MC08g1892 (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.GTTTTAAGAAATTAAGTTTTTAGTTTTACATTACTTTTATCATGACAAATGTTTTTGGGCAAATGATGTTGGACGAAGAAATTCTTAATTCATGTCACGATGATCTATATGGAAGAGCAGTTTTGTTGATGCATTCCTGTTGAGAAGTTCAAAAATTTCGTCCATACCAACTTAGTCATCCTCTGGTTCGTGCACCAAAATCTTTCTAGTCTTCACGAGTTGGTCTCTCTTTTCTGATTTTGACCCTGTGGTCGAACTCCTCCAGGATCCGCTCTGTGGATTAGACCTTGACTGAAAGGAAAGGAGAAGGGACGAGTGACCTAAAGTATCGAAAAGGCAAGGACTCCAAGAAGAAGCCAAGCATGAGGCGTAGAAGGTTTATTCTTTCCCTAGATGCCCGATTTGTTTCCAATATGCACTTCCCTTCCATCCGACTACACTGAATTCCTTCTAAAAAAGTGTCTGACACCTGGTTTTCTCCGACACATATTAGCTTATCTGCGCTTAATAGGTCGGTTTGGCTTCCTCTCTGGCAGCCTAAAGTATAATTGTGTCAGTTGGATTTGATTTTTGTTTAACAAAAGAAATACCGAACCAATTTGAAAGAAGTTTGGTTAGACCTGAATTTTACATGCTATTTTTTTCTTTATTTATTCTTTTTAGTACAGGCTTTTTCTCTTATATATATATATATATATATATATTTTATTCATACTAGGTTTCTTTTTTATTTGTGAGAGGCTGCCAATTTCGAAAACCTATCTTCTTCTTCTTCTTTTTTCTCCCACGAAATCCTGCGAATCTTGCCCCGCCGTCGCCTTGCTGAGAGAACGTGAGAGGGTGGACAAGGAATGTATGCTATAAAACCCTTGGGTTTGTCGGGTCAACAACGGTTCGGTTTGATTTTTCGAGTCTGGTTCTGTGTTCAATTAACATATTCAATATATATCAAAATAAGTCTGTAATGAAAAAACAAATAAGACAACAGAGTGTAAGTGAGAGTTAAAACAAGAGAAAAATGAAAAAGTTCTATTCATTAAAACAGAGTTTTACAAATATTTTTTGAAAAATAAATAACAGATCATTGGCTCATTAATTAGACTACTAGTATTCAAATTCTCTCAAATTTACATCTACTCATCCAATACTTAATTAACTACCAATTATAAAATTAACCATTAATCATCGCTCCTAAAACGTAGATAAATAAACACCAACAATGAAACTACCATATATTTGTACTACTTTTTAACAATGTCAGGTATTTATTAGACACAAAAACTCAACAACTTTAAAATTTAGAAATTTATTAGATACTCGTTAAAATTTAAAAACTTATTAAACAGCATCCAAATGAAAGTTTAGAGACAAAACTTGTAATTTTTATATAGAAAAAAATAAAATAAAATGGTAGCATGAACAAAGCTCAATTGACGAGGTGGTCTGGAGTTTCAAATATTCATCTCGTTTACAACTTTTAAAAATACTGTAAATTACAAAACTGAACCGGGTTCGATCCGTCCGGTTTTTTATTATTTTTTATTTATTTATTTATTTTATTTTCCACAATAAAAATGAAAAACCCCAAGGCATTTGCGAAGGGTTTTTGGACGAAGTTCGTAGCATCTTCTCCTCTGCAGCTGAGGATTGTCATCTCAACGTTTCGTTATTCAGTTCTGGGATTCTTCAATTCACATAGGTAGATATGGACATCGACGGGGTTTCGGAGGACACCTCTCGGCGAGTTCAAGTGCGGTTTATCACGAAACTCAAGGCTCCTTTCAAGGTTCCGACGAACGCCATTGCCATTCCCTCTAACCTCACCAGACTGGGTCTTTCCACCGTTGTTAACAATCTTATTCTAGCCGGTATGTTCTTTTATCGCGTCTAAAATGTCGTCTGGTTATTTGCTGTTTCACTGGAACTATGTTTCGTTGCTCCGTATTGACTTGTTTTATTGAAACTAATGGATAGGGAACCCTGAGTGGGAAGCAGAACCATTTGATTTTCTAATTGATGGCGAGCTGGTCAGAATGTCGCTGGAGCAATTCCTTCTTGCTAAGGGAATCTCGGCGGTAATAGTTAAATTGTTGTTATCAATGTTTGGTTCCTATGTTGTGTGGAGAGGAAATCGGAAGCTTTTGAACGCTTACAATATATAGTTTATTTATTTAGAATATCTTCAGTTGAGTATCCAATATGACCCAAGTTAGAGATCTGGGAGGTTTTATTATTGTCTCTTTTTCTTTGAATTTTTAGTGTTCTTCCTGAACTGTCGTTTTGGCATACAATAGGAGAAAACGTTGGAGATTGAGTATATTAAGGCTGTTGCCCCACGAAAGGAGGAAGAGCCTTCTGTTCATGATGATTGGGTCAGTGCAGTAGATGGGTCTTGTCCTGGGTAAGCATTTGAATGCAACATCTACTTTATTATAGTCATCTATGATTCTATATCACCTGCATTTTGGGTTTTTTTTTTTTTAGTTTAGCGACCGTGCTTCAATTTATTGTCCCTGTGAGTTTTTTAAGATTTAGTGGTTGGTTGGTATCTTATGAATGCTTTTAGAATTTTCTTCCGTTCCTGTATGTTGAACTACTCTACTATTGGCTTGTCTTGGATGCCCTGTAAGGGTGTTTGGCTGTCTGTTACATAGAACACTTTGAATTGTTTTATTGTGCAATCTGATGACATGGTTTGGGTTACCATGTATTCGGGATCATTGTTACAAGCTCGTGATTCTTTTAAAGAACAATTTAAATTCTTTTAAATAGACCATCTGTCTAACAAAGTTAAATTTTAGAAACACAGTTATCAAAACATAGTGTTACATGTTTTGTCAATGAAAAGCAGTTTTAGGCTCAACTTTTAAAGTCTCTTTGTGGTCATTGAGTAATAACGGGTGTCAATTTTCTACCTCTGGGATTACCTTATCCCAAATATCAATGATAAAGATTGATACAATGAGGCATTTTATTTGTAAGCCAGTGTATTTTATTGCTGCATGTAGCAAGTTTCAGCGTGGTGTAATTTATTGAATGTGCATATTAGCTGTTACTGCTGTATAATCTTTTCAGTAGTAACAGCTAATATGCCTATTGCCTATCCATTAAACTGTTATTGCTGTATGCCTGTATCATTACAATTAGGATTTGAATTAGTTTGTAGGCATATCTTTTTAAATGAAGTAATTTAATTTTGCTTCTTCTGTTTGCATGTCAAAATAGCAAAGGAAACTAATATAATTTGAACTTGTGTTTGCTCATATTTTTCAGGTTCATTTTGACAGGTTGCTATGATGGCTTAGGAAGGTAAACTTAAGTTTTTTTTTTAATACTCGAAGAAACCCATAAACTGTTGTCTTTCTTACTATTTTTTCTTGAATAGTGAACACGGATTGTTATCTAAAAACATCTACTATTGTTCCATAGGGTTTGGGAATCTGCCGGATTGTGTACACATATACTTGAAGGTCATAGCGATGCCATATCATCCGTCTGTATTGTGAACCCTGAAGGTATTTACCAAACTTACCATCTCCTATAACACGATCCGTGAACAATGTTGTGCCAGTTGTTATAGTTGATAATTTTATTTTCTCTTTTCTATATCAAGCTTGTAGTTTTTTCTTGTGAGCTCCTGGTATTAGATTAATATATTTTGATATATTGGAAACTTTATATCACTTTCTGTTTGAGAAACTTGTCTACATGCTGAAGCACTTCAACGTTCCGAGGTAACCTTTAGCCCAAATTTTTTCTCTGAAAGTTGCCCTAGGAAATCCTTATATCTGGATTTCTACGTTCTCGTGCATGCATGCTGTTTACTATTAGATATACATATACTATAAAGTTTTTTTCCATTTTAGGAACGTTCAATCTTTGGGTTTAGGACCTTGTGGCCCTAAGCTATCTTTGACTTGCTAGCTAAATACTAGTCTTTGTCTAATTTATATTTATTGTTTTATTGAAACATGGTTCTCTAATTCAAGTTTGAATCTTATATCGATACTGGTTTATTTACTTCTTGACCATGCTAATACAGAAGCTGCTAGTGTCACTCTCGCCACTGCTTCAAAGGATCGAACACTCAGGCTGTGGAAGGTAATTTTTTGAAGAAGTACTTGTTTAATATTGGACCTATGTGATTGATGATTTAACAAAATAATTTTTCCTGTTTCCACTTGGAAGTATTCAAAAGACAAGTCTGCTAGCAACCCTACCAAGATAAGGGCATTCAAAATCTTGAAAGGACACGGATTATCTGTCCAAAGTGTTGCATCACAGACGTCTGGAGACCTGGTATGATTATGTTCTTGTTGCTGTGTTGTGTATATTATATGTTCCAATTCAAAGTGAAAGTTACAACGGTCTACTCACAAGTTTGCTCATATTATTTGATCTTTTATTATGTAATTTAGATCTGTTCAGGTTCTTGGGATTGCACAATCAATTTATGGCAAACAGATGAACCTCAATCTGAAGGTGATGTTGTCTCCATCAAGAGGAGAAAAAAGAATGACCAGGCTGAAGAATCTCAGTTAGAGGTAAAGCATAGTTTTTGTTCTTTTTGGTTAATTAGAGTTGACAACATGTCTTATCCAAAAAATTAGACTAGACAACATGTGACTATTTCAAGTGGGATCATGCATTATGGAAATGAACCTTTAACACAAGGAATGCCTCGACCCCCAGTTAACATTGGGGCCCATAAAAAATTAAAGAGGCTTGGAACGAATGAGTTCAAACCATGGTGATTGCCTATCTAAAATTTTCAATCTTACGAGTTTCTTTGGTAATCAAATATCGTAGGGTTCGGCGGTTGTTCGATGAGATTAGTCGAGTCATGCATGCAAGCTGGCATGGATGCTCACACACACACACATATAGGAATGCCTGAGCACCTGTTAAATATTAATTTTCAATTAGTTTGGTGTTTGGATGGTTAGAATGAATCGCTCCATGACCAGAATTCTCACTTTGCACCCTGCTTTTTATCTTTCTATGATATTATAATTTGAGCCTTGTTGCCTTTATCGGAGCTTTCTAAAAATTAACTCTTTCTGTTGTTACCAACCAATTCTTATGCTGCCTGGTGCGTGACTATTAATAGACATTTCTTTTTTTTGGATAGGAAACAAATTTCATATTGAGGGTTTTTAATTTTTGGTCATGAAATCTTAAACCGTTTCAACTTTCATAGCAACTCACTCTGTTCTCTATTCTCTCTCTTTGTCTTCTTCTTTTCTTTTAGTTACACATATATATAAGAAGGTTTCTTATCTTCTGCTTTTTGTTTCTTTCCCTTAATTTTTTCTCATATTTTTGTTTAATAATGTAGCTTATGTCTCTATATAAAACATCTAACAGGGCACCTCTGTTGCTACGCTTGTTGGCCACACACAATGTGTATCGTCAGTTGCTTGGCCGAAGCATGGAGAAATTTATTCAGCATCGTGGGACCATTCTGTAAGAAGATGGGATGTCGAGACAGGCAAAGATTTGTTTAATATTGTATGCTCGCCAACTCTTTCCATGTTCCTCTTCATGCATATGTTTATGAAATAGAATTTAATTTTGATGTTGAAGTTCTTGTTTTACATGACATGGACGTCCGTAGGAAGTTATGCATTCTCCATTTCCATGAAATTTTGTGTAAAATCCAACTTTTATGGAAATATAGCCCAGAAAGCATGTTCTCTTGAGGAAAGACATTAAACAGTTACTAACTTGTCAGTTTGTTTGCTTTTATGGAATGAAACTATTAGCAGTAGTAAAGGAAACTTGACAATTGAATGTTCTTTGGGATTAAATAGATATAAAATTACCTAAAGTTCCACACTTCTCTGAATTACTGTCTTATGTCTTCAAATTCATTCATCCAAATGAAATATGGATCCATTCATTAGAAAAATTGTCTCCATTGACAGTTTTGTGGTAAGGCACTCAGCTGCCTCGATATCGGAGGTGAGGGCTCCACTCTCATTGCTGCCGGTGGCTCAGACCCCACCATTAGAATATGGGATCCTCGTAAACCAGGTATACAGAACGGGAAATGGGCTGCATCCTCTAGAAACACTTCTGTATCTAATAATGTGATATTTTTGTAGGAACTTCTGGTCCAGTCTTTCAGTTCTTGTCCCATAGTTCTTGGGTTTCAGCTTGCAAGTGGCATGATAGATCTTGGTTCCATTTGCTGTCTGCATCATATGATGGGAAAGCTATGCTGTGGGATCTGAGAACTGCGGTACTCGAATATTCTCGCGCTCTATTGTTTGTTCTAATTTTGAATGTATAACACCTGACCAAAAAAATTGTTTTGTTCATCTTACAGTGGCCTTTAGCTGTAATTGACTCTCACAAAGACAAGGTACCCCATTTTGTTCCTTCCTCGCCAACATAGCCTTTGCCCTTTGGAACCTTGTTTCATTATGTTTGCAAATTTCAGGTACTGTCGGCTGACTGGTGGAAAGGTGACAATGTTATCAGTGGCGGGGTGGACTCGAGACTGTGCATTTCGTCTGGGATTTATGTGCCGTAAGGTAGAATAGAAAGATTTTCTTTTCTGGTAAAAAGGATTTTAGTTTACCACGAAATGACCACCTTAATTGACTATGAAATTATTATGGATGAGTTCGATTGCTGAAATCTCTTTAAATTTTCTTTTCAGGTCTGCTGCCTTTTCTTCAGTGTAAGGTAGAGAACTGTATCAGAGGAGAATATAAAAAGTAAATTGCGTTTCTTTTGTTGTAAAACCAATCAAATTTTCTCTCTTTGGAGAGAGCTCCCAACTATAGGCTGACTGAAACTTAAGAGTTGAGATTGGCTTATTATTTATAATTTATTCTTTTCTTTGAGTTCTCCCATAATACTCTC GTTTTAAGAAATTAAGTTTTTAGTTTTACATTACTTTTATCATGACAAATGTTTTTGGGCAAATGATGTTGGACGAAGAAATTCTTAATTCATGTCACGATGATCTATATGGAAGAGCAGTTTTGTTGATGCATTCCTGTTGAGAAGTTCAAAAATTTCGTCCATACCAACTTAGTCATCCTCTGGTTCGTGCACCAAAATCTTTCTAGTCTTCACGAGTTGGTCTCTCTTTTCTGATTTTGACCCTGTGGTCGAACTCCTCCAGGATCCGCTCTGTGGATTAGACCTTGACTGAAAGGAAAGGAGAAGGGACGAGTGACCTAAAGTATCGAAAAGGCAAGGACTCCAAGAAGAAGCCAAGCATGAGGCGTAGAAGGTTTATTCTTTCCCTAGATGCCCGATTTGTTTCCAATATGCACTTCCCTTCCATCCGACTACACTGAATTCCTTCTAAAAAAGTGTCTGACACCTGGTTTTCTCCGACACATATTAGCTTATCTGCGCTTAATAGGTCGGTTTGGCTTCCTCTCTGGCAGCCTAAAGTATAATTGTGTCAGTTGGATTTGATTTTTGTTTAACAAAAGAAATACCGAACCAATTTGAAAGAAGTTTGGTTAGACCTGAATTTTACATGCTATTTTTTTCTTTATTTATTCTTTTTAGTACAGGCTTTTTCTCTTATATATATATATATATATATATATTTTATTCATACTAGGTTTCTTTTTTATTTGTGAGAGGCTGCCAATTTCGAAAACCTATCTTCTTCTTCTTCTTTTTTCTCCCACGAAATCCTGCGAATCTTGCCCCGCCGTCGCCTTGCTGAGAGAACGTGAGAGGGTGGACAAGGAATGCATTTGCGAAGGGTTTTTGGACGAAGTTCGTAGCATCTTCTCCTCTGCAGCTGAGGATTGTCATCTCAACGTTTCGTTATTCAGTTCTGGGATTCTTCAATTCACATAGGTAGATATGGACATCGACGGGGTTTCGGAGGACACCTCTCGGCGAGTTCAAGTGCGGTTTATCACGAAACTCAAGGCTCCTTTCAAGGTTCCGACGAACGCCATTGCCATTCCCTCTAACCTCACCAGACTGGGTCTTTCCACCGTTGTTAACAATCTTATTCTAGCCGGGAACCCTGAGTGGGAAGCAGAACCATTTGATTTTCTAATTGATGGCGAGCTGGTCAGAATGTCGCTGGAGCAATTCCTTCTTGCTAAGGGAATCTCGGCGGAGAAAACGTTGGAGATTGAGTATATTAAGGCTGTTGCCCCACGAAAGGAGGAAGAGCCTTCTGTTCATGATGATTGGGTCAGTGCAGTAGATGGGTCTTGTCCTGGGTTCATTTTGACAGGTTGCTATGATGGCTTAGGAAGGGTTTGGGAATCTGCCGGATTGTGTACACATATACTTGAAGGTCATAGCGATGCCATATCATCCGTCTGTATTGTGAACCCTGAAGAAGCTGCTAGTGTCACTCTCGCCACTGCTTCAAAGGATCGAACACTCAGGCTGTGGAAGTATTCAAAAGACAAGTCTGCTAGCAACCCTACCAAGATAAGGGCATTCAAAATCTTGAAAGGACACGGATTATCTGTCCAAAGTGTTGCATCACAGACGTCTGGAGACCTGATCTGTTCAGGTTCTTGGGATTGCACAATCAATTTATGGCAAACAGATGAACCTCAATCTGAAGGTGATGTTGTCTCCATCAAGAGGAGAAAAAAGAATGACCAGGCTGAAGAATCTCAGTTAGAGGGCACCTCTGTTGCTACGCTTGTTGGCCACACACAATGTGTATCGTCAGTTGCTTGGCCGAAGCATGGAGAAATTTATTCAGCATCGTGGGACCATTCTGTAAGAAGATGGGATGTCGAGACAGGCAAAGATTTGTTTAATATTGTATGCTCGCCAACTCTTTCCATCTGCCTCGATATCGGAGGTGAGGGCTCCACTCTCATTGCTGCCGGTGGCTCAGACCCCACCATTAGAATATGGGATCCTCGTAAACCAGGAACTTCTGGTCCAGTCTTTCAGTTCTTGTCCCATAGTTCTTGGGTTTCAGCTTGCAAGTGGCATGATAGATCTTGGTTCCATTTGCTGTCTGCATCATATGATGGGAAAGCTATGCTGTGGGATCTGAGAACTGCGTGGCCTTTAGCTGTAATTGACTCTCACAAAGACAAGGTACTGTCGGCTGACTGGTGGAAAGGTGACAATGTTATCAGTGGCGGGGTGGACTCGAGACTGTGCATTTCGTCTGGGATTTATGTGCCGTAAGGTCTGCTGCCTTTTCTTCAGTGTAAGGTAGAGAACTGTATCAGAGGAGAATATAAAAAGTAAATTGCGTTTCTTTTGTTGTAAAACCAATCAAATTTTCTCTCTTTGGAGAGAGCTCCCAACTATAGGCTGACTGAAACTTAAGAGTTGAGATTGGCTTATTATTTATAATTTATTCTTTTCTTTGAGTTCTCCCATAATACTCTC ATGGACATCGACGGGGTTTCGGAGGACACCTCTCGGCGAGTTCAAGTGCGGTTTATCACGAAACTCAAGGCTCCTTTCAAGGTTCCGACGAACGCCATTGCCATTCCCTCTAACCTCACCAGACTGGGTCTTTCCACCGTTGTTAACAATCTTATTCTAGCCGGGAACCCTGAGTGGGAAGCAGAACCATTTGATTTTCTAATTGATGGCGAGCTGGTCAGAATGTCGCTGGAGCAATTCCTTCTTGCTAAGGGAATCTCGGCGGAGAAAACGTTGGAGATTGAGTATATTAAGGCTGTTGCCCCACGAAAGGAGGAAGAGCCTTCTGTTCATGATGATTGGGTCAGTGCAGTAGATGGGTCTTGTCCTGGGTTCATTTTGACAGGTTGCTATGATGGCTTAGGAAGGGTTTGGGAATCTGCCGGATTGTGTACACATATACTTGAAGGTCATAGCGATGCCATATCATCCGTCTGTATTGTGAACCCTGAAGAAGCTGCTAGTGTCACTCTCGCCACTGCTTCAAAGGATCGAACACTCAGGCTGTGGAAGTATTCAAAAGACAAGTCTGCTAGCAACCCTACCAAGATAAGGGCATTCAAAATCTTGAAAGGACACGGATTATCTGTCCAAAGTGTTGCATCACAGACGTCTGGAGACCTGATCTGTTCAGGTTCTTGGGATTGCACAATCAATTTATGGCAAACAGATGAACCTCAATCTGAAGGTGATGTTGTCTCCATCAAGAGGAGAAAAAAGAATGACCAGGCTGAAGAATCTCAGTTAGAGGGCACCTCTGTTGCTACGCTTGTTGGCCACACACAATGTGTATCGTCAGTTGCTTGGCCGAAGCATGGAGAAATTTATTCAGCATCGTGGGACCATTCTGTAAGAAGATGGGATGTCGAGACAGGCAAAGATTTGTTTAATATTGTATGCTCGCCAACTCTTTCCATCTGCCTCGATATCGGAGGTGAGGGCTCCACTCTCATTGCTGCCGGTGGCTCAGACCCCACCATTAGAATATGGGATCCTCGTAAACCAGGAACTTCTGGTCCAGTCTTTCAGTTCTTGTCCCATAGTTCTTGGGTTTCAGCTTGCAAGTGGCATGATAGATCTTGGTTCCATTTGCTGTCTGCATCATATGATGGGAAAGCTATGCTGTGGGATCTGAGAACTGCGTGGCCTTTAGCTGTAATTGACTCTCACAAAGACAAGGTACTGTCGGCTGACTGGTGGAAAGGTGACAATGTTATCAGTGGCGGGGTGGACTCGAGACTGTGCATTTCGTCTGGGATTTATGTGCCGTAA MDIDGVSEDTSRRVQVRFITKLKAPFKVPTNAIAIPSNLTRLGLSTVVNNLILAGNPEWEAEPFDFLIDGELVRMSLEQFLLAKGISAEKTLEIEYIKAVAPRKEEEPSVHDDWVSAVDGSCPGFILTGCYDGLGRVWESAGLCTHILEGHSDAISSVCIVNPEEAASVTLATASKDRTLRLWKYSKDKSASNPTKIRAFKILKGHGLSVQSVASQTSGDLICSGSWDCTINLWQTDEPQSEGDVVSIKRRKKNDQAEESQLEGTSVATLVGHTQCVSSVAWPKHGEIYSASWDHSVRRWDVETGKDLFNIVCSPTLSICLDIGGEGSTLIAAGGSDPTIRIWDPRKPGTSGPVFQFLSHSSWVSACKWHDRSWFHLLSASYDGKAMLWDLRTAWPLAVIDSHKDKVLSADWWKGDNVISGGVDSRLCISSGIYVP Homology
BLAST of MC08g1892 vs. ExPASy Swiss-Prot
Match: Q9LF27 (Ribosome biogenesis protein WDR12 homolog OS=Arabidopsis thaliana OX=3702 GN=WDR12 PE=1 SV=1) HSP 1 Score: 674.5 bits (1739), Expect = 8.2e-193 Identity = 316/435 (72.64%), Postives = 374/435 (85.98%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy Swiss-Prot
Match: Q8H594 (Ribosome biogenesis protein WDR12 homolog OS=Oryza sativa subsp. japonica OX=39947 GN=WDR12 PE=3 SV=1) HSP 1 Score: 583.9 bits (1504), Expect = 1.5e-165 Identity = 274/439 (62.41%), Postives = 347/439 (79.04%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy Swiss-Prot
Match: A8IR43 (Ribosome biogenesis protein WDR12 homolog OS=Chlamydomonas reinhardtii OX=3055 GN=CHLREDRAFT_128420 PE=3 SV=2) HSP 1 Score: 289.3 bits (739), Expect = 7.4e-77 Identity = 169/453 (37.31%), Postives = 244/453 (53.86%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy Swiss-Prot
Match: Q6NX08 (Ribosome biogenesis protein wdr12 OS=Danio rerio OX=7955 GN=wdr12 PE=2 SV=1) HSP 1 Score: 256.1 bits (653), Expect = 6.9e-67 Identity = 145/416 (34.86%), Postives = 225/416 (54.09%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy Swiss-Prot
Match: Q5BJ90 (Ribosome biogenesis protein wdr12 OS=Xenopus tropicalis OX=8364 GN=wdr12 PE=2 SV=1) HSP 1 Score: 254.6 bits (649), Expect = 2.0e-66 Identity = 149/418 (35.65%), Postives = 232/418 (55.50%), Query Frame = 0
BLAST of MC08g1892 vs. NCBI nr
Match: XP_022155078.1 (ribosome biogenesis protein WDR12 homolog [Momordica charantia]) HSP 1 Score: 879 bits (2272), Expect = 0.0 Identity = 431/436 (98.85%), Postives = 431/436 (98.85%), Query Frame = 0
BLAST of MC08g1892 vs. NCBI nr
Match: XP_023523745.1 (ribosome biogenesis protein WDR12 homolog [Cucurbita pepo subsp. pepo]) HSP 1 Score: 784 bits (2025), Expect = 1.11e-284 Identity = 381/435 (87.59%), Postives = 402/435 (92.41%), Query Frame = 0
BLAST of MC08g1892 vs. NCBI nr
Match: XP_022948382.1 (ribosome biogenesis protein WDR12 homolog [Cucurbita moschata] >KAG7036791.1 Ribosome biogenesis protein WDR12-like protein [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 783 bits (2022), Expect = 3.17e-284 Identity = 380/435 (87.36%), Postives = 402/435 (92.41%), Query Frame = 0
BLAST of MC08g1892 vs. NCBI nr
Match: XP_023525175.1 (ribosome biogenesis protein WDR12 homolog [Cucurbita pepo subsp. pepo]) HSP 1 Score: 780 bits (2015), Expect = 3.69e-283 Identity = 379/435 (87.13%), Postives = 401/435 (92.18%), Query Frame = 0
BLAST of MC08g1892 vs. NCBI nr
Match: XP_022997784.1 (ribosome biogenesis protein WDR12 homolog [Cucurbita maxima]) HSP 1 Score: 773 bits (1997), Expect = 2.04e-280 Identity = 375/435 (86.21%), Postives = 400/435 (91.95%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy TrEMBL
Match: A0A6J1DM12 (Ribosome biogenesis protein WDR12 homolog OS=Momordica charantia OX=3673 GN=LOC111022210 PE=3 SV=1) HSP 1 Score: 879 bits (2272), Expect = 0.0 Identity = 431/436 (98.85%), Postives = 431/436 (98.85%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy TrEMBL
Match: A0A6J1G934 (Ribosome biogenesis protein WDR12 homolog OS=Cucurbita moschata OX=3662 GN=LOC111452076 PE=3 SV=1) HSP 1 Score: 783 bits (2022), Expect = 1.53e-284 Identity = 380/435 (87.36%), Postives = 402/435 (92.41%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy TrEMBL
Match: A0A6J1KCJ3 (Ribosome biogenesis protein WDR12 homolog OS=Cucurbita maxima OX=3661 GN=LOC111492637 PE=3 SV=1) HSP 1 Score: 773 bits (1997), Expect = 9.88e-281 Identity = 375/435 (86.21%), Postives = 400/435 (91.95%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy TrEMBL
Match: A0A1S3B4A1 (Ribosome biogenesis protein WDR12 homolog OS=Cucumis melo OX=3656 GN=LOC103486017 PE=3 SV=1) HSP 1 Score: 760 bits (1962), Expect = 2.12e-275 Identity = 374/435 (85.98%), Postives = 395/435 (90.80%), Query Frame = 0
BLAST of MC08g1892 vs. ExPASy TrEMBL
Match: A0A5D3C4N3 (Ribosome biogenesis protein WDR12 homolog OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold83G00050 PE=3 SV=1) HSP 1 Score: 760 bits (1962), Expect = 1.06e-274 Identity = 374/435 (85.98%), Postives = 395/435 (90.80%), Query Frame = 0
BLAST of MC08g1892 vs. TAIR 10
Match: AT5G15550.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 674.5 bits (1739), Expect = 5.8e-194 Identity = 316/435 (72.64%), Postives = 374/435 (85.98%), Query Frame = 0
BLAST of MC08g1892 vs. TAIR 10
Match: AT5G15550.2 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 607.1 bits (1564), Expect = 1.1e-173 Identity = 286/394 (72.59%), Postives = 338/394 (85.79%), Query Frame = 0
BLAST of MC08g1892 vs. TAIR 10
Match: AT2G43770.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 85.5 bits (210), Expect = 1.2e-16 Identity = 67/241 (27.80%), Postives = 101/241 (41.91%), Query Frame = 0
BLAST of MC08g1892 vs. TAIR 10
Match: AT3G18130.1 (receptor for activated C kinase 1C ) HSP 1 Score: 77.4 bits (189), Expect = 3.1e-14 Identity = 69/269 (25.65%), Postives = 121/269 (44.98%), Query Frame = 0
BLAST of MC08g1892 vs. TAIR 10
Match: AT4G02730.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 76.6 bits (187), Expect = 5.4e-14 Identity = 79/285 (27.72%), Postives = 117/285 (41.05%), 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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