Tan0013829 (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.ATGGGCCTAGATTTCAACATGGGTTGTGAAACAAATGAGAAGCAGCAAGCTCCTAGCTCCGGATCCAAAACTAAATTAAGCCTCCAAAAGAAGAATAAACCAATTGACGGAGAGATGGGCCACAAAAATCACAAAAAGATTTCAGGAAAGAAGCACTTGCTGGAAACCAACACTGAAGCCCAATCAAATAAAAAAGCACGAGCTTCTGAAGGCTCGCTCGAAAACAGGGAAGTTATTAATTCGATGGAAAATGTTCCTATTGTATTGGCGGAGGCTGCAGTGCAGCCCCGTCATCATCCATGAGTTTTTTATGTTGGAATGTTCGAGGATTGGGGCACCCTCGCACATTCCGCGCCTTATGCCATATAGTGCAAAGGCTAAAGCCTCATATTGTGTTTCTTTCTGAGTCTAAATCATGCTCTAGTAAGAATGATCAAATAAAAATGAAGTTACATTTTGACTATTGCTTCTCGGTTCCTAGTATTGACAAAAGTGGTGGACTATTACTTTTATGGAATAAAGAAACTGATCTCAAAATAACTTCCTTTTCTGCAGGACACATCGATTCAATTATCTTAGATAAAAGTGGCAATAGCATGGCGGTTCATGAGTTTCTACATGGAAATCCACGGAAAGAGCAACGCAAACACTCCTGGGAATTATTAAAACGTTTACATAGACAATTTGATTTACCGTGGGTTATTGGCGGGGATTTTAATGAGATTCTTGCTGACAATGAAAAACAAGGAGGAGCTTTAAGGAGAGAGGCTCAGATGGATGATTTTAGAGAGGTGTTGGATGAATGCAACTTGATGGACCCGGGGTATCAAGGTCATGATTTCACTTGGATCAGAAAGGTAAACAATGGTCCAACAACGTGGGAACGTTTGGATTGTTTCCTTCTGAACATAGGTTATTTTACTAAATGGAGCCAGTTTCAGGTTATTCACTTAGGTTTTTATTCATCAGACCATAGACCAATTTTTGGATATCATACAGGGGAACCTAAGTCTAACACCAAATATGAAAAAGGCCTCATAAGATTCGAACCTGGTTGGATAAAAAACTCAGAAGCCAAAGAAATTGTGGCTAGGATGTGGCAAAATAATAGACCACCAACATCGAATAATCTCCAGGACCACCTGATTCAGTGCTTAACAGAATTAAAACGATGGAATCAGCGTCGTATAGGTGGATCAATCCGAGGGGCCATCCAAAAGAAGGAGGCAGAAATAAAAATTTTAGAAAGTGATTTAACACAGGAGAAAGAAGAGATCTGGAAACGTAAAATGACAGAATTGGAGGACTTACTTGAAGAAGATAATACTTATTGGCGTCAAAGATCAAGGGAAGAATGGTTACAATGGGGAGATCGCAACACAAAATGGTTTCACATTAGAGCGACGACCCGACGGAAGAAAAATCTCATCAAAGGTATTTTCAATAGTTCTGGTGACTGGATCACAAATGAAGAGGAACTGGGTAGGTTGGCAACCTCACATTTTGCCAAACTGTTCAGGTCAAACTCGCCCGATTCCACGGCAATTGAAGAGGTTATCGAGAGTATTCCCCAAAGGATCTCAGAAGAAACTAACAATGGACTCTTAAGAGACTTCACAAGGGAGGAAATTGAAAATGTTATAAAAAACATAAGTCCATTTAAGGCCCCTGGGCCAGATGGAATTCATGCTGGTTTTTACCAAGAATATTGGGATATAGTTGGAGAGGACATCACAAATATATGCTTAAATTCGCTAAACAGATTAGGTGACCTGAGGAGACTGAACCAAACATTGCTAGCTCTAATCCCCAAGAAAGCTAATCCAGACAAACTAGAGGATTTCCGTCCAATCAGTCTTTGTAATGTGGTCTACAAGATTATAGCTAAGTGCTTAACAAATAGACTGAAAAAAGTTTTAGATCAGGTGATCTCTCCAGAACAATCAGCTTTCATCCCAAACAGAACGATCACGGACAACGCCCTTATTGGTTTTGAATGTCTTCATGCAATAAATAATAAACGCAATGGAAAAATGGGCTCAGTAGCAATGAAACTTGACATGAGTAAAGCTTATGACAGAGTAGAGTGGAGTTACCTCCGACGAGTTATGCTAAAAATGGGTTTCCACTCTCTTTGGGTGAAAAAGATTATGAATTGCGTTGAATCACATCGGTTTCTCGATCCTTTTAATGGCAAGCCCAGGACATTTTCCTCCCCAAGCGGGGTTTGAGACAGGGAGACCCTCTATCCCCTTACTTATTCATTATTTGTGCTGAAGGCTTTTCTGCGTTGCTTCATAAAGAACAAAATTTAAATAATTTCTCTGGCTTGAAAATTAATCGTTTCTGCCCTATAATATCTCATCTTTTCTATGCAGATGACAGCATAATCTTCTTCAGGGCCAAACTTCAAGACATTCGAACAATCAAAGAGATTTTGAACATATACGAACGAGCATCTGGACAGATAATAAATTATGACAAATCAGCTTTTATGGTCAGCAAGAACACAAATATGAACATAATAGAGTTGATTAAACAACTCCTTAATGTTCGGCAGACAGAGTCGTTGGGATGTTACTTAGGCCTACCTTCCCAGAACTCTAAAAACAAAACCCAAGTCTTCAGGTCAATTAAAGACCGGATGTGGAAGGTTTTGCGGGGTTGGCAAGGCAAACTATTTTCAAGTGGCGGAAAGGAAGTGCTTATAAAGACGGTGGCCCAGGCCATTCCGGTCTATACAATGAGCTGTTTTCGGTTGCCAAAAAGTCTTTGCACAAAATTGAATGCAATGTGCGCCAATTTTTGGTGGGGCTCAAATGAGAAAGGCCGGAAAATTCACTGGCAACGCTGGGATCGACTTTGCCTCCCAAGAGATGAAGGAGGTATGGGCTTCAGAGATATCTCCTTATTTAACCAGGCTATGTTAGCCAAACAAAGTTGGCGACTGCTACGACAACCAGATAGCTTACTTTATCGAATTCTCCGTGGCCGTTATTTTCAGACAGGGAATTTTCTAAAAGCAACACTCGGATCTAATCCATCCTACACTTGGCGAAGCATATTGTGGGGACGAGAGCTTTTTAAGAAAGGATACAGATGGAAAATCGGAAACGGCTGTCAAGTAAGTATAATGAATGACCCCTGGTTCACAACTGAAGGTCAGGAGCATCCCTTGGAAGTTAACCCTGATCTAGCCCAAAACTCAGTCCATTCTATTTTGAAGGAGGATGGGACATGGGATATGGAAAGGATTCAAAGAAATTTTTCTAGGGACGACGCCCTCCACATACTTCAGATTCCTCGAACTGGATCTCGTATGAATGATGAAATAGTATGGAAACATAACAATCGGGAATCTTTATGATCAAAAGTGCGATCGACTAGGCATTAAGTACCGATGTCATCTAGATGCCTCAAGCTCTGATAATGAGAAAGTCAGGGGGTTCTGGAAAAAGATATGGGAGACAACGATTCCAAGAAAAATTAAGATTTGTGCCTGGAAAATTATCCAGAACGCTCTCCCAACAAAGGACACCCATCGCGGAGGGAATGAAATGTCACCCGGTGTCCGATGTGCAAATCACACCCCGAATCTATTCGCCATGTGTTCTGGGGCTGTAAGGTAACTCGAAAATTTTGGCGTTTTTTCTTACCCTCTCACGGAGATACTTTTTATGATTTCAGGAAATCCTGGGGCGCGTACGACTATTTTTGGTGGATAATGGACCGTGGCAATAAGGAGGAACTCCATGTTTTCATAATAATTTTGTGGAAAATTTGGAATAACAGAAATGACACTGTATCTGATGTGAATACCGATACTGATTGGGATAGATGGAGAAGAACCACACAAATGACCATTAATGAGTTAACTCAGAACCCCATCAGTCGAGCCCGTGTTCGACTAGGAAGTCAAAATATCCCTCAACAATGGAGCCCTCCCACTCAGGGTTGGTGGAGCCTTTGTACGGATGCGTCCTGGAGTGACGAATTGAATAGTGGAGGTATTGGTTGGATGGTACGAAACTGGGAAGGTCATGTGATCTGTGCAGGACATTCTTGCATTAACACTTACTGGCCTATTTTGGTTATGGAATTATTTGGGATAATTAAAGGAATGAGATCGATTACGGATAAAGGTATTCCCTTGATGGTGGAATCGGATTCGCTCGAAGCCATACTTTTGATAGAAGGAAAAATTGAAGATTGCACAGAAGCACGAGATTTCACAGATATAATTCACAACATGCGAGAGGACTGGAATGACATCATGTTCCGGCACATCCCTCGATCATCGAACCAAGAAGCTCACAAGCTCGCACAGAGAGCATCTCATCTTCAACAAGACGAAATTTGGTCGGGGGAGTCTTTTGGACTCCATTACTTTATTAGTTAA ATGGGCCTAGATTTCAACATGGGTTGTGAAACAAATGAGAAGCAGCAAGCTCCTAGCTCCGGATCCAAAACTAAATTAAGCCTCCAAAAGAAGAATAAACCAATTGACGGAGAGATGGGCCACAAAAATCACAAAAAGATTTCAGGAAAGAAGCACTTGCTGGAAACCAACACTGAAGCCCAATCAAATAAAAAAGCACGAGCTTCTGAAGGCTCGCTCGAAAACAGGGAAGTTATTAATTCGATGGAAAATATGGATGATTTTAGAGAGGTGTTGGATGAATGCAACTTGATGGACCCGGGGTATCAAGGTCATGATTTCACTTGGATCAGAAAGGTAAACAATGGTCCAACAACGTGGGAACGTTTGGATTGTTTCCTTCTGAACATAGGTTATTTTACTAAATGGAGCCAGTTTCAGGTTATTCACTTAGGTTTTTATTCATCAGACCATAGACCAATTTTTGGATATCATACAGGGGAACCTAAGTCTAACACCAAATATGAAAAAGGCCTCATAAGATTCGAACCTGGTTGGATAAAAAACTCAGAAGCCAAAGAAATTGTGTGCTTAACAGAATTAAAACGATGGAATCAGCGTCGTATAGGTGGATCAATCCGAGGGGCCATCCAAAAGAAGGAGGCAGAAATAAAAATTTTAGAAAGTGATTTAACACAGGAGAAAGAAGAGATCTGGAAACGTAAAATGACAGAATTGGAGGACTTACTTGAAGAAGATAATACTTATTGGCGTCAAAGATCAAGGGAAGAATGGTTACAATGGGGAGATCGCAACACAAAATGGTTTCACATTAGAGCGACGACCCGACGGAAGAAAAATCTCATCAAAGGTATTTTCAATAGTTCTGGTGACTGGATCACAAATGAAGAGGAACTGGGTAGGTTGGCAACCTCACATTTTGCCAAACTGTTCAGGTCAAACTCGCCCGATTCCACGGCAATTGAAGAGGTTATCGAGAATACTTTTTATGATTTCAGGAAATCCTGGGGCGCGTACGACTATTTTTGGTGGATAATGGACCGTGGCAATAAGGAGGAACTCCATGTTTTCATAATAATTTTGTGGAAAATTTGGAATAACAGAAATGACACTGTATCTGATGTGAATACCGATACTGATTGGGATAGATGGAGAAGAACCACACAAATGACCATTAATGAGTTAACTCAGAACCCCATCAGTCGAGCCCGTGTTCGACTAGGAAGTCAAAATATCCCTCAACAATGGAGCCCTCCCACTCAGGGTTGGTGGAGCCTTTGTACGGATGCGTCCTGGAGTGACGAATTGAATAGTGGAGGTATTGGTTGGATGGTACGAAACTGGGAAGGTCATGTGATCTGTGCAGGACATTCTTGCATTAACACTTACTGGCCTATTTTGGTTATGGAATTATTTGGGATAATTAAAGGAATGAGATCGATTACGGATAAAGGTATTCCCTTGATGGTGGAATCGGATTCGCTCGAAGCCATACTTTTGATAGAAGGAAAAATTGAAGATTGCACAGAAGCACGAGATTTCACAGATATAATTCACAACATGCGAGAGGACTGGAATGACATCATGTTCCGGCACATCCCTCGATCATCGAACCAAGAAGCTCACAAGCTCGCACAGAGAGCATCTCATCTTCAACAAGACGAAATTTGGTCGGGGGAGTCTTTTGGACTCCATTACTTTATTAGTTAA ATGGGCCTAGATTTCAACATGGGTTGTGAAACAAATGAGAAGCAGCAAGCTCCTAGCTCCGGATCCAAAACTAAATTAAGCCTCCAAAAGAAGAATAAACCAATTGACGGAGAGATGGGCCACAAAAATCACAAAAAGATTTCAGGAAAGAAGCACTTGCTGGAAACCAACACTGAAGCCCAATCAAATAAAAAAGCACGAGCTTCTGAAGGCTCGCTCGAAAACAGGGAAGTTATTAATTCGATGGAAAATATGGATGATTTTAGAGAGGTGTTGGATGAATGCAACTTGATGGACCCGGGGTATCAAGGTCATGATTTCACTTGGATCAGAAAGGTAAACAATGGTCCAACAACGTGGGAACGTTTGGATTGTTTCCTTCTGAACATAGGTTATTTTACTAAATGGAGCCAGTTTCAGGTTATTCACTTAGGTTTTTATTCATCAGACCATAGACCAATTTTTGGATATCATACAGGGGAACCTAAGTCTAACACCAAATATGAAAAAGGCCTCATAAGATTCGAACCTGGTTGGATAAAAAACTCAGAAGCCAAAGAAATTGTGTGCTTAACAGAATTAAAACGATGGAATCAGCGTCGTATAGGTGGATCAATCCGAGGGGCCATCCAAAAGAAGGAGGCAGAAATAAAAATTTTAGAAAGTGATTTAACACAGGAGAAAGAAGAGATCTGGAAACGTAAAATGACAGAATTGGAGGACTTACTTGAAGAAGATAATACTTATTGGCGTCAAAGATCAAGGGAAGAATGGTTACAATGGGGAGATCGCAACACAAAATGGTTTCACATTAGAGCGACGACCCGACGGAAGAAAAATCTCATCAAAGGTATTTTCAATAGTTCTGGTGACTGGATCACAAATGAAGAGGAACTGGGTAGGTTGGCAACCTCACATTTTGCCAAACTGTTCAGGTCAAACTCGCCCGATTCCACGGCAATTGAAGAGGTTATCGAGAATACTTTTTATGATTTCAGGAAATCCTGGGGCGCGTACGACTATTTTTGGTGGATAATGGACCGTGGCAATAAGGAGGAACTCCATGTTTTCATAATAATTTTGTGGAAAATTTGGAATAACAGAAATGACACTGTATCTGATGTGAATACCGATACTGATTGGGATAGATGGAGAAGAACCACACAAATGACCATTAATGAGTTAACTCAGAACCCCATCAGTCGAGCCCGTGTTCGACTAGGAAGTCAAAATATCCCTCAACAATGGAGCCCTCCCACTCAGGGTTGGTGGAGCCTTTGTACGGATGCGTCCTGGAGTGACGAATTGAATAGTGGAGGTATTGGTTGGATGGTACGAAACTGGGAAGGTCATGTGATCTGTGCAGGACATTCTTGCATTAACACTTACTGGCCTATTTTGGTTATGGAATTATTTGGGATAATTAAAGGAATGAGATCGATTACGGATAAAGGTATTCCCTTGATGGTGGAATCGGATTCGCTCGAAGCCATACTTTTGATAGAAGGAAAAATTGAAGATTGCACAGAAGCACGAGATTTCACAGATATAATTCACAACATGCGAGAGGACTGGAATGACATCATGTTCCGGCACATCCCTCGATCATCGAACCAAGAAGCTCACAAGCTCGCACAGAGAGCATCTCATCTTCAACAAGACGAAATTTGGTCGGGGGAGTCTTTTGGACTCCATTACTTTATTAGTTAA MGLDFNMGCETNEKQQAPSSGSKTKLSLQKKNKPIDGEMGHKNHKKISGKKHLLETNTEAQSNKKARASEGSLENREVINSMENMDDFREVLDECNLMDPGYQGHDFTWIRKVNNGPTTWERLDCFLLNIGYFTKWSQFQVIHLGFYSSDHRPIFGYHTGEPKSNTKYEKGLIRFEPGWIKNSEAKEIVCLTELKRWNQRRIGGSIRGAIQKKEAEIKILESDLTQEKEEIWKRKMTELEDLLEEDNTYWRQRSREEWLQWGDRNTKWFHIRATTRRKKNLIKGIFNSSGDWITNEEELGRLATSHFAKLFRSNSPDSTAIEEVIENTFYDFRKSWGAYDYFWWIMDRGNKEELHVFIIILWKIWNNRNDTVSDVNTDTDWDRWRRTTQMTINELTQNPISRARVRLGSQNIPQQWSPPTQGWWSLCTDASWSDELNSGGIGWMVRNWEGHVICAGHSCINTYWPILVMELFGIIKGMRSITDKGIPLMVESDSLEAILLIEGKIEDCTEARDFTDIIHNMREDWNDIMFRHIPRSSNQEAHKLAQRASHLQQDEIWSGESFGLHYFIS Homology
BLAST of Tan0013829 vs. NCBI nr
Match: XP_030924745.1 (uncharacterized protein LOC115951731 [Quercus lobata]) HSP 1 Score: 146.0 bits (367), Expect = 1.0e-30 Identity = 82/265 (30.94%), Postives = 137/265 (51.70%), Query Frame = 0
BLAST of Tan0013829 vs. NCBI nr
Match: XP_030923017.1 (uncharacterized protein LOC115949892 [Quercus lobata]) HSP 1 Score: 146.0 bits (367), Expect = 1.0e-30 Identity = 86/270 (31.85%), Postives = 139/270 (51.48%), Query Frame = 0
BLAST of Tan0013829 vs. NCBI nr
Match: XP_023896927.1 (uncharacterized protein LOC112008817 [Quercus suber]) HSP 1 Score: 141.4 bits (355), Expect = 2.5e-29 Identity = 79/257 (30.74%), Postives = 135/257 (52.53%), Query Frame = 0
BLAST of Tan0013829 vs. NCBI nr
Match: XP_030969743.1 (uncharacterized protein LOC115990020 [Quercus lobata]) HSP 1 Score: 139.8 bits (351), Expect = 7.2e-29 Identity = 91/298 (30.54%), Postives = 146/298 (48.99%), Query Frame = 0
BLAST of Tan0013829 vs. NCBI nr
Match: XP_023911628.1 (uncharacterized protein LOC112023240 [Quercus suber]) HSP 1 Score: 139.4 bits (350), Expect = 9.4e-29 Identity = 85/262 (32.44%), Postives = 140/262 (53.44%), Query Frame = 0
BLAST of Tan0013829 vs. ExPASy TrEMBL
Match: A0A2N9I921 (Reverse transcriptase domain-containing protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS48455 PE=4 SV=1) HSP 1 Score: 149.1 bits (375), Expect = 5.8e-32 Identity = 83/257 (32.30%), Postives = 134/257 (52.14%), Query Frame = 0
BLAST of Tan0013829 vs. ExPASy TrEMBL
Match: A0A2N9J109 (Uncharacterized protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS58001 PE=4 SV=1) HSP 1 Score: 145.6 bits (366), Expect = 6.4e-31 Identity = 86/258 (33.33%), Postives = 131/258 (50.78%), Query Frame = 0
BLAST of Tan0013829 vs. ExPASy TrEMBL
Match: A0A2N9IXK4 (RNase H domain-containing protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS57484 PE=4 SV=1) HSP 1 Score: 144.4 bits (363), Expect = 1.4e-30 Identity = 85/261 (32.57%), Postives = 126/261 (48.28%), Query Frame = 0
BLAST of Tan0013829 vs. ExPASy TrEMBL
Match: A0A2N9IIR5 (Uncharacterized protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS51703 PE=4 SV=1) HSP 1 Score: 142.5 bits (358), Expect = 5.4e-30 Identity = 85/257 (33.07%), Postives = 131/257 (50.97%), Query Frame = 0
BLAST of Tan0013829 vs. ExPASy TrEMBL
Match: A0A2N9EDY7 (Reverse transcriptase domain-containing protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS752 PE=4 SV=1) HSP 1 Score: 142.1 bits (357), Expect = 7.0e-30 Identity = 93/286 (32.52%), Postives = 147/286 (51.40%), Query Frame = 0
BLAST of Tan0013829 vs. TAIR 10
Match: AT4G29090.1 (Ribonuclease H-like superfamily protein ) HSP 1 Score: 60.1 bits (144), Expect = 6.8e-09 Identity = 47/225 (20.89%), Postives = 93/225 (41.33%), Query Frame = 0
BLAST of Tan0013829 vs. TAIR 10
Match: AT1G43760.1 (DNAse I-like superfamily protein ) HSP 1 Score: 52.8 bits (125), Expect = 1.1e-06 Identity = 57/266 (21.43%), Postives = 112/266 (42.11%), Query Frame = 0
BLAST of Tan0013829 vs. TAIR 10
Match: AT2G33160.1 (glycoside hydrolase family 28 protein / polygalacturonase (pectinase) family protein ) HSP 1 Score: 49.3 bits (116), Expect = 1.2e-05 Identity = 43/149 (28.86%), Postives = 65/149 (43.62%), Query Frame = 0
BLAST of Tan0013829 vs. TAIR 10
Match: AT5G65005.1 (Polynucleotidyl transferase, ribonuclease H-like superfamily protein ) HSP 1 Score: 43.5 bits (101), Expect = 6.6e-04 Identity = 54/218 (24.77%), Postives = 92/218 (42.20%), Query Frame = 0
BLAST of Tan0013829 vs. TAIR 10
Match: AT4G09775.1 (BEST Arabidopsis thaliana protein match is: Ribonuclease H-like superfamily protein (TAIR:AT2G02650.1); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 43.1 bits (100), Expect = 8.6e-04 Identity = 29/132 (21.97%), Postives = 58/132 (43.94%), 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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