Tan0002937 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGAGGAAGCTCTACACGTCCTGTGCGGCAATGGTGGTGGTGCAAATTGGCTATGGCGGATCCAACATTCTCATGAAAATCGCTAGCGAAAAGGATCTCAATCCTTTCGTTTTCGTCGTTTATCGCCATTTCATCGGCTTCCTCGTCTTGGCTCCTTTCGCATATGTGCTCGACAGGTACTGCGATATTCCACCATTCGATTCGATTCGATTCCTCTGAATTTGATCTCTCTGTTTTTTTTTTTTTTTTTAAAGTAGAAACAAACGGACTTCTCTTACGATTTCGACGGCGATTAAGATCTTTATGCTGGCGATTTTAGGGTCAACGATTCACTTGAATTTGTTCTATGCCGGAATTGGATATACTTCGCCGACGGTGGCTTCCGCTTTCAGTAATATCATTCCCAGCTTGACGTTTGTCATGGCGCTTCTCTTCAGGTACTCTACCCTTTTTTTTCTTTTTTTTTTTCTGTTCGATTGTGCGTTTGCCTTTTAAGTTGGATTCTTTTTGGAGAAAAACTCGGTATTTCTCTTCTTTTTCTCATTTTTTCTAAAAAGAATATTACTATACTTCAAGATCAACATTCACCTACGTATATGTGTAAAAGTTATTTCGAGATTTAAAAAATAATAATAATAATACTTAGATGACACGATACTGAAATATAATTTAATTGTCTATTTTTTTTAGAATACTATTTGCAATAACTTCTTTTTAATGGACATTTTTTAAAATTAAAAAAAAAAATACTTGTTTAATAATGGAATAGGGAGAATTTTCATTTCGCGACTTTGTATTTATACCTTGTCCAATAATTAATTAAGCGTTGTTTTTACCGACTAGATTTTTATACTTGCTTGGTGCGTGACCTTTTGCAAGTATTTAGTTAAGCAATATAATTTTAAATTTATATAAAAAAAAAAAGTAATTTAATTTTAATTGAATATCTAACGTAATTTGGTTTTGTTTTTCTTAAACATCAATTTTATTTTGTCTTTTTTAATTCTAATCTATATCTACATCGCTATAATTAAATAGAATAAAATAAGAAGATAACAATATTATATATAAAAGTAAAAAAAATCAAAGAAAAGAGACACAATGCTATATAAAAAAAATTAAATAACAATAAAATAAAAAGATAACAATGTTACTTACAAAATCAATATAAAATATTTACATATATAATTCTAATCTATATCTATATCTCTATTATAGTTGGAGCGATTCTAAATTAATTTAAATTTCATTAAATTTACACACAAAAAAAGTAATTTCATCTTAATCGAATATTTAAAGTAATTTGAATTTATCTTTTTTTTTTTTAAATATCAATTTTATTTGGTCTTTAAATTTAACCAATTTCAAGATTTAATTCTAATATATATTTATAATTAATTGGAATAAAATGAGAAGATAATAATGTTACCTCTAAAATCAAATAAAAAATCAAACAAAAGAGGCACGATGCTATATAAAAAATAAAAGAAAAAAATCAAATAACAATAAAAAAAATGTTACATATAGAATCAATATAAAATTCGTGCATATATAATTCTAATCTATATCTATATCTCGATAATTAATTGGAATAAAATAAGAAATTAAGAGTGTTACATATAAAATCAAATAATAAAATCAAAGAAAAGAGACACAATATTATATTAAAAAAAAATCAAATAACAATAAAACAAAAAGATAACAATGTTATGAGTTTAGAACCATTCGTCAAAAAAGAAAAAAAAAATGCAAGTGCTGATCTTCAAGAAAAAAATGCAAGTGTTTTTGGCTGAATGTTTTCTAATTTCTTATTATTTTACACGTTTTTTACCTTATTACTCTCAACATACTTTTTGTCAACTCAACCATATGGTTCAATACAATAAAATACCTATTACTTTTTCGCATTTAAAAGTTTGATTCTTTAGCATCATTTAAAAGTATGATTCTTTAGCATCTCTGATTCTCTTGAACTAAAAAGAATTTTATATAAATTTAAAAAAATAAATAAAAACTTTATATATTTTTCTTTATTACCTTCTCTATTTAATATTAACACTTCCTCTCACTACATTCTCTCTTCTATTTACATGTCTTCTTTCATTAAATTCTCTCTTAATATTTTTCTCACTATTTTCACACATATTCTTTCTCACTATCTCTCTTAGTGTATGTTTGAGAATGATATTAGAAATATTGATTTTAGCATACTTGATTAATTTATAATGATTTATCAAAATTTATTTTCATACCATCACATTAATGTTTGGTTCCAAACTTTCAGAATTGATTTTTTTATATTTAAAAGTGAATTTTAATTATTACGTTTGGTTTCAAAAGTGATTTTAGAATTATCAAATTACCTAAAAATGATATTTTATATTTAATAAATTATTTAACAAAATAATTATGATAAATATTTATTTTTTATTCTTTTTTCATTTATTTTATTGTTAGTGCATGATTAATATATTAAGTAAAAACACATAATAAATATCAAAATAAAATTTGAAAGACATATATTTCATTCGATCTAGAATAACCCTAATAAATAACCATTGTACATTTAATTTATATTAAATGGTCGAATTCTTCAATGTCACTATCGTCTAAAGAGCTATTAATTGACAATATGAACATGGCTCAATTAGCATAAAATATATACTCTCGACCAAGAGGTTAAACGTTTGAATCCCCTGCCCTATATTTTGTAAAAAAAAAATATTAATATTATCATTATCAATTATATAAGATAGCATTTCTATTAACAAAATAATCATCTAAAAATTCATCTATTCCTTTAATTATTGCTTGTAGAAACAAAAACAAATAATCTTAAGAAAAAGAAAGAAAGTTGTTGCATTAAAAATGGGTTTTGACAAATCTAATTAGTTGGAGAGTGAGACTTTTTACTTTATGAAAAAAAAAACAGTAAAACAAGAATGGCATTATAAATATTTTTTTCTTTTTTTTAGAATATTTTAGAATGGCTGAAAAATATTTTTGTTTGAAAAACCATTCAGTGCCCAATTTTTAAATTTTCAAAAATTCCTAGAAATTATAAATATTTTTTATTTAAAAAAAAACCGTTTCTATCTTTTAATTTAAACCTTCACCTTTTTTTCTTGACACTATCTTTGTTTCTTTTAACATATTCTCTCCAATTGTCATGTCACTAAGATATCTTCTTTTCTTTTTTTTTTTTTAGATATTTCTTTCGCTTCTCTAACTTTTCACTCTTACTCTTAACTTTTAATTCTCTTTCTTTAAGATATAAGACATTCTTTTATTTTCTCTCTCAACTTAAAAATAGTATATATATATATATATATATATGAAGAAAATTTTATTAAACTCGTTTTGCTGTTTAGAAAACTAGAAGACCAAAAATGTTGTGATTTAGTTTCGAGTATTCTAAGTATTAAATTTTATGTGATTCATTAGTTTGATTTATGGACAAGTCTATAATCTAGGTTTTAGAGAAGATTAATTTTACTATTCATGCAAGTTAAGAATTTCAGTTTAATGAAATTGAAAGTATAAAATTAAAATTGTTGCACAATATGATAAAATTTTCTCTCAAATATACGAGGAAAGTATGGTTTTTTTTTAATTTATTATTATTTTTTATTTGTTAATCTCAATAGATATGGAGGTGGAAAATCAAACTTTCAAGATTAGAAAAGTTTTGGTACTTCATTCGTGGTACTCAAATTGACATAAACTAGGATAGTTTAATTTTAATGAAAATATTTTCTTATATATATGATTCTATGAACCTTACTTTTGGTTTTGGTCGAATTTATTTTTTATATTTCTTTTTTTCATTTGAAGTCTTAACTGTATAAAGATATATTCGAAGTTCGAAAGGAACAAAAGCTATAGGGTTTGACAACTTTTAGACTATTCAAAAATAGTTTTAACTAATTAAAATAATTTAAAAATATTTTTCATAATGTTTGTTTTATGTCCAAGAGTGTTCTCTTATTAAATCTTAAAAATATTTATTGATCTTTAGATCGCATTACCACGTAAGAATAAGTCATATGAAATCAATATTATTTGGGGAAGAAACGACTTTACAAGAATTTGAATTCAAGATCTCTTGAACCTCTTCGTTTGATATCATCTTAAATTACCAATCAACCTAATAGTTTAAGCAGATAGGCAGGGGTAAATTTAATTATATCAACATAGTCTAACAGATCATAACTTTTTTTTAAACTGAAAGTCAATCATGATTCATAACTAATATTTTCACCAAGATATATAAAACTCATGTGTAAGTGTTGAAGATCTCACATTGGAAAGGTGGAGAGACCTCACAACTCATAAGATATATGATTTACTTCTCTTATTCCCAACTAGTTTTGAGATAGAATCTCATATAATCTAATATAGTATCATAGCCCATTAAGCCCAAACGGACATTCGGTCCAAGAATTGAAATTGGGATCTGATCCACAATTTATAAGATATATGAGTTATTTCTCTCATTATCAATTAATTTTGAGATGGAACTCAATACAATCTAGGGGAATTGTAATGGGTAGCACAAAATATTAGCATATTTGCAAACTTAGCTATGATTTTTTAGATTTGTAAATCTAGCAAATTTTTTTAAAATCTGATTTTCGTTTTTTAATTATTCCAGATTTACCCTCATTGGTAGCAGTAGATATATCAGTAGTATATCTGATATACTTTACATTTGATATATCAGTAGTATATATAATATACTTTATATTGATATATCAGAGGTATATCTGATATAGTTTATATTGGTATATCAGAAGTGTATCTGATATACTTTATTTTTATATACCAATATATACCTCAAAACGAAGTATGTTAATAGTATATTACTGATATACTACGGATACCCTTCTTGTAGGTATATCATTTAGAATTATATACTTCCTATATATCCGTAGCAAATGAGAGATATTTTACATATTAGTATATCACTAATGTACTTCATTTAGATATGTTTATTTCACTAATATACCTAACATTTAGTATATCATTAGTATCTCAGTGAAATGAACATATATCATATGCGAGTTACTGATATACTCTTAATTAACTTCATATACATATATCAGTAGTATATTAGTGATATACTCTATACAATAACACATCTCACACAATAAGATATAACAATCCAAATTGAGTTCAAATTATGAATTCTACCTGAAATTTAAAAGCATAACCTGAAATTTACTCTACCTAAAATGTCGGACATTACAAATAGCTTTTCAGATCTCGTTGATATACTTAATATTACTGAATAAATTATATCATCATAAATCATTATCAAGCATAAATCACTATTTGTGATATATCATTGATATACTAAATAAAGTATTTTGGTAGTATATCACACCGATATATACTTACTATTAGTGAAATCAACGACTATTAGTTATTTTTTGGTCAGATATATCATTGATGATATATCTGATCTATTGTTAATAAACTACTGATTTTTTCGATATTGAAACACGAGAGGAAATTTCCAAATCTAGCAATAGTTTTTTAGACCCCGTTGATATACTTAATATTATTGAATAAAATATATCAGCATAAATCACTGTCAAGCATAAATCACCATTTGTGATGTATCGTTGATATATTAAATAAAGTATATCGTTAGTATATCACACTGATATATACTTAATATTATTGAAATCAACAGATATCATATCATTCATGTAGTTACTTTTTGGTTGGATATATCATCGGTATATCAGATCTATTATTGATAAACTACTTTGAAAAACACAAGGACATTTGTAAATCTAACAATAGATTTTGAGATTCCATTGATATACCTAATATTACTGAATAAAGTATGTCAACATAAATCACTATCAAGCATAAATCCCTATTTGTGATATAATGTTGATATACTAAATAAAGTATATCAGTAGTATATCACATTGATATATATACTTAATATTAGTGAAATCAACAGAATCGGTAGTATATCACTTAAGCAGTTATTTTTTTGGTTATATATATCGTTGTTATATTAGATATATTGTTGATAGACTACTGATTTTCTCGATATTGAACAACACGGAGAAGGTATTTGTAAATCTAGCAATAGTTTTTTAGATTCAGTAATATATCAATAGTATATCTGATATAATTTATATTTGGTATATCAGTAGTATATCAATAGTATATTTCATTTTAGGTATATCATTAGTATATCATAAGTATATCAATAATATATCATCAGTATGTTTTTTATAGACTATTGATAAGTATGTTTTTGATAGACTATTAATCTACTTCAGATTGAAAAACGCACGCGAAAAATATAAGGGTATTTTTTATTTTGCACGTCATCTGTTTGGGTTGGGCCTTTTTTTGTTGCTATTTTTACAAATTGAATTAAAAAGTGACATGGGTGCAATATTTATATATTTTTTTGCTATTCATGCAATTGCCCCTATAATCTAATCCTATGAAAGGATTCTAGATATTTATTTGGTAGTCTTTGTATATAAGAATCTATTATAATTGTATGCGATTTCGATAATGTCCCTCTTTTACAAAAATAATACCGTGTCAATGCTATCTACGTTTAATTAGTTTTATAATATATTTTAATACACTACGTATTTAATTATATTAATTTAAGAGTAAAGTCAATAATATATTTATTTAGTGTAAATTTAATAGATATACAATTCAACCTAATTGATCTTTTTTAATCCAAACTAAGTAAATTCAATTTTAGAAGATTATTATTTCAATTTAATATGTCTATAGACTGATATTAATAATCTAATTGTATATTGTCATTTATTCATGAATTAATAAATAAATTTCTAACTGTTTTCAAATATAGAGTTAAAATGGAAATAAAGAAATCAATAAAATTCTATGTATAAAGAGAAAATGTGAAGGACAAAAATGTCATTAAAAGAAGTATTCATCTTAGAAATTTAAAAAATTAAAAAAAAAAGGCATCAAAACTTTTCTAATACAAATATTACTTTTACAAGTAGTCAAATATGGGAGTTTCTCTATGTAGGTCGTAGCTACTTTAGGAATTAGAGAAATATTTTTGCCATTTACAAGAAAAATTCTTAGTACTACGTAAGTATCATATTCACTTTGTTCACATTATGGTTTTACTTTTATAAATATTTTATTTTTAATGTTGGTGGACCCTATATCATTTTTAAAAAGATATTGACGCAATTGATAATAAATGGAAGGAATATCTATACTATCGTAGTACTTGAAATTTTTTCAAAATACTACACTCTTGCAAAACAAACTTAGAAATGTAATTACCCACAACGTAGGCATCCAAAATTACTGCAAAACTAACCACTTCTAAAAAATACTTTGAGAAAACATATTTATTACATCTTTTCTAGTAATGCTTATAGGATATATATAATTCACTTAAAAACAATGTTGAAAGGCATCCTTTATCTCTATTGATCCTTCTTATAAAACATGCTTTCTATCTTCATTCTTTTTTCTGTTAAACCTGTTTCTAAGCAAACTCTATGATTAATATTATTATCTCTGTCAAAACTTGTTTACTTATATCCAATTTCTATGTTTAAAGATTGGAGAAAGTGAAGATTAGAACTGCAAGAGGAGCGGCTAAAGTGGTGGGCACAATTCTCTGCATTGGTGGTTCCCTTATTTTCACCTTCTGGAAAGGGCCATACGTAACCAAAGCCATCTTCAAGGAGCCACTCATAGACATATACAAGAATCAAGACTCTGGAAATGGCAGTGGCAAGGACTGGATCAAGGGCTCTGCTTTTATTCTTATAAGTGATACTGCTTGGAGTGCATGGCTAATTCTACAGGTAACTTCATTCAAACATTTATGTACAAGTTTAGGGTTTAGGGTTTAGGTTTCGGATGGAAATGAATGTGCTCATTTAAACTCAATGGCTTGCAGGCATTTGTCACCAGAGAATACCCTGCACAATTGACCATGATTGTTCTAATTTGCTTGTTTGCAACTGCACAATCTGGCTTCCTTGCCCTGATTTTTGCAAGAAGTCCAGATAAATGGAAGCTGCAATGGGATGCGCGGCTATTGACCATTGTATACAGTGTGAGTATAGCCTGTTCCGACTTTACAAGCCCCTATCTGTCAAATTCAGAAAATTTTCAATACTACAATAGTATGAACATTACTCTCGTTTTATACTGTCAATCACGTCAACATTATTTGAGAATGAGGTAGCATTAGAAATGTCATAATATAAATGGAGAGAGTAAGGTCTAGAAAAATTTCCCGTCTCAAATTCCTTCTTAATCCTATCTCCTGTTTGGCTACAGGGCATTGTGATTTCAGCCATGGGGTACTTCCTACAAGCCTGGTGCATCAACCGCAATGGGCCGGTTTTTACTTCAATGTTTAGTCCCCTAATGCTTATATTTGTTTCCATATTCTCTGCATTTGTTTTCTCAGAGCGGCTTCATGTAGGCAGGTAAGACACTCCACTCCATCCCTCCCTACTATGTTTGTATTGAATTGAACTTCTTGTAGCTAAGCTGCTAACCCTGTTTTCTGAAACTTTTTTTTTTTGTTTTTTCTTCAAGCCTGGTAGGAGCATTCTTTATCATACTAGGTCTCTATTTAGTGCTGTGGGGTAAGAAGGCAGATCATATGGTTGCAGTTGAACCTCAGGAGAACGAAAAGGTCTTTGTTGACGCTGAAATGCAGAATACATCTGTAAACGATAACCAAGTAAAGGATTCTGTAACAGAAATGAGAACGTGA ATGAGGAAGCTCTACACGTCCTGTGCGGCAATGGTGGTGGTGCAAATTGGCTATGGCGGATCCAACATTCTCATGAAAATCGCTAGCGAAAAGGATCTCAATCCTTTCGTTTTCGTCGTTTATCGCCATTTCATCGGCTTCCTCGTCTTGGCTCCTTTCGCATATGTGCTCGACAGTAGAAACAAACGGACTTCTCTTACGATTTCGACGGCGATTAAGATCTTTATGCTGGCGATTTTAGGGTCAACGATTCACTTGAATTTGTTCTATGCCGGAATTGGATATACTTCGCCGACGGTGGCTTCCGCTTTCAGTAATATCATTCCCAGCTTGACGTTTGTCATGGCGCTTCTCTTCAGATTGGAGAAAGTGAAGATTAGAACTGCAAGAGGAGCGGCTAAAGTGGTGGGCACAATTCTCTGCATTGGTGGTTCCCTTATTTTCACCTTCTGGAAAGGGCCATACGTAACCAAAGCCATCTTCAAGGAGCCACTCATAGACATATACAAGAATCAAGACTCTGGAAATGGCAGTGGCAAGGACTGGATCAAGGGCTCTGCTTTTATTCTTATAAGTGATACTGCTTGGAGTGCATGGCTAATTCTACAGGCATTTGTCACCAGAGAATACCCTGCACAATTGACCATGATTGTTCTAATTTGCTTGTTTGCAACTGCACAATCTGGCTTCCTTGCCCTGATTTTTGCAAGAAGTCCAGATAAATGGAAGCTGCAATGGGATGCGCGGCTATTGACCATTGTATACAGTGGCATTGTGATTTCAGCCATGGGGTACTTCCTACAAGCCTGGTGCATCAACCGCAATGGGCCGGTTTTTACTTCAATGTTTAGTCCCCTAATGCTTATATTTGTTTCCATATTCTCTGCATTTGTTTTCTCAGAGCGGCTTCATGTAGGCAGCCTGGTAGGAGCATTCTTTATCATACTAGGTCTCTATTTAGTGCTGTGGGGTAAGAAGGCAGATCATATGGTTGCAGTTGAACCTCAGGAGAACGAAAAGGTCTTTGTTGACGCTGAAATGCAGAATACATCTGTAAACGATAACCAAGTAAAGGATTCTGTAACAGAAATGAGAACGTGA ATGAGGAAGCTCTACACGTCCTGTGCGGCAATGGTGGTGGTGCAAATTGGCTATGGCGGATCCAACATTCTCATGAAAATCGCTAGCGAAAAGGATCTCAATCCTTTCGTTTTCGTCGTTTATCGCCATTTCATCGGCTTCCTCGTCTTGGCTCCTTTCGCATATGTGCTCGACAGTAGAAACAAACGGACTTCTCTTACGATTTCGACGGCGATTAAGATCTTTATGCTGGCGATTTTAGGGTCAACGATTCACTTGAATTTGTTCTATGCCGGAATTGGATATACTTCGCCGACGGTGGCTTCCGCTTTCAGTAATATCATTCCCAGCTTGACGTTTGTCATGGCGCTTCTCTTCAGATTGGAGAAAGTGAAGATTAGAACTGCAAGAGGAGCGGCTAAAGTGGTGGGCACAATTCTCTGCATTGGTGGTTCCCTTATTTTCACCTTCTGGAAAGGGCCATACGTAACCAAAGCCATCTTCAAGGAGCCACTCATAGACATATACAAGAATCAAGACTCTGGAAATGGCAGTGGCAAGGACTGGATCAAGGGCTCTGCTTTTATTCTTATAAGTGATACTGCTTGGAGTGCATGGCTAATTCTACAGGCATTTGTCACCAGAGAATACCCTGCACAATTGACCATGATTGTTCTAATTTGCTTGTTTGCAACTGCACAATCTGGCTTCCTTGCCCTGATTTTTGCAAGAAGTCCAGATAAATGGAAGCTGCAATGGGATGCGCGGCTATTGACCATTGTATACAGTGGCATTGTGATTTCAGCCATGGGGTACTTCCTACAAGCCTGGTGCATCAACCGCAATGGGCCGGTTTTTACTTCAATGTTTAGTCCCCTAATGCTTATATTTGTTTCCATATTCTCTGCATTTGTTTTCTCAGAGCGGCTTCATGTAGGCAGCCTGGTAGGAGCATTCTTTATCATACTAGGTCTCTATTTAGTGCTGTGGGGTAAGAAGGCAGATCATATGGTTGCAGTTGAACCTCAGGAGAACGAAAAGGTCTTTGTTGACGCTGAAATGCAGAATACATCTGTAAACGATAACCAAGTAAAGGATTCTGTAACAGAAATGAGAACGTGA MRKLYTSCAAMVVVQIGYGGSNILMKIASEKDLNPFVFVVYRHFIGFLVLAPFAYVLDSRNKRTSLTISTAIKIFMLAILGSTIHLNLFYAGIGYTSPTVASAFSNIIPSLTFVMALLFRLEKVKIRTARGAAKVVGTILCIGGSLIFTFWKGPYVTKAIFKEPLIDIYKNQDSGNGSGKDWIKGSAFILISDTAWSAWLILQAFVTREYPAQLTMIVLICLFATAQSGFLALIFARSPDKWKLQWDARLLTIVYSGIVISAMGYFLQAWCINRNGPVFTSMFSPLMLIFVSIFSAFVFSERLHVGSLVGAFFIILGLYLVLWGKKADHMVAVEPQENEKVFVDAEMQNTSVNDNQVKDSVTEMRT Homology
BLAST of Tan0002937 vs. ExPASy Swiss-Prot
Match: Q6NMB7 (WAT1-related protein At1g43650 OS=Arabidopsis thaliana OX=3702 GN=At1g43650 PE=2 SV=1) HSP 1 Score: 256.5 bits (654), Expect = 4.5e-67 Identity = 140/339 (41.30%), Postives = 216/339 (63.72%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy Swiss-Prot
Match: Q9FL41 (WAT1-related protein At5g07050 OS=Arabidopsis thaliana OX=3702 GN=At5g07050 PE=2 SV=1) HSP 1 Score: 246.5 bits (628), Expect = 4.6e-64 Identity = 125/361 (34.63%), Postives = 217/361 (60.11%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy Swiss-Prot
Match: Q501F8 (WAT1-related protein At4g08300 OS=Arabidopsis thaliana OX=3702 GN=At4g08300 PE=2 SV=1) HSP 1 Score: 242.3 bits (617), Expect = 8.7e-63 Identity = 118/327 (36.09%), Postives = 201/327 (61.47%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy Swiss-Prot
Match: Q9LPF1 (WAT1-related protein At1g44800 OS=Arabidopsis thaliana OX=3702 GN=At1g44800 PE=1 SV=1) HSP 1 Score: 241.9 bits (616), Expect = 1.1e-62 Identity = 125/343 (36.44%), Postives = 207/343 (60.35%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy Swiss-Prot
Match: Q9ZUS1 (WAT1-related protein At2g37460 OS=Arabidopsis thaliana OX=3702 GN=At2g37460 PE=2 SV=1) HSP 1 Score: 238.4 bits (607), Expect = 1.3e-61 Identity = 129/326 (39.57%), Postives = 201/326 (61.66%), Query Frame = 0
BLAST of Tan0002937 vs. NCBI nr
Match: KAG6579613.1 (WAT1-related protein, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 639.8 bits (1649), Expect = 1.4e-179 Identity = 327/362 (90.33%), Postives = 341/362 (94.20%), Query Frame = 0
BLAST of Tan0002937 vs. NCBI nr
Match: XP_022928958.1 (WAT1-related protein At1g43650-like [Cucurbita moschata]) HSP 1 Score: 637.9 bits (1644), Expect = 5.4e-179 Identity = 326/362 (90.06%), Postives = 341/362 (94.20%), Query Frame = 0
BLAST of Tan0002937 vs. NCBI nr
Match: XP_022970063.1 (WAT1-related protein At1g43650-like [Cucurbita maxima]) HSP 1 Score: 635.2 bits (1637), Expect = 3.5e-178 Identity = 324/362 (89.50%), Postives = 339/362 (93.65%), Query Frame = 0
BLAST of Tan0002937 vs. NCBI nr
Match: XP_023521473.1 (WAT1-related protein At1g43650-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 625.2 bits (1611), Expect = 3.6e-175 Identity = 319/362 (88.12%), Postives = 334/362 (92.27%), Query Frame = 0
BLAST of Tan0002937 vs. NCBI nr
Match: XP_023520560.1 (WAT1-related protein At1g43650-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 621.7 bits (1602), Expect = 4.0e-174 Identity = 316/362 (87.29%), Postives = 334/362 (92.27%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy TrEMBL
Match: A0A6J1EQL7 (WAT1-related protein OS=Cucurbita moschata OX=3662 GN=LOC111435703 PE=3 SV=1) HSP 1 Score: 637.9 bits (1644), Expect = 2.6e-179 Identity = 326/362 (90.06%), Postives = 341/362 (94.20%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy TrEMBL
Match: A0A6J1I2R9 (WAT1-related protein OS=Cucurbita maxima OX=3661 GN=LOC111469064 PE=3 SV=1) HSP 1 Score: 635.2 bits (1637), Expect = 1.7e-178 Identity = 324/362 (89.50%), Postives = 339/362 (93.65%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy TrEMBL
Match: A0A6J1HY24 (WAT1-related protein OS=Cucurbita maxima OX=3661 GN=LOC111469060 PE=3 SV=1) HSP 1 Score: 592.8 bits (1527), Expect = 9.7e-166 Identity = 298/365 (81.64%), Postives = 332/365 (90.96%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy TrEMBL
Match: A0A6J1ESW6 (WAT1-related protein OS=Cucurbita moschata OX=3662 GN=LOC111435701 PE=3 SV=1) HSP 1 Score: 586.3 bits (1510), Expect = 9.1e-164 Identity = 295/365 (80.82%), Postives = 328/365 (89.86%), Query Frame = 0
BLAST of Tan0002937 vs. ExPASy TrEMBL
Match: A0A6J1EQM5 (WAT1-related protein OS=Cucurbita moschata OX=3662 GN=LOC111435707 PE=3 SV=1) HSP 1 Score: 533.1 bits (1372), Expect = 9.1e-148 Identity = 269/335 (80.30%), Postives = 293/335 (87.46%), Query Frame = 0
BLAST of Tan0002937 vs. TAIR 10
Match: AT1G43650.1 (nodulin MtN21 /EamA-like transporter family protein ) HSP 1 Score: 256.5 bits (654), Expect = 3.2e-68 Identity = 140/339 (41.30%), Postives = 216/339 (63.72%), Query Frame = 0
BLAST of Tan0002937 vs. TAIR 10
Match: AT5G07050.1 (nodulin MtN21 /EamA-like transporter family protein ) HSP 1 Score: 246.5 bits (628), Expect = 3.3e-65 Identity = 125/361 (34.63%), Postives = 217/361 (60.11%), Query Frame = 0
BLAST of Tan0002937 vs. TAIR 10
Match: AT4G08300.1 (nodulin MtN21 /EamA-like transporter family protein ) HSP 1 Score: 242.3 bits (617), Expect = 6.2e-64 Identity = 118/327 (36.09%), Postives = 201/327 (61.47%), Query Frame = 0
BLAST of Tan0002937 vs. TAIR 10
Match: AT1G44800.1 (nodulin MtN21 /EamA-like transporter family protein ) HSP 1 Score: 241.9 bits (616), Expect = 8.1e-64 Identity = 125/343 (36.44%), Postives = 207/343 (60.35%), Query Frame = 0
BLAST of Tan0002937 vs. TAIR 10
Match: AT2G37460.1 (nodulin MtN21 /EamA-like transporter family protein ) HSP 1 Score: 238.4 bits (607), Expect = 8.9e-63 Identity = 129/326 (39.57%), Postives = 201/326 (61.66%), 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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