Sgr017903 (gene) Monk fruit (Qingpiguo) 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.ATGGCGGCGGTTATCTCCTCCGAGAAGGAGCCGGAGTCGGAGACAGAGGCCTTCGTGGAGGTGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTTCTCGGCGCCGGCGCGGTGAAGAAAGTCTACAGAGCATTCGATCAAGAAGAAGGTATCGAAGTGGCCTGGAACCAAGTGAAGCTCCGAAACTTCACCAATGACCCCGCCATGATCGACCGTCTCTTCTCCGAGGTCCGCCTCCTCCGATCCCTCCAAAACACCAACATCATCGCCCTCTACGACGTCTGGCGGAACAACGAAGACCAGACGCTCAACTTCATAACAGAGGTCTGCACCAGCGGGAACCTCAGAGAGTACAGAAAGAAGCATCGGCACGTCTCGATCAAGGCGGTGAAGAAATGGTCGAAGCAGATCTTGAAAGGTTTAGATTATTTACACTCTCACGATCCCTGCGTAATCCACAGAGATCTCAATTGCAGCAACGTGTTCGTCAACGGCCACATCGGGGAGGTTAAGATCGGCGATCTAGGGCTGGCGGCGACGGTCGGGAAGAGCCACTCGGCGCATTCGGTGATAGGGACGCCGGAGTTCATGGCGCCGGAGCTGTACGAGGAGGATTACACGGAGATGGTGGATATTTACTCGTTTGGGCTGTGTTTGCTGGAGATGGTGACTCTGGAAATCCCGTACAGTGAGTGCGAGAACGTGGCCAAGATATATAAGAAGGTGTCGGCCGGAATACGGCCGGCGGCGATGGAGAAAGTTGCAGATGGTGAAGCGAAGCGGTTCATTGATAAGTGCATTGGTCAGCCGAGGAGACGACCGTCCGCCGCCGAGCTTCTTCAGGATCCATTCTTTCATGGAGTTGATGATGACGAACATGATAGTTTTCAAATTTCTCACTCCCTATAATTTTTAAAAAAAAAATGGAGGTTTTGTGTACATGATTATCTTATTGGAAGTTCGAAGATTGAATTGGATTGACTTTTTTTTTTTGACAGGGAAAGATGGAGATTGCTTTTCTCGTAATTCTAATTTCGAACTTTAGTTAAATTATAAATGTAGTCGCTAAATTTTGAAGATTATGTTTATTTAATTTTTAAATTTTAAAAAATTTTAAAAAATTTTAAATACAATTCTAAACTACAAACTAATGATGTGGGTTTAAAGACTTAGAGAACGGAAATCCTTCAATCACAAAGAAAGTAATAGATACTTCTATCTATTAAGCTATGCTTTGATTGACCTATTTAAATTTAGTCTATCTAATATGCTTCATCTACCTAACATGCTTACGCCAATTTGACAGTTATTGACATGAACCTATATTAGATACAAAATAAAAGATTTAGAAATGTAATTAAAACATTTTATTTTAAAGATTAAAAAGTAAATAAACACAGCTCGAAATGTTGGGAAATTATAAATTTATAAATTTAATATTTTTTATTTTAAAGAGTTTTTTTTTTTTTTAATTAGAATTCAAATAAGGGAAATTTGTACCTATGACCTTTAAAGGAGATTGTTATTAACAGCTTGACTAATTGTCGTGTTTGTGTCTTGTCCTTCTCCAAACTACATTAGAATATTGTATATGAACAAACCAATAAATCATATAAAATTCAATATACAAAACATTTAAAATCATGTCACATAAATACTCAAACTCAATAACTCAAATATTCGAATTTAAGCACAAAGTCAACATGCAAAAAAAATAAAAAATCAAACTTACCGTAAAAAAAGTTCAAACTAAACAACAAAACATTAAACTTTAGTTGAAAAACGTTCAACATAACTAAGAAGAATTAATACCTATAAAATTTAGTCTCTTCACACACTAGAATGCTACTAGGCCAACTCTATAATTTAATTAAGGTTTATCATACATCTCTACCGTTAGTGAGAGCACATAAATTGAACATAACAAGTTATTTGTGGCTCCACTATAAAGGAGTCGCAAGGATTATTAAATACACTTTGAAACAAAACTAAACTTGAAAAACACCTAAACTCAACTACAAAATATCCGAATGTAGCCAAAAAAATCAACTAAGAAAACAAACACCTAAACTTAACAATTGAAAGTCCAAACTCAAGTAAGAAAAGATTAGCTCCATCCAACTACAAAAAATCAATAACTAGCCATAAATCTTTTTTAAAAAATCAACAACTAAAAATATCTTAATCACTGAACTATATTCATGTTAGTAAAAATTAATTAATTGAGAGTATTAATTTTAATGTAATTAAAATTTTAAGATTAAATTTAACCTTAATAGTCATGAATACATAGGCAAAATAATAATAATAAAGGAGGTTTTGTTTAATAATATTATAGTTATTTATTTTTTTGTTAAATTACAAGTTTAGTCTATGAACTTTGAAGATTGTATCAAATAGGTCATTGAATTTTCAAAAGTGTTAAATAGGTCTATGAACTATAAACTGTGTCTAATAAGTTTTTGAACTATCAATTTTATATCTGATAGGTCCTTGAACTATCACTTTTGTGCCTAATAAGTCTCTAACCTATAAGAAATGTTTTAAAATTTATGAACCGACACAAAATTTAAAGGTTAGAAACTTATTAGACTCCAAATTAAATTGTGTCCGTTAATTTTACAAAATGCTAATAAGTCAAGGATCTATTAGACACAAAATTAAAAATTTAGGGATTTATTAGACACAAAATTGAAAGCTTGAGGACCTATTATATATTTTTTAGAGTTGAGCGACCTATTTGATATAACATTAAAAGTTTGGAGACTAAATTTTTAATTTTTTTTTTTAAGAAAAAATATTATAGTTATTTGATGTTCTAAAAAATTGGGCATTTTTGGTTGGCTAAACAGACGGCGACGGTCAGCTCCTCCGAGAAGGAGTCGGAGCCGGAGTCAAGAGGCATTCATGGAGGCGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTACCCGGCTCCGGCGCGGTGAAAAAAGTATACTGAGTATCCGATCAGGAAGAAGGAATAGAAGCGCCATGGAACCAAGTGAAGCCGAGAAACTTCACCAACAACCCCGCCATGATCGAGCGGCTGTTCCCGGAGGTCCGGTCCGGCTGCTGCAGACGCTGAAGAACGGCAAGATAATTGCCGTTTACGACGTGCGGTGGGACAACGAACGCCGAAAGCTCAACTTCACGGCGGAGGTCTGCACCGGTGGGAATCTGAGAGAATACAGAAAAAGACACAGACACGTTTCGTTCGAGGCGGTGAAGATATTGGAAATTCAATGCCGTGAGTAATTTGGTTTGATACATTAACTAATAGAAAATTTTCAATTAATTAATTATTGCAACATCGATTGAAACTATAAATTAATCGTAGATATTGTAGTGATGGTGATTTATCAGAATAGGTGTTGTAGGTAATCTCAAGGCATTGAATTGATTAATTGATGTGGTAAACCAATTAATTCGGAGCAATGAATCGGATGGTGTGAAATGTTTTCGAAGATTGATTGTCACATAGAAGATAACGTTACTGCTGAATATTCAGGGCATAGCCGCTTTGGTAATCTCACATGTTGTTGAAATTTGAAAATAGTCCCTAGAGCCTTGGATGGTACAGAGTGCATTTGTATTAATCAGTTTTGAGACTCTTGCATACTTGAAAGAATTCCCAGGTTTCCAAAGATCATAAAAATGAAGAGAAGCATGAGTTCAGTTTTGCTTTTGATGGGGCTGATGTCTGCTGCAGTATATGCTCCCTCATTCACAGCCTGTTTGGATGGTGATTTATTAGAATCTGAACCTTTTCTCAGTTTCATCCGAGCTATTGACCCCCAAGACATGCTTGGGATTGGCGTGAACGAGTCGACGCTACATCTGCGCTTGAATAAGGTGAACGGTGTAAAATATAGCGGTCAGAGGGCTATTGTTGAAATCAGGCTTGAGAATTTAAACCTCAGCGGAAGAATTGATGCAGATTCTGTCTGCAAGCTTTCTAGTCTAAGAGTGCTTAACTTGGCTAAAAACAACATCCAAGGAAACATTCCTGATTCAATTCTGCACTGCACCAGGCTGACCCACTTGAATGTTAGCAACAACAATTTAAGTGGGGAGGTACCTTTGGTTCTGCCTAAACTCAAACATCTCAGGAGATTAGATATCTCTAACAATCACTTCACTAGCAGCTCACCCCAATTCGAGAAGGAATTCAAGCATAGGAAGTCTCTAAGATCACGGATGACTCAGCAGGATACCATCAACGTTGGTGTAAAGGCTACATCGCCCGTCCCGTTGAGCTCACAAAGCAGCAAGTCTGATAGTGGGGATGCACACTGGCTTTACCACAAACGGATAAAATGGTTGATAATCTCTATTGTTGGTATTGTATTGTTTTTGACATTTTCATTCATAGTATGCAAGAGGGCTATGAAGTTAGCATGTAAAAAGCAAATGTTTGAGAAGCCCCTTCAGAAGTCTCCTCCTATTGTAGCTCTGTCAGCAATGTCTAGTGAGCTAGAACGCCCAGACGAAGCACTTCCAGAGCTTGTGTTCTTTAGTGAAGAAGATGAACAATTCAAAGTAGAGGACCTCCTTGAAGCAACAGCAGATTTACAAAATCTGAATATCTGCACCAGCCTTTTCAAGGTCAGGTTAAAGAGCCAGTATTATGCAGTCAAAACGTTGAGGAAAATGCAGATATCCTTTGATGAATTTCGTAAAACCATGAGGTTGATAGGAAACTTGCGGCACCCGAACATTTTACCACTCGTGGGTTATTATTCTGCAAATGATGAGAAACTACTGATCTACAAGTACCAGAGAAATGGAAGTCTGCAAGGCCTGCTTGAGGGTAAGTCAAGATTGCAACACCCTTCTTTAGCTTTCTTACTGGTACTTAATTTCCACAAATCATAGCCATTTGCATCTGTGATCAAAGGAGTAGTTCATAATCCCAAGTGTTAAGAAAATCCAAACAAATAACCAAGACCAAACATGATTCAAATCTGTGAGGAGATTGATTACCATGTCATTTTTTTATTGTTCCAAAATTAATATTTGATAAACTGAGTGCATACTCTAGTTGGGAATTCTTCAACACATATTAACAAATAATAGAGTTTCTACCTCTTGATATTTTTTGTAAAACTTAATTTAAAAACCAGTAAACAAGGCTAAAAGTGAGTAAATATTTATTGTACACAGAAAAATCCCAAGTCATTGAATCCATTTGTGAGAGAATTGTTCACAAAGATTTATTGAATGACTTTTGGGTTATCTGCAGGTAGTATTGAAGGAAAGCATAAATTCCCATGGAGGATTAGATTATCTATAGCAAGTGGAATAGCAAAGGGTCTGGGTTTTATATATCAAAGATCAAGTGCAGAAGACTCCATTCCGCATGGGAATTTAAAACTTTCAAACATTCTCTTAAACGAAAACACTGAACCGCAAATCAGCGAATATGGGATCACAAAGTTCTTAGACCCAAAGAGAGTTCGTCTTCTTTCCTCCAAGGGGTATACAGCCCCGGAGAAAAAGCTATCGGAGAAAGCTGACGTGTATAGCTTTGGAATCATATTGCTCGAGTTGTTGACAGGAAAAATGGTAGCAAAAAATGGGATTAATCTCCCCAAATGGGTGAGAGCCAAGGTAAGAGAAGAGTGGACCTGTGAAGTCTTTGATGAGGAAGTTGCTCAAAATGCAGAAAGATGGGCGTTTTCTCTTCTGCTTGTTGCCTTAGACTGTGTCTCTCATTACCCTGAAGGAAGGCCAACCATGGCTGAGGCTCTGGAAAAGATAGAGGAGGTGGTGAAGGCAGTGGAAGATTATGAGCTGCGCATTTCACCTGTGTCTTCTGATTTTGGCACTCCTGAGTCTTATCGCTAG ATGGCGGCGGTTATCTCCTCCGAGAAGGAGCCGGAGTCGGAGACAGAGGCCTTCGTGGAGGTGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTTCTCGGCGCCGGCGCGGTGAAGAAAGTCTACAGAGCATTCGATCAAGAAGAAGGTATCGAAGTGGCCTGGAACCAAGTGAAGCTCCGAAACTTCACCAATGACCCCGCCATGATCGACCGTCTCTTCTCCGAGGTCCGCCTCCTCCGATCCCTCCAAAACACCAACATCATCGCCCTCTACGACGTCTGGCGGAACAACGAAGACCAGACGCTCAACTTCATAACAGAGGTCTGCACCAGCGGGAACCTCAGAGAGTACAGAAAGAAGCATCGGCACGTCTCGATCAAGGCGGTGAAGAAATGGTCGAAGCAGATCTTGAAAGGTTTAGATTATTTACACTCTCACGATCCCTGCGTAATCCACAGAGATCTCAATTGCAGCAACGTGTTCGTCAACGGCCACATCGGGGAGGTTAAGATCGGCGATCTAGGGCTGGCGGCGACGGTCGGGAAGAGCCACTCGGCGCATTCGGTGATAGGGACGCCGGAGTTCATGGCGCCGGAGCTGTACGAGGAGGATTACACGGAGATGGTGGATATTTACTCGTTTGGGCTGTGTTTGCTGGAGATGGTGACTCTGGAAATCCCGTACAGTGAGTGCGAGAACGTGGCCAAGATATATAAGAAGGTGTCGGCCGGAATACGGCCGGCGGCGATGGAGAAAGTTGCAGATGGTGAAGCGAAGCGGTTCATTGATAAGTGCATTGGTCAGCCGAGGAGACGACCGTCCGCCGCCGAGCTTCTTCAGGATCCATTCTTTCATGGAACGGCGACGGTCAGCTCCTCCGAGAAGGAGTCGGAGCCGGAGTCAAGAGGCATTCATGGAGGCGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTACCCGGCTCCGGCGCGGTGAAAAAAGTATACTGAGTATCCGATCAGGAAGAAGGAATAGAAGCGCCATGGAACCAAGTGAAGCCGAGAAACTTCACCAACAACCCCGCCATGATCGAGCGGCTGTTCCCGGAGGTCCGGTCCGGCTGCTGCAGACGCTGAAGAACGGCAAGATAATTGCCGTTTACGACGTGCGGTGGGACAACGAACGCCGAAAGCTCAACTTCACGGCGGAGGTCTGCACCGGTGGGAATCTGAGAGAATACAGAAAAAGACACAGACACGTTTCGTTCGAGGCGGTGAAGATATTGGAAATTCAATGCCTATATGCTCCCTCATTCACAGCCTGTTTGGATGGTGATTTATTAGAATCTGAACCTTTTCTCAGTTTCATCCGAGCTATTGACCCCCAAGACATGCTTGGGATTGGCGTGAACGAGTCGACGCTACATCTGCGCTTGAATAAGGTGAACGGTGTAAAATATAGCGGTCAGAGGGCTATTGTTGAAATCAGGCTTGAGAATTTAAACCTCAGCGGAAGAATTGATGCAGATTCTGTCTGCAAGCTTTCTAGTCTAAGAGTGCTTAACTTGGCTAAAAACAACATCCAAGGAAACATTCCTGATTCAATTCTGCACTGCACCAGGCTGACCCACTTGAATGTTAGCAACAACAATTTAAGTGGGGAGGTACCTTTGGTTCTGCCTAAACTCAAACATCTCAGGAGATTAGATATCTCTAACAATCACTTCACTAGCAGCTCACCCCAATTCGAGAAGGAATTCAAGCATAGGAAGTCTCTAAGATCACGGATGACTCAGCAGGATACCATCAACGTTGGTGTAAAGGCTACATCGCCCGTCCCGTTGAGCTCACAAAGCAGCAAGTCTGATAGTGGGGATGCACACTGGCTTTACCACAAACGGATAAAATGGTTGATAATCTCTATTGTTGGTATTGTATTGTTTTTGACATTTTCATTCATAGTATGCAAGAGGGCTATGAAGTTAGCATGTAAAAAGCAAATGTTTGAGAAGCCCCTTCAGAAGTCTCCTCCTATTGTAGCTCTGTCAGCAATGTCTAGTGAGCTAGAACGCCCAGACGAAGCACTTCCAGAGCTTGTGTTCTTTAGTGAAGAAGATGAACAATTCAAAGTAGAGGACCTCCTTGAAGCAACAGCAGATTTACAAAATCTGAATATCTGCACCAGCCTTTTCAAGGTCAGGTTAAAGAGCCAGTATTATGCAGTCAAAACGTTGAGGAAAATGCAGATATCCTTTGATGAATTTCGTAAAACCATGAGGTTGATAGGAAACTTGCGGCACCCGAACATTTTACCACTCGTGGGTTATTATTCTGCAAATGATGAGAAACTACTGATCTACAAGTACCAGAGAAATGGAAGTCTGCAAGGCCTGCTTGAGGGTAGTATTGAAGGAAAGCATAAATTCCCATGGAGGATTAGATTATCTATAGCAAGTGGAATAGCAAAGGGTCTGGGTTTTATATATCAAAGATCAAGTGCAGAAGACTCCATTCCGCATGGGAATTTAAAACTTTCAAACATTCTCTTAAACGAAAACACTGAACCGCAAATCAGCGAATATGGGATCACAAAGTTCTTAGACCCAAAGAGAGTTCGTCTTCTTTCCTCCAAGGGGTATACAGCCCCGGAGAAAAAGCTATCGGAGAAAGCTGACGTGTATAGCTTTGGAATCATATTGCTCGAGTTGTTGACAGGAAAAATGGTAGCAAAAAATGGGATTAATCTCCCCAAATGGGTGAGAGCCAAGGTAAGAGAAGAGTGGACCTGTGAAGTCTTTGATGAGGAAGTTGCTCAAAATGCAGAAAGATGGGCGTTTTCTCTTCTGCTTGTTGCCTTAGACTGTGTCTCTCATTACCCTGAAGGAAGGCCAACCATGGCTGAGGCTCTGGAAAAGATAGAGGAGGTGGTGAAGGCAGTGGAAGATTATGAGCTGCGCATTTCACCTGTGTCTTCTGATTTTGGCACTCCTGAGTCTTATCGCTAG ATGGCGGCGGTTATCTCCTCCGAGAAGGAGCCGGAGTCGGAGACAGAGGCCTTCGTGGAGGTGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTTCTCGGCGCCGGCGCGGTGAAGAAAGTCTACAGAGCATTCGATCAAGAAGAAGGTATCGAAGTGGCCTGGAACCAAGTGAAGCTCCGAAACTTCACCAATGACCCCGCCATGATCGACCGTCTCTTCTCCGAGGTCCGCCTCCTCCGATCCCTCCAAAACACCAACATCATCGCCCTCTACGACGTCTGGCGGAACAACGAAGACCAGACGCTCAACTTCATAACAGAGGTCTGCACCAGCGGGAACCTCAGAGAGTACAGAAAGAAGCATCGGCACGTCTCGATCAAGGCGGTGAAGAAATGGTCGAAGCAGATCTTGAAAGGTTTAGATTATTTACACTCTCACGATCCCTGCGTAATCCACAGAGATCTCAATTGCAGCAACGTGTTCGTCAACGGCCACATCGGGGAGGTTAAGATCGGCGATCTAGGGCTGGCGGCGACGGTCGGGAAGAGCCACTCGGCGCATTCGGTGATAGGGACGCCGGAGTTCATGGCGCCGGAGCTGTACGAGGAGGATTACACGGAGATGGTGGATATTTACTCGTTTGGGCTGTGTTTGCTGGAGATGGTGACTCTGGAAATCCCGTACAGTGAGTGCGAGAACGTGGCCAAGATATATAAGAAGGTGTCGGCCGGAATACGGCCGGCGGCGATGGAGAAAGTTGCAGATGGTGAAGCGAAGCGGTTCATTGATAAGTGCATTGGTCAGCCGAGGAGACGACCGTCCGCCGCCGAGCTTCTTCAGGATCCATTCTTTCATGGAACGGCGACGGTCAGCTCCTCCGAGAAGGAGTCGGAGCCGGAGTCAAGAGGCATTCATGGAGGCGAATCCCACCGGCCGTTACGGCCGGTACGACGAGCTACCCGGCTCCGGCGCGGTGAAAAAAGTATACTGAGTATCCGATCAGGAAGAAGGAATAGAAGCGCCATGGAACCAAGTGAAGCCGAGAAACTTCACCAACAACCCCGCCATGATCGAGCGGCTGTTCCCGGAGGTCCGGTCCGGCTGCTGCAGACGCTGAAGAACGGCAAGATAATTGCCGTTTACGACGTGCGGTGGGACAACGAACGCCGAAAGCTCAACTTCACGGCGGAGGTCTGCACCGGTGGGAATCTGAGAGAATACAGAAAAAGACACAGACACGTTTCGTTCGAGGCGGTGAAGATATTGGAAATTCAATGCCTATATGCTCCCTCATTCACAGCCTGTTTGGATGGTGATTTATTAGAATCTGAACCTTTTCTCAGTTTCATCCGAGCTATTGACCCCCAAGACATGCTTGGGATTGGCGTGAACGAGTCGACGCTACATCTGCGCTTGAATAAGGTGAACGGTGTAAAATATAGCGGTCAGAGGGCTATTGTTGAAATCAGGCTTGAGAATTTAAACCTCAGCGGAAGAATTGATGCAGATTCTGTCTGCAAGCTTTCTAGTCTAAGAGTGCTTAACTTGGCTAAAAACAACATCCAAGGAAACATTCCTGATTCAATTCTGCACTGCACCAGGCTGACCCACTTGAATGTTAGCAACAACAATTTAAGTGGGGAGGTACCTTTGGTTCTGCCTAAACTCAAACATCTCAGGAGATTAGATATCTCTAACAATCACTTCACTAGCAGCTCACCCCAATTCGAGAAGGAATTCAAGCATAGGAAGTCTCTAAGATCACGGATGACTCAGCAGGATACCATCAACGTTGGTGTAAAGGCTACATCGCCCGTCCCGTTGAGCTCACAAAGCAGCAAGTCTGATAGTGGGGATGCACACTGGCTTTACCACAAACGGATAAAATGGTTGATAATCTCTATTGTTGGTATTGTATTGTTTTTGACATTTTCATTCATAGTATGCAAGAGGGCTATGAAGTTAGCATGTAAAAAGCAAATGTTTGAGAAGCCCCTTCAGAAGTCTCCTCCTATTGTAGCTCTGTCAGCAATGTCTAGTGAGCTAGAACGCCCAGACGAAGCACTTCCAGAGCTTGTGTTCTTTAGTGAAGAAGATGAACAATTCAAAGTAGAGGACCTCCTTGAAGCAACAGCAGATTTACAAAATCTGAATATCTGCACCAGCCTTTTCAAGGTCAGGTTAAAGAGCCAGTATTATGCAGTCAAAACGTTGAGGAAAATGCAGATATCCTTTGATGAATTTCGTAAAACCATGAGGTTGATAGGAAACTTGCGGCACCCGAACATTTTACCACTCGTGGGTTATTATTCTGCAAATGATGAGAAACTACTGATCTACAAGTACCAGAGAAATGGAAGTCTGCAAGGCCTGCTTGAGGGTAGTATTGAAGGAAAGCATAAATTCCCATGGAGGATTAGATTATCTATAGCAAGTGGAATAGCAAAGGGTCTGGGTTTTATATATCAAAGATCAAGTGCAGAAGACTCCATTCCGCATGGGAATTTAAAACTTTCAAACATTCTCTTAAACGAAAACACTGAACCGCAAATCAGCGAATATGGGATCACAAAGTTCTTAGACCCAAAGAGAGTTCGTCTTCTTTCCTCCAAGGGGTATACAGCCCCGGAGAAAAAGCTATCGGAGAAAGCTGACGTGTATAGCTTTGGAATCATATTGCTCGAGTTGTTGACAGGAAAAATGGTAGCAAAAAATGGGATTAATCTCCCCAAATGGGTGAGAGCCAAGGTAAGAGAAGAGTGGACCTGTGAAGTCTTTGATGAGGAAGTTGCTCAAAATGCAGAAAGATGGGCGTTTTCTCTTCTGCTTGTTGCCTTAGACTGTGTCTCTCATTACCCTGAAGGAAGGCCAACCATGGCTGAGGCTCTGGAAAAGATAGAGGAGGTGGTGAAGGCAGTGGAAGATTATGAGCTGCGCATTTCACCTGTGTCTTCTGATTTTGGCACTCCTGAGTCTTATCGCTAG MAAVISSEKEPESETEAFVEVNPTGRYGRYDELLGAGAVKKVYRAFDQEEGIEVAWNQVKLRNFTNDPAMIDRLFSEVRLLRSLQNTNIIALYDVWRNNEDQTLNFITEVCTSGNLREYRKKHRHVSIKAVKKWSKQILKGLDYLHSHDPCVIHRDLNCSNVFVNGHIGEVKIGDLGLAATVGKSHSAHSVIGTPEFMAPELYEEDYTEMVDIYSFGLCLLEMVTLEIPYSECENVAKIYKKVSAGIRPAAMEKVADGEAKRFIDKCIGQPRRRPSAAELLQDPFFHGTATVSSSEKESEPESRGIHGGESHRPLRPVRRATRLRRGEKSILSIRSGRRNRSAMEPSEAEKLHQQPRHDRAAVPGGPVRLLQTLKNGKIIAVYDVRWDNERRKLNFTAEVCTGGNLREYRKRHRHVSFEAVKILEIQCLYAPSFTACLDGDLLESEPFLSFIRAIDPQDMLGIGVNESTLHLRLNKVNGVKYSGQRAIVEIRLENLNLSGRIDADSVCKLSSLRVLNLAKNNIQGNIPDSILHCTRLTHLNVSNNNLSGEVPLVLPKLKHLRRLDISNNHFTSSSPQFEKEFKHRKSLRSRMTQQDTINVGVKATSPVPLSSQSSKSDSGDAHWLYHKRIKWLIISIVGIVLFLTFSFIVCKRAMKLACKKQMFEKPLQKSPPIVALSAMSSELERPDEALPELVFFSEEDEQFKVEDLLEATADLQNLNICTSLFKVRLKSQYYAVKTLRKMQISFDEFRKTMRLIGNLRHPNILPLVGYYSANDEKLLIYKYQRNGSLQGLLEGSIEGKHKFPWRIRLSIASGIAKGLGFIYQRSSAEDSIPHGNLKLSNILLNENTEPQISEYGITKFLDPKRVRLLSSKGYTAPEKKLSEKADVYSFGIILLELLTGKMVAKNGINLPKWVRAKVREEWTCEVFDEEVAQNAERWAFSLLLVALDCVSHYPEGRPTMAEALEKIEEVVKAVEDYELRISPVSSDFGTPESYR Homology
BLAST of Sgr017903 vs. NCBI nr
Match: XP_022139648.1 (probable inactive receptor kinase At2g26730 isoform X1 [Momordica charantia]) HSP 1 Score: 955.3 bits (2468), Expect = 4.2e-274 Identity = 491/582 (84.36%), Postives = 529/582 (90.89%), Query Frame = 0
BLAST of Sgr017903 vs. NCBI nr
Match: XP_022139649.1 (probable inactive receptor kinase At1g48480 isoform X2 [Momordica charantia]) HSP 1 Score: 918.3 bits (2372), Expect = 5.7e-263 Identity = 469/547 (85.74%), Postives = 505/547 (92.32%), Query Frame = 0
BLAST of Sgr017903 vs. NCBI nr
Match: TYK07925.1 (putative leucine-rich repeat receptor-like protein kinase [Cucumis melo var. makuwa]) HSP 1 Score: 916.0 bits (2366), Expect = 2.8e-262 Identity = 494/688 (71.80%), Postives = 551/688 (80.09%), Query Frame = 0
BLAST of Sgr017903 vs. NCBI nr
Match: XP_038899065.1 (probable leucine-rich repeat receptor-like protein kinase At1g68400 isoform X1 [Benincasa hispida]) HSP 1 Score: 909.4 bits (2349), Expect = 2.6e-260 Identity = 472/595 (79.33%), Postives = 516/595 (86.72%), Query Frame = 0
BLAST of Sgr017903 vs. NCBI nr
Match: KAG8502816.1 (hypothetical protein CXB51_000566 [Gossypium anomalum]) HSP 1 Score: 901.4 bits (2328), Expect = 7.2e-258 Identity = 510/976 (52.25%), Postives = 657/976 (67.32%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy Swiss-Prot
Match: Q6ICW6 (Probable serine/threonine-protein kinase WNK11 OS=Arabidopsis thaliana OX=3702 GN=WNK11 PE=2 SV=1) HSP 1 Score: 467.6 bits (1202), Expect = 3.5e-130 Identity = 217/282 (76.95%), Postives = 259/282 (91.84%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy Swiss-Prot
Match: Q0D541 (Probable serine/threonine-protein kinase WNK5 OS=Oryza sativa subsp. japonica OX=39947 GN=WNK5 PE=2 SV=1) HSP 1 Score: 401.7 bits (1031), Expect = 2.3e-110 Identity = 185/276 (67.03%), Postives = 235/276 (85.14%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy Swiss-Prot
Match: Q9STK6 (Probable serine/threonine-protein kinase WNK3 OS=Arabidopsis thaliana OX=3702 GN=WNK3 PE=2 SV=1) HSP 1 Score: 364.8 bits (935), Expect = 3.2e-99 Identity = 182/302 (60.26%), Postives = 230/302 (76.16%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy Swiss-Prot
Match: Q65X23 (Probable serine/threonine-protein kinase WNK2 OS=Oryza sativa subsp. japonica OX=39947 GN=WNK2 PE=2 SV=1) HSP 1 Score: 349.4 bits (895), Expect = 1.4e-94 Identity = 167/278 (60.07%), Postives = 214/278 (76.98%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy Swiss-Prot
Match: Q9CAV6 (Serine/threonine-protein kinase WNK1 OS=Arabidopsis thaliana OX=3702 GN=WNK1 PE=1 SV=1) HSP 1 Score: 347.8 bits (891), Expect = 4.0e-94 Identity = 167/274 (60.95%), Postives = 212/274 (77.37%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy TrEMBL
Match: A0A6J1CG54 (probable inactive receptor kinase At2g26730 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111010500 PE=4 SV=1) HSP 1 Score: 955.3 bits (2468), Expect = 2.0e-274 Identity = 491/582 (84.36%), Postives = 529/582 (90.89%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy TrEMBL
Match: A0A6J1CDM1 (probable inactive receptor kinase At1g48480 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111010500 PE=4 SV=1) HSP 1 Score: 918.3 bits (2372), Expect = 2.7e-263 Identity = 469/547 (85.74%), Postives = 505/547 (92.32%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy TrEMBL
Match: A0A5D3C8X0 (Putative leucine-rich repeat receptor-like protein kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold265G00370 PE=4 SV=1) HSP 1 Score: 916.0 bits (2366), Expect = 1.4e-262 Identity = 494/688 (71.80%), Postives = 551/688 (80.09%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy TrEMBL
Match: A0A6J1CCW7 (probable inactive receptor kinase At2g26730 isoform X3 OS=Momordica charantia OX=3673 GN=LOC111010500 PE=4 SV=1) HSP 1 Score: 899.8 bits (2324), Expect = 1.0e-257 Identity = 460/538 (85.50%), Postives = 496/538 (92.19%), Query Frame = 0
BLAST of Sgr017903 vs. ExPASy TrEMBL
Match: A0A1S3CJQ7 (probable leucine-rich repeat receptor-like protein kinase At1g68400 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501232 PE=4 SV=1) HSP 1 Score: 899.0 bits (2322), Expect = 1.7e-257 Identity = 470/589 (79.80%), Postives = 510/589 (86.59%), Query Frame = 0
BLAST of Sgr017903 vs. TAIR 10
Match: AT5G55560.1 (Protein kinase superfamily protein ) HSP 1 Score: 467.6 bits (1202), Expect = 2.5e-131 Identity = 217/282 (76.95%), Postives = 259/282 (91.84%), Query Frame = 0
BLAST of Sgr017903 vs. TAIR 10
Match: AT3G48260.1 (with no lysine (K) kinase 3 ) HSP 1 Score: 364.8 bits (935), Expect = 2.3e-100 Identity = 182/302 (60.26%), Postives = 230/302 (76.16%), Query Frame = 0
BLAST of Sgr017903 vs. TAIR 10
Match: AT3G04910.1 (with no lysine (K) kinase 1 ) HSP 1 Score: 347.8 bits (891), Expect = 2.8e-95 Identity = 167/274 (60.95%), Postives = 212/274 (77.37%), Query Frame = 0
BLAST of Sgr017903 vs. TAIR 10
Match: AT3G22420.1 (with no lysine (K) kinase 2 ) HSP 1 Score: 342.4 bits (877), Expect = 1.2e-93 Identity = 160/281 (56.94%), Postives = 214/281 (76.16%), Query Frame = 0
BLAST of Sgr017903 vs. TAIR 10
Match: AT5G58350.1 (with no lysine (K) kinase 4 ) HSP 1 Score: 337.4 bits (864), Expect = 3.8e-92 Identity = 158/273 (57.88%), Postives = 204/273 (74.73%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Monk fruit (Qingpiguo) v1
Date Performed: 2022-08-01
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.
|