Tan0011103 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGAAAGTTTAGTTGAGAAATGCTTAAAAGAACTGATAGCTACTACCTATACTAACAAGGTGCATCTTTCTTTTCGGTGGCTCAATCATAAAAACTCCAAAGTTAAGCGTGCTTGACTTGGAGCAATCCTATGTTGGGTGACATTAGGTATGGATGATATGGTGATGTTGCCAGGTCGTAGGAGATCCTGAGCCTGAGGCGTTACAAATTATGCTCAAAAGTGAAAACTGAACCAATTAGAAATGGAATCATTAGTTTTGTCCTTGGTTCGGTTTTTAATTTTACCAAACCGGTCAATTCAATTCTTGGTTGGACCCAAAATTAAAAGAACCGAACCGAGTATCACCCCTTAGATTGAACTTTCACCATGCCAAACAAGAAGCTTCAAAAGGATGAGTTCTATCCATAAAATGGGGACCCAAAACTGAGGTCCCCAATGTCCAATATTTAACACTTGGTTCCAAGAGCAAAGCAAAACCTAAATTTGTTACTATCTATATGTTTCCATCCTTCCACAAATCTTCTCAAACTATTAAAGAAAGTGTTCCTCAAGCTCTCCTTTCAAGAAATCTTCTCAACACAAGCCCAAGATGAGGGTAAAGATTCCCTTCTTAATTTTTTGATCTTTGAAAGAACTATCCACATTAAGCTTAAACCCTTCTCTTTTGAACAGTTATTAGGATGGATGCACCGCAAGTTCAAGCAAAACAGTGCCGAACCACTCAAAGATTTTGTCATCGGTAATTCCTCTCTCTCTTTACTCTGCATCGAATTATAATAGTTTGTGAAATCATATAATATTATTTAAAATGTAAAGTTGTTTAGTCAAGAGTCACAACTACAATTTTGACATTCTATGACACCATAGCTAAGTCAAATAAGAGGGAGAGAGAAAAAAACTATCATAAATTGTTGGAGGCACGTTTTTGAAGGAAAAAATGAGAATTTTCGTATTTTCGAAAATTTATGACAGTTTTTCAACATTATAAATTTGTAACAGTTTTTCAACGTCAAACATTCATGACTTAGATAAAAAAAAAATTGTCATAGATGGTTGGAGGCGCGTTTTTGGTAAGGAAAATGAAGATTTTCCTGTGTTCGAAAATTTATGACAGTTTTTCAAGATCACAAATTTATGACAGTTTTCCAACGTCAAGTCTCACTTCATTTGTCCCACATCGAAAAAATTGTGTTTTAGAGAGGTAATCTTCTCCTATAAAATGCATCTCACTCCTCTATTTTAGCTCAACATTAACATGGGCTTCTTATAGTTGATGCGCTTATTAAGCTTGAGGTAAACTGGGTTTTAAGTAATTTTTTTTTGTTAAAAACTACAAACTAAAAAAGAAAACAAATACTTGACACAAGAATACTGTTATTAAAAGTTTTTTTTTTTCTTGTCATAGAACATGTTTGACATTGAAATCCTATCATTAAAAAATTTTCTATGACATTTAAAAATTGTTGTTAATATATATATTTTGACTGAAACGTCAATTTTAGGAGTTATTTATTGACGATGTTTAATTGTCATAAAAATGTCTTGAATACGTTTTTTTATAACTATTAATTGTCATAAAATAATTAATTATGAAATTTTTTGTATATGTTATGTATAGAATTTCCTTGATGGTGACTTTCAGAATTGAAAAAAATAAAATGTGTTTATGATAATTTTCCAATGTCATGAAATCTCTTGTACTAGTGGGTTATAATAGTCTATAATTGTACTAGTAGGTTATAATTATCTGTGTTTAAGTGCAGAGTATTCTACAAATTATTATAACCTATGCTCCAAATCGACCCTAAAAATTATATAGGAATATTTTAGAGCTTAAAATGTTGTTTCTCTCATTCATTTATAATATGTAATTCTTCACGTTATAATATGTTTTTTAACTCAACTTCTTATGGCTAGTTAGCATTATGTGTGAATATGCTAGATCTAAGATAAAAATAATGCTCCAAAAAATATTAATGACATTTCTAACAAAAATAAAAACATCTACACATGATTGTATTACATGTTGGGCAATAACATGCTAAATATAGTTTTTTGGTGTATATTGTACTTATCAAATTTATACAAGAATACGATTATAAATACAATTAATATTATTAATCAAATTTGATACAAGTAAATAATGAGAATTACTTCAACTATAATAATATTAATTATATTACAATTTAATGTATATATGTGTGCACGATATTTCATTAAAAATTAATTATATTTCTAATATCAAACAAGTTAAACATTTACACATTAATGAATGTATTACTTGCTGGAATAATTCATCTTAACATTGCTTCATTGCCTAACTCCAACTCATACATAGTGTAACACATGTTATTATAATTTGTGGCTCCAACCGACCTTTTAAAACTATAACAAATCTAATGGATCTATGACAAATTTTGATACATTGAAGGGATATAATAATAATAATTATTATTTAAAAAAAATAACTTCCATTTCAAATAAGGAGCATGCTAAATTGTAGGGACCATAACTTATTTTAACTTACTTTAGGGGTGTAAGAATATTGCTCATTTTATGAGTATAATTAATAATCAAGTTGTGATGGTTTCACTTTCAATCTAGACAAATCCCAACCTCACCTGTAATGTAATAATCTCATAAATTAATAATTATTTTGTTCCCTTTTTAAGAAAAAGTCTTAAAATTTGTAAATTTGTAAAATATGTTCTAAAAGTTAAAACATTCCTTTGGAGTATAAATATTTGTATTTTCGGTCTCAAAGGTATTTATTGTCGTCAAGCTATGCACTTTAGCATTTTAACATAGGTTTTTCTAAAAACATGCTTCTTTAAAAAGGTGGAAGCCATATAGAAACGAACTTAGGAAAAAATAAAACATATAAATTTTAAAAATTGAAAACTAAAAACCAAATATCAAACAGGTCATAGTTTTTAAAAACTTATTTTTTAAATTTGCTTAATAACTCAAATATGATTTTAAAAAGTGTGAAAAATATGCCAAAGAAAAGTGAGAAAACAATCATAACTTTCAAAAAATGAAGAACAAAAATGATTAGTAAACTAAGTCTAAGAGTATGTTTGCGATTGATTTTGAAATCATTAAAATTAATTTTGTCATGTCCAAAATTACTTCTATTTTAACATGGTAGATGAGTGCTTTTAAACAGTGATTTCGATCCTAAATGATTTTTGTATAGTGATTATAAAAAATTTTGTTTTTAAAATATGACTAGCTATTATTTCAATTTTTTATTTAAAAAAAACTCCTCCTATCTTCCCTATATAATTTTGTCCTAAAATTTTGAGAAGAGTTAATTTCTTACCTTTCTACTCTATTTATTTTAATTTTCCTACTTTCTATCTCTCCAATTATTCTATCTCTAACTTTATTCTCTCGCTTGTAGCTAATTCTCACTTTTTTTTTTCTCACTCCAATATTTTTCAACTCTTTTTTCTTTAGATTTTTTTTAGTTCTCTAACCTTTTTTTTTATCTCTAAACTTGTTTCTTTGCCTAACTCTACTCTAATTTTTTTTATCTATCTAATTTTGTTTATCTCTAGATTTGTGTACCTCCTAACTTTTTTTTTTCTTTTTTCTCTCTCAAATTTTATCACTCTCCCTAGATTCTTTTATATATCTCTCTTAACTTTATTTACCTATCTTTAATTTTTTATTTCTATTAATTTTTTTATCTCAAGTTTTGTTGTCCCCTCTCTCTATTTTTTTTTGTCGTGTCTCTAACTTTTTTTGTCTTTAAAACTTTTCTTTAGTTCTTTATTTTCTGTATTTCTAAGTTTTTTTTCCCTCTAATCTATAACTTTTATCTACTTCCTTTAATTCTTTTTTTTTTTTTGATAAATGTAATACCCTTTTGAGTAATTTGATGATTCTAAAATCTCATTTGAAGAAAAACATAAATCATTAAAAGTACTTTCAATTAAACCAATATTATTTTTAAAATGCTCAACCAAGCATTAAAATGTTTTTTAATTAAATAACTTTAAAACTAAATTACTTAGGATCAAAACACTTATTCTAAAATCACTTCTAAACATGTCATTAATCATTCAAATCACTCTTGATGGTATGAAAATTACTTATAAGAATGTAAAATCAAATATTTGTTGAGAATCTCACATTGGAAAGGTGAAGAAAAACCTTAAAACTTATAAAATATATGAGTTACTCCTTCCATAGCTAATTGGTTTGAGACGAAACTTCATGTAATTTAATAATATAAAATAATTATATAAAAAATTACTTTTAATAAATCACGTATAAACAAACCATTCTCTAAAAAATCACTCCTATAATTAAAAGTCACTCACAAGTGTGCCCTCTAACTTTTTACATGTTCCATTAATTTGGTCCCCCTCAACTTTTTCAAGTTGTGCTCACGTCGTCTCTAAAACATTGCATAAAAGTCATTTTAATCTTCATCATTAATTTTCATTCATCTTTTTTTTTTTGTTGAGAAAAAATTTTCATTGATCTTCTATAAAAAAATCTAAATCTTAATCTATTAATTTCAAAATCTGTCAGGATGTAGCTTTTACTTGTCTCATCTATTCATGACGGAGATTAAAAAATACATACAGAGGCAATCACATATATGACAATCGAATATAAAATAATAATAAATCTAGTGCGAACTAAAAGTATTTACAAAATATGACACAATTTTAAGCCTTAAAGCATGCGAGAAGTAAAAAAAATAACCGTTAACGTATCTCAATGACGCAAGTCTATTGATAGACGTATATCACAACTTACTGAGGTTTATCAATGATGTATCTACCATCGACTAAGTTCTATAACTAATGAACCTATCATCAACGACTGTAGTCTATCAGTGATAGACCTCTATCACTTACTGAACTGAGTTCTATCAGTGATAGCTATCTAGCAATGGTTGTTTGCATGCTCATTTGTTGTGTTTGATATATCATGTCAACATATCTCAATGTCGTAAGTTTATCATTGTAAACATCTGTCACTGATCAAGGTCTATCAATGATATATTTATCATTGATTAGGGCCTATCAATTATCGTCCACTCACTAACTAAGATATATCATTGATAGGTGTCTATCATTGATTGTTTGCATTTATATTTGTTATTAATTCTATCACTAATATATTATATCAATAGAATTAAAAGAGATATATCAATGATATTTGACTTTTTTTTTTACTGATTTTTTTCAAGCTCATTTGGTCTATCATTGATACCATATTAATATATTAAAAATAGTAAAACAGTGATAACTCAACATCAATAATAAAAAGGTTGATAACAAATAATAGTAAATTACGATGATAACTCAACACTAATATACCATTTTTTTGGTCTATCGATGATAAATGCGTATCATTAATGGACATCTATCCTTCATAGACGTAGAAATGGTTTATCAATGATAAACATGAAAATATTTTAAAAATTATAGATTAAAAAAATAATCTATCAAACACGTAGAAATGATCGCTAATAAATATAAAAATAGTCTATTAGTAATAGAAATCTATCACTGATATATAGACATATTAATGATCAATGGATAATATACATAAATTTTTTTATTAACAATAGACATTAATGATAGACATTTTGAGTGATAGACGTAGAAATTGTCCATCAATGATAGAAATAAAAATTATCAGTCAGTGACAGAGGTCTACCACTGATAGACTACTATTAGGAGACGAGGTAAAAAAGGAATTACGGGAAAATCTTTCAATAGGCGTGCAAAGATTTGAAAGAATTTGTCATATGTTTACAAATTATTTATTTATATAACATATAATATTTGCAAATATGGAAACTAATTTTGACACTCATTAGAATTCAATATATATATATATATATACACACGTCAATCTCAAGCTCCTAAAAAAATTTACAAAATGAAAATCACATTCAAGACTAAAATGACTTTTCATGCAAAATTCAAGAATTGCAACACAAATGATTCAAAGTTTAAATACTAAAATTGTAACAAACATGAAAGTTCAAGAAATTGATTAATTCATTGTATCGATATCGAAGTCTTCGAATAATAAAGATGTCAGCGAAAATATTGACGTGTCGATGAAAATATTCGAAATACATCTATATATTGCATCAATCTCTCCATGCTTTATAGGTTAAATCTTTCAAATTGTCTCTTAGGGCAACCACCAAGTGATGACCAACAATATTTTCCAAGAACAAGCATCAATAAACCTTTCAAACAAGCCCAAAGAGACCTGAATCTAAGAAAATCAGTGAGTGGGACTGGTCTAGATAATGCAGCAAGCCCATATGAAGACTATGAAGATGAATCACTAGTCTCCATATCTGAGATCTTCCCTGGCTTTCTTGCCATTGGAACTCTAGGCTCTTCAGACCCTGCAACCCCAAAATTCTCCATCTCCATTGACCACATTACTGAAAGAGAAACTGAAGTCACAGAGAATGAGTTGAAGCTTATCAATGATGAGCTGGAGAAGGTGCTCGAGGCCGAGGCGAAAGACGACGGTGGGTCGAGGCGGGACAGCCATGTTAGCATGGGAAGAAGCAGCCATGGGAGCACTGTCACTTTGAGTGGCAAAGTGTTGGAAGGACCTGAGAACAATGGTGGCGCCGTGGTTTGCCCGCTTCAAGGGTATTTGTTCGGGTCAGCGGTTGAGTTGTCGGAGACGACGACGGTGGCGAAGAAGGAGAACAGGATGTCGCTCGGGGAGTTGTTTCAGAAAAGCAAACTATCAGAGGAAGTTGGAGGAGGAAGATGTGAGAAGGATGATCAAAAGCAAGTAGAGAAGGAAGGTGGGGATAAGTATGGGATTCAATTGATAAAAAAGAAGCTGAAGAAAACAATGCTTAGTGCTGCTTCTAAAAGCTCTTCAAGTTCAACTGCTGCTGGTGGAGTCTTAGATGTTTCAGCTGATCAAACCAAATTGCACAAGGTATGTATCAAATTCCTCCCTTCTTTTTGGTTTGACTTTCTAAATACTTTTGACGCTTTCAAATCCTTTTTTAAGCCTTTGAAATTTCATTCCAAACAGATCTTATAGTGATGGTTATAATTGTATACTTTTAATTAAGAACTATGTTAAATTTGGGTTATTTTGTTAATTTTCATACAAATTCCGACGCGTATGAAAGAAAGTCACCATATTTCCTTATTAATTATCTTATACGCTTCCATCATGCTTCTCCTTTGAAAAGATGTGATGATCTATTTTCTTTGTCTCCCCTACTTTTCCTCGGTCTCTTTTAACATATCACTCTCTCCCAACATCAGTATAATTCAGCAGTTGAGACGTTTACTCCTTTAGAAATCTAAGATTCAGACGTTTAACTCCTAACTTCCTTGTACTAAACACACTACTCTTAGTCATTTTAACACATTATACCACCAAATTTTTTTCACTTATAAAAGTTTAAAGGTCCAAATTTAACAAAATTCATGAGTGTAATCATAACAATCGCTATAGTTTGAGAGTAATTTTTGTCTAGAGAAACAAGAGAGAAAAAAAAAAGATGAATAACACAAAAGGCTAGCTCTTAATAATCTATTATTCATCAAATTCTTCATTTTAGAAAAGCATTTCAAATTCCTTACCCTAATCCCTATTATAAGACCTTTGGTTCAATCTTTCTCATATCCTAAAACTCTTGCAATGGCTTGTAGATTTTTCATTTGTTCAATAGGAAAGTTTATCCTGAAAGCACCACAATGGGGAAAGAAAAGTGGGATCAAAAGGCCCAAAAGAATGACAAAAAGAAAAAAACAACCACCATTGATGGAGCTAATAAGAACAATGGAGATAGAACCTCCATAGATGAAGACATCATGATCTTTCCAAAAAAGCTCATCTTCAAGCAAACTTTACAACGCTACAAAAGCCAGTCTGTTCCTCCACAGTTCTCAGATGATGATGGTGATGATGATGATTCCAATTGGAACAAGGAGCAATGGATCAAAACAGATGCAGACTGTAAGTGAATGTATCTACATATATATATATAGCCCTTTATAATTTCCAAGTTATCCAAATATATTTACCAACTATCCGTTTCGTCTCTATGATTTGAATTTCGTGTACTCCTATGTTTTTTAAAAGTTTCTGCATTGTCTCTATCTTTTGATTAAAGCTTAACGGACATCTTTTTATTTGAGAGACCAATGAAATTCCTACTTATTAAGTTGTTTATAGGTTGTGATGATTTATTAATTATTTTTGTTTAAATGTGGTTTTTTTAGTTCGATAATATGTTGGGGTGGGAAGATTGTAAACTCTGATTTTGTTTTTTTTCTTTTTTATCGATGAAATGTGCTATTTTAACTATGCTTAGATCGGAGTTAAAATAGATAACTTGTATTAATTAATTTTGATTGAAAAATAAGAATTTGACTAATGATCATGAATAAACTACATGAGGGGAAAAACGTAATACTTGTAACCTTTTATGGGACCAAAAATTTTCAGATTTGTTCTATCTAGTTTGAGACAATTTGTTAGAATAAAGATGACACTCGAACACAAATTATGAAGCTGTACTCGGCGAGAAAAGAAAGGTAATTGTCACTGGAAAAATACTTGGGTGCAGCTCTACTCTACAACTCAATAGATAACCACAAAAATATTTTTTTTGATTAAAAAATGAGTTGCACCACAAATTGCACCCAAGTGTAGTCGTTGTCACTCGCCTTTCATCACAATCAAGAGTGAGAATTTTCTGACAACCTAAATTGTAGCATCATTTCAAATCCATTTTTCACAAGCCCAATTCTTGTCTACTAAGCATGATCTATTTTTTGCAATAGATTCTTGCCCTTTATGTGTTTTTTAGGGTACAAAAAGCTGTAAACTCAATGCAAGTGCCTTCCTTTCAACCAAAATAGTATCCCTTTTTTAATCTCTTATGGGATTAAAAAAAATTAAATTAATCTGTGACATCTACAAGAACTAAGTGGATATGAACAACAATGAAATTTTTTAAAGTTAAATCATTTATAGAAGGTAAAATGGTAATTTATCCATATGGGAAATCGAGAAAAAGGAACATGTAGTTAAATTATAAATATAAGTATCGAATACCTCCTAAAGGATTATTCAATCTAACCTTTCCAAGTCACATTTTATATATGAAAGAACAACCAAATCTACTTTTAAATCCAACTTAACAATTTCTTCTTCTTCATAATTGCATCATAAAAATGAGACCTCAAGATTGAACATCTTTAATTCATTGCTTACTTTTTAAGTACTAACCATTATTCTTGTATGTGTCTTAGACCTGGTGCTGGAGCTCTGA ATGAAATTATTAGGATGGATGCACCGCAAGTTCAAGCAAAACAGTGCCGAACCACTCAAAGATTTTGTCATCGGGCAACCACCAAGTGATGACCAACAATATTTTCCAAGAACAAGCATCAATAAACCTTTCAAACAAGCCCAAAGAGACCTGAATCTAAGAAAATCAGTGAGTGGGACTGGTCTAGATAATGCAGCAAGCCCATATGAAGACTATGAAGATGAATCACTAGTCTCCATATCTGAGATCTTCCCTGGCTTTCTTGCCATTGGAACTCTAGGCTCTTCAGACCCTGCAACCCCAAAATTCTCCATCTCCATTGACCACATTACTGAAAGAGAAACTGAAGTCACAGAGAATGAGTTGAAGCTTATCAATGATGAGCTGGAGAAGGTGCTCGAGGCCGAGGCGAAAGACGACGGTGGGTCGAGGCGGGACAGCCATGTTAGCATGGGAAGAAGCAGCCATGGGAGCACTGTCACTTTGAGTGGCAAAGTGTTGGAAGGACCTGAGAACAATGGTGGCGCCGTGGTTTGCCCGCTTCAAGGGTATTTGTTCGGGTCAGCGGTTGAGTTGTCGGAGACGACGACGGTGGCGAAGAAGGAGAACAGGATGTCGCTCGGGGAGTTGTTTCAGAAAAGCAAACTATCAGAGGAAGTTGGAGGAGGAAGATGTGAGAAGGATGATCAAAAGCAAGTAGAGAAGGAAGGTGGGGATAAGTATGGGATTCAATTGATAAAAAAGAAGCTGAAGAAAACAATGCTTAGTGCTGCTTCTAAAAGCTCTTCAAGTTCAACTGCTGCTGGTGGAGTCTTAGATGTTTCAGCTGATCAAACCAAATTGCACAAGATTTTTCATTTGTTCAATAGGAAAGTTTATCCTGAAAGCACCACAATGGGGAAAGAAAAGTGGGATCAAAAGGCCCAAAAGAATGACAAAAAGAAAAAAACAACCACCATTGATGGAGCTAATAAGAACAATGGAGATAGAACCTCCATAGATGAAGACATCATGATCTTTCCAAAAAAGCTCATCTTCAAGCAAACTTTACAACGCTACAAAAGCCAGTCTGTTCCTCCACAGTTCTCAGATGATGATGGTGATGATGATGATTCCAATTGGAACAAGGAGCAATGGATCAAAACAGATGCAGACTACCTGGTGCTGGAGCTCTGA ATGAAATTATTAGGATGGATGCACCGCAAGTTCAAGCAAAACAGTGCCGAACCACTCAAAGATTTTGTCATCGGGCAACCACCAAGTGATGACCAACAATATTTTCCAAGAACAAGCATCAATAAACCTTTCAAACAAGCCCAAAGAGACCTGAATCTAAGAAAATCAGTGAGTGGGACTGGTCTAGATAATGCAGCAAGCCCATATGAAGACTATGAAGATGAATCACTAGTCTCCATATCTGAGATCTTCCCTGGCTTTCTTGCCATTGGAACTCTAGGCTCTTCAGACCCTGCAACCCCAAAATTCTCCATCTCCATTGACCACATTACTGAAAGAGAAACTGAAGTCACAGAGAATGAGTTGAAGCTTATCAATGATGAGCTGGAGAAGGTGCTCGAGGCCGAGGCGAAAGACGACGGTGGGTCGAGGCGGGACAGCCATGTTAGCATGGGAAGAAGCAGCCATGGGAGCACTGTCACTTTGAGTGGCAAAGTGTTGGAAGGACCTGAGAACAATGGTGGCGCCGTGGTTTGCCCGCTTCAAGGGTATTTGTTCGGGTCAGCGGTTGAGTTGTCGGAGACGACGACGGTGGCGAAGAAGGAGAACAGGATGTCGCTCGGGGAGTTGTTTCAGAAAAGCAAACTATCAGAGGAAGTTGGAGGAGGAAGATGTGAGAAGGATGATCAAAAGCAAGTAGAGAAGGAAGGTGGGGATAAGTATGGGATTCAATTGATAAAAAAGAAGCTGAAGAAAACAATGCTTAGTGCTGCTTCTAAAAGCTCTTCAAGTTCAACTGCTGCTGGTGGAGTCTTAGATGTTTCAGCTGATCAAACCAAATTGCACAAGATTTTTCATTTGTTCAATAGGAAAGTTTATCCTGAAAGCACCACAATGGGGAAAGAAAAGTGGGATCAAAAGGCCCAAAAGAATGACAAAAAGAAAAAAACAACCACCATTGATGGAGCTAATAAGAACAATGGAGATAGAACCTCCATAGATGAAGACATCATGATCTTTCCAAAAAAGCTCATCTTCAAGCAAACTTTACAACGCTACAAAAGCCAGTCTGTTCCTCCACAGTTCTCAGATGATGATGGTGATGATGATGATTCCAATTGGAACAAGGAGCAATGGATCAAAACAGATGCAGACTACCTGGTGCTGGAGCTCTGA MKLLGWMHRKFKQNSAEPLKDFVIGQPPSDDQQYFPRTSINKPFKQAQRDLNLRKSVSGTGLDNAASPYEDYEDESLVSISEIFPGFLAIGTLGSSDPATPKFSISIDHITERETEVTENELKLINDELEKVLEAEAKDDGGSRRDSHVSMGRSSHGSTVTLSGKVLEGPENNGGAVVCPLQGYLFGSAVELSETTTVAKKENRMSLGELFQKSKLSEEVGGGRCEKDDQKQVEKEGGDKYGIQLIKKKLKKTMLSAASKSSSSSTAAGGVLDVSADQTKLHKIFHLFNRKVYPESTTMGKEKWDQKAQKNDKKKKTTTIDGANKNNGDRTSIDEDIMIFPKKLIFKQTLQRYKSQSVPPQFSDDDGDDDDSNWNKEQWIKTDADYLVLEL Homology
BLAST of Tan0011103 vs. ExPASy Swiss-Prot
Match: Q5XV40 (Protein LAZY 1 OS=Arabidopsis thaliana OX=3702 GN=LAZY1 PE=1 SV=1) HSP 1 Score: 154.1 bits (388), Expect = 3.3e-36 Identity = 138/411 (33.58%), Postives = 197/411 (47.93%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy Swiss-Prot
Match: B4FG96 (Protein LAZY 1 OS=Zea mays OX=4577 GN=LA1 PE=2 SV=1) HSP 1 Score: 78.6 bits (192), Expect = 1.8e-13 Identity = 122/466 (26.18%), Postives = 183/466 (39.27%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy Swiss-Prot
Match: Q2R435 (Protein LAZY 1 OS=Oryza sativa subsp. japonica OX=39947 GN=LA1 PE=2 SV=2) HSP 1 Score: 73.6 bits (179), Expect = 5.7e-12 Identity = 120/456 (26.32%), Postives = 174/456 (38.16%), Query Frame = 0
BLAST of Tan0011103 vs. NCBI nr
Match: XP_022145119.1 (protein LAZY 1-like [Momordica charantia]) HSP 1 Score: 489.2 bits (1258), Expect = 3.3e-134 Identity = 301/417 (72.18%), Postives = 326/417 (78.18%), Query Frame = 0
BLAST of Tan0011103 vs. NCBI nr
Match: XP_038878347.1 (protein LAZY 1-like [Benincasa hispida] >XP_038878355.1 protein LAZY 1-like [Benincasa hispida]) HSP 1 Score: 478.8 bits (1231), Expect = 4.5e-131 Identity = 288/392 (73.47%), Postives = 312/392 (79.59%), Query Frame = 0
BLAST of Tan0011103 vs. NCBI nr
Match: XP_022972155.1 (protein LAZY 1-like [Cucurbita maxima]) HSP 1 Score: 467.6 bits (1202), Expect = 1.0e-127 Identity = 276/386 (71.50%), Postives = 295/386 (76.42%), Query Frame = 0
BLAST of Tan0011103 vs. NCBI nr
Match: XP_023539082.1 (protein LAZY 1-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 467.2 bits (1201), Expect = 1.4e-127 Identity = 274/386 (70.98%), Postives = 296/386 (76.68%), Query Frame = 0
BLAST of Tan0011103 vs. NCBI nr
Match: XP_022932602.1 (protein LAZY 1-like [Cucurbita moschata]) HSP 1 Score: 459.9 bits (1182), Expect = 2.2e-125 Identity = 273/387 (70.54%), Postives = 294/387 (75.97%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy TrEMBL
Match: A0A6J1CU94 (protein LAZY 1-like OS=Momordica charantia OX=3673 GN=LOC111014637 PE=4 SV=1) HSP 1 Score: 489.2 bits (1258), Expect = 1.6e-134 Identity = 301/417 (72.18%), Postives = 326/417 (78.18%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy TrEMBL
Match: A0A6J1I7R4 (protein LAZY 1-like OS=Cucurbita maxima OX=3661 GN=LOC111470778 PE=4 SV=1) HSP 1 Score: 467.6 bits (1202), Expect = 5.0e-128 Identity = 276/386 (71.50%), Postives = 295/386 (76.42%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy TrEMBL
Match: A0A6J1EX80 (protein LAZY 1-like OS=Cucurbita moschata OX=3662 GN=LOC111439112 PE=4 SV=1) HSP 1 Score: 459.9 bits (1182), Expect = 1.0e-125 Identity = 273/387 (70.54%), Postives = 294/387 (75.97%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy TrEMBL
Match: A0A0A0KXC5 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G012380 PE=4 SV=1) HSP 1 Score: 451.4 bits (1160), Expect = 3.7e-123 Identity = 273/407 (67.08%), Postives = 316/407 (77.64%), Query Frame = 0
BLAST of Tan0011103 vs. ExPASy TrEMBL
Match: A0A5D3CZR4 (Protein LAZY 1 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold130G001600 PE=4 SV=1) HSP 1 Score: 426.4 bits (1095), Expect = 1.3e-115 Identity = 266/400 (66.50%), Postives = 306/400 (76.50%), Query Frame = 0
BLAST of Tan0011103 vs. TAIR 10
Match: AT5G14090.1 (unknown protein; Has 56 Blast hits to 56 proteins in 18 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 2; Plants - 46; Viruses - 0; Other Eukaryotes - 8 (source: NCBI BLink). ) HSP 1 Score: 154.1 bits (388), Expect = 2.4e-37 Identity = 138/411 (33.58%), Postives = 197/411 (47.93%), Query Frame = 0
BLAST of Tan0011103 vs. TAIR 10
Match: AT3G27025.1 (unknown protein; Has 25 Blast hits to 25 proteins in 6 species: Archae - 0; Bacteria - 0; Metazoa - 1; Fungi - 0; Plants - 24; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 42.7 bits (99), Expect = 7.7e-04 Identity = 96/398 (24.12%), Postives = 149/398 (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
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.
|