
Tan0017679 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TATGTTACAACTTACATACAAATAAGTTAATTCTGACCGTGTCCTAACGACGAAGTTCAGTATTGCTTCATTTAGTAACAACATGATTTCTACTTCTTCACTGCGTCCCTGCCCAAGCCCAAGTCCCTCTACAAGGACCGGCATAGTTTCGTGTTCTAGCAGACATTTCTGCAACTTCGGATTCAATCCAAAATGCCCACTGCTTAATCCTAATCAATGGAGAAAATCGGTCGATAGAAGCTCTGGTCGTGATTATAGGTGCGGACCGGTGAGATTTTGTGCTTTGAAAGATGTGAAATCTTCGTCTTCAACCTCTCATAATGCCAATACTTTTGAGTTTGATGTCGTGATCATTGGTGCGGGAATTATCGGGTTAAGTATTGCTCGGCAATTTCTTATCGGGTCGGATATGTCCGTCGCCGTTGTCGATAAGGCCGTCCCTTGCTCTGGAGCTACTGGTGCAGGTGAGAATGTTCAGTATGAACTGTTAACGTTGTTCATGAACCTGTTCTTAGAATCGAATGTATTTGTCGGTTCCAGGGCAGGGCTATATATGGATGATGAACAAAACCCCTGGCTCTGACACTTGGGAACTGAGTTTGCGAAGCCACATGCTGTGGGAGAGTCTGGCTGAGTCCCTGCGTGATCAAGGCTTGAATCCATTGGAAGAGTTGGGTTGGCAAAAGACAGGTACAGGAAATGATGAAATCAATTTTCTGTATCTATCATTCGTTCTTTACAAGTTTCAGTAATTTTGACTTCCACATCATTTGCATTCTTCATTTGCTGTCACTGAGGGGACCTAACATTAGGTAGTTGCCATTCTTTTGAAAAGCACCAACCATTTGCTTGCTTGCTTGCAAGCTGCGTATATAAAATTGTTGTCTGAATAAAATGCTGCATAACGACTAGTAAGTAAAATGATAAGTACCCGTGCCAGAAAAATTCATGAAATCAGGTCAGTAAATTATCATTTGGGGGTACATTTGTGCCCAAAAACTACATTCAAGACAGGATTTGAGCTTCTTGATGCATTTTTATCTGAAAATTATGTAGTCTTACATGAGTTGTATTTACTTCTTATTTATTTCTGTTTTAGGGAGCATGTTAATTGGTCAAACACCTGAAGAGCTTGACACATTAAGGAAGAAGGTAAAGCAACTTTCTGGGGCTGGACTGGAAGCTGAATACTTGTCTGGTGCTGATTTGCTTTCCATGGAACCAGCTCTGCAGATCGAGGACAGCTGTGGGGCTGCATATCTCCCCAATGACAGTCAATTGGATGCTCATCGTGCTTCAGCATTTATGACAAAGGTTTTGTCTGAAAATATCAAATTTCTCTTTCTTCCTATCCAATTATGTTAGCTACAACTACAACTATTAATATCAAGCTAATTAAGGTTCTTTACTGATGGATATGATAAACATGTAGGCTAACAAACAATTCGAAGGAAGATATGCAGAGTTCTTTCATGACCCCGTGACAGGCTTATTAAGGTTCATTTTTCTTAACCAACTGCACTTAGATGTTAAAAACAAGAACAATAAATATCAGAACTTGTGATAGATCACTAGTTAGTTGATGTTTGGCTAAAATGGTAAATATGCATATCATAAATGGCATTTTCTTTAATTAATTGATAAACAGAAACAAATAAGTTCTTGAAATTCATTAACTTTTAAGGGTCCTGTAGATACTCGCAACATCTATAAAAAAAATCTTTCTACAGCTAATCCTTGGAGTCTGTAATGCTTCAAGATTTCTGAAACAAGAATACGGCCATGACCATTAACCTGATTTTCTTTGACACAAGATAACTTTGAGAAAATAGTAAAAGAGGGCGAATGGATAAATTTTGAGCAGGGTTCAGAAAAAAATAGATAATTCAATAGATTTGTAAGCTTCTTAAACTTTGAATATAGTCAAGATATCATGAATTGCAACCATTAAAATCCTATCTTAGCTATTATTCAAAGAACTTTCTGACCATAAAAGATTTGGAAAGGTTGATGAACGTTCACCTATCCTATGATAATGTAACTAGTCTTGTTGACTTGTACTAGCTATTATTCAAAGAACTTTCTGACCGTTATATGAACACTTTCTTGTATAGTAATAGTATGTTTATATTTTTTTTACTATATTTAGATAATCGAACCATAAGTCTTCGAAACATACACTTATATGTATTCATATGTTTTGTTTCTTCGAGCTTCTCTGTTTTGGTTGTTTAACTGGTGGCTTTTTGGTTCCTTTTCTGTCTGGTTTTGTTTGATTTACTTTTTTGTTCTTGCAATTTTTTTAAAAAAAATTTTTTGTTGTTTTTTTCCCCTTTCTCTCCCTTTTGGGAGTTTGTATCTTTGAACTTTTTTTTTCTCTTTTTCATCAATCAACCAATGAAAAATTTGTTTCTTATTCAGGGGAAAAAAAACTATGTCAAGTAGGAAGCAGTAAAGATGCATTTTCTGGAGTGTGTGATGCAATTGTTGAACCGGTTTGCTTTGGTGCTGCTATTCTGTTATTTGTGTTTTCTTGGAGAAGAAACAGGATATTATTGAAAGAAGGAATTGATATGAATAGGTTTTCCTTGATAATGAAAGGGAATATCATAAAAATTAAGGAAAAAAGTAAAACGGAAACATGCTAGTCACTGACCAAAGCCAGATGCTTAAAAGCGTGATCAGCACCTCTAAATAATGTTTTGTAAAATAAAGTACACAGTACAGTATCTTGTGTTATCTTCTAAACAGTCCATGGCAAAGAGTGATCTTCATTAATTTGTTTATTCAAATAGTCAAAATTACTCTGGTTTCTTATTAAGAAAAAAGTTGAAATTGCCAAAAATTCTGAACTACTTCAGATATCAAATATTCAAATTACATAAATTGACCAATATGTCTTTTAAACATTAATTGCTCTAGAAGAATTATAGTAATCAGATGATAACAACTTCACTTTTGTACATCATCAGATCTGGTAGCAATGGGAAGGTGGAAGCTGTTCAGACGTCCAAGACTACATTGTACGGTAAGAAGGCCATTGTTTTAGCAGCTGGTTCTTGGAGTGGGACTTTGCTGCGTGATTTGCTCAGGGAAGAAAAAACTGTTTTGGATGTTCCCATAATGCCAAGAAAGGTATGGATTCATGAACATAACCAACCTTTTTTAGATGTTTTCATGCCTATATCAATCCGCTCTGTTTTTAGCCAGTTCTTGGCATTATTATTTACTCTTATAGATACAAGGAGTCAATTGGTGGAACCCAAAATGTTCACGTTTAAACAGAATATGGGGACTAGACGTTTTGCAATCCTTTAGTTAAAAGAATTTATCAAACTTTACTAGCATTATAATTGCTGGGTTTTAGTTGATAAGGGGTAACCTCATATGTTTTCAAAATTATGGACATGCTAGGAACACACAATATCCGCAAGGTAAGATGTTGAAAGAATCAAGCATTATTTTCCTCCCTGATTCCTGAGAATTGAGCTTCTTGGTTACATCTTAATTAGTTCCGTTTCTTGCAATTTTCATACCCGCGTAGTTGCTTTAGCTGTGAATTAGTATCATGTTAGCTGGGCATATATTTATCTTTACTATTATAGGTAGGTTCTCGTTCTCCTTGTAATATTCTCTCATAAATGTGAGAGATATCTTCATATATTCTAGGATTACACTTATATTTATAATAAGAAAGGAAAGCTAACCATTTAACTAATTGAGAGAACTTAATCATAACAACCACTTAACAACCTTTCCAGCTATACAATAATTAACTAATTAACCACTATCTGTTATCACTCCTCATATACGTTCATTACAAATAACCTAGAACTTCAGATAGGTTCTCGTTTGCCTCATATACGTTCATTACAAATAACCTGAAACTTCAAGTGATTTATTGAGGCTGTTTTCTCTGAAATACTTTCCATCTACTCAAAAGGTTGGTTCAGGCTAAATCTCTGTTTTTCATGGCAGGGTCACTTGCTTGTCGTCGAGAATTTAAATTCCCTTCGTGTTAATCATGGTTTGATGGAGGCAAACTATGTTAATCACCACGCTCATACTGTGGCTAAAGATCTTGACCGGACTCCATCCATTTCAATGACTGCCAGTATGGATGCTCAAGGGAATCTAATGATTGGTAAATATGAAACTTGTGACTACTGTTTTAAAATATTCAGAGGTTGTTTGGGACACATGTTATAATAACCTGTAGAATATTCTGCACCCCAAACACAAACTATTATAACACATACTAAACAACTCTACATGGTTAACCCATGTTATTATATCTCACTCAGTTCCTAAACAACCCCTTAATTTTTTTCTCCAAATTCTTTCATTGCTGCCAGAAAAACTTCAGTTTTTTTTTATGCATCCGTGTATCTATTTTTCTAATGTGTTTTAATCGTGCTGATCTATATAAGCTGATATGTGTAGAATTGCTCCAAGCCAAGCACGCTTAACTATGGAGTTCCTATGATTGAGCAATTCTATGTTGGGTGACCTCCTGGGAATTTTCCTAGGGAGCATGTGAGTGAGGACAAAGCATGCTAAAAAGACCCGTGTTGGTTTGTGGGGAAAGTCTTCACTCTTACAAGCAGTCATGGATGATATATAGTGACGCAGTCAGGTCGCAGGAGATCCTGGGCCTGGGGCGTTACATAGACAATAAGATTTGATACTCCAATCCATAATTGTATCTTATTTTTTTTCAATCAAAGTTCAGTTTCTAAAAAAATGATGTTATACATAATAAGATAAAAGTTGACAAAGTAAAATGTGGAAAGGAAAAGGGAGTTTGGAGGAGGAAAGAGAAAGCAAGCATGGCAGCTAAGGCAAAAATTGGCCCCCTTTTTGCTCTAGTTTTTTTTTATTGTCTCTTAGTGTAAATGCTCTCCTCTTTGATATCCAATTGGAGAAATTTTGTTGCAACTCCCTTGGATTAGAGACATCCTTTGTGTAATTTCATTTCATCCATGAAATTATTTCTTATTGTGAGAAATTTGAAACCTGATTGAAAATTGTCATCTAATTTCAGGGAGCAGCCGTGAGTTTGCTGGTTTCAACACTGAAGAGGATGAATCCATAATTGCTCGTATATGGGAGAGAGCTTCAAAATTCTTTCCTGTGATGAAAGAAGTCTCTTTTTCAGATGTCAAAAGCAGCAGTGAAGTGAGACGAGGTCTACGACCATTCAGTGAGTATCATCATCATGTCACTTACAATAGTTTCTACTGCTGAATTTTCAGGGTTTTGATTATCTTATTTTCCTGTATGAGTTTATACCCACAGTGATTGATGGAAAGCCGGTGATTGGGCCTGTTCCTGGTTTGTCAAATGTGTACATTGCATCTGGCCACGAAGGTGGAGGACTTACAATGGTGATTCTCTCTCTTATTGAAAACTACTGATACTCCAAAACAACCCTTCTAATACATCATAGAGATCATTAAGACCCCGTTTGATAACTATTTGGTTTTTTATTTTTTGTTTTTGAAATTAAGCTTGTTTTATTCTTGTTTCTCTACGAAATTTATCATCTCCCTTAAGCATTCAATTATTAGCCAAATTCTAAAAACAAAAACAAGTTTTGGAAAACTATTTTTTTTTAGTTTTCAAAATTTAGCTTGGTTTTTGAAAAACAGAGATAAAAAGTAGATAAGAAAACATAGAAACCTATAGGTTGAAGTAGTATTTTTAAGTTTAATTTTAAAAAACTAAAAATAAAAAAAACTAAGGCCATATTTGATAACCATTTAGGACTCGTTTGATAACCATTTTGCTTTTAGTTTTTAGTTTTTGAAAGTTAAGCTTATTTTCACCTAATTTCTCTACAATATAGATCATCTCCTTTAAGTAAGCATTTGTACTCTTAGCCAAATTCTAAAAACAAAGTCAAGTTTTTGAAAACTACTTTTTTTAGTTTTCAAAGGTTGGATTGGTTTTTGAAAACATAGGTACAAATTAGATAAAAAGACATAAACTCATTGGTAGAAGTAGTATTTTTAGGTTTAAATTTCAAAAACTAAAAACCAAAAACAAAATGGTTATCAAACGGGGCCTAAGTTTTTGGTTTTTGGTTTTTGAAAATTATGCTTATTTTTCCACAATTTTACTCTATCTTCTCTATAATGATTTCCATTTTTCTTAAAGTACCATTATTTTTCTAGCCAAATTTCAAAAACAAAAACAAGTTTTTGAAAACTACCTTTTTTAGTTTTCAAAACTTAGCTTGGTTTTTGAAAACATAGGTACAAAGTAGATAATAAAACATAGAAGTCCATTGATAGAAATAGTATTTTTAGGCTTAATCTTCAAAAACTAAAAACCAAATGGTTATCAAACGGGACCTAAGAAATCATGGTTCTATTGAACAAATGACAACCATAACCCTTTTTTTTGTTGATTCTATTATCTGACCTATTTTTGTGAACATCCAGGCACTGGGTACTGCAGAAATGGTTGCTAATATGGTGCTGGGAAGTCCTGGGAAAGTTGATCCCACTCCTTTTTCGGTACAAGGACGATGTTAATAAATGCCTATAACTTATGATGGTATTCTGAGTGGCTCTGGTCTTCATGTAAACCGACCCCTTTTTCCCCCTTCCAAAAAGCCAACTTGTAGTTCAAGGCCAGCCAACAATATCCTAGTAACTCACTAGTGTCCATATTTTAAGTATTCTGTACCTTGACTTTCAGTACTCTGCAGCCCTCTTGTTCTGAGAAAATTTTCCTGAATTTAAGGGCCGCAATGAATAAAAATTTCATAATCTTTTTGGTTTATTGTATGAACTGTAACTCATTCACTTAGGGTTAGAAATAAGAATGACGCATTGCTAGCTATTGCTAGTTGTTTTGTTCCTAATTTGATAAGAAACTCATTAAGGGATTGTTTGCGGCACTGAGTGAGTTATAATATAATAGTTTGTATAATTATATAATATTGTTTAAAATGTAGAGTTGTTTAGTCTAGAGTTATAATAGTATGTGTTTGAGATAC TATGTTACAACTTACATACAAATAAGTTAATTCTGACCGTGTCCTAACGACGAAGTTCAGTATTGCTTCATTTAGTAACAACATGATTTCTACTTCTTCACTGCGTCCCTGCCCAAGCCCAAGTCCCTCTACAAGGACCGGCATAGTTTCGTGTTCTAGCAGACATTTCTGCAACTTCGGATTCAATCCAAAATGCCCACTGCTTAATCCTAATCAATGGAGAAAATCGGTCGATAGAAGCTCTGGTCGTGATTATAGGTGCGGACCGGTGAGATTTTGTGCTTTGAAAGATGTGAAATCTTCGTCTTCAACCTCTCATAATGCCAATACTTTTGAGTTTGATGTCGTGATCATTGGTGCGGGAATTATCGGGTTAAGTATTGCTCGGCAATTTCTTATCGGGTCGGATATGTCCGTCGCCGTTGTCGATAAGGCCGTCCCTTGCTCTGGAGCTACTGGTGCAGGGCAGGGCTATATATGGATGATGAACAAAACCCCTGGCTCTGACACTTGGGAACTGAGTTTGCGAAGCCACATGCTGTGGGAGAGTCTGGCTGAGTCCCTGCGTGATCAAGGCTTGAATCCATTGGAAGAGTTGGGTTGGCAAAAGACAGGGAGCATGTTAATTGGTCAAACACCTGAAGAGCTTGACACATTAAGGAAGAAGGTAAAGCAACTTTCTGGGGCTGGACTGGAAGCTGAATACTTGTCTGGTGCTGATTTGCTTTCCATGGAACCAGCTCTGCAGATCGAGGACAGCTGTGGGGCTGCATATCTCCCCAATGACAGTCAATTGGATGCTCATCGTGCTTCAGCATTTATGACAAAGGCTAACAAACAATTCGAAGGAAGATATGCAGAGTTCTTTCATGACCCCGTGACAGGCTTATTAAGATCTGGTAGCAATGGGAAGGTGGAAGCTGTTCAGACGTCCAAGACTACATTGTACGGTAAGAAGGCCATTGTTTTAGCAGCTGGTTCTTGGAGTGGGACTTTGCTGCGTGATTTGCTCAGGGAAGAAAAAACTGTTTTGGATGTTCCCATAATGCCAAGAAAGGGTCACTTGCTTGTCGTCGAGAATTTAAATTCCCTTCGTGTTAATCATGGTTTGATGGAGGCAAACTATGTTAATCACCACGCTCATACTGTGGCTAAAGATCTTGACCGGACTCCATCCATTTCAATGACTGCCAGTATGGATGCTCAAGGGAATCTAATGATTGGGAGCAGCCGTGAGTTTGCTGGTTTCAACACTGAAGAGGATGAATCCATAATTGCTCGTATATGGGAGAGAGCTTCAAAATTCTTTCCTGTGATGAAAGAAGTCTCTTTTTCAGATGTCAAAAGCAGCAGTGAAGTGAGACGAGGTCTACGACCATTCATGATTGATGGAAAGCCGGTGATTGGGCCTGTTCCTGGTTTGTCAAATGTGTACATTGCATCTGGCCACGAAGGTGGAGGACTTACAATGGCACTGGGTACTGCAGAAATGGTTGCTAATATGGTGCTGGGAAGTCCTGGGAAAGTTGATCCCACTCCTTTTTCGGTACAAGGACGATGTTAATAAATGCCTATAACTTATGATGGTATTCTGAGTGGCTCTGGTCTTCATGTAAACCGACCCCTTTTTCCCCCTTCCAAAAAGCCAACTTGTAGTTCAAGGCCAGCCAACAATATCCTAGTAACTCACTAGTGTCCATATTTTAAGTATTCTGTACCTTGACTTTCAGTACTCTGCAGCCCTCTTGTTCTGAGAAAATTTTCCTGAATTTAAGGGCCGCAATGAATAAAAATTTCATAATCTTTTTGGTTTATTGTATGAACTGTAACTCATTCACTTAGGGTTAGAAATAAGAATGACGCATTGCTAGCTATTGCTAGTTGTTTTGTTCCTAATTTGATAAGAAACTCATTAAGGGATTGTTTGCGGCACTGAGTGAGTTATAATATAATAGTTTGTATAATTATATAATATTGTTTAAAATGTAGAGTTGTTTAGTCTAGAGTTATAATAGTATGTGTTTGAGATAC ATGATTTCTACTTCTTCACTGCGTCCCTGCCCAAGCCCAAGTCCCTCTACAAGGACCGGCATAGTTTCGTGTTCTAGCAGACATTTCTGCAACTTCGGATTCAATCCAAAATGCCCACTGCTTAATCCTAATCAATGGAGAAAATCGGTCGATAGAAGCTCTGGTCGTGATTATAGGTGCGGACCGGTGAGATTTTGTGCTTTGAAAGATGTGAAATCTTCGTCTTCAACCTCTCATAATGCCAATACTTTTGAGTTTGATGTCGTGATCATTGGTGCGGGAATTATCGGGTTAAGTATTGCTCGGCAATTTCTTATCGGGTCGGATATGTCCGTCGCCGTTGTCGATAAGGCCGTCCCTTGCTCTGGAGCTACTGGTGCAGGGCAGGGCTATATATGGATGATGAACAAAACCCCTGGCTCTGACACTTGGGAACTGAGTTTGCGAAGCCACATGCTGTGGGAGAGTCTGGCTGAGTCCCTGCGTGATCAAGGCTTGAATCCATTGGAAGAGTTGGGTTGGCAAAAGACAGGGAGCATGTTAATTGGTCAAACACCTGAAGAGCTTGACACATTAAGGAAGAAGGTAAAGCAACTTTCTGGGGCTGGACTGGAAGCTGAATACTTGTCTGGTGCTGATTTGCTTTCCATGGAACCAGCTCTGCAGATCGAGGACAGCTGTGGGGCTGCATATCTCCCCAATGACAGTCAATTGGATGCTCATCGTGCTTCAGCATTTATGACAAAGGCTAACAAACAATTCGAAGGAAGATATGCAGAGTTCTTTCATGACCCCGTGACAGGCTTATTAAGATCTGGTAGCAATGGGAAGGTGGAAGCTGTTCAGACGTCCAAGACTACATTGTACGGTAAGAAGGCCATTGTTTTAGCAGCTGGTTCTTGGAGTGGGACTTTGCTGCGTGATTTGCTCAGGGAAGAAAAAACTGTTTTGGATGTTCCCATAATGCCAAGAAAGGGTCACTTGCTTGTCGTCGAGAATTTAAATTCCCTTCGTGTTAATCATGGTTTGATGGAGGCAAACTATGTTAATCACCACGCTCATACTGTGGCTAAAGATCTTGACCGGACTCCATCCATTTCAATGACTGCCAGTATGGATGCTCAAGGGAATCTAATGATTGGGAGCAGCCGTGAGTTTGCTGGTTTCAACACTGAAGAGGATGAATCCATAATTGCTCGTATATGGGAGAGAGCTTCAAAATTCTTTCCTGTGATGAAAGAAGTCTCTTTTTCAGATGTCAAAAGCAGCAGTGAAGTGAGACGAGGTCTACGACCATTCATGATTGATGGAAAGCCGGTGATTGGGCCTGTTCCTGGTTTGTCAAATGTGTACATTGCATCTGGCCACGAAGGTGGAGGACTTACAATGGCACTGGGTACTGCAGAAATGGTTGCTAATATGGTGCTGGGAAGTCCTGGGAAAGTTGATCCCACTCCTTTTTCGGTACAAGGACGATGTTAA MISTSSLRPCPSPSPSTRTGIVSCSSRHFCNFGFNPKCPLLNPNQWRKSVDRSSGRDYRCGPVRFCALKDVKSSSSTSHNANTFEFDVVIIGAGIIGLSIARQFLIGSDMSVAVVDKAVPCSGATGAGQGYIWMMNKTPGSDTWELSLRSHMLWESLAESLRDQGLNPLEELGWQKTGSMLIGQTPEELDTLRKKVKQLSGAGLEAEYLSGADLLSMEPALQIEDSCGAAYLPNDSQLDAHRASAFMTKANKQFEGRYAEFFHDPVTGLLRSGSNGKVEAVQTSKTTLYGKKAIVLAAGSWSGTLLRDLLREEKTVLDVPIMPRKGHLLVVENLNSLRVNHGLMEANYVNHHAHTVAKDLDRTPSISMTASMDAQGNLMIGSSREFAGFNTEEDESIIARIWERASKFFPVMKEVSFSDVKSSSEVRRGLRPFMIDGKPVIGPVPGLSNVYIASGHEGGGLTMALGTAEMVANMVLGSPGKVDPTPFSVQGRC Homology
BLAST of Tan0017679 vs. ExPASy Swiss-Prot
Match: P33642 (Glycine oxidase OS=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) OX=208964 GN=thiO PE=3 SV=3) HSP 1 Score: 96.3 bits (238), Expect = 1.0e-18 Identity = 107/412 (25.97%), Postives = 183/412 (44.42%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy Swiss-Prot
Match: Q88Q83 (Glycine oxidase OS=Pseudomonas putida (strain ATCC 47054 / DSM 6125 / NCIMB 11950 / KT2440) OX=160488 GN=thiO PE=1 SV=1) HSP 1 Score: 82.8 bits (203), Expect = 1.2e-14 Identity = 60/232 (25.86%), Postives = 109/232 (46.98%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy Swiss-Prot
Match: Q39IE1 (D-amino acid dehydrogenase OS=Burkholderia lata (strain ATCC 17760 / DSM 23089 / LMG 22485 / NCIMB 9086 / R18194 / 383) OX=482957 GN=dadA PE=3 SV=1) HSP 1 Score: 82.4 bits (202), Expect = 1.6e-14 Identity = 114/449 (25.39%), Postives = 184/449 (40.98%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy Swiss-Prot
Match: O85228 (Hydrogen cyanide synthase subunit HcnC OS=Pseudomonas protegens (strain DSM 19095 / LMG 27888 / CHA0) OX=1124983 GN=hcnC PE=2 SV=1) HSP 1 Score: 82.4 bits (202), Expect = 1.6e-14 Identity = 99/437 (22.65%), Postives = 175/437 (40.05%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy Swiss-Prot
Match: G3XD12 (Hydrogen cyanide synthase subunit HcnC OS=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) OX=208964 GN=hcnC PE=1 SV=1) HSP 1 Score: 80.5 bits (197), Expect = 5.9e-14 Identity = 103/439 (23.46%), Postives = 176/439 (40.09%), Query Frame = 0
BLAST of Tan0017679 vs. NCBI nr
Match: XP_023514870.1 (uncharacterized protein LOC111779048 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 788.1 bits (2034), Expect = 4.4e-224 Identity = 393/491 (80.04%), Postives = 434/491 (88.39%), Query Frame = 0
BLAST of Tan0017679 vs. NCBI nr
Match: KAG6593065.1 (hypothetical protein SDJN03_12541, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 787.3 bits (2032), Expect = 7.5e-224 Identity = 392/491 (79.84%), Postives = 433/491 (88.19%), Query Frame = 0
BLAST of Tan0017679 vs. NCBI nr
Match: XP_022960152.1 (uncharacterized protein LOC111460978 [Cucurbita moschata]) HSP 1 Score: 787.3 bits (2032), Expect = 7.5e-224 Identity = 392/491 (79.84%), Postives = 434/491 (88.39%), Query Frame = 0
BLAST of Tan0017679 vs. NCBI nr
Match: XP_038899358.1 (D-amino acid dehydrogenase [Benincasa hispida]) HSP 1 Score: 784.3 bits (2024), Expect = 6.3e-223 Identity = 389/493 (78.90%), Postives = 437/493 (88.64%), Query Frame = 0
BLAST of Tan0017679 vs. NCBI nr
Match: XP_023004792.1 (uncharacterized protein LOC111497986 [Cucurbita maxima]) HSP 1 Score: 781.6 bits (2017), Expect = 4.1e-222 Identity = 391/491 (79.63%), Postives = 431/491 (87.78%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy TrEMBL
Match: A0A6J1H6L0 (uncharacterized protein LOC111460978 OS=Cucurbita moschata OX=3662 GN=LOC111460978 PE=4 SV=1) HSP 1 Score: 787.3 bits (2032), Expect = 3.6e-224 Identity = 392/491 (79.84%), Postives = 434/491 (88.39%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy TrEMBL
Match: A0A6J1KRE1 (uncharacterized protein LOC111497986 OS=Cucurbita maxima OX=3661 GN=LOC111497986 PE=4 SV=1) HSP 1 Score: 781.6 bits (2017), Expect = 2.0e-222 Identity = 391/491 (79.63%), Postives = 431/491 (87.78%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy TrEMBL
Match: A0A6J1CR48 (uncharacterized protein LOC111013420 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111013420 PE=4 SV=1) HSP 1 Score: 760.4 bits (1962), Expect = 4.7e-216 Identity = 376/495 (75.96%), Postives = 425/495 (85.86%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy TrEMBL
Match: A0A5A7V1N9 (D-amino acid dehydrogenase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold886G00370 PE=4 SV=1) HSP 1 Score: 757.3 bits (1954), Expect = 4.0e-215 Identity = 379/495 (76.57%), Postives = 429/495 (86.67%), Query Frame = 0
BLAST of Tan0017679 vs. ExPASy TrEMBL
Match: A0A1S3BR23 (D-amino acid dehydrogenase OS=Cucumis melo OX=3656 GN=LOC103492582 PE=4 SV=1) HSP 1 Score: 757.3 bits (1954), Expect = 4.0e-215 Identity = 379/495 (76.57%), Postives = 429/495 (86.67%), Query Frame = 0
BLAST of Tan0017679 vs. TAIR 10
Match: AT5G48440.1 (FAD-dependent oxidoreductase family protein ) HSP 1 Score: 516.9 bits (1330), Expect = 1.8e-146 Identity = 264/425 (62.12%), Postives = 331/425 (77.88%), Query Frame = 0
BLAST of Tan0017679 vs. TAIR 10
Match: AT5G48440.2 (FAD-dependent oxidoreductase family protein ) HSP 1 Score: 433.0 bits (1112), Expect = 3.3e-121 Identity = 223/366 (60.93%), Postives = 282/366 (77.05%), Query Frame = 0
BLAST of Tan0017679 vs. TAIR 10
Match: AT5G67290.1 (FAD-dependent oxidoreductase family protein ) HSP 1 Score: 43.5 bits (101), Expect = 5.7e-04 Identity = 92/406 (22.66%), Postives = 152/406 (37.44%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
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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