAGAGAAGACTACTAGTTGTGGAGGTGGAGAAAGCAATTATGCAATACCAGAGTTTTGTCGATCAAGGACGTGTAAGGAGCTCAATCTACTTGTTGGCTCTCAAACATGTTCCTTCTCTGTTTATACAAACTGTTTGCCAAAAAATTAATTAATTTGGTCGCCAAATTTGTTTTACCATCCAAATTTTCTACAAAATGGCTAAACATAGAACTAGTCCAAATGATTCAGCTTTCCTTCTGAGGGCTGGACAGTCTCCCGCAATATGAAAATATTGAACTTGTACTAATGATCCTGGCTCTCTTCTTGAGAGTAGGATTATTGATCAACTACCTGTGTTTCAAACATAGATATTTCTCCATTCCCCAAAAAGGCAAACACAATATCACGAGAGAAGGAAGGACTTATTTTACTTCTCAGCACGTTGCTTTATTATCTTGAGAGCACAATGAGAATGTTTACGTTTTTCATTCATTTGCAGGTTAAAGATGCAGAATGTAGGTTTGGGTTACTGTTGTATAGTTTGGGTCGACTATACCATGCTTCCGAGAACCATGCCAAAGCAACTGGTGAATGGCAA ATGGAGGTAGCTCCCGAAGAAAGTGAAGACAAGGGCATCGGATCCTCAATTTCATTACACTCCCTTCGTTTATGGAACCGAATTGCAGCATTTTTCCCATCATCTCGCGATTCCAATTTTCTTTGGAAACTTTCGAGTTTCCTTCGCCGGAGGAGACGTAAGACTGGTCTTCCTCTTCCTCTACCTTTGTACTCGACAAACTCTTCCCTGAAGTCACTTTTATCTCGGTGGAACTGGTTTGTTAGATTTAGCCAAATACGTGTAGAATTATTATTGTCAATGAGGAAGGAAAAAGAATGGAGGAGATTTGGTTCGATTGTCTTCATAGAAATTGACAGAATTGGGGCAGAAGCGGTGAATGATCCAGAAAATCACTTGCCTTCATTGTTGCTTACAATGAATGGCTTATTTCTCAATCTAGAGGCATCCATTTGTCAACTGCATGCAGCATATCATATGGATTTTATCGATGGCAGCTTTTTATTTCCACTATTTGAAAAATTACCAGATGTGAATAAGGAGGGATCTCAGTGGACAAGTTGTGAAATTGGAGACGCCATCAACTTGCTTTATCAGAACCTTCACAAGTTGGACTCTTTCATATCTTTTCTCGTTTTCAAACATCGAAAGCCAAAGAAACTAACTCAATACTGGCTTGGATATACTTGTGGTGTAATTGGTCTTTCAGTGTGTTCTGTTTGGCTTCTTCAACATAGTAGCTTAATGGGGAGCCATGACCTTGAGAATTGGGTTCGTGAAGCACATAATTCAGCAGCTAGCTTTTTCAAGGACCATGTAGAACAACCGCTTATTTCCATAAGAGACGAACTCTTTGATACATTTAGAAAGAGGCATAAAGGTGTCATGGAGGTTGAAGAGCTTCAGTTAACTGCTACCTCGCTGCACAGAATGTTGCTTGCTTTCAGTGAACACACGAAAGGCCAGAAGTTCCCAGATGATGCATCGGATCAAGAAATGCTTGCAATTGTTATGGCCAGGTATGAGAAAGAACTGATGCATCCCATTCAAAACCTTCTTAGTGGAGAGTTGGCCCGTGCTTTGCTTATCCAGGTTGTACAGAAGCTAAAATTGGATATTGAGACGGCAATGCTTGAGCTCGACCAGATTCTCAAGGCAAATGAAATCAATTTCGCTGTTCTAGCTGCATTGCCTGCATTCTTTCTCTCACTTCTTTTGCTGATGCTTTTGCGCGCCTGGTACAAACAGGACTCTAGAGCTGAAGGTAAGGGGAGAGCTGCTCGGCTTCAGAGAAGACTACTAGTTGTGGAGGTGGAGAAAGCAATTATGCAATACCAGAGTTTTGTCGATCAAGGACGTGTTAAAGATGCAGAATGTAGGTTTGGGTTACTGTTGTATAGTTTGGGTCGACTATACCATGCTTCCGAGAACCATGCCAAAGCAACTGGTGAATGGCAA ATGGAGGTAGCTCCCGAAGAAAGTGAAGACAAGGGCATCGGATCCTCAATTTCATTACACTCCCTTCGTTTATGGAACCGAATTGCAGCATTTTTCCCATCATCTCGCGATTCCAATTTTCTTTGGAAACTTTCGAGTTTCCTTCGCCGGAGGAGACGTAAGACTGGTCTTCCTCTTCCTCTACCTTTGTACTCGACAAACTCTTCCCTGAAGTCACTTTTATCTCGGTGGAACTGGTTTGTTAGATTTAGCCAAATACGTGTAGAATTATTATTGTCAATGAGGAAGGAAAAAGAATGGAGGAGATTTGGTTCGATTGTCTTCATAGAAATTGACAGAATTGGGGCAGAAGCGGTGAATGATCCAGAAAATCACTTGCCTTCATTGTTGCTTACAATGAATGGCTTATTTCTCAATCTAGAGGCATCCATTTGTCAACTGCATGCAGCATATCATATGGATTTTATCGATGGCAGCTTTTTATTTCCACTATTTGAAAAATTACCAGATGTGAATAAGGAGGGATCTCAGTGGACAAGTTGTGAAATTGGAGACGCCATCAACTTGCTTTATCAGAACCTTCACAAGTTGGACTCTTTCATATCTTTTCTCGTTTTCAAACATCGAAAGCCAAAGAAACTAACTCAATACTGGCTTGGATATACTTGTGGTGTAATTGGTCTTTCAGTGTGTTCTGTTTGGCTTCTTCAACATAGTAGCTTAATGGGGAGCCATGACCTTGAGAATTGGGTTCGTGAAGCACATAATTCAGCAGCTAGCTTTTTCAAGGACCATGTAGAACAACCGCTTATTTCCATAAGAGACGAACTCTTTGATACATTTAGAAAGAGGCATAAAGGTGTCATGGAGGTTGAAGAGCTTCAGTTAACTGCTACCTCGCTGCACAGAATGTTGCTTGCTTTCAGTGAACACACGAAAGGCCAGAAGTTCCCAGATGATGCATCGGATCAAGAAATGCTTGCAATTGTTATGGCCAGGTATGAGAAAGAACTGATGCATCCCATTCAAAACCTTCTTAGTGGAGAGTTGGCCCGTGCTTTGCTTATCCAGGTTGTACAGAAGCTAAAATTGGATATTGAGACGGCAATGCTTGAGCTCGACCAGATTCTCAAGGCAAATGAAATCAATTTCGCTGTTCTAGCTGCATTGCCTGCATTCTTTCTCTCACTTCTTTTGCTGATGCTTTTGCGCGCCTGGTACAAACAGGACTCTAGAGCTGAAGGTAAGGGGAGAGCTGCTCGGCTTCAGAGAAGACTACTAGTTGTGGAGGTGGAGAAAGCAATTATGCAATACCAGAGTTTTGTCGATCAAGGACGTGTTAAAGATGCAGAATGTAGGTTTGGGTTACTGTTGTATAGTTTGGGTCGACTATACCATGCTTCCGAGAACCATGCCAAAGCAACTGGTGAATGGCAA MEVAPEESEDKGIGSSISLHSLRLWNRIAAFFPSSRDSNFLWKLSSFLRRRRRKTGLPLPLPLYSTNSSLKSLLSRWNWFVRFSQIRVELLLSMRKEKEWRRFGSIVFIEIDRIGAEAVNDPENHLPSLLLTMNGLFLNLEASICQLHAAYHMDFIDGSFLFPLFEKLPDVNKEGSQWTSCEIGDAINLLYQNLHKLDSFISFLVFKHRKPKKLTQYWLGYTCGVIGLSVCSVWLLQHSSLMGSHDLENWVREAHNSAASFFKDHVEQPLISIRDELFDTFRKRHKGVMEVEELQLTATSLHRMLLAFSEHTKGQKFPDDASDQEMLAIVMARYEKELMHPIQNLLSGELARALLIQVVQKLKLDIETAMLELDQILKANEINFAVLAALPAFFLSLLLLMLLRAWYKQDSRAEGKGRAARLQRRLLVVEVEKAIMQYQSFVDQGRVKDAECRFGLLLYSLGRLYHASENHAKATGEWQ Homology
BLAST of MS010133 vs. NCBI nr
Match: XP_022153016.1 (protein DGS1, mitochondrial [Momordica charantia]) HSP 1 Score: 840.9 bits (2171), Expect = 5.5e-240 Identity = 450/555 (81.08%), Postives = 458/555 (82.52%), Query Frame = 0
BLAST of MS010133 vs. NCBI nr
Match: XP_023512781.1 (protein DGS1, mitochondrial-like isoform X2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 755.0 bits (1948), Expect = 4.0e-214 Identity = 406/554 (73.29%), Postives = 432/554 (77.98%), Query Frame = 0
BLAST of MS010133 vs. NCBI nr
Match: XP_022943966.1 (protein DGS1, mitochondrial-like isoform X2 [Cucurbita moschata]) HSP 1 Score: 753.4 bits (1944), Expect = 1.2e-213 Identity = 405/554 (73.10%), Postives = 431/554 (77.80%), Query Frame = 0
BLAST of MS010133 vs. NCBI nr
Match: KAG6570453.1 (Protein DGS1, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 753.4 bits (1944), Expect = 1.2e-213 Identity = 405/554 (73.10%), Postives = 431/554 (77.80%), Query Frame = 0
BLAST of MS010133 vs. NCBI nr
Match: XP_023512780.1 (protein DGS1, mitochondrial-like isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 750.4 bits (1936), Expect = 9.8e-213 Identity = 406/566 (71.73%), Postives = 432/566 (76.33%), Query Frame = 0
BLAST of MS010133 vs. ExPASy Swiss-Prot
Match: Q8GUK1 (Protein DGS1, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=DGS1 PE=1 SV=1) HSP 1 Score: 500.0 bits (1286), Expect = 3.0e-140 Identity = 253/394 (64.21%), Postives = 312/394 (79.19%), Query Frame = 0
BLAST of MS010133 vs. ExPASy Swiss-Prot
Match: O74963 (Nuclear control of ATPase protein 2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=nca2 PE=3 SV=1) HSP 1 Score: 81.3 bits (199), Expect = 3.4e-14 Identity = 67/255 (26.27%), Postives = 123/255 (48.24%), Query Frame = 0
BLAST of MS010133 vs. ExPASy Swiss-Prot
Match: Q55GJ3 (Nuclear control of ATPase protein 2 OS=Dictyostelium discoideum OX=44689 GN=nca2 PE=3 SV=1) HSP 1 Score: 77.8 bits (190), Expect = 3.7e-13 Identity = 49/158 (31.01%), Postives = 97/158 (61.39%), Query Frame = 0
BLAST of MS010133 vs. ExPASy Swiss-Prot
Match: Q12374 (Nuclear control of ATPase protein 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=NCA2 PE=1 SV=1) HSP 1 Score: 57.0 bits (136), Expect = 6.8e-07 Identity = 71/270 (26.30%), Postives = 125/270 (46.30%), Query Frame = 0
BLAST of MS010133 vs. ExPASy Swiss-Prot
Match: Q753J1 (Nuclear control of ATPase protein 2 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) OX=284811 GN=NCA2 PE=3 SV=1) HSP 1 Score: 52.8 bits (125), Expect = 1.3e-05 Identity = 67/281 (23.84%), Postives = 120/281 (42.70%), Query Frame = 0
BLAST of MS010133 vs. ExPASy TrEMBL
Match: A0A6J1DJF5 (protein DGS1, mitochondrial OS=Momordica charantia OX=3673 GN=LOC111020620 PE=4 SV=1) HSP 1 Score: 840.9 bits (2171), Expect = 2.7e-240 Identity = 450/555 (81.08%), Postives = 458/555 (82.52%), Query Frame = 0
BLAST of MS010133 vs. ExPASy TrEMBL
Match: A0A6J1FT53 (protein DGS1, mitochondrial-like isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111448535 PE=4 SV=1) HSP 1 Score: 753.4 bits (1944), Expect = 5.6e-214 Identity = 405/554 (73.10%), Postives = 431/554 (77.80%), Query Frame = 0
BLAST of MS010133 vs. ExPASy TrEMBL
Match: A0A6J1JC27 (protein DGS1, mitochondrial-like isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111483680 PE=4 SV=1) HSP 1 Score: 749.6 bits (1934), Expect = 8.1e-213 Identity = 404/554 (72.92%), Postives = 430/554 (77.62%), Query Frame = 0
BLAST of MS010133 vs. ExPASy TrEMBL
Match: A0A6J1FYE1 (protein DGS1, mitochondrial-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111448535 PE=4 SV=1) HSP 1 Score: 748.8 bits (1932), Expect = 1.4e-212 Identity = 405/566 (71.55%), Postives = 431/566 (76.15%), Query Frame = 0
BLAST of MS010133 vs. ExPASy TrEMBL
Match: A0A6J1JE15 (protein DGS1, mitochondrial-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111483680 PE=4 SV=1) HSP 1 Score: 745.0 bits (1922), Expect = 2.0e-211 Identity = 404/566 (71.38%), Postives = 430/566 (75.97%), Query Frame = 0
BLAST of MS010133 vs. TAIR 10
Match: AT5G12290.1 (dgd1 suppressor 1 ) HSP 1 Score: 500.0 bits (1286), Expect = 2.2e-141 Identity = 253/394 (64.21%), Postives = 312/394 (79.19%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (TR) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
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