Tan0006135 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GGTGAACCAAACTTTTACAAGCGCGCGCTCTTCTCTCTCTGTCGGAAGTCGGTTTCTGAAACGAAGCTCAGCATCCATCAGCCGACGAGGTATGTATGTACTGTCTTCAATTTCGTCGTGAAGTTTATGGCAATTTATTTCTTCGCTGTTCTTGTTTGAGTTTTCTTCGCTACGGTTTCTTTAAATCAAACGCTTGAATTGGATCTTTACTGGACGTAATGTTCTGCTCGTTTCGAAATTGATCGCGTTTCCGATTTGTTCATATGATTCGCTTCGTTCTTCGAATTCTCATGATTGGAAGACGAAGGTACTTTGTTAGCTTTGCGATTTTTGTCTCTCTCTCTCTGGCTCGTTCTCGAGTTTCGTAAATCTTCTGCAGTAAATGAAGTCGTAGGTTTTCTCTGAGGAGGAAATGTTCTTACGTACGTTCTTGATATGATAAATTACATTATGAAGAATTGAATTGAAATGGATACAATACGCTTTTGAGTTGAAATCATCTTCAATTGGAAAACGAAGGTCTTGTGGTTGCTGTGCGATTTTTCGTGTATCTCTCTCGCTCGCTGATATTCTCCAATTTCTTAAATGTTCGTCTGTAGCTGTAGTCTTACGTTTTCTCTGAGAAGGAAATGTTCACGCATTTCCTCGACGTGATAAATTTCTATACAGTATTGAATTTAAATGGATATAGGCTTTTAGATTTTAAGTTGAAATCATCCACAATTGGAAATTGAAGGTACTGCACTAACTGCGCGGTTTTCTTTATGTTCTCTATATTGCTGATTCTCCAATTTAATAAAGCTTTTACTGTAAATGAAGTTGTAGGTTTTCTCTGAGCAGGAAATGTCCTTACGCATTTTCTTAACAAGATTTATTACATAAGTTGAAATTCTTTGGCTGACATATAGAGAAACTCTTCTGCTATGATCTGTTTTGCTGACATAAGAAGAAACTCCTCTGCCGTTGCGTACACAGGGATGGCTAAATTATCTGCTACATTGAGACTATTCGATGCACATTGTCACCTCCAAGATCCAAGAATATTTGATAAAGCACCTCAATTAATTAGCGCAGCAGTGGATTCTGGTGTTGTGCGTTTTGCTGTTAATGGAATTTCTGAGGTACAATAGTCTTGCACTTGTGTTATGGATATTGTTTTACGGTTATGTGCTGCCTGCCTCTCATCTTTTTCTGTTGTTGAGTTCATATCATAGAAAGACTGGCATTTGGTCAAGCAGCTGAGTGAATTATATCCTTGCATCGTGCCATCCTTCGGTCTTCATCCCTGGTAACCATTGTCCATTTTCATAACCCCAAGTTTACATAGACATCATCTATCCCATATTCTTTTACTGGCATTGCCTCATATTAGTGAAGTATATTGTATGACATTTATCCATCTCTCTGTATTTAGGTATGTTCCTGAAAGAACTCCCGGCTGGCATGAAAAACTTAAGGAATTTTTTGATGTAGTGCCAAGCGCAGCAGTTGGAGAGGTTGGTATTTGTGGCCGAAGCTATATCCTAAAAGATCAATTTTAGCTTTGGATATTTTATCATGAACTAAAGTTCTAAATTTCATCTTTAGATGAAGAACTAAAAAGGGAGAAAAGAGAGAAGAAATTAGGAATCAGATATATTCTTTTTGCTAGATAATTATTTTATACTTCCAGCATTATTCTGGAACCGGCTTAAGCACCAGTTTTGGGGTGATATCTGAAGTTATTAATCCATCATTGTCGATTATTTTTCTAGAGAAACAAAGTGACAGATACTTGTAGGAACCTTTGTTGCTTATGCATGTTACCAGTGCCTTCTCGTTCTTGACCATGGATATTCTTGTACGTACAGGAATTTTTATGACAAGAGCTTCCCAGATTGTGCACCCTTAACTTTATAACTTTGTCCTTTACCTACGTGCTAGGATCCTGGGTAGCACAAGGTCTTTAGTGATTAATCTGTTGTCTCAAAATGCAGAGATATCCTTGTAGTAGGTTGCTAAGTTCAGTAGGGCTCTAATGTTTACCTTTTCAGATTGGTCTGGACAAAGGTTCACGAGGAAGGGAGATCAGTTTTACAGATCAGGTGTGACTCATACATTTTCTTCTGAGGTTATGAAAGAAATTGATGTCTTGAATCTTGATCATTGTCCACAATGATTTCTAATTTACCTGTCAAATAGGAAACTGTAACTGGTGTAAGAAGCAGATTTTCTTAACTACTGTAGTGCTTTTTGTTTCTTTTTCTTTTTAATGATCCCCAGACTGTTCTTGACATGAAAAGATGTTGCAGGTTGAGGTCTTTCAGCAACAACTTGAGCTTGCTAAGTCTTTAGAAAGACCAGCATCCATCCATTGTGTCCGTGCTTTTGGTGATCTCCTTCAGATAATGAAGTATGACTCTTTCTAATAATTTGAAGTTTATTATTAATGTCAAGTTGCCATTCGTAGTCATGACCCCTATTTGTTGATTGTTTGCATGCCTTGTTCTGCATTGCAACTGCCTCAGATCTATGGGACCTTTTCCTGCTGGTTTCATTTTGCATTCTTATCTAGGATCCGCTCAGATGGTTCCTGAGTTCTCCAAGCTAGGTGGTTACTTTTCATTTTCCGGTTTTATCATGTCCATGGAGGCAAGGAAGGCAAAGAAAATGCTGAAAATGGTTGGTTTTCTGTGTCTTTTTTTTTTTTTTTTTGGGGAGGGGACGGAAATCTGTGTAAAAGATAAGATATAAAAGCCAGTGGGTCAAAAGAATCCTCATCCTTGGCTTGTATAACAGAAAACAATAACAAAACTTCCTATCTAGGGTGCACCATCTGAAAAACTGAAGCCCTCCAAATCCTCTATATCTTTACGAATCTTTTCAGGTGCCCTCGGATAGGATTTTGTTGGAGACTGATGCTCCTGATGCACTTCCCAAGTCAAAGTTAGACTCCCTCTATTTTGTTGAAGGCGATCCTTCCCTTCCTGAAGGTCTTAAGACGCAAGAGCAATCTACCCCAACAGGCTCACAACAAAGTACTTTTCCTTGTTCTATAGATGTGTCAACACTGCCAAAAGAGACTCTCAATCATCCAGCAAACATCCAAAATGTACTTCAGTAAATCCTTCATGTATATCTGTCATTCTTTCTCAATGAAAGCTCGGTCTTTTAATTAAAAACAAAAAAAAAAAAACCTTCATGCATATCTGGTCTGATGAATATTATTGTTAGTCTAACAACTTGGCAACCCATGGTTCATTATATCAACAAGCTTAAAGAAAACCAGCACAACAGTTCTCTGCTGGTCATTGATAGCATTTTGTAATCAGGAATATCAGCTTTTAGTACTAGTTAAACCTATATGTATTAGTTTTCCCTTACTCTTCAACATGAGAGGGGATAGAGAGGTAGAGTTGGCCTCAGCTGCCATCTTCCTCTCCATTAATTAAATTACATGCTGGCCTTGTTTGGTATCTTAAATTAAAAGTCTGCATAGCTCTAGATTTAGTCATTTTCCGTTATCTCTTTTTAACATATTTCATGCTTTATTCTTCTCTACAGGTCCTTGTTTATGTTGCATCTTTGTTGGACATCAGTAAAGAAGAGCTTGCTGAATTGAGTTATAGAAATGCAGAGCATTTATTCTCTTTCAATGGTCTACAAGCTTCTTAGGGATGAGAGTCCAAATGTTTAGGTGATGTTTTTAACAACTCGATATAATGTCCCCTATTGTTCCCATGTCACTAACATTTATCTTGCCATCTAGCAATGAACTTTACTTGTGAAGCATAAAAGTCATAGGTGATGCCTTTATGGTGCTTGTATTTGGTGTTGTGTATCAACAACATTGAGAATCCTTCTGACAACACGAGCAATGCAGGACAAATGACATTTCAGAGGTAGATATATGTGTTAACAAGGTCGTTAGACCTACCTAAATATTTATGCATTCAAATTATTTCAATTATATGGATGGTGGAGATGACTAATAGTAGGCAAGTTGACAATCAACGCTATTGGCAATGCGGGCATGCGTGGCATTTCAGAGGTAGATGTGTTAACCATATCATTAGACCACTTATCTAGTGTTCATGCATTCAAATTATTTTGAGTATATATATGTGACGGAGATGACTATTAGTAGGAACATTGGATTAATGCTGCTAGAACCAGTTCAATCTGGAATATAAGGTGATTAGATGAACAAAGAGATAGGCAGACGCCAGGTAATTTATCTGCTGAAACTCTTCCTCTCTCTTTTCCTTTCCCTCCTTTAGAAGCATCATTTCCCATCCTTGGGTAAATTTGTTCGACTTTCACAGATGGGCACATAAAGTTTTTAACATAGGTGATATTAGCTAGAAGTAAATGCATTTAGAATATGCTTGTGATATGGTCGGGCAAAAATCCATATCTTGTTCATATGCCTAAATAATTTTTCATAAAAAAAATCACTCTCTAGAATTAAAATGGAGGAAAGAAGATTTTTTCTTGTCTTTGTTCTATTAAATGGAGACTTCATTGCTATGCACTGCAAAATCATTTTGGTCTTTGTTTGTTAGCTTTTGGTTGGTCTCTTCCCTCAAGATTGAAATCACTTTGATTTGAGTGCTTTAGGATTTGTGTTAGGCATACAAGCTTCTAGGAGATATAGGTTTGAGTGCTTTAGGATTTGTGTTAGGCATACAAGCTTCTAGGAGATATAGGTTTGAGTGCTTTTGGTTGCTATGCACTGCAATATAGTTTCTCATTCAGTAGGTTTTGCCTTTTAATTTTTAGTGATATAGTTGAACATATGGCTATAATCTAGAGGTTCTCTACACTTATGATGTAATATTGGAAAGCTTTTTTTCTCTCTCTTACTTTTTTTTTTTTAAAAAAAAATGTATAAAACACATTAGTAATAGCCTGTTATATAAAAACTAGGCATCTGCCTGATCAGCGTCCACAATAGCCTGTTATATGACTGATTGCCTTTATTCCTGTGAGGATAGATTTTGATGTGAACTCTCTAAGTAATTGAAGATAAAACCCCTTGTATTCAAGGACCCTTGACACAAATCCTAAAGCACTCAAATCAAAGTGATTTCAATCTTGAGGGAAGATTAGAAGCAGGGAGTGGTATCGGTCCAAGGTAGAAAAGCAAGTTTCTTAGTTGAGATTTGAACTGTTCACAAGAAGTAGGTTTTCCCCTCTTCTTTTCTTCCTCCTTCTTCGTGTTCAACAAATGTGGAGTATGAGGATTTGAACTACAACTACTATGGTCACTTTGGCGGTCACAAGAAGTAAGTTGATCATTCACAAAAGGGTAATGCTTGTGGTTGTGGCTCTGAAGTTACTGATAGTCCGAAACCTAAAAAAGACTATCTAGGTTATTTATAGTCTTATATGGACTAGACTAACTAGGTTATTTATAGTCTTATATGGACTAACTGAAGTCTTAACTCCTAATGACGGCAAAAGATAAGGAAAAAACATAAAAATGAGTCGTAATTTAGGTTACATCATCAACCAATGGTAAGATAATAAAATACCCCTACTTGAGCATACTCTAAAAGAGCAAAACAAAATTACTAATTTAAGGTTTTTAAAAAATTATTATTATTATTATTATTTTTAGCTTGTTATAGGCTAAAATGAGGAGCCCATCTCTTCTAAGACGTCCATTTTTCTAAATCTCCCATGATAATTCATATCAGACTTTTTCAAAACAAGGGAGATCAATTTCCCGTCAATTAGAAAAAATGATCAAGAAATTGGGTCAAACCCTCTTGAGTGTGTTCAATCAAAACTATCATTCCTCGGCCTTCATTTGCAAGTGAAGAATAAAAGTTGCCAGAGACGAATCTCATGTTGGATTATTAATCTTTAGGGGTTGTTTGGAGTATGAGTTATATTAACCCATGTAGTACTATGCATCCCAAACACACACTATTATAATTTAATACTAAACAACTCTATATTTTTTAACAATATTATATAATTTCACAGATTATTATAACTTACGAACTATTATAATCCATGTTATTATAATCCGCTCAGTGTCCCAAACAACCCCTTATATTTCATCTCCCCTTTGATAAGGATAATCGATATATTAGTCTTTTTCTCATTTTGGTTGTAAACCTCAATCATTTAAATCTTCTTTCTTTCTTCATAATAAAAAGTGTTTTTTTTCCTTCATATATTTTCCTCATCGTATTAATGAATTGTATGTGATATCAAAGTAGCTGTAGCGTGTATTGTTTTGTTTTCTTTTTTTTCTCCCCTTGAGTTCCTGGTGGCATTGAATTGAGCACATATTGTTTATTGCCCAAATGCTTCACTATTTGTCATCTTCAGCCATAATCCTATCCCATAGTGGTTAGAATTTAGAACAAGAATTTATCCATCACAGTACTTTGTCTCACCTTTTAATTGGTTCAATTTCTTCGGCAGGCATCTTAATTGTGTGGGAGTTGGAGTATGCACTTGCTGGGATTTTTCAACGATCCGTCCCACATTTTGATTGGAACTTTTCAGGTATTTTCAGGTATGTGTTTGCTTTTATCTTTTTGTTGACGTCTGTTCTCTCTCTCTCTCTCTTCGGATGAAAGATATTTTTTCCCCCTTATTTCGTTATGTTACGAGTCATGAGTGGAAGAAGATAACTTTTACCATAAATTTTGGTTAAATTATTAAAAATGTCATTGAACTTTAGGGTTGGTTTCAATTATACCCTCAAATTTTGAAAAGCTTCATTTTAACCTTTTAATTTTGAAGTTTGTTTCAAAACTCTTTGAAGGCTTTTATGGTTAAATTGGGGATGGAAAATGATGCATTCTGGGAACACATATCTACATTTGGGAAAGTAATTTTAGAGATCAGGTTAGGGAATGGGGTAGGGTCCAAAAAAGCTAGAAAATTATCTCTGTTTCTTCAAATTTTAAACAAATATATACTTCAAGAGGTCCCAATGAGGTACTATATTTCTGGTTTCAATGGACCCATCAACAAAAAATATTTCAAGTTTCTTCTACGTCTCTAAGTCTTTCATGTCTTGGTTTACTTCTCTAAATTTCTTCTAATTTCTTGCAGCTACCATTTGTCTTTACTTTTCATGTGTTCAAAATTGTTCACGTAAGCAACACATAGATATGCCATTTTCTGTGCACTTGACGGTAAAAGCCTACAAGGTTCGTTTTGAAACAAACTTCAAACTTTAAAAGTTAAAATGAAAATTTTCAAGACTCGAGGGAATAATTGAAACTAACCTTGAAGGGTATTTTTAATAATTTAACCCATAAATTTGAAAAGACTTTTTAAAGTCTCATATTTTTTTGTTTTCTGTTTTTGCAAATTAAGTTTATGATATTAGTTAGTTTTACCGGCTTTTCTTTTAACTTTTTTCAAAACATAGTCCATAGTAGTTTCTGAAAACTCTATTTAAAAAAAACATTTGGCTTAAAATTTAAAGGTATTATTAAAAAATTGTGAAAATATGTCCAAAGAACTCTGAGTTCAAAGACAATATTTTTTAAAAAGATAAGAAACAATACAAAACAGTTGTGGCCTAAATTTTAAGATGTTTTGATGCTCAAACTAAACAATATTTATCACAAATGTTGAACTATATTTATATTGTCCAAAACCTGTTCATATATATATATAGTATGTATATATAAATAGGTTTTGGACATTTGGTATCCCGGGGCAAAGGAAGAGTTTTGATTTTGAAATATCTCAGATTTTAAATGAACTATTTGCAAGTTTTATGAAAATTCTATATCTTATTATGAAAGATCTTCTATTGCTTGAGTTCATTCCAGAATAAAAATTAGTACTTCCATAGTATAGAAAATTTTTCATACTATCATTTATAGCTTACTACATGAATATTTAAAAATTGACTTCAATAAAAATTATATGAGATCTATTAGTATTAAAATATTGTGTGAACAAAGGTCCAAATATTAGAATTTTAATTCTATATCTTATTATGAAAGATCTTCTATTGCTTGAGTTCATTCCAGAATAAAAATTAGTACTTCCATAGTATAGAAAATTTTTCATACTATCATTTATAGCTTACTACATGAATATTTAAAAATTGACTTCAATAAAAATTATATGAGATCTATTAGTATTAAAATATTGGGTGAACAAAGTTCCAAATACTAGAATTTTTTCTAAACAGACTGTAGTTGTCCTTTCTTATAATGACCTTTCATAGAATGACGTGTGTACTATATTACAGACCTTGATTAGCTTTTTTTTATATATTCTCTTATACTTTTGATAGATTTGCCATTTCGACATAAAATTTGGTGATTACTATTCGGTTATTGGAAGTCCCAACAGAGTTGAAGGCCCAACATCAGGATGACAGAATTCAGTCAAGGTAAATTTTAAAGAACAATTTATTTTTTAAAACAATTATTGTAAACATATAAATTTAGATAAATAATTCCCATATATGATACCAAACTAAACAATTCTCAGATATAATACCA GGTGAACCAAACTTTTACAAGCGCGCGCTCTTCTCTCTCTGTCGGAAGTCGGTTTCTGAAACGAAGCTCAGCATCCATCAGCCGACGAGGGATGGCTAAATTATCTGCTACATTGAGACTATTCGATGCACATTGTCACCTCCAAGATCCAAGAATATTTGATAAAGCACCTCAATTAATTAGCGCAGCAGTGGATTCTGGTGTTGTGCGTTTTGCTGTTAATGGAATTTCTGAGAAAGACTGGCATTTGGTCAAGCAGCTGAGTGAATTATATCCTTGCATCGTGCCATCCTTCGGTCTTCATCCCTGGTATGTTCCTGAAAGAACTCCCGGCTGGCATGAAAAACTTAAGGAATTTTTTGATGTAGTGCCAAGCGCAGCAGTTGGAGAGATTGGTCTGGACAAAGGTTCACGAGGAAGGGAGATCAGTTTTACAGATCAGGTTGAGGTCTTTCAGCAACAACTTGAGCTTGCTAAGTCTTTAGAAAGACCAGCATCCATCCATTGTGTCCGTGCTTTTGGTGATCTCCTTCAGATAATGAAATCTATGGGACCTTTTCCTGCTGGTTTCATTTTGCATTCTTATCTAGGATCCGCTCAGATGGTTCCTGAGTTCTCCAAGCTAGGTGGTTACTTTTCATTTTCCGGTTTTATCATGTCCATGGAGGCAAGGAAGGCAAAGAAAATGCTGAAAATGGTGCCCTCGGATAGGATTTTGTTGGAGACTGATGCTCCTGATGCACTTCCCAAGTCAAAGTTAGACTCCCTCTATTTTGTTGAAGGCGATCCTTCCCTTCCTGAAGGTCTTAAGACGCAAGAGCAATCTACCCCAACAGGCTCACAACAAAGTACTTTTCCTTGTTCTATAGATGTGTCAACACTGCCAAAAGAGACTCTCAATCATCCAGCAAACATCCAAAATGTCCTTGTTTATGTTGCATCTTTGTTGGACATCAGTAAAGAAGAGCTTGCTGAATTGAGTTATAGAAATGCAGAGCATTTATTCTCTTTCAATGGTCTACAAGCTTCTTAGGGATGAGAGTCCAAATGTTTAGGTGATGTTTTTAACAACTCGATATAATGTCCCCTATTGTTCCCATGTCACTAACATTTATCTTGCCATCTAGCAATGAACTTTACTTGTGAAGCATAAAAGTCATAGGTGATGCCTTTATGGTGCTTGTATTTGGTGTTGTGTATCAACAACATTGAGAATCCTTCTGACAACACGAGCAATGCAGGACAAATGACATTTCAGAGGCATCTTAATTGTGTGGGAGTTGGAGTATGCACTTGCTGGGATTTTTCAACGATCCGTCCCACATTTTGATTGGAACTTTTCAGGTATTTTCAGATTTGCCATTTCGACATAAAATTTGGTGATTACTATTCGGTTATTGGAAGTCCCAACAGAGTTGAAGGCCCAACATCAGGATGACAGAATTCAGTCAAGGTAAATTTTAAAGAACAATTTATTTTTTAAAACAATTATTGTAAACATATAAATTTAGATAAATAATTCCCATATATGATACCAAACTAAACAATTCTCAGATATAATACCA ATGGCTAAATTATCTGCTACATTGAGACTATTCGATGCACATTGTCACCTCCAAGATCCAAGAATATTTGATAAAGCACCTCAATTAATTAGCGCAGCAGTGGATTCTGGTGTTGTGCGTTTTGCTGTTAATGGAATTTCTGAGAAAGACTGGCATTTGGTCAAGCAGCTGAGTGAATTATATCCTTGCATCGTGCCATCCTTCGGTCTTCATCCCTGGTATGTTCCTGAAAGAACTCCCGGCTGGCATGAAAAACTTAAGGAATTTTTTGATGTAGTGCCAAGCGCAGCAGTTGGAGAGATTGGTCTGGACAAAGGTTCACGAGGAAGGGAGATCAGTTTTACAGATCAGGTTGAGGTCTTTCAGCAACAACTTGAGCTTGCTAAGTCTTTAGAAAGACCAGCATCCATCCATTGTGTCCGTGCTTTTGGTGATCTCCTTCAGATAATGAAATCTATGGGACCTTTTCCTGCTGGTTTCATTTTGCATTCTTATCTAGGATCCGCTCAGATGGTTCCTGAGTTCTCCAAGCTAGGTGGTTACTTTTCATTTTCCGGTTTTATCATGTCCATGGAGGCAAGGAAGGCAAAGAAAATGCTGAAAATGGTGCCCTCGGATAGGATTTTGTTGGAGACTGATGCTCCTGATGCACTTCCCAAGTCAAAGTTAGACTCCCTCTATTTTGTTGAAGGCGATCCTTCCCTTCCTGAAGGTCTTAAGACGCAAGAGCAATCTACCCCAACAGGCTCACAACAAAGTACTTTTCCTTGTTCTATAGATGTGTCAACACTGCCAAAAGAGACTCTCAATCATCCAGCAAACATCCAAAATGTCCTTGTTTATGTTGCATCTTTGTTGGACATCAGTAAAGAAGAGCTTGCTGAATTGAGTTATAGAAATGCAGAGCATTTATTCTCTTTCAATGGTCTACAAGCTTCTTAG MAKLSATLRLFDAHCHLQDPRIFDKAPQLISAAVDSGVVRFAVNGISEKDWHLVKQLSELYPCIVPSFGLHPWYVPERTPGWHEKLKEFFDVVPSAAVGEIGLDKGSRGREISFTDQVEVFQQQLELAKSLERPASIHCVRAFGDLLQIMKSMGPFPAGFILHSYLGSAQMVPEFSKLGGYFSFSGFIMSMEARKAKKMLKMVPSDRILLETDAPDALPKSKLDSLYFVEGDPSLPEGLKTQEQSTPTGSQQSTFPCSIDVSTLPKETLNHPANIQNVLVYVASLLDISKEELAELSYRNAEHLFSFNGLQAS Homology
BLAST of Tan0006135 vs. ExPASy Swiss-Prot
Match: P37545 (Uncharacterized metal-dependent hydrolase YabD OS=Bacillus subtilis (strain 168) OX=224308 GN=yabD PE=3 SV=1) HSP 1 Score: 107.5 bits (267), Expect = 2.9e-22 Identity = 85/304 (27.96%), Postives = 131/304 (43.09%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy Swiss-Prot
Match: Q8K9J1 (Uncharacterized metal-dependent hydrolase BUsg_343 OS=Buchnera aphidicola subsp. Schizaphis graminum (strain Sg) OX=198804 GN=BUsg_343 PE=3 SV=1) HSP 1 Score: 97.1 bits (240), Expect = 3.9e-19 Identity = 62/218 (28.44%), Postives = 106/218 (48.62%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy Swiss-Prot
Match: P39408 (Uncharacterized metal-dependent hydrolase YjjV OS=Escherichia coli (strain K12) OX=83333 GN=yjjV PE=1 SV=2) HSP 1 Score: 96.3 bits (238), Expect = 6.6e-19 Identity = 68/231 (29.44%), Postives = 103/231 (44.59%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy Swiss-Prot
Match: Q05AV0 (Putative deoxyribonuclease tatdn3-A OS=Xenopus laevis OX=8355 GN=tatdn3-a PE=2 SV=1) HSP 1 Score: 95.1 bits (235), Expect = 1.5e-18 Identity = 84/312 (26.92%), Postives = 132/312 (42.31%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy Swiss-Prot
Match: P73335 (D-aminoacyl-tRNA deacylase OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=dtd3 PE=1 SV=1) HSP 1 Score: 90.5 bits (223), Expect = 3.6e-17 Identity = 78/305 (25.57%), Postives = 128/305 (41.97%), Query Frame = 0
BLAST of Tan0006135 vs. NCBI nr
Match: XP_022146895.1 (uncharacterized protein LOC111015984 [Momordica charantia] >XP_022146896.1 uncharacterized protein LOC111015984 [Momordica charantia] >XP_022146897.1 uncharacterized protein LOC111015984 [Momordica charantia]) HSP 1 Score: 587.8 bits (1514), Expect = 5.5e-164 Identity = 290/313 (92.65%), Postives = 300/313 (95.85%), Query Frame = 0
BLAST of Tan0006135 vs. NCBI nr
Match: XP_038880364.1 (uncharacterized metal-dependent hydrolase YabD isoform X2 [Benincasa hispida]) HSP 1 Score: 569.7 bits (1467), Expect = 1.6e-158 Identity = 286/314 (91.08%), Postives = 295/314 (93.95%), Query Frame = 0
BLAST of Tan0006135 vs. NCBI nr
Match: XP_038880361.1 (uncharacterized metal-dependent hydrolase YabD isoform X1 [Benincasa hispida]) HSP 1 Score: 569.7 bits (1467), Expect = 1.6e-158 Identity = 286/314 (91.08%), Postives = 295/314 (93.95%), Query Frame = 0
BLAST of Tan0006135 vs. NCBI nr
Match: XP_011650815.2 (uncharacterized protein LOC101220251 isoform X1 [Cucumis sativus]) HSP 1 Score: 567.4 bits (1461), Expect = 7.7e-158 Identity = 283/314 (90.13%), Postives = 295/314 (93.95%), Query Frame = 0
BLAST of Tan0006135 vs. NCBI nr
Match: XP_004133940.1 (uncharacterized protein LOC101220251 isoform X2 [Cucumis sativus] >XP_031738316.1 uncharacterized protein LOC101220251 isoform X2 [Cucumis sativus] >KAE8650276.1 hypothetical protein Csa_011695 [Cucumis sativus]) HSP 1 Score: 567.4 bits (1461), Expect = 7.7e-158 Identity = 283/314 (90.13%), Postives = 295/314 (93.95%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy TrEMBL
Match: A0A6J1CYM1 (uncharacterized protein LOC111015984 OS=Momordica charantia OX=3673 GN=LOC111015984 PE=4 SV=1) HSP 1 Score: 587.8 bits (1514), Expect = 2.7e-164 Identity = 290/313 (92.65%), Postives = 300/313 (95.85%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy TrEMBL
Match: A0A0A0L4G2 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G127010 PE=4 SV=1) HSP 1 Score: 567.4 bits (1461), Expect = 3.7e-158 Identity = 283/314 (90.13%), Postives = 295/314 (93.95%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy TrEMBL
Match: A0A6J1HP04 (uncharacterized protein LOC111464387 OS=Cucurbita moschata OX=3662 GN=LOC111464387 PE=4 SV=1) HSP 1 Score: 562.8 bits (1449), Expect = 9.2e-157 Identity = 283/315 (89.84%), Postives = 295/315 (93.65%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy TrEMBL
Match: A0A6J1IGS5 (uncharacterized protein LOC111472748 OS=Cucurbita maxima OX=3661 GN=LOC111472748 PE=4 SV=1) HSP 1 Score: 557.4 bits (1435), Expect = 3.9e-155 Identity = 280/315 (88.89%), Postives = 295/315 (93.65%), Query Frame = 0
BLAST of Tan0006135 vs. ExPASy TrEMBL
Match: A0A1S3AWG8 (uncharacterized metal-dependent hydrolase YabD isoform X1 OS=Cucumis melo OX=3656 GN=LOC103483391 PE=4 SV=1) HSP 1 Score: 555.1 bits (1429), Expect = 1.9e-154 Identity = 277/314 (88.22%), Postives = 291/314 (92.68%), Query Frame = 0
BLAST of Tan0006135 vs. TAIR 10
Match: AT5G17570.1 (TatD related DNase ) HSP 1 Score: 421.8 bits (1083), Expect = 4.9e-118 Identity = 206/303 (67.99%), Postives = 246/303 (81.19%), Query Frame = 0
BLAST of Tan0006135 vs. TAIR 10
Match: AT3G03500.1 (TatD related DNase ) HSP 1 Score: 325.5 bits (833), Expect = 4.8e-89 Identity = 161/302 (53.31%), Postives = 208/302 (68.87%), 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
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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