Tan0018101 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAGCTCTCTCGCGTCACTTCCCTCTCATGGAGCCGTACTGTCTCCCATTCTATTCGCATCCCTCAACACCTGGCAGTAAGTGTTTGATTCTGATCATAATCTCATTTATTAGCTTTGCTTGGGCGTTGAGGAGTCAATGGTTAATCAATGCGCCCTCTCTGTCTTTTTCTTCCTTTAAATTCTCTTTTTCCTTGAAGATATGTGGCAAGAGGTTCAGGGTTTTCTCCGCCATTGATGCAACAGAGATGGTATGTACTTGAATTTCTGTGTTTTTGCCTTATACTGCCGAGAGATATTTTCTTATTTCAGTGTTGGAATTGAGAATTGTAATGTGTGTTAATTTGAAGTCTGTTTGTTGATCTTGTTTCCTGTGAAATTATATTCTTGTTATTGATCTTTCAAAATTATTGATCTTTCAAGGTTGACGTTGGGGGGCTGGGTAATTTGAGACTTCAAAATGAGGCCCTATCGCGTTTTTCATTGGAGTCGAAGTATGATCCTGACCCTTCCAAGTGGGCCTTGGTTTGTGAGTTTAAAGGAACTTTCAAGAATTCTTGGAAAGCTATCTCTTGGGATTTTCCCATCTTTTCTAATTCTGTGAAGTGCTCGGTTGGAGATGGTTCAAACACTTACTTTTGGGAGGACTATTGGTTGGGTGATACTGATAGTTCCTTTTGTACTTTGTTCCCTCACCTGTACTCCATTTCCTCCTTGAGGTTGCGTCCTATAGCTTTCTCTTTTAAGTTTGGTTTTCGTCGTCCTTCTCCGAATAGGGAATCATTTGATGTATCTACTCTTCCTTCTTTATTAGGAGACTTCCATCTTGGTTTGAGTAGTTGGGATATTCGTTTTTGGTCTCCTAATCCCTCTAAGGGGTTCTCCTGTTGTTCATTTTTACTCATTTTGGGTAGCCCTCATGCTTCTAGAAATCCAAGGAAGGAAATTTTCAAGAAGGTTAAATTTTTTGCTTGGCAAGTCTTACCTGGGAGAGCCTACACATTGGGTTATATTCAAAGGCACTTGTCCTTCTTGTTTGGGCCACAGTGGTGCATTCTTTGTAGCAAAGTATCGCAGGATTTCGATCACATCCTACAAAGATGCCAGTCTGCTCTTTCGATATGGGACTCTTTCTTGGAGACTTTTGGTGTTTGCTTGGCTCATAAGAGTGATTACCATCTCATGTTGGGGGAGGTTTTGTTTCATCTACCTTTTTGCGATTAGTGTCAAGTTCGTTGGCATGTTAACCTTTTTTTTCCTTGTTAGATCTGTGGTTGGTTAGGTCCCTTCCCTTTTTAGAGTTGTTGTTTTTCAGCCCTTTTGCTTTTCTCTGCTCAATTTCTTGATTAAGAAGAATTGTTGCAGAAAAATCAGCTCACTGTATCGGTAACTGGAGCTACAGGCTTCATCGGTAGAAGACTTGTGCAAAGGCTACATGCAGGTTATGTTCAATACGTCAAGCTAGACATCTGGAAAAACATCAAAGCTTGCCTTTTCTTGTCTTTTCGTTTCTTTCCTCCCCTAATTTGCTTTAAAAAAAATCACAAAATATTGCTTGTTTAAGTTTATATCTTTAAGCTTCTGGTTCCAATCTGCTCCTCACATATGGTGGATGAACGACTGATTGAGAATTCTTTGTTGTGTTGCTGGTTATAGATAACCATAATATTCGAGTTTTGACACGTTCTAAATCCAAGGCCGAGTTGATTTTTCCGGGTAAGAAGGTAATACATGTCAATAGTCTTTCTATGTTTTACTGTATCTTCTGAACTATAATCTGCTTAACTTTTGAACTACATCCCACCATCTGTAGCTAGAGAGTTTCCAGGAATCGTGATCGCAGAGGAGCCAGGGTGGAAAGATTGCATCCAAGGTTCAGATGGCGTTGTCAACTTGGCTGGGATGCCCATAAGTACCAGGTGGTCTTCTGAGGTTAGTAACACAGTTCCAATGGCCTTATCATATAATAAGCAAGTAAAAACCTATTCGATTAAATAATAACTTGTATGGTACTTAAAAACTAGTCTTGGAATAGAGCTTAGCATTTGTAATATCGTATGTATTAGATATGTATGTTTGTCCATAACTGAAAACCACATTGTTTTTAGATGAACTGTCTCTGTAGAATTTGATTCAAGATGTGCTTTTGATCGGTTGATCTAACCGTTTGTGGTAGTATGATGAAACAACTATGACTATCTCTTACTCTACTCGTTTCAATTTGGCAATCCGAGGACTTGCCAAATAATCTATTTTTCCAAAATTAATGATATATACTTTGTACCCATTGTAATACAGATCAAGAAAGAGATCAAGCAAAGCAGGATCAGAGTCACCTCAAAGGTAAGGAGTTTTCCGGCATAACTATAGAGGTTTGCAAACAGTTTTAAGAGACTTCTTCCTTTTCTAGCTTACAAATGCAAAATCTGATATGTAGCAATATTTAATACCTCGTTTACATGGTTACTTTACTGATGTGAAGGTTGTAAGCTTAATTAATGATGCACCAGATGCTGCTCGCCCTACAGTTCTCGTTAGCGCAACTGCTGTTGGTTACTACGGTATGTGCTTCTATCTAGATTTACTCAACCCTCTCTCCCTATCTATATATGTGAAAGACTATCTGTCTATCTGAAAGAACGGATGACAATATTTAGTTTAGTTTAGAAATTTAGGAAACCTGATCAAAGAACAGGATACAAATTATAATAAACGGAAAAACTTAGTTGTAAAATTGTCAACACTTCAGTGCTCAGGAATTAAAATTCAATCTTATGACTGAAGAGAGCTGTTGTGATTTTTTTTCATCCTTTTCCTATTATTACTGCCTATTTTCTCAGTTTTGATGTGAGAATTATAAAGTCTTCTATTGGATCATATTCATGATCTAAAATATACTTCTTTACGTTCTCTCTCTCTCTCTCTCTCTCAGGCACTAGTGAAACAGCAACATTTGACGAACGAAGCCCATCCGGGAATGACTACTTGGCCGAGGTGAGGAGAGTAGTTAGATAGAGCTAATTGAAGAGGAATTGTTGGATTTTATTTTTTTTCTTCGTTATTGAAGAGTAAAGTAGTTATATCACAATGATTTCCTTGCGTTGCAACCAAACTTCCATTAACCATAGAGCATGGTGACAATTCTATGGGTCCTTTGTTTTCTTTTCTAGTTTAATTTTGTGGTTTGTCGTAAATTTGTAATTATCTAAGATAGAGCTAGTAAAACTTATTTATCATACGAAAATGGACTCATGAAATTATAAATCTTGTGGGGTGAGGAATAATAGAATCTTTAGAGGGACCGAGAGAGCCTATAGTGAGGCTTAGTCTATCGTCAGGTTCCGTGTTTTTCTTTAGGCATTGACTTTTAAAATCTTTTGTAATTTATCGCTTGGTCTCATTTTACTTGATTGGAACCTTCTTTTTAGTCGGGTTCCTTTTGTGGGCTTGATTTTTTTGGATACCCTTGTATTCCTTCATTTTTTTTCTCGACGAAAGCTCGAATTCTTATAAAAAAGAAAATTATACATCTTCCTCTAATTCACTCAATGATTCTCTAGTCAGAAGCGGTTTGTTGATGAGCATTAAGATTTACTTCTATTTGTCATATATTGAAAATTTTCATACCATAGATTCTGAACTATTTTGTATACTTTCATGTTCCGGTGTTTGTTTGTTTGCTGAAGACAGTGATTTTCCAGGTTTGTAGGGAATGGGAAGCAACAGCCGTGGGAGTAAACAAGAATGTCAGAGTGGCTCTTATTCGTATAGGTGTTGTTCTTGGTAAAGAAGGTGGTGCTTTAGGTATGGGACTTTAGCCTCATGAGATTCTTAATTATTATGTTTAAATCCTTGTTTGGTATTTCTACCGTTCTACTTTCAAAACATATCCATTATTGGTCCCTAAACTTTTAACTTTTGTCCACTTTGGTCCGTGTATTTTCAACAAGTCTACTTTGGTCGTAGTTTTTAAAGGTGATCATTTTGATCCTTTTGTTTTTTCTTCTTTTAATCTTATTTTTCGATCACAATTTCAGCTTAATGTTGCACTCAATTAATTCGATAATATTATCGTAGTTTTGTATTAAAGGACTTTCATTGAGCATTAGAAATTTTGTTAAAATTTTACAAACTTGAGTCAAGATCATTTTTAAAGACCAAAATGGATAAAGTCGAAAGTACAGATACTAAAATAGACGAAAATAAAAAGTAAATAGACAAAAATATAAACCTAAGTAATATATTTTTGTTAATTAGCTTTCTACCTTAAATGAACAATACTTAGCTACACACCACCATTAAAATTTTGACAATTAAGAGAGAAATTTGAAATTTCTGGAAATGAGAATGGAATTTTTGTTCTACACACCACCATTAAAATTTTGACAATTAAGAGAGAGAAATTTGAAATTTCTGGAAATGAGAATGGAATTTTTGTTCTTTCTCTCTCCTCACTGTCAAAATTTTAATAGGAAAATACGGTGCGTAGCAAAGTAATGTCCACACAGCTTGGTTGCAGTTGAAAAGGCTCGTTAATTTCTGAATCCATATTTATCTTTCTTTTTTTTTTTTCTTTTCTTTTTTAAAATCCATATTTATCTGTGTGTCTTTGCAGCCAAAATGATCCCCCTCTTCATGATGTTTGCTGGAGGTCCTTTGGGATCTGGAAAACAATGGTAATACTCTCTCTCTAAGACTCAATTATGTGCTGAGTTGAAAAGCTTTACCATTCTGAATATATTTATCTTTTTTGATAAACAATTAACTTTCTAGAGACGTTTTTATTTATTATTTTGATGACCATTTGTTTTTTTCTTGAAAATTATGCTGGTTTAAACAAGTTTTTAAAAATATGGCTCATTTGATAAATATATTTTAAAAATTTTTGGGTTTTAAAAATTGAACCTATAAATACTATTTCCACCTTGTATTTTCTTGTTTTGTTATCTACTTTCGATCTATATTTTAAAAAACCAAACCAAATTTTGAAAACTAAAAAAAAAAAGTAGTTTTCAAAAATTATTTTTTGATTTTGAAATTTGGTTAGGAGTTCAAATATTTTCTTAAGGAAGATGAAACTCATAGTAGACAAATGATAGAAAACAAACACAATTTTAAAAAACTAAATAGTTATCAAACGAGCATACTTTTTTTAGTTTTCAAAACTTTATTGATTTTTGGATACAAAGGTAAAAGGCAGAAAACAAAACAAAGAAATTTATGGTAGAATTCAAATCCTTTCTTAAGAAAAATGAATTTCTTAAGAAAAATGAAACTTGTTATAGAAAAATGATGAGAAAACAAACATAATTTTCTAAAACCAAAAGGTTATCAAATGAGGCATATTTATTCTTAGTTTTCAAATTTTGGCTTGATTTTTTAAAACATAGGTAAAAAATTGAAAACAAAACAAAAAATCCATAAGTGAAAGTAGTATTTATAAGCTTAGTTTTTAAAATCCCAAATCAAATGGTTACAAAAGGGTCTTATTTATTTATTTTTGATTCCCGAGCTTGATTTGATATTTGGGTTTGCAGGTTTTCCTGGATTCATCTGGATGACATTGTGAACCTAATATATGAAGCTCTGATCAATCCATCTTATAAGGGTAATATTTCTATTTAACAGCGGAACTATAAAATATTACAGAAGGAACAACTAAAAAATAATTCCAAATATTGGCAAGATAATATGTAATTAAGTGGTTATAGTTAATCAAACATAAGTTAATAATGATCCTTTGGAAAAAGAAAAAGGTCAATTAGTGATTGTTAATTTAGTATGACTAGTTAATTATCAATTTAGGTTGTTTAATAACAATCATATAAAATAAAAATGTATAAATTATCATTATGTGAGTTAATCAAATCTTTTAACCAGGATCCTTCTTAGATTTGAATTCTCATCTTTATCATTGTAATTCTATATTTTCTTTTGTATGTATAAAACACTATACTTATAAATGTTTCTTTTCTTTGATTAAGAAAAATAGAACTGTGTATTTAGTAACTGTTCCTTGTTTCAAATTTTAAATTTAGAAACAAAAGGTTTGCATAAAATTTAATTTCTTGAAAAAAAAAATTTCAAAGTGTTTATCTTAGTGTTATTTTAAATTAATTTTTAATATTTATTATGTATTTTATAAGCAAAGAAAAAAAAACAATGTTTTTACTTATGTTTGGAAACATCCCAAGATATAATAAACTTGTTTTTGTTGTACTTTGATGAAATCATTCAAAATGAAATAATAACAATTACCAAACGCTTTTGTATCTAAAAAAAATTAGAAACAAGAATTAAGAAATTTGATTCTTTTATACCCGTATTTTAGGATGTTTCTTCAAAAAGAAAGAAAAATAGTTTATCAAACACTTTTGTTTATATAAAAGGGAAAGAAGCTAGAATCACTAGCTTTGCCCACCGACCCCAAAAGGTACGTGAAAAGAGGCCGTAATGTGGTGTTAATTGTTGTTATTATTATTATTATTTTTTAAGACTTTTTTTGTTTGAAATTATTATTCTAATTCCATTTAAGTTGAGGTTTCATTATGTTCTATTATAATTAATTAATTAATAAACAGGTGTTATAAATGGAACGGCGCCGAACCCGGTTAAATTGTCTGAATTGTGTGAGCGATTGGGAGATACCATGGGCAGACCTTCGTGGCTTCCCGTGCCGGAATTTGCTCTCAAAGCCGTCCTTGGAGAAGGAGCTTCCGTGGTCAGTCTCTCTTTTTACATTTTTACTATTTACTCTTTCATTAATCAATTAATATTAGACACAAAATTCTCTTTTAATCCGTCTAGAAATTCTATTATATATTTTAAGTATGATAGGTATTATGTAAGTTCATACACTTGGAAAATAAATTCAAACGCCTATTAAACACAAAATTAAAAGCATTTTAAGACTTGCATTTTAAGACTTGTTTGATAAATTACACCTATTAATACTACTACTACTTCCACCCCATGTTTTTTTTTTCAAAAAACAAGTCAAGTTTTAAAAACAAAAAAAAGAATTCAAAAACCACTCAAATGTTTTTGTTTTTGGAATTCAAGTTGGAAACATGGAGAATATGAAAATTATTTTAGAGAAATTGTGAAAACACAATTTTTAAAATCAAAAACAAAAATCAAAGATGAAATGGTTATCGAATGTAGCTTTACACTTATTAAACAATTCAAGGAGAAAATTGTCATTTAACCCTAAATTTTAAACCAACACAACCTTACATATAAAAACCTTTATTAATTTTTTGATTATGGTTTTTAGTTTTTAATTTCTATGTTTTCTTATATTTTAAAAAATAAAAAATAAAAAGTAGTTTTCAAAAATTTGATAAAGAATTCAAATGAGATGAACCTCATTGTAACAAGTTTAATATTCAAAAACTAAAAACAAAATAGTAATTAAAAAGGTTCATTAGTGAGTAAGCGAGCTGGCTTTTCCCTGCAGGTTTTGGAAGGGCAAAGGGTAATGCCTGCCAGAGCCAAGGAATTGGGATTTTCATTCAAGTACCCTTCTGTCAAAGACGCACTCAAGGCCATTCTATCCTAA ATGGAGCTCTCTCGCGTCACTTCCCTCTCATGGAGCCGTACTGTCTCCCATTCTATTCGCATCCCTCAACACCTGGCAATATGTGGCAAGAGGTTCAGGGTTTTCTCCGCCATTGATGCAACAGAGATGGTTGACGTTGGGGGGCTGGGTAATTTGAGACTTCAAAATGAGGCCCTATCGCGTTTTTCATTGGAGTCGAAGTATGATCCTGACCCTTCCAAGTGGGCCTTGGTTTGTGAGTTTAAAGGAACTTTCAAGAATTCTTGGAAAGCTATCTCTTGGGATTTTCCCATCTTTTCTAATTCTGTGAAGTGCTCGGTTGGAGATGGTTCAAACACTTACTTTTGGGAGGACTATTGGTTGGGTGATACTGATAGTTCCTTTTGTACTTTGTTCCCTCACCTGTACTCCATTTCCTCCTTGAGGTTGCGTCCTATAGCTTTCTCTTTTAAGTTTGGTTTTCGTCGTCCTTCTCCGAATAGGGAATCATTTGATGTATCTACTCTTCCTTCTTTATTAGGAGACTTCCATCTTGGTTTGAGTAGTTGGGATATTCGTTTTTGGTCTCCTAATCCCTCTAAGGGGTTCTCCTGTTGTTCATTTTTACTCATTTTGGGTAGCCCTCATGCTTCTAGAAATCCAAGGAAGGAAATTTTCAAGAAGGTTAAATTTTTTGCTTGGCAAGTCTTACCTGGGAGAGCCTACACATTGGGTTATATTCAAAGGCACTTGTCCTTCTTGTTTGGGCCACAGTGGTGCATTCTTTGTAGCAAAGTATCGCAGGATTTCGATCACATCCTACAAAGATGCCAGTCTGCTCTTTCGATATGGGACTCTTTCTTGGAGACTTTTGGTGTTTGCTTGGCTCATAAGAGTGATTACCATCTCATGTTGGGGGAGAAAAATCAGCTCACTGTATCGGTAACTGGAGCTACAGGCTTCATCGGTAGAAGACTTGTGCAAAGGCTACATGCAGATAACCATAATATTCGAGTTTTGACACGTTCTAAATCCAAGGCCGAGTTGATTTTTCCGGCTAGAGAGTTTCCAGGAATCGTGATCGCAGAGGAGCCAGGGTGGAAAGATTGCATCCAAGGTTCAGATGGCGTTGTCAACTTGGCTGGGATGCCCATAAGTACCAGGTGGTCTTCTGAGATCAAGAAAGAGATCAAGCAAAGCAGGATCAGAGTCACCTCAAAGGTTGTAAGCTTAATTAATGATGCACCAGATGCTGCTCGCCCTACAGTTCTCGTTAGCGCAACTGCTGTTGGTTACTACGGCACTAGTGAAACAGCAACATTTGACGAACGAAGCCCATCCGGGAATGACTACTTGGCCGAGGTTTGTAGGGAATGGGAAGCAACAGCCGTGGGAGTAAACAAGAATGTCAGAGTGGCTCTTATTCGTATAGGTGTTGTTCTTGGTAAAGAAGGTGGTGCTTTAGCCAAAATGATCCCCCTCTTCATGATGTTTGCTGGAGGTCCTTTGGGATCTGGAAAACAATGGTTTTCCTGGATTCATCTGGATGACATTGTGAACCTAATATATGAAGCTCTGATCAATCCATCTTATAAGGGTGTTATAAATGGAACGGCGCCGAACCCGGTTAAATTGTCTGAATTGTGTGAGCGATTGGGAGATACCATGGGCAGACCTTCGTGGCTTCCCGTGCCGGAATTTGCTCTCAAAGCCGTCCTTGGAGAAGGAGCTTCCGTGGTTTTGGAAGGGCAAAGGGTAATGCCTGCCAGAGCCAAGGAATTGGGATTTTCATTCAAGTACCCTTCTGTCAAAGACGCACTCAAGGCCATTCTATCCTAA ATGGAGCTCTCTCGCGTCACTTCCCTCTCATGGAGCCGTACTGTCTCCCATTCTATTCGCATCCCTCAACACCTGGCAATATGTGGCAAGAGGTTCAGGGTTTTCTCCGCCATTGATGCAACAGAGATGGTTGACGTTGGGGGGCTGGGTAATTTGAGACTTCAAAATGAGGCCCTATCGCGTTTTTCATTGGAGTCGAAGTATGATCCTGACCCTTCCAAGTGGGCCTTGGTTTGTGAGTTTAAAGGAACTTTCAAGAATTCTTGGAAAGCTATCTCTTGGGATTTTCCCATCTTTTCTAATTCTGTGAAGTGCTCGGTTGGAGATGGTTCAAACACTTACTTTTGGGAGGACTATTGGTTGGGTGATACTGATAGTTCCTTTTGTACTTTGTTCCCTCACCTGTACTCCATTTCCTCCTTGAGGTTGCGTCCTATAGCTTTCTCTTTTAAGTTTGGTTTTCGTCGTCCTTCTCCGAATAGGGAATCATTTGATGTATCTACTCTTCCTTCTTTATTAGGAGACTTCCATCTTGGTTTGAGTAGTTGGGATATTCGTTTTTGGTCTCCTAATCCCTCTAAGGGGTTCTCCTGTTGTTCATTTTTACTCATTTTGGGTAGCCCTCATGCTTCTAGAAATCCAAGGAAGGAAATTTTCAAGAAGGTTAAATTTTTTGCTTGGCAAGTCTTACCTGGGAGAGCCTACACATTGGGTTATATTCAAAGGCACTTGTCCTTCTTGTTTGGGCCACAGTGGTGCATTCTTTGTAGCAAAGTATCGCAGGATTTCGATCACATCCTACAAAGATGCCAGTCTGCTCTTTCGATATGGGACTCTTTCTTGGAGACTTTTGGTGTTTGCTTGGCTCATAAGAGTGATTACCATCTCATGTTGGGGGAGAAAAATCAGCTCACTGTATCGGTAACTGGAGCTACAGGCTTCATCGGTAGAAGACTTGTGCAAAGGCTACATGCAGATAACCATAATATTCGAGTTTTGACACGTTCTAAATCCAAGGCCGAGTTGATTTTTCCGGCTAGAGAGTTTCCAGGAATCGTGATCGCAGAGGAGCCAGGGTGGAAAGATTGCATCCAAGGTTCAGATGGCGTTGTCAACTTGGCTGGGATGCCCATAAGTACCAGGTGGTCTTCTGAGATCAAGAAAGAGATCAAGCAAAGCAGGATCAGAGTCACCTCAAAGGTTGTAAGCTTAATTAATGATGCACCAGATGCTGCTCGCCCTACAGTTCTCGTTAGCGCAACTGCTGTTGGTTACTACGGCACTAGTGAAACAGCAACATTTGACGAACGAAGCCCATCCGGGAATGACTACTTGGCCGAGGTTTGTAGGGAATGGGAAGCAACAGCCGTGGGAGTAAACAAGAATGTCAGAGTGGCTCTTATTCGTATAGGTGTTGTTCTTGGTAAAGAAGGTGGTGCTTTAGCCAAAATGATCCCCCTCTTCATGATGTTTGCTGGAGGTCCTTTGGGATCTGGAAAACAATGGTTTTCCTGGATTCATCTGGATGACATTGTGAACCTAATATATGAAGCTCTGATCAATCCATCTTATAAGGGTGTTATAAATGGAACGGCGCCGAACCCGGTTAAATTGTCTGAATTGTGTGAGCGATTGGGAGATACCATGGGCAGACCTTCGTGGCTTCCCGTGCCGGAATTTGCTCTCAAAGCCGTCCTTGGAGAAGGAGCTTCCGTGGTTTTGGAAGGGCAAAGGGTAATGCCTGCCAGAGCCAAGGAATTGGGATTTTCATTCAAGTACCCTTCTGTCAAAGACGCACTCAAGGCCATTCTATCCTAA MELSRVTSLSWSRTVSHSIRIPQHLAICGKRFRVFSAIDATEMVDVGGLGNLRLQNEALSRFSLESKYDPDPSKWALVCEFKGTFKNSWKAISWDFPIFSNSVKCSVGDGSNTYFWEDYWLGDTDSSFCTLFPHLYSISSLRLRPIAFSFKFGFRRPSPNRESFDVSTLPSLLGDFHLGLSSWDIRFWSPNPSKGFSCCSFLLILGSPHASRNPRKEIFKKVKFFAWQVLPGRAYTLGYIQRHLSFLFGPQWCILCSKVSQDFDHILQRCQSALSIWDSFLETFGVCLAHKSDYHLMLGEKNQLTVSVTGATGFIGRRLVQRLHADNHNIRVLTRSKSKAELIFPAREFPGIVIAEEPGWKDCIQGSDGVVNLAGMPISTRWSSEIKKEIKQSRIRVTSKVVSLINDAPDAARPTVLVSATAVGYYGTSETATFDERSPSGNDYLAEVCREWEATAVGVNKNVRVALIRIGVVLGKEGGALAKMIPLFMMFAGGPLGSGKQWFSWIHLDDIVNLIYEALINPSYKGVINGTAPNPVKLSELCERLGDTMGRPSWLPVPEFALKAVLGEGASVVLEGQRVMPARAKELGFSFKYPSVKDALKAILS Homology
BLAST of Tan0018101 vs. ExPASy Swiss-Prot
Match: Q9SJU9 (Epimerase family protein SDR39U1 homolog, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=GC1 PE=2 SV=2) HSP 1 Score: 504.6 bits (1298), Expect = 1.6e-141 Identity = 245/305 (80.33%), Postives = 274/305 (89.84%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy Swiss-Prot
Match: P73467 (Epimerase family protein slr1223 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=slr1223 PE=3 SV=2) HSP 1 Score: 297.4 bits (760), Expect = 3.8e-79 Identity = 153/307 (49.84%), Postives = 202/307 (65.80%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy Swiss-Prot
Match: P77775 (Epimerase family protein YfcH OS=Escherichia coli (strain K12) OX=83333 GN=yfcH PE=3 SV=1) HSP 1 Score: 212.6 bits (540), Expect = 1.2e-53 Identity = 118/305 (38.69%), Postives = 177/305 (58.03%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy Swiss-Prot
Match: Q5M8N4 (Epimerase family protein SDR39U1 OS=Mus musculus OX=10090 GN=Sdr39u1 PE=1 SV=2) HSP 1 Score: 188.3 bits (477), Expect = 2.5e-46 Identity = 105/307 (34.20%), Postives = 168/307 (54.72%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy Swiss-Prot
Match: Q9NRG7 (Epimerase family protein SDR39U1 OS=Homo sapiens OX=9606 GN=SDR39U1 PE=1 SV=3) HSP 1 Score: 185.7 bits (470), Expect = 1.6e-45 Identity = 108/307 (35.18%), Postives = 164/307 (53.42%), Query Frame = 0
BLAST of Tan0018101 vs. NCBI nr
Match: KAG7011736.1 (Epimerase family protein SDR39U1-like, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 812.0 bits (2096), Expect = 3.5e-231 Identity = 428/606 (70.63%), Postives = 463/606 (76.40%), Query Frame = 0
BLAST of Tan0018101 vs. NCBI nr
Match: XP_038887741.1 (epimerase family protein SDR39U1 homolog, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 765.8 bits (1976), Expect = 2.9e-217 Identity = 386/461 (83.73%), Postives = 407/461 (88.29%), Query Frame = 0
BLAST of Tan0018101 vs. NCBI nr
Match: XP_023554066.1 (epimerase family protein SDR39U1 homolog, chloroplastic-like isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 749.6 bits (1934), Expect = 2.1e-212 Identity = 374/461 (81.13%), Postives = 401/461 (86.98%), Query Frame = 0
BLAST of Tan0018101 vs. NCBI nr
Match: XP_022952963.1 (epimerase family protein SDR39U1 homolog, chloroplastic-like isoform X1 [Cucurbita moschata]) HSP 1 Score: 743.4 bits (1918), Expect = 1.5e-210 Identity = 370/461 (80.26%), Postives = 400/461 (86.77%), Query Frame = 0
BLAST of Tan0018101 vs. NCBI nr
Match: TYJ96877.1 (epimerase family protein SDR39U1-like protein [Cucumis melo var. makuwa]) HSP 1 Score: 732.3 bits (1889), Expect = 3.5e-207 Identity = 376/461 (81.56%), Postives = 397/461 (86.12%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy TrEMBL
Match: A0A6J1GM24 (epimerase family protein SDR39U1 homolog, chloroplastic-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111455484 PE=3 SV=1) HSP 1 Score: 743.4 bits (1918), Expect = 7.4e-211 Identity = 370/461 (80.26%), Postives = 400/461 (86.77%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy TrEMBL
Match: A0A5D3BCM9 (Epimerase family protein SDR39U1-like protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold10G00360 PE=3 SV=1) HSP 1 Score: 732.3 bits (1889), Expect = 1.7e-207 Identity = 376/461 (81.56%), Postives = 397/461 (86.12%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy TrEMBL
Match: A0A5A7UID7 (Epimerase family protein SDR39U1-like protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold318G001130 PE=3 SV=1) HSP 1 Score: 713.4 bits (1840), Expect = 8.1e-202 Identity = 370/461 (80.26%), Postives = 391/461 (84.82%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy TrEMBL
Match: A0A6J1C1X5 (epimerase family protein SDR39U1 homolog, chloroplastic isoform X2 OS=Momordica charantia OX=3673 GN=LOC111007707 PE=3 SV=1) HSP 1 Score: 586.3 bits (1510), Expect = 1.5e-163 Identity = 291/305 (95.41%), Postives = 299/305 (98.03%), Query Frame = 0
BLAST of Tan0018101 vs. ExPASy TrEMBL
Match: A0A6J1C1X5 (epimerase family protein SDR39U1 homolog, chloroplastic isoform X2 OS=Momordica charantia OX=3673 GN=LOC111007707 PE=3 SV=1) HSP 1 Score: 64.7 bits (156), Expect = 1.5e-06 Identity = 31/43 (72.09%), Postives = 33/43 (76.74%), Query Frame = 0
HSP 2 Score: 582.4 bits (1500), Expect = 2.2e-162 Identity = 289/305 (94.75%), Postives = 298/305 (97.70%), Query Frame = 0
BLAST of Tan0018101 vs. TAIR 10
Match: AT2G21280.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 504.6 bits (1298), Expect = 1.1e-142 Identity = 245/305 (80.33%), Postives = 274/305 (89.84%), Query Frame = 0
BLAST of Tan0018101 vs. TAIR 10
Match: AT4G33360.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 46.6 bits (109), Expect = 8.2e-05 Identity = 50/226 (22.12%), Postives = 92/226 (40.71%), Query Frame = 0
BLAST of Tan0018101 vs. TAIR 10
Match: AT4G33360.2 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 46.6 bits (109), Expect = 8.2e-05 Identity = 50/226 (22.12%), Postives = 92/226 (40.71%), Query Frame = 0
BLAST of Tan0018101 vs. TAIR 10
Match: AT4G33360.3 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 44.7 bits (104), Expect = 3.1e-04 Identity = 49/222 (22.07%), Postives = 91/222 (40.99%), Query Frame = 0
BLAST of Tan0018101 vs. TAIR 10
Match: AT5G42800.1 (dihydroflavonol 4-reductase ) HSP 1 Score: 43.1 bits (100), Expect = 9.1e-04 Identity = 26/79 (32.91%), Postives = 37/79 (46.84%), Query Frame = 0
The following BLAST results are available for this feature:
Pages
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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