MS010751 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.GAAGCCGCGGCCGCGCACCAGGCAAACTCCACCTCCGGCCTCCACAGCCCAGATACGAAAGTAACATCATCAACTCCAAAAATATGGAAGAGCCAGACCAGCTTGCCTTACACCACTCTCTTAAGACACGTAAGAAAACTATTTTGAATTGTGCGCCGTGTATATGCAATGCAGCTAAAATAATGATACTGAATATTTTTGGGAGATGTTGGCACAAACAGGTTCATGGAGTTCTGAATATTATAGGATGGGGAACTTTGATGCCCAGTGGGATTATGATCGCCAGATACTTGAGAGAATTCCCCATAAGCTGCGAGCGATGGTATTCGGCTCACGCTGTGTGCCAAACTGCTGGGTATATCATGGGCATCGTCGGATGGGGCTTCGGAATCTCCGCCGCTAACTCCTCCGAACGCAGCTCTCGCCTACCATTCTTAGCCCTCGGCATTACCATCATCGTCCTTGCAACCATTCAGGTAAGTTTCTCTGCAAATTTAAGTTTTGTGATCTCTAAATAAATTTTAGACCTTTTCCCTTCTGTTTTAAGCATAATTTTTAAATATAAAAAGTTAAAAATGAAATGCTTATTAAATGGTATGATGTAGATTTTAAATTTTAATTTTGTGTGTAATAAAATCTTGTCGAATTTAACAATTAATGACCATGTTAACCCATCAAATAATTTTCAGAATCCCTTTTGGACTCTGATACCATATCAATATTCATGAGATTTTATCTCAAGAACAATCGACAATGAGAGAAATGATTGATAACTTCTCAACGTGGAATCCGTAACAGTTATTCATTATTATAAGTTAGTACGGTCTCTTTAGATATTTTTGAACTTTCAACTTTGTGTTTTGAATTAAATTTTGTGTATAATATGTATTTGATGTTTGAATTTTGTATCTAATAAATCAAAATTTTTATCAGAATATGGAGTCGTAAAGGTTGATGGATGTTTTGAAGGTCACGAGGATAAGTTAAAGAAATCCAAATTAAATGTGTGTAACTCAACCAAAGTTTGATGTTTCAATTTTGTGCAGCTGCTTGCTATATGTGTACAGCCGAAGAAGGAGAGCGGGTGGCGGCGGAGGTGGGAAATGTACCACCATGTTATGGGATACGTGATAATGGGACTGATAATAGGCGACATATTCGAAGGTATTAATACGCAGCGCCACCCAGAGAAATGGCGGTGGACTTACGTGGGAATTGTTTCTTTTCTTGCACTTGTGGCTGCGGCTTTGGAGATTCACAAACGAATCAAGCTTAAACTCTTCAAACAGGCTATGAAACTCAATGCCAATATGCATTCTCCCACTACTTGATCATTTTATCACCATTCTATTTCTGCCACCCATTTCCCTTTTCATTGCCTTTCCCTGTAATTTTTATTTTCTCTACTGTCAGATCTGATTTATTTCTTGGTCATTTTTTAGTACTTCAATAATTCATGGTTAATCAATTTGCTCCAAATTATTTCGATTCTCGTGGAAATTGCTTTTCTCTTTTTTATCATGGGTAAAAATTTTAGGTTTTTAAAGTATATCTCTTATATTTACCCTACTTAAATGTTTGATAATCAGTCAACACGAGTTTAGGTCAACTGTAATTGACACACCAATATGAATTTGAATCCTCCACTCCACTTAGTATACTAAAAAACCCAAGAGAAAAAGAAAGTAAAAATATAAAACGTTTATAAAACTAATTAGCACCTTCAACTTTCAATAGTAGTAAAGATCTTTTATTATTATTTTTTTAGAACGGTAGTAAATATGGAGATAAGTGAGGAGTGAGGTCTTGCACCGTCGGTGTTGACACCCAAGATCTAGGTTCAAGCACTCTTGTGTTCAGAAATTAAAAAAAATAAAAAGTGAGGAGTGAGGTTCTAAATATTTTTCAAGAGAGTTTTTTTTTTTCCTTTCTTTCTTCTAGATAGAGTCATATTAAAGTTTAAATTATTTTTTATTTAATTTAAAAAGAATTAATGAAAAATGAAAAATATGCAAACTGCGGTTCTTGAGTTATGGGGAAGGGATGTCTTGATGGCGTGACGACGTCGTTTGGGCTACTGGGCGTTGGCTAATTGTCTTGTCTCTGGATTGCTTAACTGGAACGCCGAAAGCTCACGTTCCGTTTTGTACTCTCGGAGCAAAGAAAGAACAATCTGGAGCAGGAGCAGGAGCAGGGAGATTCTGGTGCAGAGATGGCCTCCTCTGCCGCTATAGACGGCACTGCATCCGCGGCTCTCAGGTCCGTGCTTCAGCGCGTACGGCTAGCCGCCGAACGTTCCGGTCGCGGCTCCCAGCAGATCCGAGTCGTAGCTGTTAGCAAGACCAAGCCGGTTTCCGTCATTCGTGAAGTTTACGATGCTGGCCACCGATGCTTTGGCGAGAACTACGTTCAGGAGCTCGTTGAGAAAGCTCCTCAGGTTTTTTCTTCTTCAATTTCGCGCCGAATCCATATTTAGATATTGAATTGAAGTCTTTTTCGATTCTGATATACTTATGTTCTTGTAATTCTGTTGCTATGAGAACTATGGAATTTTCGGAAGAGTTAATTGTCAGTGATTCGGACTGGAGTTACTTAACTTTGATGATCATTGGAAATTGCAGCTTCCGGAGGATATCGAATGGCATTTCATCGGGAATTTGCAGAGCAACAAAGTGAAACCACTTCTGAGTACGATCTAATCTATTTTCTAGAAAGTGTTTTTATTGCAGTCTGAAGGCATTTTTTGGAAACTTGTTTGCATAAGTTTTCATAGGTCACAAATATTTGATTCGACTTACTCTGTAATCTCAGAATAATATTACGTAGTATTTATATCAGTAAAACAGTACAGCCATTCTATTTATAGAACACTCACTACACTCAGCTAAGGCTAATCAATTACACGACAGCCAAATAACAAACGCAGCCAAACTAATGCTGGGCTGAAAAAATGAGGTCAGTAGTAAGCTAGAACAATTTGTACCAAGTCAAAGCCTCAAGAACAATAATCACGTAAAAAAGGAAAAACATCTTTCTTCCCTCCCCAAAGATCCTACATGTTATAAAAAAGCTTGGATGAATTTGGGCCACAAGACTATAGCTTCAGCTTGAACGGGATCCTCCATGTCTATTTAGTCTATTTTCATTCCCAATACATTCTATGTCTTTGTTATTCACCATAATTTCTCCAGTAGAGCACTCACAATCTCGTTATCAGAGATTCATTCCTGCTATAATTAGCTATTCAATTGAAGAATTTTATGTACTCATCCTCTTACTAAAGCCACTTAGACTTGCACTTTTGACTCCAAAAAGTTTCTTGTTTAAGAGTGACGTATGGAATTGATACTAGAAGCTTCTAAGAAATTTCTCATTATTTGAGAGAGGAAAGGAGTCTTCTAAGTCATCTAAAGATTTACTCTCAGTAATGATGCTGGTTTGGTGGACTGAATGTTGCCGAACTCTTTATTCCATTTCTTTAGGAAAGCCTTGAGAGATTTAAGCTTGGTCGTGAAACCATGTACCAGTCAACTTTGCAGATGGACTTCATTTCACTTAGGTTCCAATGGGTGAAGAAAGTTATTATGATCAAGTAACATATTTTAAACTTTTGAAGGGAGGACTCCATTTAAAATTAGCAGCCTCAAGCCTCTTCAGTCTAGATACCCTGGGGTTCTTAAACTTAGAGATGATCAAATCTTAAGAAGCTAAGAACCTGTCAGTAAGTGACGTGGGCATAAGGGTTGAATTTGTAATTATTTTGATTTTATTTTGTAATAGTAACAACTACAAGTTTAACTACGTCTACATCAGTAAGAGAAAGGACAGCACGTTCCGTCGTATTGGACTAAGTAAATTTGGCATAACTAAGATGTAAATCTGGGAGAGGAAGATCACTGATGAGCTTGTTGATAAGATTCATACTTCGTGTCAATCTTGAAACCACCAAGATACTCAAGTTCCCTCCAATGTTGTCCTTTGGCTGGTAGGACTTAAGTCTGTAAGTCCCCTTAAACCAGAAAAGAGTGTTATTTGCCTAAATGATTTTTACTGTGAGAGAGAAAGAACCTCCAACATCTTCCTCTAAGGGATCAAACAGAAACTTTTAAAATATTATAGAAGAAATTAAAAATGATATAAACTTGAAGGACAAATGGTATATTTAGTTTTTTGTTTTCCCTCAGAGGGGGCAGAAACAGCATAAAGGTCTCATTGGAATGCTAGGATAGAATTAGGGATATTACTAGGGTATTAAGGATAAATTAGTGGTTAGTCAAGGAATCCGTTAGAAGGATTTGTAATAAATAGAGTCAGTGAGACAAGATTAAGGTAGGCATTGATTTGTTATAAATAGGCTTGAATGGCATTCCAAGAAGGGGAGGTACCAAGTATCTCAAATACTTGGGAGTTTATATTGTAGTTCTATCTTCATATTTCAATACTATTCTAGTTCTTTTAGGCTCTATAAGGTCATTGCTTCTCAGCCCCTTAACATGAATTGCTGTCCCTGAGTTCAGATACTAGTTGCTGTCTGTAGAGTTTATTGGAAGCTACTATAGCAGACATTGTTGGAGAGGTGTTCTCATAGCCATGATTATTATTTCACATATTGAGGTCCTGGATTTTTGTTGAAAACTTAATTTTGATAAGAACAGAACTAACATTTGGTCACAGAACACCAGACTTTCCATATGACTAGTAGTGAGGCTTATTGCACCATTCCAAGATCGACCACTTCATGAGTTTCTATCCCTTCCTCTGTTACTCTTAAAGAAATCATTTCCTTGATTTTCAAGCTTCTGTCAAGCATTTCCATTAGTTTCCACCATTGCTATTTACTTGCTTCTGTTGAGCTTGAAAGGTCGGACTTGCTGTAGGTAAAGTGCAGTTTGACCAAGTTTCTCTCAATTCTAGCCTCTTGTGGTAGTAATAAAGGACTAAATTTTGTATGGGTTATTCTTATTTCAAGACAACCAAATCATACTCAGAATAAGTCAGATAGCACATACATCACCTGTCAGTATTTGAGACCTTGTAACCTTAAAAAGGCTAAGATATCAGCCTAGGTCTTCATCTTGCTTAAGTACTTTATATTGATTCCCCCTTTCTTCAGGTTCTGCATTATGTATGTTTTCCATATTTCTCACAAGGATTTGGTCAAGTGTGACCTGTAGCTCTCTTGCAAATTGACAATATATCAGTTCCGTTGTTAGAGGCTTGGTTCGAAAGTCGAGAGGAGAGAAGCCTATCTTGTTTTCCTATCTATGACACAAACTCTAGATTCAGTCATCTTCTCAGAACATGGATAAACACCGACATTGCCGTTTGCCAGCAGCAATATATTTTACCTGGAGGATTGTTTTTCCAATCAATGTAACCTGATCTGAAGTCATGAATCACCGAGAGTGTCTACTGTCTCGCATTTCTGTTGTAGGTGAAAAAACCGAGGAGGCCATACCCTCACTTTCCTATTGCACCCAAAATTGTACCTAATTGTTCTGTTAACTATACAAACTCAACTTTGTAATTCAGGAGGAATATTACTATTCTATTCATATCAGTAATAGTACAGCCATCTTAGAGCACTCAATACACTCAACTAAGGCTAACTAAATATATTAACAGACCGACATGAAGAATGTGATGTTTAGCTTTGGTTATTCTCTTACCTTAAAAAGAAACACATAGGATAATGAGTTGGTTAATCAGACTATAAATTTCTGTATCGGGGCATTTCATCTAAGCAGATGCTTTTAAGACTTCTTCAATTGCTTCTTTTCATCTGCTTTTATTCCTTCATTTCTAACTGTTACTTTTGCGACACCATACAGCTAGCGTCCCAAACCTTGCAATTGTTGAGAGCGTGGATGATGAGAAGGTGCTCTTCTTATTACTTATCTCGAATGCCTTGATATGAAGATGATTATCACCTCAAATTAAAATGAGAGTTTTTAAAATTACTTTCCAGTATTTTATTTTATTAGATTTTGATTGTGCCGTAATTAATTATCTTTTATCGGATTGAGTTGAATTGGTTATAGGATATAGCATGCTGTATAAACACTTTTTTGATGTGTTGAGTGGAGACTGAACATGGCGATTCTGTTTTACAAACTGAAGTAACTAACATGGGGACAAATCTCGAGAATGCTGTGTCTGTGTGAATGATCATTTTCCATAAATTTTTTGGATTCAGGCATGCTGCTTTTGGATCATGCCTAGCATTGCCTCTTTTATTGTATTCTTTTTTCTAAGGCTTTTTTATCGTATTCAAATGATTCTCTTTGTTATTTAATGCTGTACGTTATAACTTCCTTTTTAATGTGCTTAAACTCTTTTGCCAGATTGCAAACCGTTTGGATAATGTGGTTGCAAGTATTGGGAGGAAGCCTCTTAAGGTGTTTGTCCAAGTGAATACAAGTGGGGAAGAATGTATGTTATTACTTGCAACAACTATAAGTTTCTGTTTCTTAAATTATGGTCACCATCCGAAGTGCAGTTTAATGATTTCATCTTTAAGAATTTGATTTGCAAGAATCTGGTTGGTCCAAAATTTTTGGCCGTTGAAGTACAAAATGCTAAAATTTGTCCATTTTTTCATACCTTAAATCATATGGTTGAAAATTTTTCATCTGCTAATAACCTGTTAGCATGATTTTGGAGACATTTTCTAAAGTTAGATTGTTGAGGTGCATGATTAAGAAGGTGACGGCTGATGTTATCTATCAGTACGCTAAGTAACTCAATTACGTCAGGTTTTAACATAATCATGGAATGTTGCAATGCACATGTTATTTGTATTGTATTCAACTGATTTTAATCGTTCATTTGTTAAACCTTCGAATAACGTTTATCTTGTATTAAAGTGCAGCAAAATCAGGCGTTGAGCCCTCTGAGTGTGTGGAGCTTGCTAAACACGTTAGTTTGAACTGCCCAAATCTTCAGTTTTGTGGGCTAATGACAATTGGAATGTTAGATTATACATCAACACCAGAAAACTTCAAGGTGATAAAACCATTCCTCTTTTATGAGAAACTTTGCGTGCACCTTGCGCTCTTACTAATTGGTATTTGTTGGTTTTACAGTCGTTGGCCAACTGTAGAACTGAGGTTTGCAAGGCACTTGGAATATCAGAAGAGCAATGTGAGCTATCAATGGGCATGTCAGCGGACTTCGAGCAAGCTGTAAGAATGATTATCATTATAATATGGTACCGTTTAATGGGATATATATAAATTTGGTCTAATGCATTGCTTATTTATCCTCTCAAAAACATCGTACTAATAAAAAAAGAAAAAAAAACTTGAGAGAGTTTGTTGACGCTCTTCTACCAATTTGGCCAAGCGTTTCGCATTTCTTTAGACACAGAAGAATAGAATTTGTAGAAAACGAACGATCACACAGTTAAACTCATATTTCTGCATTTTTGGCAGGTTCAAATGGGAAGTACAAATGTGAGGGTCGGATCTACCATATTTGGGGCGAGGGAATATCCCAAGAAAAAC GAAGCCGCGGCCGCGCACCAGGCAAACTCCACCTCCGGCCTCCACAGCCCAGATACGAAAGTAACATCATCAACTCCAAAAATATGGAAGAGCCAGACCAGCTTGCCTTACACCACTCTCTTAAGACACGTTCATGGAGTTCTGAATATTATAGGATGGGGAACTTTGATGCCCAGTGGGATTATGATCGCCAGATACTTGAGAGAATTCCCCATAAGCTGCGAGCGATGGTATTCGGCTCACGCTGTGTGCCAAACTGCTGGGTATATCATGGGCATCGTCGGATGGGGCTTCGGAATCTCCGCCGCTAACTCCTCCGAACGCAGCTCTCGCCTACCATTCTTAGCCCTCGGCATTACCATCATCGTCCTTGCAACCATTCAGCTGCTTGCTATATGTGTACAGCCGAAGAAGGAGAGCGGGTGGCGGCGGAGGTGGGAAATGTACCACCATGTTATGGGATACGTGATAATGGGACTGATAATAGGCGACATATTCGAAGGTATTAATACGCAGCGCCACCCAGAGAAATGGCGGTGGACTTACGTGGGAATTGTTTCTTTTCTTGCACTTCTCACGTTCCGTTTTGTACTCTCGGAGCAAAGAAAGAACAATCTGGAGCAGGAGCAGGAGCAGGGAGATTCTGGTGCAGAGATGGCCTCCTCTGCCGCTATAGACGGCACTGCATCCGCGGCTCTCAGGTCCGTGCTTCAGCGCGTACGGCTAGCCGCCGAACGTTCCGGTCGCGGCTCCCAGCAGATCCGAGTCGTAGCTGTTAGCAAGACCAAGCCGGTTTCCGTCATTCGTGAAGTTTACGATGCTGGCCACCGATGCTTTGGCGAGAACTACGTTCAGGAGCTCGTTGAGAAAGCTCCTCAGCTTCCGGAGGATATCGAATGGCATTTCATCGGGAATTTGCAGAGCAACAAAGTGAAACCACTTCTGACTAGCGTCCCAAACCTTGCAATTGTTGAGAGCGTGGATGATGAGAAGATTGCAAACCGTTTGGATAATGTGGTTGCAAGTATTGGGAGGAAGCCTCTTAAGGTGTTTGTCCAAGTGAATACAAGTGGGGAAGAATCAAAATCAGGCGTTGAGCCCTCTGAGTGTGTGGAGCTTGCTAAACACGTTAGTTTGAACTGCCCAAATCTTCAGTTTTGTGGGCTAATGACAATTGGAATGTTAGATTATACATCAACACCAGAAAACTTCAAGTCGTTGGCCAACTGTAGAACTGAGGTTTGCAAGGCACTTGGAATATCAGAAGAGCAATGTGAGCTATCAATGGGCATGTCAGCGGACTTCGAGCAAGCTGTTCAAATGGGAAGTACAAATGTGAGGGTCGGATCTACCATATTTGGGGCGAGGGAATATCCCAAGAAAAAC GAAGCCGCGGCCGCGCACCAGGCAAACTCCACCTCCGGCCTCCACAGCCCAGATACGAAAGTAACATCATCAACTCCAAAAATATGGAAGAGCCAGACCAGCTTGCCTTACACCACTCTCTTAAGACACGTTCATGGAGTTCTGAATATTATAGGATGGGGAACTTTGATGCCCAGTGGGATTATGATCGCCAGATACTTGAGAGAATTCCCCATAAGCTGCGAGCGATGGTATTCGGCTCACGCTGTGTGCCAAACTGCTGGGTATATCATGGGCATCGTCGGATGGGGCTTCGGAATCTCCGCCGCTAACTCCTCCGAACGCAGCTCTCGCCTACCATTCTTAGCCCTCGGCATTACCATCATCGTCCTTGCAACCATTCAGCTGCTTGCTATATGTGTACAGCCGAAGAAGGAGAGCGGGTGGCGGCGGAGGTGGGAAATGTACCACCATGTTATGGGATACGTGATAATGGGACTGATAATAGGCGACATATTCGAAGGTATTAATACGCAGCGCCACCCAGAGAAATGGCGGTGGACTTACGTGGGAATTGTTTCTTTTCTTGCACTTCTCACGTTCCGTTTTGTACTCTCGGAGCAAAGAAAGAACAATCTGGAGCAGGAGCAGGAGCAGGGAGATTCTGGTGCAGAGATGGCCTCCTCTGCCGCTATAGACGGCACTGCATCCGCGGCTCTCAGGTCCGTGCTTCAGCGCGTACGGCTAGCCGCCGAACGTTCCGGTCGCGGCTCCCAGCAGATCCGAGTCGTAGCTGTTAGCAAGACCAAGCCGGTTTCCGTCATTCGTGAAGTTTACGATGCTGGCCACCGATGCTTTGGCGAGAACTACGTTCAGGAGCTCGTTGAGAAAGCTCCTCAGCTTCCGGAGGATATCGAATGGCATTTCATCGGGAATTTGCAGAGCAACAAAGTGAAACCACTTCTGACTAGCGTCCCAAACCTTGCAATTGTTGAGAGCGTGGATGATGAGAAGATTGCAAACCGTTTGGATAATGTGGTTGCAAGTATTGGGAGGAAGCCTCTTAAGGTGTTTGTCCAAGTGAATACAAGTGGGGAAGAATCAAAATCAGGCGTTGAGCCCTCTGAGTGTGTGGAGCTTGCTAAACACGTTAGTTTGAACTGCCCAAATCTTCAGTTTTGTGGGCTAATGACAATTGGAATGTTAGATTATACATCAACACCAGAAAACTTCAAGTCGTTGGCCAACTGTAGAACTGAGGTTTGCAAGGCACTTGGAATATCAGAAGAGCAATGTGAGCTATCAATGGGCATGTCAGCGGACTTCGAGCAAGCTGTTCAAATGGGAAGTACAAATGTGAGGGTCGGATCTACCATATTTGGGGCGAGGGAATATCCCAAGAAAAAC EAAAAHQANSTSGLHSPDTKVTSSTPKIWKSQTSLPYTTLLRHVHGVLNIIGWGTLMPSGIMIARYLREFPISCERWYSAHAVCQTAGYIMGIVGWGFGISAANSSERSSRLPFLALGITIIVLATIQLLAICVQPKKESGWRRRWEMYHHVMGYVIMGLIIGDIFEGINTQRHPEKWRWTYVGIVSFLALLTFRFVLSEQRKNNLEQEQEQGDSGAEMASSAAIDGTASAALRSVLQRVRLAAERSGRGSQQIRVVAVSKTKPVSVIREVYDAGHRCFGENYVQELVEKAPQLPEDIEWHFIGNLQSNKVKPLLTSVPNLAIVESVDDEKIANRLDNVVASIGRKPLKVFVQVNTSGEESKSGVEPSECVELAKHVSLNCPNLQFCGLMTIGMLDYTSTPENFKSLANCRTEVCKALGISEEQCELSMGMSADFEQAVQMGSTNVRVGSTIFGAREYPKKN Homology
BLAST of MS010751 vs. NCBI nr
Match: TYK13025.1 (proline synthase co-transcribed bacterial-like protein [Cucumis melo var. makuwa]) HSP 1 Score: 696.4 bits (1796), Expect = 1.6e-196 Identity = 368/493 (74.65%), Postives = 405/493 (82.15%), Query Frame = 0
BLAST of MS010751 vs. NCBI nr
Match: TXG46953.1 (hypothetical protein EZV62_026247 [Acer yangbiense]) HSP 1 Score: 575.5 bits (1482), Expect = 4.2e-160 Identity = 288/473 (60.89%), Postives = 353/473 (74.63%), Query Frame = 0
BLAST of MS010751 vs. NCBI nr
Match: KAF3451752.1 (hypothetical protein FNV43_RR07848 [Rhamnella rubrinervis]) HSP 1 Score: 570.1 bits (1468), Expect = 1.8e-158 Identity = 285/430 (66.28%), Postives = 346/430 (80.47%), Query Frame = 0
BLAST of MS010751 vs. NCBI nr
Match: PON91274.1 (hypothetical protein TorRG33x02_128370 [Trema orientale]) HSP 1 Score: 490.7 bits (1262), Expect = 1.4e-134 Identity = 252/367 (68.66%), Postives = 284/367 (77.38%), Query Frame = 0
BLAST of MS010751 vs. NCBI nr
Match: XP_022133285.1 (pyridoxal phosphate homeostasis protein [Momordica charantia]) HSP 1 Score: 478.8 bits (1231), Expect = 5.3e-131 Identity = 244/244 (100.00%), Postives = 244/244 (100.00%), Query Frame = 0
BLAST of MS010751 vs. ExPASy Swiss-Prot
Match: O94903 (Pyridoxal phosphate homeostasis protein OS=Homo sapiens OX=9606 GN=PLPBP PE=1 SV=1) HSP 1 Score: 218.4 bits (555), Expect = 1.7e-55 Identity = 126/253 (49.80%), Postives = 170/253 (67.19%), Query Frame = 0
BLAST of MS010751 vs. ExPASy Swiss-Prot
Match: Q9Z2Y8 (Pyridoxal phosphate homeostasis protein OS=Mus musculus OX=10090 GN=Plpbp PE=1 SV=1) HSP 1 Score: 216.5 bits (550), Expect = 6.5e-55 Identity = 121/241 (50.21%), Postives = 169/241 (70.12%), Query Frame = 0
BLAST of MS010751 vs. ExPASy Swiss-Prot
Match: Q3T0G5 (Pyridoxal phosphate homeostasis protein OS=Bos taurus OX=9913 GN=PLPBP PE=2 SV=1) HSP 1 Score: 214.5 bits (545), Expect = 2.5e-54 Identity = 121/241 (50.21%), Postives = 166/241 (68.88%), Query Frame = 0
BLAST of MS010751 vs. ExPASy Swiss-Prot
Match: Q5R4Z1 (Pyridoxal phosphate homeostasis protein OS=Pongo abelii OX=9601 GN=PLPBP PE=2 SV=1) HSP 1 Score: 212.6 bits (540), Expect = 9.3e-54 Identity = 122/253 (48.22%), Postives = 166/253 (65.61%), Query Frame = 0
BLAST of MS010751 vs. ExPASy Swiss-Prot
Match: Q1ZXI6 (Pyridoxal phosphate homeostasis protein OS=Dictyostelium discoideum OX=44689 GN=prosc PE=3 SV=2) HSP 1 Score: 212.2 bits (539), Expect = 1.2e-53 Identity = 118/246 (47.97%), Postives = 163/246 (66.26%), Query Frame = 0
BLAST of MS010751 vs. ExPASy TrEMBL
Match: A0A5D3CN93 (Pyridoxal phosphate homeostasis protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold255G006260 PE=3 SV=1) HSP 1 Score: 696.4 bits (1796), Expect = 7.9e-197 Identity = 368/493 (74.65%), Postives = 405/493 (82.15%), Query Frame = 0
BLAST of MS010751 vs. ExPASy TrEMBL
Match: A0A5C7GQU2 (Pyridoxal phosphate homeostasis protein OS=Acer yangbiense OX=1000413 GN=EZV62_026247 PE=3 SV=1) HSP 1 Score: 575.5 bits (1482), Expect = 2.0e-160 Identity = 288/473 (60.89%), Postives = 353/473 (74.63%), Query Frame = 0
BLAST of MS010751 vs. ExPASy TrEMBL
Match: A0A2P5F0F5 (Pyridoxal phosphate homeostasis protein OS=Trema orientale OX=63057 GN=TorRG33x02_128370 PE=3 SV=1) HSP 1 Score: 490.7 bits (1262), Expect = 6.6e-135 Identity = 252/367 (68.66%), Postives = 284/367 (77.38%), Query Frame = 0
BLAST of MS010751 vs. ExPASy TrEMBL
Match: A0A6J1BUU4 (Pyridoxal phosphate homeostasis protein OS=Momordica charantia OX=3673 GN=LOC111005906 PE=3 SV=1) HSP 1 Score: 478.8 bits (1231), Expect = 2.6e-131 Identity = 244/244 (100.00%), Postives = 244/244 (100.00%), Query Frame = 0
BLAST of MS010751 vs. ExPASy TrEMBL
Match: A0A6J5UKC5 (Pyridoxal phosphate homeostasis protein OS=Prunus armeniaca OX=36596 GN=CURHAP_LOCUS24666 PE=3 SV=1) HSP 1 Score: 438.0 bits (1125), Expect = 5.0e-119 Identity = 217/243 (89.30%), Postives = 234/243 (96.30%), Query Frame = 0
BLAST of MS010751 vs. TAIR 10
Match: AT1G11930.2 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type ) HSP 1 Score: 384.4 bits (986), Expect = 1.3e-106 Identity = 197/255 (77.25%), Postives = 216/255 (84.71%), Query Frame = 0
BLAST of MS010751 vs. TAIR 10
Match: AT1G11930.1 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type ) HSP 1 Score: 379.8 bits (974), Expect = 3.1e-105 Identity = 198/257 (77.04%), Postives = 216/257 (84.05%), Query Frame = 0
BLAST of MS010751 vs. TAIR 10
Match: AT4G26860.1 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type ) HSP 1 Score: 356.7 bits (914), Expect = 2.8e-98 Identity = 170/241 (70.54%), Postives = 207/241 (85.89%), Query Frame = 0
BLAST of MS010751 vs. TAIR 10
Match: AT4G26860.2 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type ) HSP 1 Score: 348.6 bits (893), Expect = 7.7e-96 Identity = 170/251 (67.73%), Postives = 207/251 (82.47%), Query Frame = 0
BLAST of MS010751 vs. TAIR 10
Match: AT5G35735.1 (Auxin-responsive family protein ) HSP 1 Score: 139.8 bits (351), Expect = 5.5e-33 Identity = 61/148 (41.22%), Postives = 89/148 (60.14%), 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:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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