Tan0005970 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AAAATGAGAGAGATTATAGGAAAAAAAATGCCCTAGAGTCTCCTTCTCCTTCATCTTTTGGGTGAGATAGACGCACGCTGCCCCCATAGGCACCATCTTCTTCGATTACTCCTTCTCCTTCTCTCACGTGTGATTGCACACCCACCAAGCCCCGTCCCCTTTCGATTTTCCTTCCCCGGCGACGGCGAGACGAGCAGCAGGGGTTCGTTCGCAACTTCTCCTTCGCCGGTGAGAGTGTTCGGACGACAGCAAGTAGCGTTCTTCCTCTGGGTATCGAGCAGTACCACACACAAGGACACATTCTCGAGCAGCTCACGACCCGTGAAGCTTTGAATCAACTAACCCATAGTCGGTGCAATCCGGTTTCGCGAAATCAAGCTCTCCCGATCCAGTTTTGAGCACCTTCGAGCAAGACCCAGATTATTTTGGTGAGTTTAACGTGGTAGAGTTTAAACCCTCTCGAATACTTTTAAGTGTAGTAATGTAGGTTCTAATCGGTAGGAGCTTTCAGGTTTCAGTTTTAGGCCAATTTGATCCCTCACGAACACACACCAGCATCAATCAGATTTGTCTGGAGTTGTGCTGCAAGTTGTGTAAGCTTTCATACTCTTTCAAACTCAGATTAAGTGTTTAGAATAACCTTTACATATTTGAAGTGTGCTGTTTGTAGCTTCCAACGCACTCGAAATCATTTCGGCTCGTGACCCACTCTTCAAGCGGCCTCAAAACAATTCACCCATGGACCAGGGAGTTTGAAATTGCAAAGCCGAGCTCCCTCGAACACCAACAAGCTGCAGTTTGTGATTGATTGGAGTAAATTAGTAAGTTTCAGCAAGCTGTAATCCTTTTGGAGCTCAAATAGGATGCCTTCAATTTATCTCTAATTCTTGTAAACTTACGTTCGTAGATTGAACTTAGCTTGGAGTGTTCAAGTAAGATTCAAAGCTCTTTTTAGGTAAGAAAACCCTCAATCTAGGACTTTGCATTGCTTTCTAACTTCTAAACTTTTAACTTGTTTGGGAATATCATGGACAATCGTAGAAACGTTATAGGTCAGTAGAATTCTATTTGTGTTGTTTGCTTATTTGTGAGCATGTTGCATGCTTTATTTGCTTTATTATGAATTATTGAATGAGTTATATTACTCTTTCATATATTTTGTACTTGTTGAACATGCTTTTGTGAACATGTTGTTGAACAAAATGTCATGGTGGTTGTGGTTTCATGTTTGATGAGCATGCTATTGATTTGTGCTATGATCTTGTGATATTGAGCTATCGAGTTTTTGAGCATGTTGCAGTGTTGAAATTGTCTAATAAGCATGTTGGTTGTATGCTGAGCACGTTTATGAGTCTAGCACAATGTGTTTTTATGTGGGTTCAACATAAAGCATGAGTTGGAAACTTGTCTAGGACTCATGCATTCTAGTGAGAAAGAGGTATGAAGACCGTGGTTAGAAAGAATAGTTGGGTGAATATTAGGTGCCTCGGTTAAGCGATTAAAGGGTGATATGTCACTAGGGAATTTAAAAGTAGCATCGATGACATTGTCTTCAGATAGTTAGGATCGGTGTGCTGAGTCCAGAAGGACAAGTGTCTGAGATTCTTGAGAACGTTGATGACCTTTGATGAAAATTCAGTTGGGGTCGGCGGAGAGCGTTGGTGGTCCTAGATACCATTAATTGGGTTGATAGAGAGCGTCGGTGGCCCTGGATGCATAGTTGGGGCCGATAGATAATGTCGGTGGCCCTGATTAAAATCAATGAGGATCAACGTGTCTCGGGGTCAATATGAGAAACTTGTTTAGGACTCGTGCATTCTAGTGAGAAAGAGGTATGAGGAGTCGAGGACCGTGTGTAGAAAGAATAGTTGGGTGAATATCAGACGCCTCGGTCAAGTGATTGAGGGGTGGTATGTCACTAGTGGATTTAAAAGTAGCATCGATGACCTTATCTTTAGATAGTTAGGGTTGGTGTGCTGAGTCCAAAATGACAAGTGTATGAGATTATTGAGAACGTTGATGGTTGTTGATGAAAACTCAGTTAGGGCCGACGGAGAGCGTTGGTAGACCTGTATGCATAGTTGGGGTTGACAGAGAATGTCAATGGCCCTGGATGCAAATAGTTGGGGCCGCCAGAGAATCAGTGGCCTTAGATGCAAATAGTTGGGGCCAACAGAGAATGTCAGTGACCCTGAACAAAATCAATAAGGATCCACAAAATCAATAAGGATCAACGTGTCTCGAAAGTGTCAGCATTAAAAAGCCTGTGCTGGTATAGTATGAGCATTGGGTGAGCTCGAGTTTTGAGATTAGACGAGTTGACTTTACATGAGATGTTGATTCATGGGTCTGGCATGTTGTGAATTCTATTTACTTCCCATGTATGATGAGCATGTCTAATTTCGTAATTGTTGTGTATAACACGATGTTTGCTTTGTATGCTGGTTGGTGGCTCCTCAAGTGTGAGCTACTTACCAGTATGTGTTATGTACTGACCCACCCACAGATTTTGCAGGTGATAATGAATATTACGATCCTGGTGATGTTGGAGAGGAGACATGAGAAGAAAGTTTATAATTAGTTATTTATTTAGTATTCATTTTCATTAGGTTAGCTTAGTTGGATTTCTTTTTGTAGTCAGCCATGTTATGTTACATACTAGTTATGGTAGTCTTTACATCTTATTTGGTCACGCTAGTTCATTTTTGTAGTGGCTTCTAGTTTGTAAAATTGGCATCGTTATTTATCTCCTTTTGGTTAGAGTTGTTCTCAGGGTTGTTTACCTATGAAGGTTTATGTTATCCTTAGTTGAGTTGTTTTATGTTTTGTTCGGTTGAAAAAACCATAATAGACTAGCAAGGTTTTTTTATCTTTTAGGCCTGGATTGCTTGAAGTTATTGAGGGAGTCTGGTTTTGTTGTGATTTGAGTTGCTGAGTGGTTCTGAAATCCTTGATAGTTAATGGGGTGGAGTTGCAATGATAATTTGGTGATTTTGATTATAGAAGTGTGTTTTATTATTTGACAGGTACTAGAGAAATTTCGGTTAAGTCATAGTCACGTCGTGATGTTGTCGAAATTTTCGGGGCATAGGTCATAAGTTGAGTAATGTCCTTAAATTAAGTTTAAATTTTGGAGACGTTACAGTTGGTATCAGAGTGGAGTTGTTCCTGTAGACTAACCTAGAAAAACTAGGTTGTTAAGATAGTTTGGTGCTAATGGTTCTTCTCATTCTCCTCTTCATCACTAGGCATGTTGGCTTACTTTTGATTTAATAGTTGACTTACTTGGATGGGCTGTTTTGTCTTGCATATTGGTTGAAGCTTGCTTACTATGATAATGTTCTAATTGAGTTTGATTGCCCTTTTCTTTCATCTCCCCTAAACTCTCTCTTACTTTTGACAGCAATGGCGGGAGGTAAGATGAAAAGGGAGAAGCCAAAGATATCAGCGAAGAGTACACCGTATCAAGGAGGGATTTCGTTCCATAAATCCAAGGGTCAACATATTCTTAAGAATCCCTTGTTGGTCGACTCTATTGTTCAAAAATCTGGAATTCAGAGCACCGATGTGATCCTCGAAATTGGTCCCGGTACTGGCAATCTCACCAAGAAGCTTCTAGAATGTGGTAAGATGGTTATTGCAGTCGAGCTCGATCCTCGTATGGTTCTCGAGTTGCAGAGGCGGTTTCAGGACACTCCCTATTCTTCTCGCTTGAAGGTGGGTTTTCCTTTACTTTAATGCTTTAGCCTTTTTTTAGCAATTGGGTTTCCAATAATTGAAGTTCATTACTTCTTTTTTTGTTTTTATCCATCTGCTTTTTATCAATTGGGATTTGTTTGTTGAAGACTCTGCTCATTGCTATTCTGGCTATCACACCCATTTTATTAGAAGAAAAATAAATCTCATTTAACCTTTCCCTTTTGTAGTAGGCAAAATAATGGGGGAGGGAGAAGTATCTCTATCTTCTTCCGCTAGTTTTTCTTAATTATTACTTTCTGAACTACAGATAAAGAAAATATTCCCTTCCATAATCTATCAACTTTATGAGAGAGCCCATTTGATTGGTTATTTCCTATCAAATTTATCTCAACAACTGTTTGAATGAATCAAGAGTATTTTGTGCTGGTTAAGAAGTGAATCTATGTTGGGCTTCTTAATTGATTGTTAATTTGAATTTCTCTAATAATTGACTAGTTCTTCAACTTGATGCACTCAGGTTATTCAAGGAGATGTACTCAAGACTGAGCTTCCCTATTTTGATATATGTGTAGCAAATATTCCTTATCAAATATCATCTCCTCTCACATTCAAGTTGCTAAATCATCAACCGTCTTTTCGATGCGCGATCATAATGTTCCAGAGGGAATTTGCAATGAGGCTAGTTGCACAACCTGGGGACAAACTTTACTGTCGTTTGACTGTAAACACCCAACTCCTAGCTCGAGTATCTCACCTTCTGAAAGTTGGGAAGAACAATTTTCGTCCTCCACCAAAGGTGGACTCGTCTGTAGTTCGAATTGAGCCAAGGAAACCGCGAATTGAAGTGAAGCAAAAGGAGTGGGATGGATTTTTGAGAATCTGTTTCAATAGAAAGAACAAAACTCTTGGTTCAATTTTTAGGCAGAAGAGTGTTCTTTCTTTGCTAGAGAAGAACTACAAAACATTGTGTGCACTTAATCTCCCTCGGCAAGGTTCTACAGATAAGGAGGATGTTGGTGGTTTTGATTATTCGAGATTTGACGATTCAAATGAGGATCAAACCATGGAAGTGGATGACGATGGAGTTGACGAGGAGATGGATATGGACGATAATGATGCGGAAGGTGGGGAAGGGGAGGCTTCTGAATTTAAGGATAAGGTCTCGTGTGTTTTGAAGGAGGGAGATTTTGAAGAAAAGAGGTCGTCTAAACTCACGTTACAGGAGTTCTTATACCTTCTCTCTTTGTTCAACAAAGCTGGCATACATTTTTCTTGATCTTGTTCTGTTCTTCCTCCCAATACTCAATTTTGTCTCTCCCATGTCTGATCCCCTTTTTCTTCCCCCTAAAGTAGTAAAGTTATACCCAATTTTGTACTTTTTTTTTCTTGATTCTCTCTGACTTGCAATTGAAATGCCATTCTTTA AAAATGAGAGAGATTATAGGAAAAAAAATGCCCTAGAGTCTCCTTCTCCTTCATCTTTTGGGTGAGATAGACGCACGCTGCCCCCATAGGCACCATCTTCTTCGATTACTCCTTCTCCTTCTCTCACGTGTGATTGCACACCCACCAAGCCCCGTCCCCTTTCGATTTTCCTTCCCCGGCGACGGCGAGACGAGCAGCAGGGGTTCGTTCGCAACTTCTCCTTCGCCGGTGAGAGTGTTCGGACGACAGCAAGTAGCGTTCTTCCTCTGGGTATCGAGCAGTACCACACACAAGGACACATTCTCGAGCAGCTCACGACCCGTGAAGCTTTGAATCAACTAACCCATAGTCGGTGCAATCCGGTTTCGCGAAATCAAGCTCTCCCGATCCAGTTTTGAGCACCTTCGAGCAAGACCCAGATTATTTTGGTTTCAGTTTTAGGCCAATTTGATCCCTCACGAACACACACCAGCATCAATCAGATTTGTCTGGAGTTGTGCTGCAAGTTGTCTTCCAACGCACTCGAAATCATTTCGGCTCGTGACCCACTCTTCAAGCGGCCTCAAAACAATTCACCCATGGACCAGGGAGTTTGAAATTGCAAAGCCGAGCTCCCTCGAACACCAACAAGCTGCAGTTTGTGATTGATTGGAGTAAATTAATTGAACTTAGCTTGGAGTGTTCAAGTAAGATTCAAAGCTCTTTTTAGCAATGGCGGGAGGTAAGATGAAAAGGGAGAAGCCAAAGATATCAGCGAAGAGTACACCGTATCAAGGAGGGATTTCGTTCCATAAATCCAAGGGTCAACATATTCTTAAGAATCCCTTGTTGGTCGACTCTATTGTTCAAAAATCTGGAATTCAGAGCACCGATGTGATCCTCGAAATTGGTCCCGGTACTGGCAATCTCACCAAGAAGCTTCTAGAATGTGGTAAGATGGTTATTGCAGTCGAGCTCGATCCTCGTATGGTTCTCGAGTTGCAGAGGCGGTTTCAGGACACTCCCTATTCTTCTCGCTTGAAGGTTATTCAAGGAGATGTACTCAAGACTGAGCTTCCCTATTTTGATATATGTGTAGCAAATATTCCTTATCAAATATCATCTCCTCTCACATTCAAGTTGCTAAATCATCAACCGTCTTTTCGATGCGCGATCATAATGTTCCAGAGGGAATTTGCAATGAGGCTAGTTGCACAACCTGGGGACAAACTTTACTGTCGTTTGACTGTAAACACCCAACTCCTAGCTCGAGTATCTCACCTTCTGAAAGTTGGGAAGAACAATTTTCGTCCTCCACCAAAGGTGGACTCGTCTGTAGTTCGAATTGAGCCAAGGAAACCGCGAATTGAAGTGAAGCAAAAGGAGTGGGATGGATTTTTGAGAATCTGTTTCAATAGAAAGAACAAAACTCTTGGTTCAATTTTTAGGCAGAAGAGTGTTCTTTCTTTGCTAGAGAAGAACTACAAAACATTGTGTGCACTTAATCTCCCTCGGCAAGGTTCTACAGATAAGGAGGATGTTGGTGGTTTTGATTATTCGAGATTTGACGATTCAAATGAGGATCAAACCATGGAAGTGGATGACGATGGAGTTGACGAGGAGATGGATATGGACGATAATGATGCGGAAGGTGGGGAAGGGGAGGCTTCTGAATTTAAGGATAAGGTCTCGTGTGTTTTGAAGGAGGGAGATTTTGAAGAAAAGAGGTCGTCTAAACTCACGTTACAGGAGTTCTTATACCTTCTCTCTTTGTTCAACAAAGCTGGCATACATTTTTCTTGATCTTGTTCTGTTCTTCCTCCCAATACTCAATTTTGTCTCTCCCATGTCTGATCCCCTTTTTCTTCCCCCTAAAGTAGTAAAGTTATACCCAATTTTGTACTTTTTTTTTCTTGATTCTCTCTGACTTGCAATTGAAATGCCATTCTTTA ATGGCGGGAGGTAAGATGAAAAGGGAGAAGCCAAAGATATCAGCGAAGAGTACACCGTATCAAGGAGGGATTTCGTTCCATAAATCCAAGGGTCAACATATTCTTAAGAATCCCTTGTTGGTCGACTCTATTGTTCAAAAATCTGGAATTCAGAGCACCGATGTGATCCTCGAAATTGGTCCCGGTACTGGCAATCTCACCAAGAAGCTTCTAGAATGTGGTAAGATGGTTATTGCAGTCGAGCTCGATCCTCGTATGGTTCTCGAGTTGCAGAGGCGGTTTCAGGACACTCCCTATTCTTCTCGCTTGAAGGTTATTCAAGGAGATGTACTCAAGACTGAGCTTCCCTATTTTGATATATGTGTAGCAAATATTCCTTATCAAATATCATCTCCTCTCACATTCAAGTTGCTAAATCATCAACCGTCTTTTCGATGCGCGATCATAATGTTCCAGAGGGAATTTGCAATGAGGCTAGTTGCACAACCTGGGGACAAACTTTACTGTCGTTTGACTGTAAACACCCAACTCCTAGCTCGAGTATCTCACCTTCTGAAAGTTGGGAAGAACAATTTTCGTCCTCCACCAAAGGTGGACTCGTCTGTAGTTCGAATTGAGCCAAGGAAACCGCGAATTGAAGTGAAGCAAAAGGAGTGGGATGGATTTTTGAGAATCTGTTTCAATAGAAAGAACAAAACTCTTGGTTCAATTTTTAGGCAGAAGAGTGTTCTTTCTTTGCTAGAGAAGAACTACAAAACATTGTGTGCACTTAATCTCCCTCGGCAAGGTTCTACAGATAAGGAGGATGTTGGTGGTTTTGATTATTCGAGATTTGACGATTCAAATGAGGATCAAACCATGGAAGTGGATGACGATGGAGTTGACGAGGAGATGGATATGGACGATAATGATGCGGAAGGTGGGGAAGGGGAGGCTTCTGAATTTAAGGATAAGGTCTCGTGTGTTTTGAAGGAGGGAGATTTTGAAGAAAAGAGGTCGTCTAAACTCACGTTACAGGAGTTCTTATACCTTCTCTCTTTGTTCAACAAAGCTGGCATACATTTTTCTTGA MAGGKMKREKPKISAKSTPYQGGISFHKSKGQHILKNPLLVDSIVQKSGIQSTDVILEIGPGTGNLTKKLLECGKMVIAVELDPRMVLELQRRFQDTPYSSRLKVIQGDVLKTELPYFDICVANIPYQISSPLTFKLLNHQPSFRCAIIMFQREFAMRLVAQPGDKLYCRLTVNTQLLARVSHLLKVGKNNFRPPPKVDSSVVRIEPRKPRIEVKQKEWDGFLRICFNRKNKTLGSIFRQKSVLSLLEKNYKTLCALNLPRQGSTDKEDVGGFDYSRFDDSNEDQTMEVDDDGVDEEMDMDDNDAEGGEGEASEFKDKVSCVLKEGDFEEKRSSKLTLQEFLYLLSLFNKAGIHFS Homology
BLAST of Tan0005970 vs. ExPASy Swiss-Prot
Match: O22268 (Ribosomal RNA small subunit methyltransferase OS=Arabidopsis thaliana OX=3702 GN=DIM1A PE=1 SV=1) HSP 1 Score: 504.6 bits (1298), Expect = 9.2e-142 Identity = 269/358 (75.14%), Postives = 304/358 (84.92%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy Swiss-Prot
Match: Q54QK7 (Probable dimethyladenosine transferase OS=Dictyostelium discoideum OX=44689 GN=dimt1 PE=3 SV=1) HSP 1 Score: 342.0 bits (876), Expect = 7.9e-93 Identity = 179/351 (51.00%), Postives = 236/351 (67.24%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy Swiss-Prot
Match: Q9D0D4 (Probable dimethyladenosine transferase OS=Mus musculus OX=10090 GN=Dimt1 PE=2 SV=1) HSP 1 Score: 340.9 bits (873), Expect = 1.8e-92 Identity = 174/335 (51.94%), Postives = 223/335 (66.57%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy Swiss-Prot
Match: Q9UNQ2 (Probable dimethyladenosine transferase OS=Homo sapiens OX=9606 GN=DIMT1 PE=1 SV=1) HSP 1 Score: 338.2 bits (866), Expect = 1.1e-91 Identity = 176/354 (49.72%), Postives = 232/354 (65.54%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy Swiss-Prot
Match: Q2KHT8 (Probable dimethyladenosine transferase OS=Bos taurus OX=9913 GN=DIMT1 PE=2 SV=1) HSP 1 Score: 337.4 bits (864), Expect = 1.9e-91 Identity = 176/355 (49.58%), Postives = 233/355 (65.63%), Query Frame = 0
BLAST of Tan0005970 vs. NCBI nr
Match: XP_023525787.1 (ribosomal RNA small subunit methyltransferase [Cucurbita pepo subsp. pepo]) HSP 1 Score: 661.4 bits (1705), Expect = 4.5e-186 Identity = 337/356 (94.66%), Postives = 347/356 (97.47%), Query Frame = 0
BLAST of Tan0005970 vs. NCBI nr
Match: XP_022998306.1 (ribosomal RNA small subunit methyltransferase [Cucurbita maxima]) HSP 1 Score: 659.8 bits (1701), Expect = 1.3e-185 Identity = 336/356 (94.38%), Postives = 346/356 (97.19%), Query Frame = 0
BLAST of Tan0005970 vs. NCBI nr
Match: KAG6606941.1 (Ribosomal RNA small subunit methyltransferase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 657.9 bits (1696), Expect = 4.9e-185 Identity = 335/356 (94.10%), Postives = 346/356 (97.19%), Query Frame = 0
BLAST of Tan0005970 vs. NCBI nr
Match: XP_022155324.1 (ribosomal RNA small subunit methyltransferase [Momordica charantia]) HSP 1 Score: 657.9 bits (1696), Expect = 4.9e-185 Identity = 336/356 (94.38%), Postives = 345/356 (96.91%), Query Frame = 0
BLAST of Tan0005970 vs. NCBI nr
Match: XP_022949401.1 (ribosomal RNA small subunit methyltransferase [Cucurbita moschata]) HSP 1 Score: 656.8 bits (1693), Expect = 1.1e-184 Identity = 334/356 (93.82%), Postives = 346/356 (97.19%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy TrEMBL
Match: A0A6J1K9W6 (rRNA adenine N(6)-methyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111492981 PE=3 SV=1) HSP 1 Score: 659.8 bits (1701), Expect = 6.3e-186 Identity = 336/356 (94.38%), Postives = 346/356 (97.19%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy TrEMBL
Match: A0A6J1DPX6 (rRNA adenine N(6)-methyltransferase OS=Momordica charantia OX=3673 GN=LOC111022457 PE=3 SV=1) HSP 1 Score: 657.9 bits (1696), Expect = 2.4e-185 Identity = 336/356 (94.38%), Postives = 345/356 (96.91%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy TrEMBL
Match: A0A6J1GBX4 (rRNA adenine N(6)-methyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111452763 PE=3 SV=1) HSP 1 Score: 656.8 bits (1693), Expect = 5.3e-185 Identity = 334/356 (93.82%), Postives = 346/356 (97.19%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy TrEMBL
Match: A0A5A7T0N9 (rRNA adenine N(6)-methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1228G00080 PE=3 SV=1) HSP 1 Score: 619.4 bits (1596), Expect = 9.4e-174 Identity = 324/357 (90.76%), Postives = 336/357 (94.12%), Query Frame = 0
BLAST of Tan0005970 vs. ExPASy TrEMBL
Match: A0A1S3B8X1 (rRNA adenine N(6)-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103487290 PE=3 SV=1) HSP 1 Score: 619.4 bits (1596), Expect = 9.4e-174 Identity = 324/357 (90.76%), Postives = 336/357 (94.12%), Query Frame = 0
BLAST of Tan0005970 vs. TAIR 10
Match: AT2G47420.1 (Ribosomal RNA adenine dimethylase family protein ) HSP 1 Score: 504.6 bits (1298), Expect = 6.5e-143 Identity = 269/358 (75.14%), Postives = 304/358 (84.92%), Query Frame = 0
BLAST of Tan0005970 vs. TAIR 10
Match: AT5G66360.2 (Ribosomal RNA adenine dimethylase family protein ) HSP 1 Score: 275.4 bits (703), Expect = 6.4e-74 Identity = 158/333 (47.45%), Postives = 215/333 (64.56%), Query Frame = 0
BLAST of Tan0005970 vs. TAIR 10
Match: AT5G66360.1 (Ribosomal RNA adenine dimethylase family protein ) HSP 1 Score: 231.1 bits (588), Expect = 1.4e-60 Identity = 143/333 (42.94%), Postives = 196/333 (58.86%), Query Frame = 0
BLAST of Tan0005970 vs. TAIR 10
Match: AT1G01860.1 (Ribosomal RNA adenine dimethylase family protein ) HSP 1 Score: 96.7 bits (239), Expect = 4.1e-20 Identity = 72/244 (29.51%), Postives = 114/244 (46.72%), 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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