
Tan0021740 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTGAACTGTGCAAACTGAAATTTCTATTGTAACTTGTAGGACAAAAAGAATTAAACTTAGCCTCAAATTCCATTCCTTTGCTTACTTAAGCTCTTCTAAAACGTCACATATTTCTCAAGAAAAAACCAGAATTAAACAAACTGCCAAAATGCAAGAAGAAGCTGAAGCTAATCAGGAGCCAAGGGACTTTTTAGAAAATCAGAGTCAAGATTTTAAGTTTGGACGTGAGCCACAGGTTTTACAGTCGGACCCCACCCTTGGTGATGGTATTCCTGCGTCCTCTTGTCTGTCCTAGAATGAATGATCTCTTTCCATAACTGTGGGCAAGATTCAAACTACCTGAAAATATGGTATCTGATCCGTTAACCCAATTAGAGGCCTTCCTTCATTCTCTTATCTTTCCCTCTTAATGTAATCTCCTTTACTATCTTTATCTCTGAGTTTCTACAAAAGTATTTGATTGGCATCGGACTCAACTGGGTTTGTTTTTTCGATTCAGCAAATGGCTTTGCTGAGTCCTCGATTGCATAGATTCCGCCTAACCAAGCTCCACCATGTCTCTGCCTCCAAACCCACTAAAACAAATCAACTCACTGTCAGAAGAAAGAGCCGATGCTGCTCTGCTATAGCAATTGATGCTCCATCTTCTTTAACAGATGCTGCGGGAATCAGATGGGGTTCCACTACTTTGCAAGGCTTGCGGGAAGAAATGGAGGACGAGGCTGTTGTGCGGTCTGATGGTCTTAATGGCTTCTTGTTTGCTGCAGTGTTTGATGGCCATGGTGGCTATTCCTCCGTCAAGTTCCTCGGGTGGGAAAACAACAGGGCTACTTTTGGGGAAATCTTTAGGATTTATGTTTCTTTAAGTCCAATTTGACTTATGAATTTATCTATTGCAGAGTGGTGGCTTTAAAAATACCCCTGATTTACTCATAATTTTGATGTTGGGCTTTAGTATGAATGCCAAAAGTTAATAATAATCATGATAAAGAGACGATTATTGAAAAATGTGCAACAATTATTTTCCATATTATGAAAGTGAACATATTATTTGAGTGATTGAGTTAAGATGGGTTTATGTTATAATATATGTTTCCCAACGGCATTTTCTTAGAAATAATGACTTTGACAAATGTATTGGTGTAAATAATATGCTAGCAGGGAGGAGCTGTACAAAGGCTGCGTTGCAGCTTTAGAAGGTGGCTTGCTGTTGAATGGAGGGGATTTTGAAGTGATAAAAGGGGCTTTGGAGAAGGCTTTTGATGATACTGATAAAAGATTACTCCTTTTGTACGTGAAAAAAATCCAGTTTTCCACTTGGTTATAGCTCTCAATGAAATTCTCTATTTGACGTAGTTTTGCTCAACTTTTAAAGGCTTGAGGCAGCTGGGGAGGAAGATGAATCTGGTTCCACTGCAACTGCTGCATTCATACGAAATGATGTTATGTTCATTTCACATGTTGGTGACTCTTGTGTTGTAAGCATCAAGCCGGTGATCTTTATATCTGTTTTTTCTTTGGGAGATAAGAAACAACCAAACCTCGTCTGAGTTCCAAGCATTGTTATTTAAATTTAATTGTGTAGATACAAATTCTCTTATACTGAGAGTAAAGGAAGAAAACGAAAGCTTTTATTCTCTTATAAGTAAATATGTTTTTGAAGAAAGGAATATTGTGTGAGTCTATGGGTTGCGGCCACATGGGGTTCCTCTAAATTCCTTGGAGTTCTATTCATCTCGTCTCCCTCTTCTTTCTCCATTTATTAAATACTTCATTGGAGATGGTCCAAAGGTTTTTTTTTGGAAAGATTGGTGGGTAGGAGACAAAACCTCTTTGTTCTATGTTTTGGTACCCCCTTTCTAATAAGAGGTTGCATTCTGATTTATATGGCCTCTGTCCAGCCCTTTTTAGCTTTCCCTTCGTCTTTTTCGTCGGTCTCTTTGGGTTTTAGTCAATTGTTGATGAATAGGGAAGCTGTTGAGGTGGTGGCCCTTCTATCATTGATTGATAATTCCTTTGAGTCTGGGGAGGCGGGATGTTTGTTGGTGGATCCCCAATCCTTCAAAGTGCTTTTCTCTAGTCTTTCTTCCATTTGTTTTGTGTTCCTTCTTGTCCTCCCAGAGCCTTAGCTTTCTCCTCTCTATGGAAGTTAAGATCTCCAAGAAGGTCAAATTTTTTGTGGCAGGTTCTCCATAGGAAAGTTATTACTCTGGATTGTATTCAGAAGCAGTCTTCCTTTGTGTTGGGTTCGCATTGGTGTTCTCTTTGTCATTGAGAAGGCAGAGGATTCGGACCCAGTTAATTTGCCATAGCTATTGGGGAGCATTGTTGGGCTTCCTTTGGGATTTGTTGGGTTTATAACAGAGACTGATTCTTCAATTGAGGAGACTCACGAATCCTCCTTTTTGAGATAAAGGAAGTGTTTTGGCAAGCTTGTATTTTTACTAATCACTGGGGGTTAGAGTTTGAGAGGAATGGTCTCCTTTCTAGGGGTTTGGAGTGGTCCAGAGAGTATTTTGCCACCCCTTCCGGATCCTCTTGCAACTGCTGTATAATTCTTTGCAATTTGGTGTCATTGGCCACTTCCCCTTCGTAAATCACCAATTAACCCAAAAGCTTAAGCTAATAGGTTATGGTAAATTTAATTATATCAACACTAACACTCCCCCTCACTTGTGGGCTTGGAAAGTGCAAATCAATAATTGGGAGAAAACGACTTCATCAGGGTCAAACACAGAGCCTCCTGCTCTGATGCCATGTAAATCACCAATTAACCCAAAAGTTTAAACCGATAGGACAAATTTAATTATATCAATACTAACATGAATGAAAGTTTGGTTTCTCATTTAAAAAAAAAGTATAAAATATAATAAGAAACACATCGTGGAACATATAAGATCTTCTAAATCCAGAGCTGATTTGTTCATGTAGGTCTTGTCACGTTCCGGAGGAGCACAGGTTTTGACTAGTTCTCATCGGCCATATGGAAACAACAGCACCTCACTGCAAGAAATTAGAAGAATTAGAGAAGCAGGTGGATGGGTGTGTGTTTCTGTTTCAGTTTACTCTCTTAGTCTCTAGTTCCATATAAAACCGAATCACGAGATGGTAGAAACTTCACCTGAAAAACATTTAAAATAGAAAAGGAAAGCAATTAATATTATTAAACAAATTTCTGTTGGTTCTTTCTTTGTTGTACTTTAGTTTCATCAGACTTTTCATTTATTTGACATTTAAATTCATTGTTGCTCACTGGTCCTGTATGAAAAAGGAAATGCAGCATATGCCTACGTTAGTCTGTCATTCGTGACATGTTAAAATGATGATTGCCCATATTATTTATCAAAAGCCCCAATTCTTCTTTGAAGCATTACAATTTAGATACTCATTACAGCTTTTGTTGTCTTTAGATCGTCAACGGAAGAATCTGTGGAGACATCTCTGTATCTCGTGCATTTGGTGACATACGATTCAAGACAAAGAAATACGAGTTTGGTCCTTCTTTCTTCTAATATTGTCCAGCTTCCGGATATTTCTTTCTACTAAGCCAATAAATATTTAATACTGATGATGGCTTATTCTATATAAAAGGATGCTAAGAAAAGGAGTTGAAGAAGGGAGATGGTCTGAAAAATTTGTTTCTCGGTAGGTATGCTTTATGATTCCTCACTTCTATCATTGTTATTTCATTTTTTGATGCTTATTGTATGGTGTTTGGCTTGTTTTACTTATTACAGTTTGCTTACTGGATCTACTGTCTTTTTAGTCAGTTATTTCAATTACTAATTGACTTCACAAGGCATTTTGACAATAGAATCTTTTAACTCATCAGTGTACAGTTCAATGGAGATTTGGTTACTGCATCACCAGAAAATTTTCAAGTTACTCTCGGGTCAAATGTCGAGTTTATACTGATAGCATCAGATGGCCTATGGGATTACATGAATAGGTCTGTTGGGACTCATTTTTGTCCCTCAGTTGTTTATAGGATTTAATCTTTACGCTCTGAAGTTAATTCATCAGATTATTCATCAACTTCAATCTAGACAGACTAAAATAAGTACCATTGTGGGTATTATTTCAGCTCCGATGCGGTTAAATTTGTTCGGAATCAACTTAGACAGCACGGTGATGTTCAGGTGTACATCATGTTACTTGTATAATATATACTATTATGCACTCTATTTATGGTTCAACGTCTAACTTCTCATTTACTTTGATTTTCAGCTAGCTTGTGAAGCCCTCGCGGAAGCAGCCTTGGTAATACTTGAACAATTTGAATTGTTTTAAAACTTCCAATTAGAAGAATTTGCTTTCTAATTCTGATAAAGAAAATATTATTTTTTGTATCCTGCAGGATAAAGGGTCACAAGACAATATTAGCATTATCATGGCTGATTTGGGGTGAGTACCTGCTTAATTTTACATATTTTCAATGAGGGGACAGAAGAGTGTTGAATTATAATGTTAGGCACTAAAAGAACGAAGTTCAAATGGCTTTGCTTGTTCTTGTCCAAATGCATGGAATGAATAAACTTTCTTCCGAGAAGCTAAACGCGGCAGCTAGCCAAACCGAACGATTGCAGTTATTAGACTTTCTTATTTGTTGTTGTGAGAGTTCTTCCATTGCAAATATGATCTAAACTAACTGGCGATGCAGGCGGACAGATTGGCAGAATTTGCCCCATAAGCAAGACAATGTCATATTTGAACTGGCTCAAGCTTTTGCTACGATCGGGGTTGTTTCTTTCGGTATCTGGTGGGCGTCCTCTATTTTCTCTCTTTGAAGTTTGTCTCCCACTGTTGTATAATCAGGTTCTTCTTCCATACTTTTCATCTGTAAAGTGTAATTGAATAGTTATACAATGTATCACATCTTAGCTAGTTTAGACGACTTAATCTACCCTCACAAGAGTTGCAAAATTTTTCTTTCCCTTGCGGTTTGAATCGTAAACTGTCGGTCTGTGGGAAATGTGACACCTTAACCATCATGCCTGTAAAACTGCACTACAACTTGTTGGTTCACTCTTCACCTTCCATCAGGATTCAAAACTTTTCAATTTGAAAGTCTTATTCTGTGCTCAAGGAAACTATCAGGAGAGTTTTCATCTCTCATCAGAAGTAATGGACGTTTTCAGACAATTCAACCTTCCCATACGAGATGAAAAGCTCGAACGCGTTACTTTTGTCTTGTTGCGTTGATGGGACAGACTTTCATAGTTCAGATTGGTTGGTTAGATTATTTACCGTACTTTCTTAACGGCAACATTCTGATCATCAATGGTTATTTTTATTTTCAAAGTAACAAGATCGAATGGCCATTGTCATAGTTACTAACAGGTAAACGAAACAGCATGTTATTATCTGGTTTAAAACTCTATAACACGGATAGTCTACTGCCTAAATGCAAGTTCAGAAGCTTTATCATGCTATTTCCTTCCTTTTTCTTTTCTTTCTGCGTATGGATTATCATATATCGTTTGAAATTAGAACCATAGAGTCCTTTTCGTTTTCAGGTTAAAAATCTACTGCAGAGGACAGGCGTTTGATGCATTGTTCATATGATTGCACTTTTTCCTCTGATATTAACAAACAGTCAACTCCTAGAATCAAATCAACTATATATTTGATATTTCTACCACAAACAGAGTTTCATTCAATGGAACTCGCTTGGATTGCTGCTACCTTAATAATACAAACAGATCCATTTCTTCCTCATTATTTAGTTAAGGGAAACACAGGAATCTCAAGTCCTATGGCTTTCCAGTGCCAGGTTTCTGAGGCTCATGCTTACGGTTAGCTACAGGATCATCATAATCTGGTCTGTCAACCATCAAAAGCTTCCTCATCTCCATTTGAAATCCATCCTTCATGGAAGAAAATGTTATTGTAAGATAACCAACACAATACATGGTATTATACACCTTTCAAAGCTTCAAATTACTCACAGTGAAGAAATCCTCGTCCAGGTCAGATTCCTGAAATATATTGAACTCGTCAGAATTATTCTTATCGAATATATTAATCTTTGGATCTCTCTTGGTTTCTCATACATAGTAAGGAAGTTGTTCGAGAGAAAAGTAAATAGCTTCCAAACATGAAAAAACCAAATATTCACCACTTTCTCCATAGATCTGCTATACTTTACAGTACCTTGTTAGAAGAGTGATCAAGATTCATCTTAGTATCGAAGTCCTCAAACTCTCCTGCAATGGAAGGAAGGAAAGAGGCAGGTTATCTTACTCTTAAGCTATGGTAATGAGCAATTTCTGTGATGTTGAAAATTTATCTTACCTGAAGAAAAGAAACAGAGGAAGAGGAGGACAAGAATAAAAAAGGTAGTGGTTTTGGAAGCCATGGATGATCTTTCTGCTTCTTCATGTAAGAAAGAAAGGTATGGTTTTTAAAGCTGCATGCATGAGTTAAGAGCTGCCTGCCTGCCTTTCATCAGAGTCAACTTAAACCCTTTTTTTTTTTAATGTTTTAATGAAAAGCATTAACTTGATACTAACCACTCAAACATGATCAAACGCATTAGTTGTAGCAGACACACACATGAAGTCAACTACAAGCTTTTATATTAATGGCTAGAATGACAAATCAAGTACGTGCATGTGGACTCCATAAAAAGGCCTCCAATAGCAGCCATTTTCTGTAAGGCTGAGCTGCCTCTATTGTAGAACACTATGGCAGGGACTATTTGGTTGTGGAACAGCAGA GTGAACTGTGCAAACTGAAATTTCTATTGTAACTTGTAGGACAAAAAGAATTAAACTTAGCCTCAAATTCCATTCCTTTGCTTACTTAAGCTCTTCTAAAACGTCACATATTTCTCAAGAAAAAACCAGAATTAAACAAACTGCCAAAATGCAAGAAGAAGCTGAAGCTAATCAGGAGCCAAGGGACTTTTTAGAAAATCAGAGTCAAGATTTTAAGTTTGGACGTGAGCCACAGGTTTTACAGTCGGACCCCACCCTTGGTGATGGTATTCCTGCGTCCTCTTGTCTGTCCTAGAATGAATGATCTCTTTCCATAACTGTGGGCAAGATTCAAACTACCTGAAAATATGGTATCTGATCCGTTAACCCAATTAGAGGCCTTCCTTCATTCTCTTATCTTTCCCTCTTAATCAAATGGCTTTGCTGAGTCCTCGATTGCATAGATTCCGCCTAACCAAGCTCCACCATGTCTCTGCCTCCAAACCCACTAAAACAAATCAACTCACTGTCAGAAGAAAGAGCCGATGCTGCTCTGCTATAGCAATTGATGCTCCATCTTCTTTAACAGATGCTGCGGGAATCAGATGGGGTTCCACTACTTTGCAAGGCTTGCGGGAAGAAATGGAGGACGAGGCTGTTGTGCGGTCTGATGGTCTTAATGGCTTCTTGTTTGCTGCAGTGTTTGATGGCCATGGTGGCTATTCCTCCGTCAAGTTCCTCGGGGAGGAGCTGTACAAAGGCTGCGTTGCAGCTTTAGAAGGTGGCTTGCTGTTGAATGGAGGGGATTTTGAAGTGATAAAAGGGGCTTTGGAGAAGGCTTTTGATGATACTGATAAAAGATTACTCCTTTTGCTTGAGGCAGCTGGGGAGGAAGATGAATCTGGTTCCACTGCAACTGCTGCATTCATACGAAATGATGTTATGTTCATTTCACATGTTGGTGACTCTTGTGTTGTCTTGTCACGTTCCGGAGGAGCACAGGTTTTGACTAGTTCTCATCGGCCATATGGAAACAACAGCACCTCACTGCAAGAAATTAGAAGAATTAGAGAAGCAGGTGGATGGATCGTCAACGGAAGAATCTGTGGAGACATCTCTGTATCTCGTGCATTTGGTGACATACGATTCAAGACAAAGAAATACGAGATGCTAAGAAAAGGAGTTGAAGAAGGGAGATGGTCTGAAAAATTTGTTTCTCGTGTACAGTTCAATGGAGATTTGGTTACTGCATCACCAGAAAATTTTCAAGTTACTCTCGGGTCAAATGTCGAGTTTATACTGATAGCATCAGATGGCCTATGGGATTACATGAATAGCTCCGATGCGGTTAAATTTGTTCGGAATCAACTTAGACAGCACGGTGATGTTCAGCTAGCTTGTGAAGCCCTCGCGGAAGCAGCCTTGGATAAAGGGTCACAAGACAATATTAGCATTATCATGGCTGATTTGGGGCGGACAGATTGGCAGAATTTGCCCCATAAGCAAGACAATGTCATATTTGAACTGGCTCAAGCTTTTGCTACGATCGGGGTTGTTTCTTTCGGTATCTGGTGGGCGTCCTCTATTTTCTCTCTTTGAAGTTTGTCTCCCACTGTTGTATAATCAGGTTAAAAATCTACTGCAGAGGACAGGCGTTTGATGCATTGTTCATATGATTGCACTTTTTCCTCTGATATTAACAAACAGTCAACTCCTAGAATCAAATCAACTATATATTTGATATTTCTACCACAAACAGAGTTTCATTCAATGGAACTCGCTTGGATTGCTGCTACCTTAATAATACAAACAGATCCATTTCTTCCTCATTATTTAGTTAAGGGAAACACAGGAATCTCAAGTCCTATGGCTTTCCAGTGCCAGGTTTCTGAGGCTCATGCTTACGGTTAGCTACAGGATCATCATAATCTGGTCTGTCAACCATCAAAAGCTTCCTCATCTCCATTTGAAATCCATCCTTCATGGAAGAAAATGTTATTGTAAGATAACCAACACAATACATGGTATTATACACCTTTCAAAGCTTCAAATTACTCACAGTGAAGAAATCCTCGTCCAGGTCAGATTCCTGAAATATATTGAACTCGTCAGAATTATTCTTATCGAATATATTAATCTTTGGATCTCTCTTGGTTTCTCATACATAGTAAGGAAGTTGTTCGAGAGAAAAGTAAATAGCTTCCAAACATGAAAAAACCAAATATTCACCACTTTCTCCATAGATCTGCTATACTTTACAGTACCTTGTTAGAAGAGTGATCAAGATTCATCTTAGTATCGAAGTCCTCAAACTCTCCTGCAATGGAAGGAAGGAAAGAGGCAGGTTATCTTACTCTTAAGCTATGGTAATGAGCAATTTCTGTGATGTTGAAAATTTATCTTACCTGAAGAAAAGAAACAGAGGAAGAGGAGGACAAGAATAAAAAAGGTAGTGGTTTTGGAAGCCATGGATGATCTTTCTGCTTCTTCATGTAAGAAAGAAAGGTATGGTTTTTAAAGCTGCATGCATGAGTTAAGAGCTGCCTGCCTGCCTTTCATCAGAGTCAACTTAAACCCTTTTTTTTTTTAATGTTTTAATGAAAAGCATTAACTTGATACTAACCACTCAAACATGATCAAACGCATTAGTTGTAGCAGACACACACATGAAGTCAACTACAAGCTTTTATATTAATGGCTAGAATGACAAATCAAGTACGTGCATGTGGACTCCATAAAAAGGCCTCCAATAGCAGCCATTTTCTGTAAGGCTGAGCTGCCTCTATTGTAGAACACTATGGCAGGGACTATTTGGTTGTGGAACAGCAGA ATGGCTTTGCTGAGTCCTCGATTGCATAGATTCCGCCTAACCAAGCTCCACCATGTCTCTGCCTCCAAACCCACTAAAACAAATCAACTCACTGTCAGAAGAAAGAGCCGATGCTGCTCTGCTATAGCAATTGATGCTCCATCTTCTTTAACAGATGCTGCGGGAATCAGATGGGGTTCCACTACTTTGCAAGGCTTGCGGGAAGAAATGGAGGACGAGGCTGTTGTGCGGTCTGATGGTCTTAATGGCTTCTTGTTTGCTGCAGTGTTTGATGGCCATGGTGGCTATTCCTCCGTCAAGTTCCTCGGGGAGGAGCTGTACAAAGGCTGCGTTGCAGCTTTAGAAGGTGGCTTGCTGTTGAATGGAGGGGATTTTGAAGTGATAAAAGGGGCTTTGGAGAAGGCTTTTGATGATACTGATAAAAGATTACTCCTTTTGCTTGAGGCAGCTGGGGAGGAAGATGAATCTGGTTCCACTGCAACTGCTGCATTCATACGAAATGATGTTATGTTCATTTCACATGTTGGTGACTCTTGTGTTGTCTTGTCACGTTCCGGAGGAGCACAGGTTTTGACTAGTTCTCATCGGCCATATGGAAACAACAGCACCTCACTGCAAGAAATTAGAAGAATTAGAGAAGCAGGTGGATGGATCGTCAACGGAAGAATCTGTGGAGACATCTCTGTATCTCGTGCATTTGGTGACATACGATTCAAGACAAAGAAATACGAGATGCTAAGAAAAGGAGTTGAAGAAGGGAGATGGTCTGAAAAATTTGTTTCTCGTGTACAGTTCAATGGAGATTTGGTTACTGCATCACCAGAAAATTTTCAAGTTACTCTCGGGTCAAATGTCGAGTTTATACTGATAGCATCAGATGGCCTATGGGATTACATGAATAGCTCCGATGCGGTTAAATTTGTTCGGAATCAACTTAGACAGCACGGTGATGTTCAGCTAGCTTGTGAAGCCCTCGCGGAAGCAGCCTTGGATAAAGGGTCACAAGACAATATTAGCATTATCATGGCTGATTTGGGGCGGACAGATTGGCAGAATTTGCCCCATAAGCAAGACAATGTCATATTTGAACTGGCTCAAGCTTTTGCTACGATCGGGGTTGTTTCTTTCGGTATCTGGTGGGCGTCCTCTATTTTCTCTCTTTGA MALLSPRLHRFRLTKLHHVSASKPTKTNQLTVRRKSRCCSAIAIDAPSSLTDAAGIRWGSTTLQGLREEMEDEAVVRSDGLNGFLFAAVFDGHGGYSSVKFLGEELYKGCVAALEGGLLLNGGDFEVIKGALEKAFDDTDKRLLLLLEAAGEEDESGSTATAAFIRNDVMFISHVGDSCVVLSRSGGAQVLTSSHRPYGNNSTSLQEIRRIREAGGWIVNGRICGDISVSRAFGDIRFKTKKYEMLRKGVEEGRWSEKFVSRVQFNGDLVTASPENFQVTLGSNVEFILIASDGLWDYMNSSDAVKFVRNQLRQHGDVQLACEALAEAALDKGSQDNISIIMADLGRTDWQNLPHKQDNVIFELAQAFATIGVVSFGIWWASSIFSL Homology
BLAST of Tan0021740 vs. ExPASy Swiss-Prot
Match: P49599 (Protein phosphatase 2C 57 OS=Arabidopsis thaliana OX=3702 GN=PPH1 PE=1 SV=2) HSP 1 Score: 494.6 bits (1272), Expect = 1.0e-138 Identity = 249/387 (64.34%), Postives = 301/387 (77.78%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy Swiss-Prot
Match: Q5JKN1 (Probable protein phosphatase 2C 5 OS=Oryza sativa subsp. japonica OX=39947 GN=Os01g0552300 PE=2 SV=1) HSP 1 Score: 423.7 bits (1088), Expect = 2.2e-117 Identity = 214/384 (55.73%), Postives = 281/384 (73.18%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy Swiss-Prot
Match: Q8BGL1 (Probable protein phosphatase 1N OS=Mus musculus OX=10090 GN=Ppm1n PE=2 SV=1) HSP 1 Score: 133.7 bits (335), Expect = 4.6e-30 Identity = 99/292 (33.90%), Postives = 145/292 (49.66%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy Swiss-Prot
Match: Q8VZN9 (Probable protein phosphatase 2C 11 OS=Arabidopsis thaliana OX=3702 GN=At1g43900 PE=2 SV=1) HSP 1 Score: 132.9 bits (333), Expect = 7.9e-30 Identity = 106/334 (31.74%), Postives = 166/334 (49.70%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy Swiss-Prot
Match: Q69QZ0 (Probable protein phosphatase 2C 27 OS=Oryza sativa subsp. japonica OX=39947 GN=Os02g0799000 PE=2 SV=1) HSP 1 Score: 130.6 bits (327), Expect = 3.9e-29 Identity = 88/300 (29.33%), Postives = 148/300 (49.33%), Query Frame = 0
BLAST of Tan0021740 vs. NCBI nr
Match: XP_038876898.1 (protein phosphatase 2C 57 isoform X1 [Benincasa hispida]) HSP 1 Score: 712.2 bits (1837), Expect = 2.4e-201 Identity = 357/387 (92.25%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. NCBI nr
Match: XP_008455986.1 (PREDICTED: protein phosphatase 2C 57 isoform X1 [Cucumis melo] >TYK11289.1 protein phosphatase 2C 57 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 705.3 bits (1819), Expect = 2.9e-199 Identity = 354/387 (91.47%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. NCBI nr
Match: XP_022141017.1 (protein phosphatase 2C 57 [Momordica charantia]) HSP 1 Score: 704.9 bits (1818), Expect = 3.8e-199 Identity = 357/387 (92.25%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. NCBI nr
Match: XP_004146232.1 (protein phosphatase 2C 57 isoform X2 [Cucumis sativus] >KGN57653.1 hypothetical protein Csa_011263 [Cucumis sativus]) HSP 1 Score: 701.0 bits (1808), Expect = 5.5e-198 Identity = 350/387 (90.44%), Postives = 368/387 (95.09%), Query Frame = 0
BLAST of Tan0021740 vs. NCBI nr
Match: XP_023541443.1 (protein phosphatase 2C 57-like isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 701.0 bits (1808), Expect = 5.5e-198 Identity = 355/388 (91.49%), Postives = 368/388 (94.85%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy TrEMBL
Match: A0A5D3CM48 (Protein-serine/threonine phosphatase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold227G001490 PE=3 SV=1) HSP 1 Score: 705.3 bits (1819), Expect = 1.4e-199 Identity = 354/387 (91.47%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy TrEMBL
Match: A0A1S3C298 (Protein-serine/threonine phosphatase OS=Cucumis melo OX=3656 GN=LOC103496050 PE=3 SV=1) HSP 1 Score: 705.3 bits (1819), Expect = 1.4e-199 Identity = 354/387 (91.47%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy TrEMBL
Match: A0A6J1CIN9 (Protein-serine/threonine phosphatase OS=Momordica charantia OX=3673 GN=LOC111011524 PE=3 SV=1) HSP 1 Score: 704.9 bits (1818), Expect = 1.9e-199 Identity = 357/387 (92.25%), Postives = 371/387 (95.87%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy TrEMBL
Match: A0A0A0L799 (Protein-serine/threonine phosphatase OS=Cucumis sativus OX=3659 GN=Csa_3G238190 PE=3 SV=1) HSP 1 Score: 701.0 bits (1808), Expect = 2.7e-198 Identity = 350/387 (90.44%), Postives = 368/387 (95.09%), Query Frame = 0
BLAST of Tan0021740 vs. ExPASy TrEMBL
Match: A0A6J1G0B7 (Protein-serine/threonine phosphatase OS=Cucurbita moschata OX=3662 GN=LOC111449563 PE=3 SV=1) HSP 1 Score: 698.0 bits (1800), Expect = 2.3e-197 Identity = 352/388 (90.72%), Postives = 367/388 (94.59%), Query Frame = 0
BLAST of Tan0021740 vs. TAIR 10
Match: AT4G27800.1 (thylakoid-associated phosphatase 38 ) HSP 1 Score: 494.6 bits (1272), Expect = 7.3e-140 Identity = 249/387 (64.34%), Postives = 301/387 (77.78%), Query Frame = 0
BLAST of Tan0021740 vs. TAIR 10
Match: AT4G27800.2 (thylakoid-associated phosphatase 38 ) HSP 1 Score: 426.0 bits (1094), Expect = 3.2e-119 Identity = 217/335 (64.78%), Postives = 258/335 (77.01%), Query Frame = 0
BLAST of Tan0021740 vs. TAIR 10
Match: AT4G27800.3 (thylakoid-associated phosphatase 38 ) HSP 1 Score: 412.9 bits (1060), Expect = 2.8e-115 Identity = 209/325 (64.31%), Postives = 248/325 (76.31%), Query Frame = 0
BLAST of Tan0021740 vs. TAIR 10
Match: AT1G43900.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 132.9 bits (333), Expect = 5.6e-31 Identity = 106/334 (31.74%), Postives = 166/334 (49.70%), Query Frame = 0
BLAST of Tan0021740 vs. TAIR 10
Match: AT3G51470.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 125.2 bits (313), Expect = 1.2e-28 Identity = 93/292 (31.85%), Postives = 139/292 (47.60%), 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 Position : 0 Zoom : x 1
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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