MC09g0853 (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.GAAAAATTCCTCATTATTTATAAGACTATGATTACTTCCCTCTTCTTCTCCCATTGCTCAGCTGTCAGCCCCCCTCAAGATTGTCCCAGCCGCCACCTCCAGCTTTTGCTCCGGCCAGACCACGGCAGACCCGACGTCCTCCAGACCAGACATCTTCCGACGACTCCTCTGCAGCACCACGGCGCTATGGCGAGGACGCAGGCGTTGGCTTTCTAATCCTTCGGTGGCGACCTCCCCACGCGACCCGTAGCAGTCGACGGGTGTTCTCCACGGCGGCGTTCGGCGTGTTGCAGGAGCAGCCGTCGGCCTTTGTAGCGACGCGGCGGCGGCAGCGCGTGTTTCCAGCCCATATTCGACGGGTTCTCGACGTCCTCCCGGCTTCGACGACCACGAACGCCCAGATCGGCGTTTCTCCGGTGGCTCAGCAGTGTGACTCGCGGATTCCGGTGGCGCGACCTCTTCCCCGGCAGAAACCCGCGGCCAGCACATGAACCGACGTCTCCAACGACCTGTTTTGCGATCCCAACGTGAACAGTAGCGGATTCACGAAGATTTCCTCGTTCCGGCGACATTCAGCGCTTACCCACACCCATTCAAAGCTTGATTTGAGTTACCCACCTCTTTCGGTGTTGATTCAGCGTCACTCATCGCTTTTCGGCATCTGAGCAGCAAGTCCGAAGCCTTTCAAACTCGGATTTGGGAGCCCGAACCTCTTACTCCTAATCCAAGAGGTTTTAGTGTGAGTAGTACACCTAAACTTAGTTTCATTACAAATCAAGTGTTTCTGAGTTGGTTTCTAACCCAAGTCTGGTTGTTTTGATTTAGGAACCCTTCGGCGAGCTTAGCAGCGTGTTAGGAACTTTGTAAGTAGTTTTTAGTTTTAGAGATGTTTGTTCTTTGATGTATGAAAGAATTGTATGCTTGTGTTTGCTTGTTTACGGCTGTTATACTATGTACTTGTTACTATTCAAATAAGTCTTGATAAGTTGTTGGTTGAGCCTCTCTTGTGAATTAGATACGTTGTTGTTGGATCATGCTGGACTATTTTATGTTGGTTGGTATTTACGTATGTTTTGTGTATATTGCATACTGGACTGTCATGAGATGATTGATGCATGGGTCATGGGTTAGAAGCATGCAGGACTTAGGTCGTTTGGTGTAGTTGAAAATTTGGGGGCGTTACAGTTGGTATCAGAGCAGAGTTGGTACTGTGAATTGACCTAGAACCTAGGTCATTTAGTGTTATGGTCTTTCTTAGTCTCATCTCCATCACGTGGACTTGCTATCTTATGGTTGATTGACTTATGAACTTATTATTCTTTATGTTTTTACTTGATTTGCTTATGTTTGTTTTATGATTTGCTATGTTGATGCTTGTGTGTTAGTCAGGCATAGGATGCTCCCTAGTGAACTAGATAGTTTTGTGCAACATCGTGATGCTTTTGCTATTGTGTTTTGTGACTCAAGGTGAGTCATTCCCTTATTTATTGTTGTTTGTTGGCGAGTGAGCATAGAGTTGGAAATTGTTGAACTAAAGTTCTAGTATTAGAGTAGCGCAGTTGAAGCGTGGTGAAAATCTATCATCGTTTTGTTTTGCTAGTGGTTTAATTCTTTGGTACGAGTGGAACTTTTAGGTGGTTGTAGTAACGGTCCTCAGTTGTTTGTACTCTTCTTCTCTTGAAAGTGATAGTATTGGAATTATCATAGCTTATTCTTATGTAAATTGGTCCTTGTTCCCTCTGTTCTGTTTAGTAAGCGAGTCTTAAGTTAGAACCATTAGATTTTTCGCAATAGGCCTTTTTCACACCGTCAGACTCGGTGTTTTGCTATCAGTTTTATTGTGAAAGTGAAAAGTTTTCTATTACACAAAAGACCCACCAAGATTTAAAAAGTAAGGAGCCATCTTAGTAAAGATGTTGCAGGGAAGCAACTAAAAAAGGAAAAACAAAATCGGGGTCAAGCACCAAGAATCGCTCACCGGATTATAAACTTTATAAGAATTCGTGATAACATGAATTTGCATGAAAATGCCACTTTTTTTTTTTTTTTTTTTTTTTTAATAAAAANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTTTTTTTTTTTTTTTTTTTGAATACAACACGTGGGGATGGGAGATTGAACTCATAACCTCTTGGTTGGAGATATATACCAATTATTGCTAAGTTATGCTCGCTTTGTCGAAAACACCACCTTAATTATATACCATACAACTTGGCATTGCTGATATAGAACTTAGAAGCATTGGGGATACTACAGGCCTAAATTTACAGCGTTGAGAATATAACCTGACGGGCAGATTTTGTCGTTCTTTTTACTGAATATTAACAATCCTTAGCAGCTCCTAGACAATGAGAAACGAACACGAAATTTACAGAATTTATATGATCTGATATGAGCATCACCATGCCAATGAATAGGAAAAGAGAACACCACATGTCCTCTAGTGTCATCAAATAGTATAAGGAAAGAAATTAATGCCAAATATCAAATTTAAAACAACAATAGCACAAGAACATCGAATCTATGAACTGCATTGACTAAGTAAAGGAATTGAATACATCATATTGAGAGTAGAGAATGCAATAAACAGAATTCCTTTGTCCTCGATCAGATAAGATTCATTTCTAGTCGGGTGGTGTTTTCTCTCAAAATTATGTTATTATTGCCTTTTCATGTTAATTTTCATTTGAAGAGTAGTAATTTGCATATAGTACCACTGTGGGTTATTCCATTCTAGTAGAAACTTGAATAAAGAAAACATATGAAAAAAGAGATTATATGTTAGTTATTTGCTTTGGTCAAGGGATGAAGATGCATGGTTTTGAAACTTGAAAGTTGTTTTATAAATTATGTCCTGTTTTGTATTTTCTTTGGACTAAAGCAAAGTGCCTCTTGTTTTCTCTTAGACTAGAGTGCATAAAACATTATGGGAAGAGTTTTAAACCCATTTATTTTGTTTTGTTCCCCTTGCCGTTAAACATGATTGATAAGATATTAACCTCCACTTAATACTGGCCACATAAGGACGTTATAATGGATACCTTATTTTCATTTTTAGTTATTTTCAATCTGTATCTTCAAGTTTTATATCTAACTAGCCTCCATGTTGATTATGTTATGGCTGATTTGTATTGTGATAAACCAACCGTGGAAGTGACTGGTCATAAGGTCCATAATGCTGTTCCAGCTCTTGGATCCTCATTGCTCGAGTAACTTGCTCACGGCCTATTTTATCATTTTGGATTTAGTGGTAGTTGAATATGGAATTAGAACAGGAAGATTATGTATTTGAGCTCTTATATTGTCATTTCCTCTCCAATTTATTATGATAGTCACGTAGAGTCTTATGTTATTTCCAAGTTAACAAGTGATGGGGAGCATTAAGAATATGCATAGAATGGGAGGGATCAAGGGATTAGTGAAGAAGGCTTTAGGAGAGATGGAATTCACGGCCGGTGGTGGAGCCATCAATTGGTTCCCGGGGCACATGGCGGCGGCAACACGAGCCATTCGCGAGAGACTGAAGTTGGCGGATATGGTGATCGAGGTCAGAGATGCCCGCATTCCCTTGTCGTCAGCGAACCAAGACCTTCAGCCTCAGCTTTCTTCTAAGCGCCGCATTATTGCCCTCAACAAGAAAGATTTGGCTAACCCCAATATCATGCATGTAAGAGAGCAGTTCATCAGTCTGTTTCATTTACTTAAATTTTGAAGCCTTTACTCTGAGTTCAGAAATAGATAGAGAACGGACAATGGTGGGCTTCTATTACTTCTCCTGTGATTATGTGCACGTTTTCATTCATATTTGATCTAGTCTAGTTGTACCTCTACATTAAAACTGTCTCTGTTTCGATCTCTATTGATTGTAAAAATGGATATTAGTTTCAAGTGTTGAGTGCTATTTAAATCATAGTGAAATTTGAAGTTTTTACTTTAGTGATTAGTTTCATGGTATATCTGTCGATTCTCTCAGAAAATTTCCATTTCAAATGTCTGTAAATGATGTGTATCGTGTGTCTGTTTGTGCATATACATACATATGCGTGTGTGTATGCTGAAAGATAGATAATTAAATTACAAAGAGAGGAATTTTTAATGTTCTTTTTAGTAGTTAGTTGATAATTTACGTTCATAGTATCACCTGTTGACATTGTCATTACGACTTTAATTGTGCAGAAATGGATGTATTTTTTTGACTCATGCAATCAAGACTGCATTTCGATAAATGCTCACAGCAAGAGTTCTGTCCAGAAGGTATTTTATTTTCTACATTGCTACAGTTTAATTTATTTACAACTTGCTTTTAATCTAAGGTGATAGCTCCTGATTCCCTGTGATTTATGGAGTTCCTGGAATTATTGAAGATTGCATCTTTTGATACTACTTGATTTTTTTTTGGATGATGATATATTTGCTCCTTCCAATTTAACAATGAAAGCTAATGATTTTAGCCTTTGTCTTTTACATATTGACATATTGATTGCACTCTCTAAATATAACGTTCTGGTGCTTTCTGTAATTATCTGGTGAGTGCTATGATATTTAAGCTAAACCTTTTATCAGTCAAAGTACCTCTTCAATGTTATTTCACCTTCTCTCTGTTCTATTCTACCTATTATTATTAAATAACTTATAATTAAAACCGAATAATATTCTCCATCAATAAAGGTTCTTCAAATTAAAAATTCTAGTCTCTTAACGGAGAATCTCTTCAAAGACACTTTTCAGGGACAACCTCTCCTCCCTAAGGTCCAATGATAAAACGCCCTCCGCCTCCGACCTGTCTAAGGCCTTCAGTCTCTCTAAAATCTCTAATTTCCTCACCTTGATGTCTCCAAAGACAGAGACGTTCCACTCTTTCTGCGAGCTATAAAGAGACTTCAATTTTCTCATAAAACGAAAACCTTCCCATCTCTAAGGAACCTCAGAACTCCACCACGAAGTGACAAAGGCAAAGAAACTTAAAAGAAGGATATAGTCGATCCTTTGACAACTCTGAAACGTGGCTGCTCTTTGTGGTTTCTTACAAGTTGCATCTCAATTTCCAATTGACAACTTGACATAAGTGTATTTCATTAGCTTATTTATATGATTTTTCTGCTGAAAAGATGCGTATGATGCCTTCATTTTTATTTATTTATTTTTTTTGTATGAAAAAGCTTCTCGAGCTTGCGGAATTTAAACTAAAGGAAGCAATTTCAAGGGAACCTACTCTTCTTGTTATGGTCGTTGGTGTTCCGAATGTTGGGAAGTCGGCTTTAATTAATTCAATCCATCAAATTGCTTCAGCGCGCTTTCCTGGTAAGACTGTTTCTTGGATTATTATGGAAATTTATCTTTTATATTGAAGTGTATATGTATCGTAGTGTTTGATCTGGAGGCCTTGCTTGTTGGACTTTTGTGGCTTCAATAATGTTTCATAGTGCAGGAGAAAATGAAGCGAGCTAATGTGGGTCCACTGCCTGGTGTTACTCAAGATATTGCTGGCTACAAGGTAGTTTTGACCAACCACAAATCATTGATTAATCAATTTCTAGTTTTGCCCCTCCACTCCTAACTGCTTTTTGATATGAAATGGTACCATCATGAATTATTAACTGTTCGAAATTCTTCGATATGCAGATAGCCCATCAACCTAGCATATATGTTCTAGATACTCCAGGTGTATTAGTTCCTAGTATTCAAGATATAGAGACAGGGTTAAAGCTGGCACTCGCAGGTCGTATTCTTGTTTATAAGAGTTATTATTTTATATTTGTCAGAAGTGTTTTATTTGTTTCCTATCCGTCCAGCCAAATCATACAATTCATTAAGATTATGATTTTGTTTCGTCTTCAATTTAGTATTGGACCGTCATGCTGATATCGACTATATCACAGCATCCATGTAACACTGATGCTTTACCCTTTTAACATGGAAGCAGGATCTGTGAAGGATGCGGTAGTGGGTGAGGAGCGTATTGCTCAATATCTACTGGCTGTTTTGAATATTCGGGGAACTCCTTTCCATTGGAAGCAGTTGAATAACAGAAGAATGGAGGGTATTCAATATGAGTCAGAAGAAAGACACAAATTTAATCTTAATGACCTCCGGCCAAAAAGGGGGGCTCCTCCTACCAATAAGTCTGATGTGGTGTATGTCGAGGTAAGGAAAAGATTTCTTATACGACTCCTAGAGTTTCTGTGGGTTGATATGCTCCATGAGACTAATAAATTGTAGTTTACAAGAGGGAATTGCAGATTTAAATTGTTCACAAGAATTGAGAAAGACATGAATCATTGCACTGTTGGTAATATTGTGGTTGGTGTAGTCACTGGTCTAGTGGAAAAAGTAAATAGACTCAGAGGGAATGAGTTCAAATGCTAAGGTGGCACCTACGTTGGATATTAAAATCTTTCAAATTTTCTTGACAACAAAACATTGTAGGATCAGACGGTTGTCTCTTGACCATGTGAGATGAGTCAATGCGTGCCAAGGCAGAAAAAATCATTATGGAGCTTTCTCTTAGGGGTGATGCTTATGGCACAAAATTAGCTACAGGTTGGGATTCAATCGTTATCCGAGTTGTTGCACATTAAAAAAAACTAAAAAAGCTTGGCACGCTAGTCACAGTCATGGATATGTATATAAAAATCGTTATGGAGCTTGCTTAGGGGTGATGCTTATGGCACGAAATTAGCTACAGGACATTGAAAAAACTAAAAAAGCTACTTTGCATTGCTTGGCCCATTTTTTGTAAGTTGATTTTCTGTTTTGGGAGGGCCATAGATTACCTCGCAAAAAATTATCCCATCATCTAGTAGTGGGGCCTCATAACCTTTATTTTAAGATGTCCTTGTTTGTTTGCTTTTTGTACAACCTCTCTTTTGTTGTATACTTTCCTTCCTCTCAAGCATAGCCGGTTTATTGACCAAAATGAAGAACTGTATACTTATTTCCTGATTCATTTGGTTCAGGATCTCGTTACTGAAGTTCAACGCGCACTGTATACAAGTTTGTCAGAATTTGATGGTAACGTAGAAGATGAGAATGATTTAGAAAGTCTTATCGAACTGCAGTTCGAAGCGTTGCAGAAAGCGATGAAGATACCTCATAAGGCAGCGGAAGGTCGTTTGAAAGTATCAAAGAAACTACTCACTCTATTCAGGGCTGGTAAGCTTGGTCCATTCATCCTTGATGATGTCCCCACCATAAAATCTTCACCATTAAATTCTTAGAAAAATAGATGTTCCTCTTGTCTTGTCTTCAGTAGGTGGCCTTACTGTAGTATGGTACTTTTAGGGTAAAATGTACATTTCAAATTTGTAACTTAGGGTTTGTAAGTTAGATTGTTCTATTGACAAGGTACCATATTATTTTTATTGTCGATGAATTTGAGTGCGAGTTTTAATAATTATTTGTTTTTCTTATGACTCCTATGACTTCTCCCTCTAGGAACAACGTTGATTAATCTTCATGTGATTATTTCTTTT GAAAAATTCCTCATTATTTATAAGACTATGATTACTTCCCTCTTCTTCTCCCATTGCTCAGCTGTCAGCCCCCCTCAAGATTGTCCCAGCCGCCACCTCCAGCTTTTGCTCCGGCCAGACCACGGCAGACCCGACGTCCTCCAGACCAGACATCTTCCGACGACTCCTCTGCAGCACCACGGCGCTATGGCGAGGACGCAGGCGTTGGCTTTCTAATCCTTCGGTGGCGACCTCCCCACGCGACCCGTAGCAGTCGACGGGTGTTCTCCACGGCGGCGTTCGGCGTGTTGCAGGAGCAGCCGTCGGCCTTTGTAGCGACGCGGCGGCGGCAGCGCGTGTTTCCAGCCCATATTCGACGGGTTCTCGACGTCCTCCCGGCTTCGACGACCACGAACGCCCAGATCGGCGTTTCTCCGGTGGCTCAGCAGTGTGACTCGCGGATTCCGGTGGCGCGACCTCTTCCCCGGCAGAAACCCGCGGCCAGCACATGAACCGACGTCTCCAACGACCTGTTTTGCGATCCCAACGTGAACAGTAGCGGATTCACGAAGATTTCCTCGTTCCGGCGACATTCAGCGCTTACCCACACCCATTCAAAGCTTGATTTGAGTTACCCACCTCTTTCGGTGTTGATTCAGCGTCACTCATCGCTTTTCGGCATCTGAGCAGCAAGTCCGAAGCCTTTCAAACTCGGATTTGGGAGCCCGAACCTCTTACTCCTAATCCAAGAGGTTTTAGTGAACCCTTCGGCGAGCTTAGCAGCGTGTTAGGAACTTTTTAACAAGTGATGGGGAGCATTAAGAATATGCATAGAATGGGAGGGATCAAGGGATTAGTGAAGAAGGCTTTAGGAGAGATGGAATTCACGGCCGGTGGTGGAGCCATCAATTGGTTCCCGGGGCACATGGCGGCGGCAACACGAGCCATTCGCGAGAGACTGAAGTTGGCGGATATGGTGATCGAGGTCAGAGATGCCCGCATTCCCTTGTCGTCAGCGAACCAAGACCTTCAGCCTCAGCTTTCTTCTAAGCGCCGCATTATTGCCCTCAACAAGAAAGATTTGGCTAACCCCAATATCATGCATAAATGGATGTATTTTTTTGACTCATGCAATCAAGACTGCATTTCGATAAATGCTCACAGCAAGAGTTCTGTCCAGAAGCTTCTCGAGCTTGCGGAATTTAAACTAAAGGAAGCAATTTCAAGGGAACCTACTCTTCTTGTTATGGTCGTTGGTGTTCCGAATGTTGGGAAGTCGGCTTTAATTAATTCAATCCATCAAATTGCTTCAGCGCGCTTTCCTGTGCAGGAGAAAATGAAGCGAGCTAATGTGGGTCCACTGCCTGGTGTTACTCAAGATATTGCTGGCTACAAGATAGCCCATCAACCTAGCATATATGTTCTAGATACTCCAGGTGTATTAGTTCCTAGTATTCAAGATATAGAGACAGGGTTAAAGCTGGCACTCGCAGGATCTGTGAAGGATGCGGTAGTGGGTGAGGAGCGTATTGCTCAATATCTACTGGCTGTTTTGAATATTCGGGGAACTCCTTTCCATTGGAAGCAGTTGAATAACAGAAGAATGGAGGGTATTCAATATGAGTCAGAAGAAAGACACAAATTTAATCTTAATGACCTCCGGCCAAAAAGGGGGGCTCCTCCTACCAATAAGTCTGATGTGGTGTATGTCGAGGATCTCGTTACTGAAGTTCAACGCGCACTGTATACAAGTTTGTCAGAATTTGATGGTAACGTAGAAGATGAGAATGATTTAGAAAGTCTTATCGAACTGCAGTTCGAAGCGTTGCAGAAAGCGATGAAGATACCTCATAAGGCAGCGGAAGGTCGTTTGAAAGTATCAAAGAAACTACTCACTCTATTCAGGGCTGGTAAGCTTGGTCCATTCATCCTTGATGATGTCCCCACCATAAAATCTTCACCATTAAATTCTTAGAAAAATAGATGTTCCTCTTGTCTTGTCTTCAGTAGGTGGCCTTACTGTAGTATGGTACTTTTAGGGTAAAATGTACATTTCAAATTTGTAACTTAGGGTTTGTAAGTTAGATTGTTCTATTGACAAGGTACCATATTATTTTTATTGTCGATGAATTTGAGTGCGAGTTTTAATAATTATTTGTTTTTCTTATGACTCCTATGACTTCTCCCTCTAGGAACAACGTTGATTAATCTTCATGTGATTATTTCTTTT ATGGGGAGCATTAAGAATATGCATAGAATGGGAGGGATCAAGGGATTAGTGAAGAAGGCTTTAGGAGAGATGGAATTCACGGCCGGTGGTGGAGCCATCAATTGGTTCCCGGGGCACATGGCGGCGGCAACACGAGCCATTCGCGAGAGACTGAAGTTGGCGGATATGGTGATCGAGGTCAGAGATGCCCGCATTCCCTTGTCGTCAGCGAACCAAGACCTTCAGCCTCAGCTTTCTTCTAAGCGCCGCATTATTGCCCTCAACAAGAAAGATTTGGCTAACCCCAATATCATGCATAAATGGATGTATTTTTTTGACTCATGCAATCAAGACTGCATTTCGATAAATGCTCACAGCAAGAGTTCTGTCCAGAAGCTTCTCGAGCTTGCGGAATTTAAACTAAAGGAAGCAATTTCAAGGGAACCTACTCTTCTTGTTATGGTCGTTGGTGTTCCGAATGTTGGGAAGTCGGCTTTAATTAATTCAATCCATCAAATTGCTTCAGCGCGCTTTCCTGTGCAGGAGAAAATGAAGCGAGCTAATGTGGGTCCACTGCCTGGTGTTACTCAAGATATTGCTGGCTACAAGATAGCCCATCAACCTAGCATATATGTTCTAGATACTCCAGGTGTATTAGTTCCTAGTATTCAAGATATAGAGACAGGGTTAAAGCTGGCACTCGCAGGATCTGTGAAGGATGCGGTAGTGGGTGAGGAGCGTATTGCTCAATATCTACTGGCTGTTTTGAATATTCGGGGAACTCCTTTCCATTGGAAGCAGTTGAATAACAGAAGAATGGAGGGTATTCAATATGAGTCAGAAGAAAGACACAAATTTAATCTTAATGACCTCCGGCCAAAAAGGGGGGCTCCTCCTACCAATAAGTCTGATGTGGTGTATGTCGAGGATCTCGTTACTGAAGTTCAACGCGCACTGTATACAAGTTTGTCAGAATTTGATGGTAACGTAGAAGATGAGAATGATTTAGAAAGTCTTATCGAACTGCAGTTCGAAGCGTTGCAGAAAGCGATGAAGATACCTCATAAGGCAGCGGAAGGTCGTTTGAAAGTATCAAAGAAACTACTCACTCTATTCAGGGCTGGTAAGCTTGGTCCATTCATCCTTGATGATGTCCCCACCATAAAATCTTCACCATTAAATTCTTAG MGSIKNMHRMGGIKGLVKKALGEMEFTAGGGAINWFPGHMAAATRAIRERLKLADMVIEVRDARIPLSSANQDLQPQLSSKRRIIALNKKDLANPNIMHKWMYFFDSCNQDCISINAHSKSSVQKLLELAEFKLKEAISREPTLLVMVVGVPNVGKSALINSIHQIASARFPVQEKMKRANVGPLPGVTQDIAGYKIAHQPSIYVLDTPGVLVPSIQDIETGLKLALAGSVKDAVVGEERIAQYLLAVLNIRGTPFHWKQLNNRRMEGIQYESEERHKFNLNDLRPKRGAPPTNKSDVVYVEDLVTEVQRALYTSLSEFDGNVEDENDLESLIELQFEALQKAMKIPHKAAEGRLKVSKKLLTLFRAGKLGPFILDDVPTIKSSPLNS Homology
BLAST of MC09g0853 vs. ExPASy Swiss-Prot
Match: Q8L607 (Short integuments 2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=SIN2 PE=1 SV=1) HSP 1 Score: 525.4 bits (1352), Expect = 5.5e-148 Identity = 273/377 (72.41%), Postives = 314/377 (83.29%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy Swiss-Prot
Match: O82497 (DAR GTPase 2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=DGP2 PE=3 SV=1) HSP 1 Score: 229.9 bits (585), Expect = 4.7e-59 Identity = 141/356 (39.61%), Postives = 213/356 (59.83%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy Swiss-Prot
Match: Q8R2R6 (Mitochondrial ribosome-associated GTPase 1 OS=Mus musculus OX=10090 GN=Mtg1 PE=1 SV=2) HSP 1 Score: 152.9 bits (385), Expect = 7.4e-36 Identity = 100/250 (40.00%), Postives = 132/250 (52.80%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy Swiss-Prot
Match: B7GGD6 (Ribosome biogenesis GTPase A OS=Anoxybacillus flavithermus (strain DSM 21510 / WK1) OX=491915 GN=rbgA PE=3 SV=1) HSP 1 Score: 150.2 bits (378), Expect = 4.8e-35 Identity = 86/225 (38.22%), Postives = 134/225 (59.56%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy Swiss-Prot
Match: Q9BT17 (Mitochondrial ribosome-associated GTPase 1 OS=Homo sapiens OX=9606 GN=MTG1 PE=1 SV=2) HSP 1 Score: 146.4 bits (368), Expect = 6.9e-34 Identity = 92/228 (40.35%), Postives = 130/228 (57.02%), Query Frame = 0
BLAST of MC09g0853 vs. NCBI nr
Match: XP_022156767.1 (short integuments 2, mitochondrial isoform X1 [Momordica charantia] >XP_022156768.1 short integuments 2, mitochondrial isoform X1 [Momordica charantia] >XP_022156769.1 short integuments 2, mitochondrial isoform X1 [Momordica charantia]) HSP 1 Score: 754 bits (1947), Expect = 2.19e-274 Identity = 388/388 (100.00%), Postives = 388/388 (100.00%), Query Frame = 0
BLAST of MC09g0853 vs. NCBI nr
Match: XP_038883550.1 (short integuments 2, mitochondrial isoform X1 [Benincasa hispida]) HSP 1 Score: 669 bits (1727), Expect = 4.33e-241 Identity = 342/375 (91.20%), Postives = 358/375 (95.47%), Query Frame = 0
BLAST of MC09g0853 vs. NCBI nr
Match: XP_023518228.1 (short integuments 2, mitochondrial [Cucurbita pepo subsp. pepo]) HSP 1 Score: 656 bits (1692), Expect = 1.00e-235 Identity = 336/372 (90.32%), Postives = 353/372 (94.89%), Query Frame = 0
BLAST of MC09g0853 vs. NCBI nr
Match: XP_022966362.1 (short integuments 2, mitochondrial [Cucurbita maxima]) HSP 1 Score: 655 bits (1690), Expect = 3.80e-235 Identity = 336/379 (88.65%), Postives = 354/379 (93.40%), Query Frame = 0
BLAST of MC09g0853 vs. NCBI nr
Match: KAG6595673.1 (Short integuments 2, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 653 bits (1685), Expect = 1.04e-234 Identity = 334/371 (90.03%), Postives = 352/371 (94.88%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy TrEMBL
Match: A0A6J1DRI9 (short integuments 2, mitochondrial isoform X1 OS=Momordica charantia OX=3673 GN=LOC111023602 PE=4 SV=1) HSP 1 Score: 754 bits (1947), Expect = 1.06e-274 Identity = 388/388 (100.00%), Postives = 388/388 (100.00%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy TrEMBL
Match: A0A6J1HMR9 (short integuments 2, mitochondrial OS=Cucurbita maxima OX=3661 GN=LOC111466034 PE=4 SV=1) HSP 1 Score: 655 bits (1690), Expect = 1.84e-235 Identity = 336/379 (88.65%), Postives = 354/379 (93.40%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy TrEMBL
Match: A0A6J1EAB7 (short integuments 2, mitochondrial OS=Cucurbita moschata OX=3662 GN=LOC111432314 PE=4 SV=1) HSP 1 Score: 652 bits (1681), Expect = 2.06e-234 Identity = 333/371 (89.76%), Postives = 351/371 (94.61%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy TrEMBL
Match: A0A1S3CEC4 (short integuments 2, mitochondrial isoform X1 OS=Cucumis melo OX=3656 GN=LOC103499512 PE=4 SV=1) HSP 1 Score: 624 bits (1608), Expect = 2.91e-223 Identity = 328/376 (87.23%), Postives = 344/376 (91.49%), Query Frame = 0
BLAST of MC09g0853 vs. ExPASy TrEMBL
Match: A0A5A7ULU0 (Short integuments 2 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold697G00560 PE=4 SV=1) HSP 1 Score: 619 bits (1596), Expect = 2.03e-221 Identity = 328/377 (87.00%), Postives = 344/377 (91.25%), Query Frame = 0
BLAST of MC09g0853 vs. TAIR 10
Match: AT2G41670.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 525.4 bits (1352), Expect = 3.9e-149 Identity = 273/377 (72.41%), Postives = 314/377 (83.29%), Query Frame = 0
BLAST of MC09g0853 vs. TAIR 10
Match: AT4G10650.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 229.9 bits (585), Expect = 3.4e-60 Identity = 141/356 (39.61%), Postives = 213/356 (59.83%), Query Frame = 0
BLAST of MC09g0853 vs. TAIR 10
Match: AT4G02790.1 (GTP-binding family protein ) HSP 1 Score: 105.5 bits (262), Expect = 9.6e-23 Identity = 69/224 (30.80%), Postives = 113/224 (50.45%), Query Frame = 0
BLAST of MC09g0853 vs. TAIR 10
Match: AT3G07050.1 (GTP-binding family protein ) HSP 1 Score: 58.2 bits (139), Expect = 1.8e-08 Identity = 50/190 (26.32%), Postives = 92/190 (48.42%), 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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