Tan0003898 (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.ATGGAGTCTCAACAAATCGCCCCTCATCATCAAAGTAAACCAGTATATATGCATGATTTAATTTAAATATTTTTTTCTTCTTTCTTACTAAATTTTCTAATAATGGTTATTGTAGGCTAGGATTGCCTCCCGTCTCAAATTTTCAAAATTATAAGAAAAAAAAAACGTTAAGATTTTTCATGTTTGATCTGGCTTAATTATTTGGCTCTGTGTTGTAAAATTTTGTAGGTGTAGTGGAAGGGGAAGAAGATGGGCAGCATCATGAGAAGAAGTCAGTGTTGAAGAAAGTGAAGGCGAAGGCTAAGAAGATTAAAGACACCATTACCAAGCATGGCCACCACGACCACGATCAGGATGATGAAGAAGATGACGACAATATTGACGATGAAGATGAAGGAGTTGTGGAGGATCCTGATCTTCAGGGAGCACCGTGTATGTCTCTCGATGCTACCTTTAAATTATAAGATATATATATATATTTGATCATCTGCTTCTATTACTCTTTTTTTTTAATATATATTATGATTATAAAATTTTAAAGGGTAAACTATACTTTTGATAGTTTTAAGTAGTTGTTTATTTGATTTCTACGGGTTTAAAATGAACATTTTAGTCATTTTCTAAATGGTCCCTAGAATTAGTTGACCCAAAATTTATAATTTTTTTATTTATATTTAAGATTTTTTTTTTGACTTCTCATATGCAATTTTTTTTTTTAAATTTCATTTCTTACCCATGTTTTTTTTTTATCAAACTACAACTCTACGTAATAAAAAAGTAGAACCACCCTAAGAAACCCATCACAAAAATCGAATTAATTAAAGAAAATTAACACAATACCTAATTCACAAAAATCGAATTAATTAAAGAAAATTAACACATAGGTATTTCAAAGTTGTGGACAGACACGTTTCTTAAGATTAAGAAAGAAAGAATGGTGGACTGAGGAAGGCACTATATCAAAGCAACAAAAAAGTCTTTTTTGTCATCGTTATTTTCTGTGTTGATGAAAAAAAGTAAAAATAAATTTTTACATATAATCCCATGACGTTGAAATAACAACATTAATATAAATGTTAACACCTCATCTAAAAATTGTCAGTTTAGAACTTTCCAAACCGTACTAAACACCTCATTTAAAAATTGTTAGTTTAGAACTATTTTTTAACTAAAGTGTTTATTTTGATACTTCAGGAACACCTCATTTAAAAATTGTTAGTTTAGAACTATTTTTTAACTAAAGTGTTTATTTTGATACTTTAGGGACCAATCAGACATCTACTCCAAACTTCAGTAAAAGTGTATTTTGCCCAAAAGTGTATTTTGCCCAATTTCAAACTATGATTTTGTATTTCAATGGAATTTAGAGTGTTGAACTATTGAACTAAAGTGTTTATTTTGATACTTCAGGGACCAATTAGACATCTACTAAAAGTGTATTTTGCCCAATTTTAAACTATGATTCTGTATTTCAATGGAATTTAGAGTGTCGAACTATTGAACTACCAACGTCATAGTCGTTAATACATTCATTTGGAGTGTCAAACTATTCAACTACCGACTTCGTAGTCATTAATACATCCACATGAACTGTACTCTATTTGGTTGAAAATTTAGTTGAAAATTTAGTTGTTGTGGGTGCTTGGAAAAATCAAATAACACAAACACCAAGTTTGTTTAGTTGGTGATCCAAAACAAAATAACAAGGACGACCAGGATTTAAAATAAACTCAAAACAGAGTTAATTCATTTTTTCAGAATTGTTTAATTAAAGCCACAATTTTTTTTTATTTTGTTTTAAAGAAAAATATTTGTGGTTATACCATTTATTAATTTCTCTTATATATCTATCAAAGTAGGTTAAATTATCAGTTTAGTTCACGAATTTTGATAATTTAGTTTACTAATTTTGCAGTTTGTATGTATTTTATGTTAAAAAAATATCTAATAGCCCTTTAATTAAATCAGGGCTTTAATTAACTTGAATTGAGTGAATTTAGAAACAGGTGCATACCAAACAAGCAAACATGCTCTTAAAAAAAAAGAGTAATTATTGGTTTAGTTTTTGAACTCTAGGTTTAAGTCTATTTAGTCTCAAATGCAAATTAAGGTTAAATTATTAGTTTAGTTCACGATTTGATAATTTAGTTTTGATAATTTAGTTTACTAATTTTGCTTTTGATAATTTAGTTTACTAATTTTGAAGTTTGTATGTATTTTATATTAAAAAATATCTAATAGCCCTTTAATCAGGGCTTTAATTAAATCGAGTGAATTTAGAAACAGAAAAAAAAAGAGTAAAATTACCTGCTCCTAAAAAAAAAAAAGTAAAATTATTGGTTTAGTTTTTGGTTTACGTCTATTTAGTCTATTTAGTTTCTGAATTGTAAATTAATCTATCTTTTAGTTTAGGTCTCATTTGATGACTTAGGCTCCATAGGTTAACCATTTGGTTTTTATTTTTGGTTTTTAAAAATTAAACTTATTTTTTTACCATTTCTTTGAAGATTAATGAATAAAAGCAAACTCTCACTTCTTTAAGCCAATAGGTACCGAATATTTATACAAATCAAGAAGAGTTTATAGTTCTCATATTTTTTAAGAAAATACTTGCATTCTTAGTTAAATTTCAAAAATAAAAATAAATTTAAATTTTTGGATACTAAAGAAGCCAATAGGTACCGAATATTTATACAAATCAAGAAGAGTTTATAGTTCTCATATTTTTTAAGAAAATACTTGCATTCTTAGCTAAATTTCAAAAATAAAAATAAATTTTTGGATACTAAAGAAGCCAATAGGTACCGAATATTTATACAAATCAAGAAGAGTTTATAGTTCTCATATTTTTTTAAGAATGCATTCAAATAAATTTTTGAAAACTACTTTTTTTAGTAGCAAAAGTTTGCCTGTGTTTATAGGCTTACATTGTTTTTTTCTTTTTTGCTTTTTAAAAACGAAGCCATATTCTCAAAATCTTAATTAAAATCTTCCTAGAGTAATTTTTAAAAACGAAAAAAATGATTTAAAAATGGTTAAGAAATTGATAAAGTTTAGGAAACCCTGAAATATTTGCATTCTAATTTAGGTGATCTTTAAATTAAGGAGGTAGATAATTAGGAGGCAAATAATGAAATGAAAATATAAGACTTGGTAATTAAGTTTGGGTTAATAATTAGAGCAGAAATGATATGGCAGTGTATGAAGGTGCTGCAATGAGGAGCGGCGTGGGTGGTGGACAAGGGCAGCATCAAGATGTCGGAATTGGAATGTCAACACCGATGATGCAGAATCAGCCTCCTCCGACTTCAACTCCAATTTCAAGAGACAACTCGGCTGTTGCGCCAAACACGACCATGTCTCTATCCCCATGGAGCTTCGAGGAGGATCCTCACGCGCCTAATGACAAAACTCACCCTCAACATTCTCATGTCAAAGCTTCGGATCCTGCACAAAGAGGTAATTAACAAAAATGGTCGTACCCAAACACTTTAATTAAAGACAATTGGTTGTAATTTGGATAACGTTCACAAATATGTTATTTATTCCCAACATTTACGTATATATATATATAATTTTTTTACAAAAAAAAGTTTGTGCTATCAAAAGTCAAAATAGTCGAACCCATTCTATCCAGATTTAAAAAAAAAAAAAAAAATTGAAATAAAATTGTAAGAGTTATTTGAGGCTTTGTATGGGTTAAAATACTTTAGAATTTTAGTTAGGGGTTGGTGCTGAGTTGTATGGTCCGGATTAAGCAAATTTGTGTTTATGGACTTTTTTTTTTCTCTACTATACAATTAGAACTATAATATTAGATATCTTTTTTAAAAATTTAAATAATAATGATTTGTTCCATAAAGAAAATATTTTTTCTTTCTAGGAACTTTTCTTTGAAATTATTCTAAGAGAAATTTCTTGTTTTTAATTAATTGTATGGTTGACATCCCTACCTAAATATTTTTTCATTTTTCATTTTCGCCAGCATTCTTTCAAGAATTTCCCTTGAAATAATCCTTTTTTTTTTTACTAACCCTTGAAATAATCCTAATAGGAATCTCTTGTTTTTTAATTAATTATATTGTTGCCATTCCTCCTAATGACCTAAAAATGTAATTGCAATAACAATGTCTGATCTTTATTGGAAAGATTGTTGAAATAATCCTTTTTTTTTTTTTTTTTTGCATATCTAGCATTTTATGTACTCCATCTAAAGATGATTTCTTGATTTTACGAATCACATTTTTGCTAATTTTTCTATAAGTTTAAATATACTTTTTTGTGGTTTATTATCACATGAAATTGAAAAAATGAATAATCGTAAAACAAAAGAACCTTCCATTAGAGTTCCCATGAAAGTTCCCATGAAGGAAGAGTTACACCTCAACTTCACGGGCTTCGGTCTAGATCAGGTTGATTTATGTTGATTTCGATTTGTTTGGGAAAAAAAAAAGTAAAAACTTGAATTATGAATTTTGATTTTTAAAAATATCTTCTTAAACGAGTTTTTTAAAAAAAATCTTAAACCAGATTAAATTCATTTAAGTTAAGCGAATAATAAAAAAATAAAAAAAAGGGTTAAAAACCGACCCACAAACCACAATCACAAATTCTTTTTACCGTTTCATCATACGAATGTGTCGTCGTGGAACAGGGAGCGAAGAAGCAGGGGATTCTCAGATTTTCGATTCATTTGCAAAAATGAAGGTAAACGAGGACGACGAACCGGACCGAAATAAGAGCAGGTACGTGCAAAAGATCTCAGCCGTGGGTTCAGCAATGAGTGGAAAAGCAGTGGCAGCGAAGGATTTCATGGCATGGAAGCTTGGGTATGGAGAAAGAACAGAGGAAAAGACAAACAGAAAGTCTTCTTCGGCATTAGAGTACGGAAAGAAGATAGCTTTAACAGTGACAGAGAAGCTGAAGCCAGGGGAGGAAGACAGAGCACTTTCAGAGGCGATATCGGAGGCTTTCAATAGAAGGAAAGAGGAGGGGCAGCCGAAAGGGAAGGTCACGGAGTCCGAGGAAGTGACTCGGCGGCTGGGGAGAGAGGAGAATGAAGGAACAGAGAGATCCTCGGCCACAGCGACGGTGAAGAGTGTGGCGGATATGGTGAAGGACACGGTGGGGTCGTGGATGGGGAAAACACAAGGTGAATTAAAATGATCATATAATTAAATAAAGGCTTCAAATTAAAATAAAACTGTTTAATTTATTTTGTTGGAATTGAAGCAGGGGTTGAAGGTTTTACGGATTCTTCGGCGGTGGGGGAAGGGCAGCGGCGGCGGGAGCCTGGTGGGACGGAGGCGGAGGTGCGGATGCTTCAGGAGTCGGCCAATTAA ATGGAGTCTCAACAAATCGCCCCTCATCATCAAAGTGTAGTGGAAGGGGAAGAAGATGGGCAGCATCATGAGAAGAAGTCAGTGTTGAAGAAAGTGAAGGCGAAGGCTAAGAAGATTAAAGACACCATTACCAAGCATGGCCACCACGACCACGATCAGGATGATGAAGAAGATGACGACAATATTGACGATGAAGATGAAGGAGTTGTGGAGGATCCTGATCTTCAGGGAGCACCGTTGTATGAAGGTGCTGCAATGAGGAGCGGCGTGGGTGGTGGACAAGGGCAGCATCAAGATGTCGGAATTGGAATGTCAACACCGATGATGCAGAATCAGCCTCCTCCGACTTCAACTCCAATTTCAAGAGACAACTCGGCTGTTGCGCCAAACACGACCATGTCTCTATCCCCATGGAGCTTCGAGGAGGATCCTCACGCGCCTAATGACAAAACTCACCCTCAACATTCTCATGTCAAAGCTTCGGATCCTGCACAAAGAGGGAGCGAAGAAGCAGGGGATTCTCAGATTTTCGATTCATTTGCAAAAATGAAGGTAAACGAGGACGACGAACCGGACCGAAATAAGAGCAGGTACGTGCAAAAGATCTCAGCCGTGGGTTCAGCAATGAGTGGAAAAGCAGTGGCAGCGAAGGATTTCATGGCATGGAAGCTTGGGTATGGAGAAAGAACAGAGGAAAAGACAAACAGAAAGTCTTCTTCGGCATTAGAGTACGGAAAGAAGATAGCTTTAACAGTGACAGAGAAGCTGAAGCCAGGGGAGGAAGACAGAGCACTTTCAGAGGCGATATCGGAGGCTTTCAATAGAAGGAAAGAGGAGGGGCAGCCGAAAGGGAAGGTCACGGAGTCCGAGGAAGTGACTCGGCGGCTGGGGAGAGAGGAGAATGAAGGAACAGAGAGATCCTCGGCCACAGCGACGGTGAAGAGTGTGGCGGATATGGTGAAGGACACGGTGGGGTCGTGGATGGGGAAAACACAAGGGGTTGAAGGTTTTACGGATTCTTCGGCGGTGGGGGAAGGGCAGCGGCGGCGGGAGCCTGGTGGGACGGAGGCGGAGGTGCGGATGCTTCAGGAGTCGGCCAATTAA ATGGAGTCTCAACAAATCGCCCCTCATCATCAAAGTGTAGTGGAAGGGGAAGAAGATGGGCAGCATCATGAGAAGAAGTCAGTGTTGAAGAAAGTGAAGGCGAAGGCTAAGAAGATTAAAGACACCATTACCAAGCATGGCCACCACGACCACGATCAGGATGATGAAGAAGATGACGACAATATTGACGATGAAGATGAAGGAGTTGTGGAGGATCCTGATCTTCAGGGAGCACCGTTGTATGAAGGTGCTGCAATGAGGAGCGGCGTGGGTGGTGGACAAGGGCAGCATCAAGATGTCGGAATTGGAATGTCAACACCGATGATGCAGAATCAGCCTCCTCCGACTTCAACTCCAATTTCAAGAGACAACTCGGCTGTTGCGCCAAACACGACCATGTCTCTATCCCCATGGAGCTTCGAGGAGGATCCTCACGCGCCTAATGACAAAACTCACCCTCAACATTCTCATGTCAAAGCTTCGGATCCTGCACAAAGAGGGAGCGAAGAAGCAGGGGATTCTCAGATTTTCGATTCATTTGCAAAAATGAAGGTAAACGAGGACGACGAACCGGACCGAAATAAGAGCAGGTACGTGCAAAAGATCTCAGCCGTGGGTTCAGCAATGAGTGGAAAAGCAGTGGCAGCGAAGGATTTCATGGCATGGAAGCTTGGGTATGGAGAAAGAACAGAGGAAAAGACAAACAGAAAGTCTTCTTCGGCATTAGAGTACGGAAAGAAGATAGCTTTAACAGTGACAGAGAAGCTGAAGCCAGGGGAGGAAGACAGAGCACTTTCAGAGGCGATATCGGAGGCTTTCAATAGAAGGAAAGAGGAGGGGCAGCCGAAAGGGAAGGTCACGGAGTCCGAGGAAGTGACTCGGCGGCTGGGGAGAGAGGAGAATGAAGGAACAGAGAGATCCTCGGCCACAGCGACGGTGAAGAGTGTGGCGGATATGGTGAAGGACACGGTGGGGTCGTGGATGGGGAAAACACAAGGGGTTGAAGGTTTTACGGATTCTTCGGCGGTGGGGGAAGGGCAGCGGCGGCGGGAGCCTGGTGGGACGGAGGCGGAGGTGCGGATGCTTCAGGAGTCGGCCAATTAA MESQQIAPHHQSVVEGEEDGQHHEKKSVLKKVKAKAKKIKDTITKHGHHDHDQDDEEDDDNIDDEDEGVVEDPDLQGAPLYEGAAMRSGVGGGQGQHQDVGIGMSTPMMQNQPPPTSTPISRDNSAVAPNTTMSLSPWSFEEDPHAPNDKTHPQHSHVKASDPAQRGSEEAGDSQIFDSFAKMKVNEDDEPDRNKSRYVQKISAVGSAMSGKAVAAKDFMAWKLGYGERTEEKTNRKSSSALEYGKKIALTVTEKLKPGEEDRALSEAISEAFNRRKEEGQPKGKVTESEEVTRRLGREENEGTERSSATATVKSVADMVKDTVGSWMGKTQGVEGFTDSSAVGEGQRRREPGGTEAEVRMLQESAN Homology
BLAST of Tan0003898 vs. ExPASy Swiss-Prot
Match: Q04980 (Low-temperature-induced 65 kDa protein OS=Arabidopsis thaliana OX=3702 GN=LTI65 PE=2 SV=2) HSP 1 Score: 58.5 bits (140), Expect = 1.8e-07 Identity = 61/173 (35.26%), Postives = 84/173 (48.55%), Query Frame = 0
BLAST of Tan0003898 vs. NCBI nr
Match: XP_038888501.1 (low-temperature-induced 65 kDa protein isoform X1 [Benincasa hispida]) HSP 1 Score: 385.6 bits (989), Expect = 4.9e-103 Identity = 263/443 (59.37%), Postives = 303/443 (68.40%), Query Frame = 0
BLAST of Tan0003898 vs. NCBI nr
Match: XP_011652891.1 (low-temperature-induced 65 kDa protein isoform X2 [Cucumis sativus]) HSP 1 Score: 374.8 bits (961), Expect = 8.6e-100 Identity = 260/447 (58.17%), Postives = 297/447 (66.44%), Query Frame = 0
BLAST of Tan0003898 vs. NCBI nr
Match: XP_038888502.1 (low-temperature-induced 65 kDa protein isoform X2 [Benincasa hispida]) HSP 1 Score: 371.7 bits (953), Expect = 7.3e-99 Identity = 259/443 (58.47%), Postives = 299/443 (67.49%), Query Frame = 0
BLAST of Tan0003898 vs. NCBI nr
Match: XP_031739118.1 (low-temperature-induced 65 kDa protein isoform X1 [Cucumis sativus]) HSP 1 Score: 370.2 bits (949), Expect = 2.1e-98 Identity = 258/450 (57.33%), Postives = 295/450 (65.56%), Query Frame = 0
BLAST of Tan0003898 vs. NCBI nr
Match: XP_008465872.2 (PREDICTED: low-temperature-induced 65 kDa protein [Cucumis melo]) HSP 1 Score: 360.9 bits (925), Expect = 1.3e-95 Identity = 254/444 (57.21%), Postives = 287/444 (64.64%), Query Frame = 0
BLAST of Tan0003898 vs. ExPASy TrEMBL
Match: A0A1S3CPX7 (low-temperature-induced 65 kDa protein OS=Cucumis melo OX=3656 GN=LOC103503460 PE=4 SV=1) HSP 1 Score: 360.9 bits (925), Expect = 6.2e-96 Identity = 254/444 (57.21%), Postives = 287/444 (64.64%), Query Frame = 0
BLAST of Tan0003898 vs. ExPASy TrEMBL
Match: A0A6J1DNM6 (low-temperature-induced 65 kDa protein-like OS=Momordica charantia OX=3673 GN=LOC111022758 PE=4 SV=1) HSP 1 Score: 337.8 bits (865), Expect = 5.6e-89 Identity = 229/398 (57.54%), Postives = 266/398 (66.83%), Query Frame = 0
BLAST of Tan0003898 vs. ExPASy TrEMBL
Match: A0A6J1K662 (low-temperature-induced 65 kDa protein OS=Cucurbita maxima OX=3661 GN=LOC111491512 PE=4 SV=1) HSP 1 Score: 320.1 bits (819), Expect = 1.2e-83 Identity = 212/370 (57.30%), Postives = 245/370 (66.22%), Query Frame = 0
BLAST of Tan0003898 vs. ExPASy TrEMBL
Match: A0A6J1H2H6 (LOW QUALITY PROTEIN: low-temperature-induced 65 kDa protein-like OS=Cucurbita moschata OX=3662 GN=LOC111459097 PE=4 SV=1) HSP 1 Score: 313.2 bits (801), Expect = 1.5e-81 Identity = 215/380 (56.58%), Postives = 248/380 (65.26%), Query Frame = 0
BLAST of Tan0003898 vs. ExPASy TrEMBL
Match: A0A6J1GLA2 (low-temperature-induced 78 kDa protein-like OS=Cucurbita moschata OX=3662 GN=LOC111455302 PE=4 SV=1) HSP 1 Score: 298.1 bits (762), Expect = 5.0e-77 Identity = 209/372 (56.18%), Postives = 242/372 (65.05%), Query Frame = 0
BLAST of Tan0003898 vs. TAIR 10
Match: AT5G52300.1 (CAP160 protein ) HSP 1 Score: 58.5 bits (140), Expect = 1.3e-08 Identity = 61/173 (35.26%), Postives = 84/173 (48.55%), Query Frame = 0
BLAST of Tan0003898 vs. TAIR 10
Match: AT4G25580.1 (CAP160 protein ) HSP 1 Score: 57.0 bits (136), Expect = 3.7e-08 Identity = 73/247 (29.55%), Postives = 104/247 (42.11%), Query Frame = 0
HSP 2 Score: 44.7 bits (104), Expect = 1.9e-04 Identity = 41/93 (44.09%), Postives = 55/93 (59.14%), Query Frame = 0
BLAST of Tan0003898 vs. TAIR 10
Match: AT5G52300.2 (CAP160 protein ) HSP 1 Score: 57.0 bits (136), Expect = 3.7e-08 Identity = 60/172 (34.88%), Postives = 83/172 (48.26%), 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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