Tan0000127 (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.CACTTAGCGCTTCCAATTCCCACATTCCCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTTTCCCCTTTCCAATTCCATTCCCTTTCCGATCCGATTCGTTCCTTCTTCAATCTCCAGCTTCCAAATCCATCAACAATTTGATGTTATGAAGGTCAGATTTCTGCCGTTTTCGCCATTTTCGCCATTTTTGTATCTTCAATTAGCTTCACGCACACGTTACAGCCTCTAACAACAATGTATTCGTCGCTTTCTCTCTCTAATGAAATTTCTTATTATCCGCAGGAACTAACCGGATCGTCTATTTCGGCATTGGAAGATTATCTCTGAATCTTTCTTTTCCGTTCGTATAAGCGATGGGATTATCTTCCGATAACATCCATGGCCTCATTCTCGCCGTCTCTTCCAGTATCTTCATCGGTAGTAGCTTCATTATCAAGAAGAAAGGTCTTATGAAAGCCGGTGCTACTGGAACCAGAGCAGGTTTGGTTGCGTTTTAGCATCTTCGATCGCCTCTGAGTTTCGATTTAATGTATTGCATCCATTGATTGAAATTCATGTTTACGTATAAGTAGAAGCGATGTGTGTGTTCGTAATTTGATAGGGATTTGTGTTTGTATTTAGGATCGATATCTTCAACATTTTCGAAAATTCTTCGCCACGTGCTTGCTTTTTCTCTTCATCTCTTCTGTTTTTATTGAACTTGTTTTCGTATGATCAGGTTCTGGAGGATATTCGTACTTGTATGAACCTATGTGGTGGGCTGGGATGATAAGTAGTAAGTTCTTCTTCATTCATTTGGTTGCTTTTGATAATTTTATCATGCTCAAGCCTCGATTACTACAGCTTTAGCAGTCATTCTCATGAAATCATTATTCCACTGGAAAAGTTTTCAAACTCTGCTTGTGTCTGTTTAATATCTCTTTTTTCCAGCTGATTCATCTCTTGAGGTGTTTCTTTTTCCAATTCCAAGTAGTTAAGATTTAGGAAACCGAAACATCTTTGTATAAGAATGTGCATGCTACAAGATAAGGAACAGATTAGTTTTACTGCTGTTTTTCTCTTCGGATCGGAATTAGACAATTTTATTTATCATTTATTTGTGGGAGCCTAAGTATGTAAGCATCTCTCTCCATTTTCGTCCTTCATTCCCTTTGTCCTAGCAGGAAGCATATGAATATTTAATTACCAAAGGAAAGGACAAACACGTGTTTTTTGACCAATTTGTTTTCCAACTATAATAATGATTGATAGAGTTTTTCCAGAGTTTCTGTAAACACTGACGGTTTAAATTATCAATATAAGGCTTCTCGACTTATGTACTGTTGAGAAGAGCGATTTGGAGTTGGATAACTGCAACAGCATTTTCAGGTCACAGTAAGAGCAGGTTCACTAGTAATTACAATTAATGAAGAAAAATCTCACGGTTCTGTTGTTTAATTACCAAAACATAGAGGCAAGATGCACTTATAAGATTGATTTTGAATGTTTTTACTAACATTCAGTTTATTTCATTTTGTGTAGTGATTGTTGGAGAGGTTGCTAATTTCGCTGCTTATGCATATGCTCCTGCAATTCTTGTAACTCCTTTGGGAGCTCTAAGTATAATTTTCAGGTATATGTCAGTCATTCAAGGAATTTTTGGTAAAATCAAGTATGAAAATTTCAATGTTGATACTGATATCAATACAAAAATTTCAATTTTATGGATGTATTGATAGATATTTCTATAAATCAACAAATTTTTAAAAAATTATTTAAATTAATAATCGAGTTATTTTTACTTCCAAAATTAAGTTATAAATCTTGTTAATAGTATTTATATTTACATTGAGGTTAATAGATAATATCCTTTTCGGTTATTTGAGGCGTTGAGTGGGTTATAATAGTTTTTAGAGTTATATAATCTATGTTTAGGATGCAAGGTTATTTAGTCTGGAATATAATATTCTATGGTTGGGGTGTAGAGTTATTCATAAACCATTAAAACACAGGCTATTATAACATGCACCCCAAACGGGCTATTTATGTTTCATGAGTATTTATAAAAGATATTAGAGATATCGATTAATTCTCAATATCCATGTCGAACTCCCCAATTTACAGATATGTCGACGGATATTTTCATTCTTGCTTCTAATACCAGTAGATATTATGTCCACATCTGTTAGTTGTGTGCTAATCTATGCTCATAGGAAGACATTCATGGGATGGGAATGGTATGCATGGCTGAAGTTGAGCAATTTAATTAAGCGACACCATTCTGCAGTGCAGTACTAGCTCATTTCATTTTGGAGGAGAGGCTACATATCTTCGGCATGCTCGGGTGTGTTCTGTGCGTGGTGGGATCTACAACTATTGTTTTGCATGCTCCTCAGGAAAGAAATATTGAATCTGTCAAGGAAGTTTGGCTGCTTGCTACAGAGCCAGGTTTGTCATTTGCTTCACCATATTATTATATTCCCATGCTTCAGGCACAACATTAAACTCAACTTAAAATAAATGTGCTAATTTTTCTTTATCAATTGGCTAGTTTTAGTGAATTGGGAGCTCGGAGATATAGTTTTTTACCTTAAACTTCACAAAAACTTTTAATTTCATCCATGGATAAATGTTGCAATATTTACCGTAAATTTGAATAAGTGACAAATTTTAACTTTTGATAGACTTTTATATAAAAAATCAACCATGGAAATATTTTTATGTGCTTTTAATGAATGTAAAACATATGCCTAGTACAAAATTAATGAATCTTTATAGAAGAACGAAGTCCGAATGGGGTTTTATTGAAATTTGTGAGCTTTGAAAGATTTATTCCGTTATTAATTGGATTTAAACTTGTGCAAGGTTTATTTTTTGTTGAAATTAGTAAATTTTGAGAGATTTTTACTTTATTTTTGTTAAAAATAGTGGGAGAATTTAGTGGAAATTGAACCTAGAGTAAAAATTATAACACATGTTTAAGTTTATTGTTCAATTTGATGAAATAAAAAGTTTGTGATGAAAATTGATACAACTCACCAATTTCATGATTATAATTAATTTTTTTTCCTTGTTAATTATTATTTTGAAAGCACTCTATAAAACTCACCCCAATTCGTCCATCTGACCAAAGGTGATGAGTCCATGGATGGAAAATGGTACCTATGTACCGATACCACACTCACCATCTAGACTAAACTATAACTATGATTTTACTTATTTATTTATTTATAATTTATGTCATGACCTCAGCTATTATTATTTTTTATGGGTAAAATTATACTAAATATTCGCATAGATGTAACTTAATTCGATTTTGCTTATTTACTCTGTGACTTCAACAAGATTTGAGAGTGGGAGAATTTGAACCTCTAATCTTTTGGTCGAGAGTATATATCAATTATTGTTGAGTTATTGCTTTTGATAGGTTTTATTTTACCTCAATCTTTTAACTTGTTCCTATAAGAACTCATTGTTAGCAATTTCCATAAAAATACTTGAATGAAAATTACAAGATTAAGGTAAAATAAATTTTTTTAAATAATAGAGCAATACATTTGGAATATTTGTATAATTTAGTTGGTTTTAATTTCATCTCTAATATTTAAAAGTTTTAGTTATAACGGAAATTGCTAATGGATAGTTTTCTCTGTAATAAACTAAAATGTTGAAGCTAAAATTAGAAAAAATTAAAACCAAGCGCATTTTGTATAGTTCTGTCTTTTTTTTCTTTTTCCTATTAAACCAACATGAAAGTAGTACAGTTTTTTCCCTGAAAGGCGTTGTTCATCCAGTGCAATTTGGACACAATATCTTTAGGGGTTGTACGGGGCATGAGTTACAATGGTCTGAGTTATAAAAGGTTACGAAATATTTTGCACTCTAAATACAGATTATTCTAACTTAGACTAAATAACTTTACATCTTAAACTATCTAACTCCACAAACTATTATAATTTAGAATATTAGCTTGTGGCGATTTAGATTTATTAACATGATTCTTTGGTTCTTACCAGGTTTTCTAGTATACTCCGTCACAGTTTTGGTTCTAGTTGTTGTTCTCATTGTTCGATATGTGCCGAGATATGGACAAACTCACATGGTTGTTTACGTTGGAATTTGTTCTCTCATGGGTTCTCTTACGGTTTGTTCACCATCACTATATATGAAATTCATACATTGTTACAATTTTCAATCTTTTTACCATTTCTTCAATTGGTTTTCGAATTAATTTGTAGGTTATGAGCGTCAAAGCAGTAGGAATTGCACTTAAGCTGACGTTTTCAGGAATGAATCAGTTTAAGTACTTTGAGACGTGGTTTTTTACAGTCATCGTGATAGGAGGTAGCATTTTGCAGGTGAACTACTTAAACAAGGTAAATATTCCACATCCTTGAGAAAGCCTGGTCAGTCCAATCTTCATATTTAGTCGAATCTTTATTTTGAATTATTCGTATGTTTCTAGTGATTAATATGACAAGGTTAAATTAAAAGTTTAGTCCCTAAATTTTAAAAAGCTTCTAATATGTGCTTGAACTTTAAAAAGTGTCTAATAACCTCCTAAACTTTCGATTTTGTATCTTGTAAGTTCTTCAACTTTTAATTTTGTGTCTAATAGGTCTCTGGCCTATTCGACATTTTTCAAAATTCATGAACTTCTTGGATACGAAATTGAAAGTTTAATACACTTTTAGACACAAAATTCAATTTTATATTTAATAGATTTCGTTAATTTTAAAAATTTTGAATATGTCAAGGACCTATTTGGTATTTTTAAAGTTTAATGATCTATTAGATACAAAATTAAAAGTTCTAGGACCTATTAGACACAAACATGAAAGTTTAGAGACTAAACTTGTAATTTAACGATATTGTAATTGGCATGTTTATGGTTGTTGAGCTGCTTATTGAAAAAGATGTTTTTAAACCACTTTTGGAAGAAAAACTAATTAAATGTTCCAACCAAAAGCACTTTATTTATTATTTGTTTAAATTACAAACTTAATTCTAGATCAATTAATTTTAAAAATTTTGAATTTGTCAAAGAGCTATTATACACAAAATTGCAAGTTCAAAGAATAAATAGACACAAACTTCAAAAGTTTAGGAACTAAACTTGTAATTTAATCTTTTTTTTTAAAGATTATTTCAAACTACTTTTTCTTACTGAAAGTTTTTTCAAAAAATGTTTTTAATTAGTTAAAAACAAACACTCTTTAGAATTTTTATCAAACACTGCCTTTTTTTAAAAAGATAAACATAATTAAAAATTTTAAAAAGTTATTTTAATTTGTTAAAAGCACTCTTTAAAATTAAACACTGCCCTTTTGAAAAAAAGATAAACAATTTTATGTCATAAACACTTGAAAAGACAAGTCAAACGCACCTACTTTGAATATGATCCTTCTTCCCGGAGAGAATGATAACTTAGCTTGGATATGATCTTTTTTCCATGAGTGAATGATAACATAGATTATGAGGTGATAAATCCCTATTTATGTTAAGGATGCTTCTCTTAAACTTAAGGAAAAAGGTTCATGATGGGCCAAAAGATTAATAATCATTTTTTTTCTTTTTACTATCTAATGCATTTAAGCTTTCAATAAAGGGTGAATTTGGAATGACATATAAAAATTACTTATTCTATAAGTACCTTTTAGTATTTTTAGGCTTTTCAAACTAACTTTTGATTATTTTAAATAAGCTATAAAAAATTATGAAAATTGTTTAATGGCTAAAAACATGTTTTATCCTTCTCAAAGTTATCTCAAACTCACTAACTTTAAGAAGTATTTTAGTCGTTAGATATATCAATATCTTCCCCCATCTTGTGAAGGGAAGACGTTAATTTCTTTTTGTAGTGCAATGCTATTGACATCCATTCTATACTATGAACGTACTTTAGGGTGAAACTAGAGGAAATATTTTAAGCGTCATTTGATAACCATTTGATTTTTTGTTTTTCGAAAATTGTGGTATGTTTTCTCACAAATTCTCTACCATGATTTTCATTTTTCTACAATAATTTCCATCTTTTTTTTAAAAAAAAAACACTTAAATTATTAGTCAAATTTTAAAATAAATTCTTAGTCAAATTTTTTTTAAAAAAATAAGTTTTTGAAAACACATCTAAAAAGTAGTTAAGAAAATATGAAAAGTCATGGGTGAAATCAATATTTATAGGCTTAATTTTGAAAAAACAATAACTAAAAATCAAATAATTATGAAATGAGACCTTAACATTGAGTTTCTCAATATAACTAACACCCCTAATATTAGGGAAACTTAAAAGCAGTTGCATGTCTCATCCCAGCTCCTAGAACCTGTCAACCTCTCTCGAATACTCTCGACACTTATTAGACGCATGTTAAAACCTTAATAGCACAAAAAATATGTGTTAGAGATTAGCTATATAAACTGAATATGAGTCCAAAAAATGTTAAACACATATCGAACACTTGTTAAGCAGACATAAAAAATAACATAAAAAGTAACATAGGCCAACAGTGGAATTATATCCATTTCATTTATTTTAATTTATAAATACACAAAGTTGTTGATTTGAAATTTTCTTCCAGTGAATATATATATTTAAAATGTATATTTTAATAAATGTGTTCTTAATTTGGCTTTGGTTTTCTACTTGGCTTTTGCAGTAAATATACCTTTGCCAAAAAAAAAAGTGTTTTTGCCCTGTCGTGTCTTGTGTATGTATCTATATTTAAGTTTTTTTTTTTTCCAATTGCAATTGTTTGCTGACATTCAAATAGGTATGGAAAATATGCTCTCTTTGATAGAAATTTCATTTTTAGTTTTCTGTTTTTGTTTTTGAAATTTATGCTTGTTTCTTTCCAATTTCTTTACTATAACTTTGACCTTTCTTTTTAAAAAAATTGATTTTTTAGTACAATTCCAAAAGCGAAACAACTTTTTTGAACTCCTGTAACTTAATTCATTTGGATTCTGAAAGCACTTCTAGTAACAAAAAAAAAAAAAAAAAAAAAACTCAAAGGTATGAGTAGTGTTTGTAAGCTAAATTTTTAAAAATAAAAAATAAAATGGTTATCCAACGAAACCCTAGTATGTGTGTGTATGTATATACTTTTTCGATTCAGCTTGTTCGAGTAGGGATCTCAATATGAATGCAACAAAACCATAGTATGTGTATGCATATATATACTTTTTCAATTCAGCTTGTTCAAGTAGGGATCTCAATATGAATGTTTATTCGACTTTTTGCTTAAACTGGTTTAGATGTCCTAGATTTCTAAGTTGCCATGAGAAGAGGTCTGAAGAATTTTGCATTCAATTCTGCAGGCTCTGGACACCTTTAACACTGCTGTAGTATCTCCAGTTTACTATGTGATGTTCACATCACTCACCATCCTAGCCAGTATGATCATGTTTAAGGTAATTTATGGGACTAGTTTTTTTTTTCTTTCCCTTAAAATTTTATAATTTAAACTTGTTATGATGAGAATTTTGCTTGATATCTATATCTATCTATAATTATACTTAAAAAGTATGGATTGGGAAAAGCTGTTTTTTAAGACAATAATGCCCTTTTATTTTGGGCTTTCTAAACTACTAAATGCTGCTTTCCTGTTTGGAAGCATATGCAATAGCTGTAACACTCCATACGTTTAACACAACTGTCATGGGTTGACCTAGTGGTCAATAACGGACATGTAAATAGTAAAAAAACATTTAGAAGAATGAGTTCACCTTGGCAATCAAATGTAGTAGGACTAGGTTGGCATTCTTTGAGAATGCTCAAGGTGATGCAAGTCCGCTCGGACACTCGCAGGTTTTAAAAAAAAATGCATATCATCAATATTTCTACTTGATGAGATTCGTTTAGCTCTAACCACTTCTACAAAAGTTTCTAGCGCAAGTAAATTCTCTAGGAAAGTTTTCCCTTTATTTTTTCTCCCTCTCCTAATCCCGTTTCTTTTTTTTTTCCCTTCTCTCTGCTCTGGTTTTTAATTACTTACAGGAATGGGATTCACAAAATGCATCACAAATCGCAACTGAATTATGTGGTTTTGTTACCATTCTTTCTGGAACTTTTCTCCTACATAAGACCAGGGATATGGGGAGTTCTCCATCCTCCGAAGGCCCGATTGTCGTTAGATCCCCAAAACGACCTAGTACGAACCCGAATTCCGACTAGAAGCAGAACAAACAGAAGCTAAAAAGGAAGAGTAGTATCACAGACCAATCTTTTTCCCATCCATATTCCCCAAAGTCTCTTTGTTTAGATATGCAAATTCTCATCTCATCATCCAGGAATCATGGCTAGGGGACAAAATTTTGGATGGAAGATTCTTGATAATTTATTGTAAGAAGCAAACAAGATGAGCACAATTAGCAAAGGCAAAATGGAGTTCAAGGGATTGGTTTTCACTTTTCATCTGTGAGGTACAGATTCAAATTTCAAATAAAAAATCATACAAATATATTACAGGTTGTGGTAAACAAGGTAAGGTACTCAATAGAAGTTAGTAGCTAACATTTGAGGATACATTTCAAATTGCTACAGAAACTGTTTTACAGTAGGTTTGGGGATTTCTATATTTCTTTCTCTCTCTCACCAACATTTAGTTTTGGCAGAAAATTTGTTTATACATACAGTGATACAAATGAGCCTAATGTTATTGTTTACCATGTCCTTTAACTTTTATCACCAGCTGTAACTAGATTTTCTCGTAACAACTTGAGACGTTTAGAGA CACTTAGCGCTTCCAATTCCCACATTCCCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTTTCCCCTTTCCAATTCCATTCCCTTTCCGATCCGATTCGTTCCTTCTTCAATCTCCAGCTTCCAAATCCATCAACAATTTGATGTTATGAAGGAACTAACCGGATCGTCTATTTCGGCATTGGAAGATTATCTCTGAATCTTTCTTTTCCGTTCGTATAAGCGATGGGATTATCTTCCGATAACATCCATGGCCTCATTCTCGCCGTCTCTTCCAGTATCTTCATCGGTAGTAGCTTCATTATCAAGAAGAAAGGTCTTATGAAAGCCGGTGCTACTGGAACCAGAGCAGGTTCTGGAGGATATTCGTACTTGTATGAACCTATGTGGTGGGCTGGGATGATAAGTATGATTGTTGGAGAGGTTGCTAATTTCGCTGCTTATGCATATGCTCCTGCAATTCTTGTAACTCCTTTGGGAGCTCTAAGTATAATTTTCAGTGCAGTACTAGCTCATTTCATTTTGGAGGAGAGGCTACATATCTTCGGCATGCTCGGGTGTGTTCTGTGCGTGGTGGGATCTACAACTATTGTTTTGCATGCTCCTCAGGAAAGAAATATTGAATCTGTCAAGGAAGTTTGGCTGCTTGCTACAGAGCCAGGTTTTCTAGTATACTCCGTCACAGTTTTGGTTCTAGTTGTTGTTCTCATTGTTCGATATGTGCCGAGATATGGACAAACTCACATGGTTGTTTACGTTGGAATTTGTTCTCTCATGGGTTCTCTTACGGTTATGAGCGTCAAAGCAGTAGGAATTGCACTTAAGCTGACGTTTTCAGGAATGAATCAGTTTAAGTACTTTGAGACGTGGTTTTTTACAGTCATCGTGATAGGAGGTAGCATTTTGCAGGTGAACTACTTAAACAAGGCTCTGGACACCTTTAACACTGCTGTAGTATCTCCAGTTTACTATGTGATGTTCACATCACTCACCATCCTAGCCAGTATGATCATGTTTAAGGAATGGGATTCACAAAATGCATCACAAATCGCAACTGAATTATGTGGTTTTGTTACCATTCTTTCTGGAACTTTTCTCCTACATAAGACCAGGGATATGGGGAGTTCTCCATCCTCCGAAGGCCCGATTGTCGTTAGATCCCCAAAACGACCTAGTACGAACCCGAATTCCGACTAGAAGCAGAACAAACAGAAGCTAAAAAGGAAGAGTAGTATCACAGACCAATCTTTTTCCCATCCATATTCCCCAAAGTCTCTTTGTTTAGATATGCAAATTCTCATCTCATCATCCAGGAATCATGGCTAGGGGACAAAATTTTGGATGGAAGATTCTTGATAATTTATTGTAAGAAGCAAACAAGATGAGCACAATTAGCAAAGGCAAAATGGAGTTCAAGGGATTGGTTTTCACTTTTCATCTGTGAGGTACAGATTCAAATTTCAAATAAAAAATCATACAAATATATTACAGGTTGTGGTAAACAAGGTAAGGTACTCAATAGAAGTTAGTAGCTAACATTTGAGGATACATTTCAAATTGCTACAGAAACTGTTTTACAGTAGGTTTGGGGATTTCTATATTTCTTTCTCTCTCTCACCAACATTTAGTTTTGGCAGAAAATTTGTTTATACATACAGTGATACAAATGAGCCTAATGTTATTGTTTACCATGTCCTTTAACTTTTATCACCAGCTGTAACTAGATTTTCTCGTAACAACTTGAGACGTTTAGAGA ATGGGATTATCTTCCGATAACATCCATGGCCTCATTCTCGCCGTCTCTTCCAGTATCTTCATCGGTAGTAGCTTCATTATCAAGAAGAAAGGTCTTATGAAAGCCGGTGCTACTGGAACCAGAGCAGGTTCTGGAGGATATTCGTACTTGTATGAACCTATGTGGTGGGCTGGGATGATAAGTATGATTGTTGGAGAGGTTGCTAATTTCGCTGCTTATGCATATGCTCCTGCAATTCTTGTAACTCCTTTGGGAGCTCTAAGTATAATTTTCAGTGCAGTACTAGCTCATTTCATTTTGGAGGAGAGGCTACATATCTTCGGCATGCTCGGGTGTGTTCTGTGCGTGGTGGGATCTACAACTATTGTTTTGCATGCTCCTCAGGAAAGAAATATTGAATCTGTCAAGGAAGTTTGGCTGCTTGCTACAGAGCCAGGTTTTCTAGTATACTCCGTCACAGTTTTGGTTCTAGTTGTTGTTCTCATTGTTCGATATGTGCCGAGATATGGACAAACTCACATGGTTGTTTACGTTGGAATTTGTTCTCTCATGGGTTCTCTTACGGTTATGAGCGTCAAAGCAGTAGGAATTGCACTTAAGCTGACGTTTTCAGGAATGAATCAGTTTAAGTACTTTGAGACGTGGTTTTTTACAGTCATCGTGATAGGAGGTAGCATTTTGCAGGTGAACTACTTAAACAAGGCTCTGGACACCTTTAACACTGCTGTAGTATCTCCAGTTTACTATGTGATGTTCACATCACTCACCATCCTAGCCAGTATGATCATGTTTAAGGAATGGGATTCACAAAATGCATCACAAATCGCAACTGAATTATGTGGTTTTGTTACCATTCTTTCTGGAACTTTTCTCCTACATAAGACCAGGGATATGGGGAGTTCTCCATCCTCCGAAGGCCCGATTGTCGTTAGATCCCCAAAACGACCTAGTACGAACCCGAATTCCGACTAG MGLSSDNIHGLILAVSSSIFIGSSFIIKKKGLMKAGATGTRAGSGGYSYLYEPMWWAGMISMIVGEVANFAAYAYAPAILVTPLGALSIIFSAVLAHFILEERLHIFGMLGCVLCVVGSTTIVLHAPQERNIESVKEVWLLATEPGFLVYSVTVLVLVVVLIVRYVPRYGQTHMVVYVGICSLMGSLTVMSVKAVGIALKLTFSGMNQFKYFETWFFTVIVIGGSILQVNYLNKALDTFNTAVVSPVYYVMFTSLTILASMIMFKEWDSQNASQIATELCGFVTILSGTFLLHKTRDMGSSPSSEGPIVVRSPKRPSTNPNSD Homology
BLAST of Tan0000127 vs. ExPASy Swiss-Prot
Match: B3LFA3 (Probable magnesium transporter NIPA2 OS=Arabidopsis thaliana OX=3702 GN=At4g13800 PE=2 SV=1) HSP 1 Score: 477.2 bits (1227), Expect = 1.4e-133 Identity = 249/326 (76.38%), Postives = 277/326 (84.97%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy Swiss-Prot
Match: Q9LIR9 (Probable magnesium transporter NIPA1 OS=Arabidopsis thaliana OX=3702 GN=At3g23870 PE=2 SV=1) HSP 1 Score: 470.7 bits (1210), Expect = 1.3e-131 Identity = 240/314 (76.43%), Postives = 275/314 (87.58%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy Swiss-Prot
Match: Q9LNK7 (Probable magnesium transporter NIPA3 OS=Arabidopsis thaliana OX=3702 GN=At1g34470 PE=2 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 2.9e-126 Identity = 229/314 (72.93%), Postives = 275/314 (87.58%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy Swiss-Prot
Match: Q94AH3 (Probable magnesium transporter NIPA4 OS=Arabidopsis thaliana OX=3702 GN=At1g71900 PE=2 SV=1) HSP 1 Score: 442.2 bits (1136), Expect = 5.1e-123 Identity = 223/302 (73.84%), Postives = 267/302 (88.41%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy Swiss-Prot
Match: F4JKQ7 (Probable magnesium transporter NIPA5 OS=Arabidopsis thaliana OX=3702 GN=At4g09640 PE=2 SV=1) HSP 1 Score: 437.2 bits (1123), Expect = 1.6e-121 Identity = 226/320 (70.62%), Postives = 269/320 (84.06%), Query Frame = 0
BLAST of Tan0000127 vs. NCBI nr
Match: XP_008438338.1 (PREDICTED: probable magnesium transporter NIPA2 [Cucumis melo] >KAA0049138.1 putative magnesium transporter NIPA2 [Cucumis melo var. makuwa] >TYK17423.1 putative magnesium transporter NIPA2 [Cucumis melo var. makuwa]) HSP 1 Score: 595.9 bits (1535), Expect = 2.1e-166 Identity = 313/323 (96.90%), Postives = 319/323 (98.76%), Query Frame = 0
BLAST of Tan0000127 vs. NCBI nr
Match: XP_038897578.1 (probable magnesium transporter NIPA2 [Benincasa hispida]) HSP 1 Score: 592.8 bits (1527), Expect = 1.8e-165 Identity = 308/323 (95.36%), Postives = 318/323 (98.45%), Query Frame = 0
BLAST of Tan0000127 vs. NCBI nr
Match: XP_011650871.1 (probable magnesium transporter NIPA2 [Cucumis sativus] >KGN56718.1 hypothetical protein Csa_011123 [Cucumis sativus]) HSP 1 Score: 589.3 bits (1518), Expect = 2.0e-164 Identity = 310/323 (95.98%), Postives = 317/323 (98.14%), Query Frame = 0
BLAST of Tan0000127 vs. NCBI nr
Match: XP_022147072.1 (probable magnesium transporter NIPA2 [Momordica charantia]) HSP 1 Score: 588.6 bits (1516), Expect = 3.3e-164 Identity = 306/323 (94.74%), Postives = 316/323 (97.83%), Query Frame = 0
BLAST of Tan0000127 vs. NCBI nr
Match: XP_022980359.1 (probable magnesium transporter NIPA2 [Cucurbita maxima]) HSP 1 Score: 572.4 bits (1474), Expect = 2.5e-159 Identity = 302/324 (93.21%), Postives = 314/324 (96.91%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy TrEMBL
Match: A0A5D3CZT4 (Probable magnesium transporter OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold434G002860 PE=3 SV=1) HSP 1 Score: 595.9 bits (1535), Expect = 1.0e-166 Identity = 313/323 (96.90%), Postives = 319/323 (98.76%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy TrEMBL
Match: A0A1S3AWR6 (Probable magnesium transporter OS=Cucumis melo OX=3656 GN=LOC103483468 PE=3 SV=1) HSP 1 Score: 595.9 bits (1535), Expect = 1.0e-166 Identity = 313/323 (96.90%), Postives = 319/323 (98.76%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy TrEMBL
Match: A0A0A0L4M4 (Probable magnesium transporter OS=Cucumis sativus OX=3659 GN=Csa_3G129750 PE=3 SV=1) HSP 1 Score: 589.3 bits (1518), Expect = 9.5e-165 Identity = 310/323 (95.98%), Postives = 317/323 (98.14%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy TrEMBL
Match: A0A6J1D1C9 (Probable magnesium transporter OS=Momordica charantia OX=3673 GN=LOC111016099 PE=3 SV=1) HSP 1 Score: 588.6 bits (1516), Expect = 1.6e-164 Identity = 306/323 (94.74%), Postives = 316/323 (97.83%), Query Frame = 0
BLAST of Tan0000127 vs. ExPASy TrEMBL
Match: A0A6J1IZ26 (Probable magnesium transporter OS=Cucurbita maxima OX=3661 GN=LOC111479747 PE=3 SV=1) HSP 1 Score: 572.4 bits (1474), Expect = 1.2e-159 Identity = 302/324 (93.21%), Postives = 314/324 (96.91%), Query Frame = 0
BLAST of Tan0000127 vs. TAIR 10
Match: AT4G13800.1 (Protein of unknown function (DUF803) ) HSP 1 Score: 477.2 bits (1227), Expect = 1.0e-134 Identity = 249/326 (76.38%), Postives = 277/326 (84.97%), Query Frame = 0
BLAST of Tan0000127 vs. TAIR 10
Match: AT3G23870.1 (Protein of unknown function (DUF803) ) HSP 1 Score: 470.7 bits (1210), Expect = 9.4e-133 Identity = 240/314 (76.43%), Postives = 275/314 (87.58%), Query Frame = 0
BLAST of Tan0000127 vs. TAIR 10
Match: AT1G34470.1 (Protein of unknown function (DUF803) ) HSP 1 Score: 453.0 bits (1164), Expect = 2.0e-127 Identity = 229/314 (72.93%), Postives = 275/314 (87.58%), Query Frame = 0
BLAST of Tan0000127 vs. TAIR 10
Match: AT1G71900.1 (Protein of unknown function (DUF803) ) HSP 1 Score: 442.2 bits (1136), Expect = 3.6e-124 Identity = 223/302 (73.84%), Postives = 267/302 (88.41%), Query Frame = 0
BLAST of Tan0000127 vs. TAIR 10
Match: AT4G09640.1 (Protein of unknown function (DUF803) ) HSP 1 Score: 437.2 bits (1123), Expect = 1.2e-122 Identity = 226/320 (70.62%), Postives = 269/320 (84.06%), 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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