Csor.00g028120 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTAAAATCCAAAGCCGTCGACTGTCCAATTATATGTTATCGGCCAATTGAACCCTCAGACCTTGAAGTTTTGGAGCAAATTCATGGTAATTTGTTTCCGATCCGGTATGTGAATCCGATTGAGGGTTTGGTTCATTTTGATTTTGAGATGTGTTTTTGAAGTTAACGTATGGGTATATTTCTCAGGTATGAGTCGGAGTTTTTTCATAATGTTGTTAATGGGCGTGACATTGTGGCATGGGCAGCGGTCGATCATAATAGACCAGATGGAAGAACTGATGAGCTTATTGGATTTGTGACTGCACGAACTGTTCTGGCTAAAGAAAGTGAGGTTGGTTTTACCTTAATTGAAGCATCTGAATGGATTCAGGAAGTGAATTCCTTTAAGATTGAAATTTTCTTGCTTTTCAAAGTAAAGGATTTGTTAGTATCTTAGATAGTCAATCGTACTTGGGTTGGCGTTAGCGCTTCAATTTCTAGGTTGGTCGACGTTTTACCTTTATATATGCTTGATGGTTCGTCTTATATTTTCTTTTTCATACTAGAAAGAAAGTTTAAGCTGTTTTAATTCAAGACCTTGAGCATTTGGATGTATAAACCTTTTGGTGTAAAGCTAATAGATTTGAATATCATTTTTCCATTTTAGAGTTAACATGATACCAAAAAAGGTTTTAAGATCACTTGAAATACATCATGCTTATTGGGAGATAATGTTATCATAGCTGTTTCATTGACCTTGCGTTCAAGCTGAAACTCTTCCGCCATGTCTGATGTTATGCAAGTATTAGTTCCTATAGGGAGACCTTTTGTGACGCCCCTACTTTTCTTAACCTAATTAGTGACGTCAATCCATGCTTGCTTAAGTCATAAATGCGGAAATTCGTAATAAACATTTTTAAAATAAGACCATAGACTTACATAAGCAATTCAAAACATGAAATTCAGCTTAACATAGTTTTAAATGTAAATCAAGCTTAAGAAAAACACTTAACAACGGACTGAAATCCAATGCGTCCTATCATCCACTAATTTAAAATCAAAACATTCAACTGCCCTATTCTGACTTCTATGGCCTTATTTTAAAGATGTTTATTATGAATTTCCGCATTTATGACTTGAGCATGCATGGGTTGACGCATTGATTAGGTTAAGAAAACTAGGGGCGTCACAGTTTGGGGGAAGCCCAAAGAGTACAATATCTGCTAGCGGTGAGCTTGGGTTATTACACTTTTGGTGTTTGGTCACATTGGAGTTGTTTTTATTATAATCTGCCTCTGAAAGAAACATTTAGGCCGTGATCTCTTCTTAACAGTGAAACCTTAGATCCTACTGGTAAGATCTTTGGACATATCTGGAGGTCTTTGTGGAAGGAAGGAGTTTGGGTGGACTAAACATTGACGATATCAAAATAAAAAATATTGCTTTCCTCTTCAAGTGTGGAGGGAGATTGTTATCAATATTTCTGACCTGAATCAATTCAGTTGATCTCTTAATTGGCTGAACCGCTGCTCTTGGGTCTTGATGCTCTCGGTTTTCTTTAGTCAAATGTAGAGAGTTCTGGCAAGAATATGTTGCTTTCAAGTTGGCAATAGCATTAGTGTAAAATTTGGGTAGGACTTTTGACATTTGGCTCCTTCGAGCATTGTTTTCCTTAACCATTACTTTGTCCAAAGAAAGAACAATTGCAGACTATTGGAAGGTGGATGATCTTGGTTGGACCTTTAGTTGTTTGAAGAGTGCTTGGCCTCTAACGACTAAGCTAATAAGGAATACATTCCTAGTCAACGTGAAGACCTTTTGGTGTGGTATATGGAACCCTCGGGTATGTTTTCCACCATATTAGATAATGTTTGTCTTCAATGCTCTGCCAATGCAAAGCCAGAAAAGTTCATTACTTAATCTTTGTTTGGAAAGTTAAATTCCGAAAAATCAAGTTCTTGTGGTCTATAGCCTACCAAAATGCTCAAAATAAACTACAGAAAGGAAACCCACATCCTTCTCCTCCCCTCGAGTATGCTGGAACTACAAAAGAGAAGAAGATTCTGTAGATCACTTATCCATTAGTATCCCTTTGGGGACATCTGAGAAAATGGAATTGACACTTATGCATTAGTTGTCATTTTTCTTCCTCCACTCTGTTCAGTTCTCTACTGCATGTTGGATTTGTTTGGTGTGTTCTTATAGATATCAACATGGTGTTCCTAGAGGCTTTTCAGATTGGTAGTTTAGGGAGTTAGTCGGAAGTCCATTGGAAAAAAATCCACTAGTGCTATTCTTTGACTCCTTTGGATAGAGAAAAACAACTATATAAATTTAAAGATCAGCAGAGAGATTTTTGTTCATTTTTGGAGATTGTACGATATATTGCTTCCTCCGAACAATGTAATTAAGTGCAAGTGATTAAGACTTTAAATTCATTGGTACAAACACCATGGTTGGTTGGCTTTGAGAGAGATTCCACAACTTTGAGCATATGCTGGCTGTAGGAGAAAGGACATGTTTGTTTGAAGTTTGGTCTTTCTTCCTTTTCTAGGAAGTTACATCGAGCTCCTGTTGAGGAATTCTTTAAGCATGTGGTCAGTAAGTTGAGTTTGTAATTGGTGGGTATTGATTTCCACTAATCTCTTAACAATGTCTTTTAGCTACTTTGAAAACTGAAATCACCTGACTTGGATGCTGAAAACTGGGTATCTCTAATTTATACTTGCTTAAATGTCTTGTAGTTATCTGATTTACTTCGGCATGATTCATTAACCATGGATGAAACTCTAGTATACATTCTTACACTTGGAGTAGTGGAAAGCTACAGAAACCTTGGGATAGGTACGAGTTTCTCGGAGTTATATTCGATATTGTTTTTTTACACTAATGTCATGTTTACAAATATTGAATTGCCAGCTAGTTCACTTGTTCAAAAGGTAATTAAGTATGCCTCAAGCATCCCGACTTGCCGAGCAGTTTATTTGCATGTAATTTCATACAATAGTACTGCTATCAAATTCTACAAGAAAATGTCATTCAAGTGCCTACGAAGACTGTCGGGCTTTTACTTTATCAATGGTCAGCATTATGATTCTTACCTGTTCGTCTACTACGTGAATGGTGGTCGGTCTCCATGCTCTCTATTGTAAGTACCAAATATCAACTACCTTTAAGGCTTATATATGATTGCATGCTTGCTGAGAATGATACTCTCTTTGATGTGGTGGTCCTCTTTTGCCTCTTATAGCAACCAAAACCTCATCAAGAATCTTTTGACACTTGGAAAGACCTGAAACATGTTAACTGTAGAGGAAACAACTTATCTCAATCTTTACCAAAACTTTGGAATAGAAAGACCTGAAATACTCTTATTCAAACTTGTTACAGACTGACGAATCTGAAGTTCATGTAAACGTGTAAATTTTGGGTGGTTGGTGATAATAGGTCTCATTTTTGGGTGGTAAGGTAAGAGGGGAGGTGTAACAGCCCAAGCCTACTGCTATCGATATTGTTCTCTTTGGGCTTTCCCTTTAGGACTTCCCCTCAAGGTTTTAAAATGCGTCTGCTAGGGAGAGGTTTCCACACCTTTATAAATAATGCTTTGTTTCTCTCTCCAGCCGATATGGGATCACACAATCCACTCCCCTTCGGGGCCCAGCGTCCTCGCTGGCACACCGCCGGTGTCTGGTTCTGATAACATTTGTAACGACCCAAGCTCACCGTTTATTGTCCTCTTTGAGCTTTTTCCTTTCAAACTTTCTTTCAAGGTTTTAAAATGTGTCTGCTAGGGAGAGGTTTCCACACCTTTACAAAGAATTCTTTGTTCCTCACTCCAGCCGATGTGAGATCTCAGAGGAGAAACTGGACAACAGAGAGTAGACCGAAAAAGGATAGAGCGGGAGAGATGGAGAACATGTTGGTGGATGGGTAGAAAACAGATAGAAGGGGAAAGAAAAATGATGCAAGGGACAGAACCAGGTGAAAGAAAATATATTACATTAGAAACTGGACTTTAAAAGAAGAGATTTAAGAGAGGAGGGAGTGCTAGAAAGACCAAGAATCTCATTCACTATTACCAGTCTGATTCCATCAACTAGTATCAATCAAATACTAATTGTTACAAGAACTTCTAAAACGTACATTTCAGTTTATTTTATTTGGAAACGTTCCGTTTGTCAATACAAATGTCGGATGGTTCCAAAACTTGTAAGCTAGAGATCTTCTAAACCTTCAAGCTCACATTCCCTCTTTTTTTAATCGGTTCGTTTCGTATACGTGCAGAGAGGTTGTGAGTTTCATGGTGAGTTACTTAAGGGATGGTATAAAGTGTGTAACTTCAAGGCTGAGGAAGAATGAGAAAAGGAAGGTGTCAAAATGGCCCAAATGTAAAGAATCTCACAGCCTCATATCGATGGCGCAGAGCAAGAGAAATCTGGTGGTCGAGAGCAGTGGATATGAATGTGTTTAATTGGATGATATGATGTGAAGCAACTGAGAAGGAAACCGCTCACTGTATGCCCCTACTCTTCCTTCCTTCTACTCTCTATAATTTATTGTAGTTTAAAACGTATATATATACTAATGTGATGATAGTCTGTTCTCAAATGTAATAAACTTTGGTGATGTTTAATATGAAAGTGAGCCTTATGCATCCTTAATTCTTTAACTTTCCATTGTAGCACGTGTGTAATGCAGACTTGATGTCGTCTCCGCTTTTCTCCTTTACATTATTCATATGATTTTCAACGTACGAAAACTTGTAGTACTTACCAATGAGGCATTATTGATTAGTATCAGTACAATTATTGATATTGGTATTAAACTTGAGAGACTGATCTATAAACATGTTGCTTACTATCATATCATTTTAACATAGTATTACTTTTTATAATATTTGAAAAAGTGATCGGGTGTTCAGAAAAATTTGATTATCCAAAAAATTAAATGAACTCAATCCTACTCGGTTGGGTTGAATTCAAATAAATGAAAATTTTTATGTATTGAGTTATTTATGGATTTATTGAATTAAATACTCAATTTTATTATTAATTTAAAATATATACATTTTTACATGAAATATAATTATATATATATATATATTTAATAATTTTGATTATTTATTAGTTCCTCCCTTAAAAATAATTTTTAATTAATATTTTATTTTTATTATAAATAAAATTTTAAATCAACTTAATGAATTCATTATTTAATAAGAGTTATTTAGATCGACAAATAAAAAAAAATTAAAATAATTCTAAAAATGTCCTAACTCGATCCAATTCGAGCAACGACACTATTAGAAGCAACATAAATAGTTCTAAAAAATGTCATAACCTGACCCGATTTCGAGCAAGGAGCACCATCAGAAGCAACATAAATTGGATTCAGTGAGATGTGCTTATTGTAAATCTCGTGAAGCCGAATATTTTGGAACGATCCAAACCCGATCTTGTTGAAATCAGGGTTTAGAGATTCCCCACCCTGATTGGAATGGCTCAACATAAATAGTTATAAAAAAATTGGATTCAGTGAGATGTGCTCATTGTAAATCTCCCGAATATTTTGGAACATCCAAACCCGATCCTGATTAGAGAATGGAATGGCTCAACATAAATAGTTATAAAAAATGTTATAACCCGACCCAATTCGAGCAACGAGCACCATCAGAAGCAACATAAATTGGATTTAGTGAGATGTGCTTATTGTAAACCTCGTGAAGCCGAATATTTTGGAACAATCAGATCCGATCTTGTTGAAATCAGGGTTTAGAGATTCTCCGTCCTGATGGGAATGGGGCAGCCCTAGAGTTGCAGAACAATGGCATAACCAGCTATGGCTTCCGATCTCAAGTACGTCTATCTCTCCCTCTCTCCCTCTCTCTGCGATTTAAATTATCGGTACTCTCTTCATTATCATCTGTTAATTTTCTCTCCATCGATTGCTCTTTCGGTTCAATTTCGCTTTTCTTCATCTTCCATTGATACTGTTTCTGTAGACCTAGAAATCTAGCAGAAAGAGTCACCTTCTTCTTCTTCGATTCTAACTTGGTGTTGGTTCTCCATTTCAATTTGTAAGTTCTTGTTCTTCAGCATTTGTGTTCCAGGATCTGAGTGAGAAGTAGATTATGTCTGTGAGAGGGAGGAAAGTCTCCACCCGAGGGGAAGCAGTGGCAGCAAGTTATGCTTTTGGGCCCCTCGAAGATGATGTTATTATAAAACACAGGCTTCTCACCCGTACAACGACCACAAGGGGGGAACCTCCATTGAAGAAGCTCCAGAAGAAGTTCACTTCCTTTGTTCTTGAGATTGAAAAGGATGGGAGTAATCATGATGACTGTGAGAAGCTTTCCAGAGCTTTCTTACAAGAGCTATCCACATTTGAAATTCCTTTGCTGAAGAGTAAAGCAGTTGTTGATGCAAATATTAGGGAAAAGGAGAGCTTCCATGAGTTTAAGGATGAGATAAACAGACAAATTTTGTTAGCTCAGGATGATATTGAAGATCTTAAGAAGCAGCTTGAAGAAAGCAAAATTGAGAGGCAACACAAGGAGGAGTGTGAGGCAATTCGGAAACTTGTAGCAGCACAGCCACCCAGGTCTGTGACACAAAAGACTATTGTGGTGTTAGAGAAAGAGATTGCGGCACTTGATGCGGAGAACACAGCTAGTTCAAGGATGCTGGAGCTTCGCAAGAAACAATTTGCTCTTTTGTTGCATGTGGTATGTTTCCTTCAGCAATGTTTTCTTAGTTATATTCTTTAATTGTACTCTTAAAATGAAAATTTGGGTCTCTTTGTTTGATGATTCATTAGTTTAGACCTTGGATTCTCCCCCACCGCCATTTTTTCACTTTTGAATTGTTCAGGGATTCTTAGACTGATTGTTGCACGAAGAAGATTGAGATGTATATGGTATCAGTGCTTGAACCCCCAATCTTTGGCTCATTTAAGGAAGAATGAGAATGGTTCTATTAGAGTTTTGCTAGATTACTCTACGATATTCGTAGTGGTTGGTCGTCAATTCCAATACAAAGATTTATAGAAAGAATTCTATGCTCAGATTTTGATACGTTTATAGATCCAATTAAACTGCATTTATGGATCATTACATATAATTACCCATTAAGATAATGTCTGAAAGTAGGATTTCTTCTATTATTGTCTTTTTTATTGTCTTTTTCGAATGGAAGGATTTTTGATTGGCTGAGTTCAAGCAAGAAAGGGGTTTTGACCTACTTTATGTTATGAATTCCGTATCCCTTAATAATAAATAGGGGATTAATAACTCAATCAAAAGAAGTTGTTAGGTGCTGATATGGTAGGAAAATTTGATTTGATAAAGAAGTGACTTTTAGTATTCCGTCTTTTGGAGAGGAATCCCTTCATGAAAGAAGAACAAACTCTTTAGATAAACATAGTGAAAGCCTTATTTTGGAATCTATGGTTGTAGAGAAATCACAGGATTTTCAATGAGACCAAATCTACCTATGAAACCTTCTTAAACAGCGTGCTTATGGCTATTGGGTTTGTCTAGCAGACTCACAGTGAAAATCTACCATTTTGCCCAGCCGTTCCGGGTAAAAATATTTTAGGCCTTCAATCTTTACACTGATTTTGCGAATGACACAATCACTCTTTTAGAAAAGAGTTTCATGGGTCATCCTTTCAGCAAGGAAAATGAGGTCTTGTGCGTCTTTATCGACAAAAGCTTCCAAACATTCGATTTTCACTTTGTGTAAATTCTCCCCATATATGACTACAACCTTACTTCTCTGACATATTGGCATAGTTTTTTGTATATCCTTTTGGCATTTTCCCCCTCTTTGTAAGTTCACCTCATCCAATGAATTGAAGGTATTTGTTTCTCATAAAATTATGTACAACATTTTTTTGTAGCAATGTACAACTTCATGCTTCTGGTGATGTCATACGAATATAGAATGCTTTTGTAACAATCCTATCTCAATGCTTCTGGTGATGGCAATACAACCTGTTTCTTATAAAAAGAAAAAAAAGGAGGCTTTATCTTGATTTGCATTAGAATCAAATCTTCAACAAGGCACTGCTTTATCCTAGCCACTATCCCATGCATGCTTTAGTTCCGAACTGAGGGTTTTCATGAAGCATATGTCTACCACGAGGTTCTGAGAAAGATGAAATACCTTTAAATGCATCTATTCAGGAGTTATAGCTGCAGCCACTTTGTAAGAGATCTAACGGTCCACTATTAGCCATTCTAGAATCTATTACATTGTTCCCTTGTAGGGTTAAAACGTTCTGTCACTGCCATTTGATCCAAGGGTTTCACATTCAACTAGAGACTGCCTAGAAAATACCAAGTAGAAAGCAAAATTCACCCTGCTTCTCCTGAATTTAAGGAAAAGAGTTGTTTATCAATAATTTGTTTTGGGGGAATAGAGAAAGTTGTGGTATAGTGCTTGGTTGGTAGTTTCCAGGGAAATGTCTGTATGTGTTTTTAACTTCCCTATTGGAAATGACTTAAACCAATACATACGTGGGAGGAGAACGAAACATTTTTTATAAGGGTGTAAAAACCTCTCCCTAGCAAACACGTTTTAAAAACCTTGAAGGGAAGCCTAAAAAGGAAAGCTCAAAGAGAACAATATCTGCTAGCGGTGGCCTTGGGCTGTTACAACATATACTTTAATCTGAATTAACATTTTGTATATATACTGTGCGTGTGTTTTTTTCATTAATATTCTTTTAGAGGAAGAAGGAGCTTATGATTGGGGCCAAGGGACATAGCGAGGCCTTTTAAATCTCTAGAAATTGTAGTCACAACTAAAAAATCTCTGTTTGTTTGAAGATTGTCCTCTGCTGCAACATTTTTCAAGCAAAAATTCTCTGAAATCCTATATGAGCAGTAGTATTGTGTCTAAATAATTGTTGTCTGGCTGTGGTTGTGTACAATGAAATCCTCAACTGATATTGGTGCAGGTGGATGAGTTGCAAAACACCATAGAGGATGAACAGAAGAGTTTAATGGAGGAAATGAGAATCACAGCTGAGGAGAATAAGATTGGTGTGGACGATGCTAGTGGAGGCCTGGAAGCCATGGCTGTGGACTGA ATGGTAAAATCCAAAGCCGTCGACTGTCCAATTATATGTTATCGGCCAATTGAACCCTCAGACCTTGAAGTTTTGGAGCAAATTCATGGTAATTTGTTTCCGATCCGGTATGAGTCGGAGTTTTTTCATAATGTTGTTAATGGGCGTGACATTGTGGCATGGGCAGCGGTCGATCATAATAGACCAGATGGAAGAACTGATGAGCTTATTGGATTTGTGACTGCACGAACTGTTCTGGCTAAAGAAAGTGAGTTATCTGATTTACTTCGGCATGATTCATTAACCATGGATGAAACTCTAGTATACATTCTTACACTTGGAGTAGTGGAAAGCTACAGAAACCTTGGGATAGCTAGTTCACTTGTTCAAAAGGTAATTAAGTATGCCTCAAGCATCCCGACTTGCCGAGCAGTTTATTTGCATGTAATTTCATACAATAGTACTGCTATCAAATTCTACAAGAAAATGTCATTCAAGTGCCTACGAAGACTGTCGGGCTTTTACTTTATCAATGGTCAGCATTATGATTCTTACCTGTTCGTCTACTACGTGAATGGTGGTCGGTCTCCATGCTCTCTATTAGAGGTTGTGAGTTTCATGGTGAGTTACTTAAGGGATGGTATAAAGTGTGTAACTTCAAGGCTGAGGAAGAATGAGAAAAGGAAGGTGTCAAAATGGCCCAAATGTAAAGAATCTCACAGCCTCATATCGATGGCGCAGAGCAAGAGAAATCTGGGTTTAGAGATTCTCCGTCCTGATGGGAATGGGGCAGCCCTAGAGTTGCAGAACAATGGCATAACCAGCTATGGCTTCCGATCTCAATTCTTGTTCTTCAGCATTTGTGTTCCAGGATCTGAGCTTCTCACCCGTACAACGACCACAAGGGGGGAACCTCCATTGAAGAAGCTCCAGAAGAAGTTCACTTCCTTTGTTCTTGAGATTGAAAAGGATGGGAGTAATCATGATGACTGTGAGAAGCTTTCCAGAGCTTTCTTACAAGAGCTATCCACATTTGAAATTCCTTTGCTGAAGAGTAAAGCAGTTGTTGATGCAAATATTAGGGAAAAGGAGAGCTTCCATGAGTTTAAGGATGAGATAAACAGACAAATTTTGTTAGCTCAGGATGATATTGAAGATCTTAAGAAGCAGCTTGAAGAAAGCAAAATTGAGAGGCAACACAAGGAGGAGTGTGAGGCAATTCGGAAACTTGTAGCAGCACAGCCACCCAGGTCTGTGACACAAAAGACTATTGTGGTGTTAGAGAAAGAGATTGCGGCACTTGATGCGGAGAACACAGCTAGTTCAAGGATGCTGGAGCTTCGCAAGAAACAATTTGCTCTTTTGTTGCATGTGGTGGATGAGTTGCAAAACACCATAGAGGATGAACAGAAGAGTTTAATGGAGGAAATGAGAATCACAGCTGAGGAGAATAAGATTGGTGTGGACGATGCTAGTGGAGGCCTGGAAGCCATGGCTGTGGACTGA ATGGTAAAATCCAAAGCCGTCGACTGTCCAATTATATGTTATCGGCCAATTGAACCCTCAGACCTTGAAGTTTTGGAGCAAATTCATGGTAATTTGTTTCCGATCCGGTATGAGTCGGAGTTTTTTCATAATGTTGTTAATGGGCGTGACATTGTGGCATGGGCAGCGGTCGATCATAATAGACCAGATGGAAGAACTGATGAGCTTATTGGATTTGTGACTGCACGAACTGTTCTGGCTAAAGAAAGTGAGTTATCTGATTTACTTCGGCATGATTCATTAACCATGGATGAAACTCTAGTATACATTCTTACACTTGGAGTAGTGGAAAGCTACAGAAACCTTGGGATAGCTAGTTCACTTGTTCAAAAGGTAATTAAGTATGCCTCAAGCATCCCGACTTGCCGAGCAGTTTATTTGCATGTAATTTCATACAATAGTACTGCTATCAAATTCTACAAGAAAATGTCATTCAAGTGCCTACGAAGACTGTCGGGCTTTTACTTTATCAATGGTCAGCATTATGATTCTTACCTGTTCGTCTACTACGTGAATGGTGGTCGGTCTCCATGCTCTCTATTAGAGGTTGTGAGTTTCATGGTGAGTTACTTAAGGGATGGTATAAAGTGTGTAACTTCAAGGCTGAGGAAGAATGAGAAAAGGAAGGTGTCAAAATGGCCCAAATGTAAAGAATCTCACAGCCTCATATCGATGGCGCAGAGCAAGAGAAATCTGGGTTTAGAGATTCTCCGTCCTGATGGGAATGGGGCAGCCCTAGAGTTGCAGAACAATGGCATAACCAGCTATGGCTTCCGATCTCAATTCTTGTTCTTCAGCATTTGTGTTCCAGGATCTGAGCTTCTCACCCGTACAACGACCACAAGGGGGGAACCTCCATTGAAGAAGCTCCAGAAGAAGTTCACTTCCTTTGTTCTTGAGATTGAAAAGGATGGGAGTAATCATGATGACTGTGAGAAGCTTTCCAGAGCTTTCTTACAAGAGCTATCCACATTTGAAATTCCTTTGCTGAAGAGTAAAGCAGTTGTTGATGCAAATATTAGGGAAAAGGAGAGCTTCCATGAGTTTAAGGATGAGATAAACAGACAAATTTTGTTAGCTCAGGATGATATTGAAGATCTTAAGAAGCAGCTTGAAGAAAGCAAAATTGAGAGGCAACACAAGGAGGAGTGTGAGGCAATTCGGAAACTTGTAGCAGCACAGCCACCCAGGTCTGTGACACAAAAGACTATTGTGGTGTTAGAGAAAGAGATTGCGGCACTTGATGCGGAGAACACAGCTAGTTCAAGGATGCTGGAGCTTCGCAAGAAACAATTTGCTCTTTTGTTGCATGTGGTGGATGAGTTGCAAAACACCATAGAGGATGAACAGAAGAGTTTAATGGAGGAAATGAGAATCACAGCTGAGGAGAATAAGATTGGTGTGGACGATGCTAGTGGAGGCCTGGAAGCCATGGCTGTGGACTGA MVKSKAVDCPIICYRPIEPSDLEVLEQIHGNLFPIRYESEFFHNVVNGRDIVAWAAVDHNRPDGRTDELIGFVTARTVLAKESELSDLLRHDSLTMDETLVYILTLGVVESYRNLGIASSLVQKVIKYASSIPTCRAVYLHVISYNSTAIKFYKKMSFKCLRRLSGFYFINGQHYDSYLFVYYVNGGRSPCSLLEVVSFMVSYLRDGIKCVTSRLRKNEKRKVSKWPKCKESHSLISMAQSKRNLGLEILRPDGNGAALELQNNGITSYGFRSQFLFFSICVPGSELLTRTTTTRGEPPLKKLQKKFTSFVLEIEKDGSNHDDCEKLSRAFLQELSTFEIPLLKSKAVVDANIREKESFHEFKDEINRQILLAQDDIEDLKKQLEESKIERQHKEECEAIRKLVAAQPPRSVTQKTIVVLEKEIAALDAENTASSRMLELRKKQFALLLHVVDELQNTIEDEQKSLMEEMRITAEENKIGVDDASGGLEAMAVD Homology
BLAST of Csor.00g028120 vs. ExPASy Swiss-Prot
Match: Q9M8T9 (Histone acetyltransferase MCC1 OS=Arabidopsis thaliana OX=3702 GN=MCC1 PE=2 SV=1) HSP 1 Score: 285.8 bits (730), Expect = 9.3e-76 Identity = 137/224 (61.16%), Postives = 178/224 (79.46%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy Swiss-Prot
Match: Q9M8T6 (THO complex subunit 7B OS=Arabidopsis thaliana OX=3702 GN=THO7B PE=1 SV=1) HSP 1 Score: 276.6 bits (706), Expect = 5.6e-73 Identity = 146/200 (73.00%), Postives = 178/200 (89.00%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy Swiss-Prot
Match: Q8LDS5 (THO complex subunit 7A OS=Arabidopsis thaliana OX=3702 GN=THO7A PE=1 SV=1) HSP 1 Score: 275.0 bits (702), Expect = 1.6e-72 Identity = 151/212 (71.23%), Postives = 178/212 (83.96%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy Swiss-Prot
Match: Q17QK9 (N-alpha-acetyltransferase 60 OS=Bos taurus OX=9913 GN=NAA60 PE=2 SV=1) HSP 1 Score: 100.1 bits (248), Expect = 7.2e-20 Identity = 60/196 (30.61%), Postives = 106/196 (54.08%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy Swiss-Prot
Match: Q9DBU2 (N-alpha-acetyltransferase 60 OS=Mus musculus OX=10090 GN=Naa60 PE=2 SV=1) HSP 1 Score: 98.6 bits (244), Expect = 2.1e-19 Identity = 58/192 (30.21%), Postives = 104/192 (54.17%), Query Frame = 0
BLAST of Csor.00g028120 vs. NCBI nr
Match: KAG6571183.1 (Histone acetyltransferase MCC1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 952 bits (2462), Expect = 0.0 Identity = 494/494 (100.00%), Postives = 494/494 (100.00%), Query Frame = 0
BLAST of Csor.00g028120 vs. NCBI nr
Match: CAA7051569.1 (unnamed protein product [Microthlaspi erraticum]) HSP 1 Score: 558 bits (1439), Expect = 1.57e-192 Identity = 299/505 (59.21%), Postives = 377/505 (74.65%), Query Frame = 0
BLAST of Csor.00g028120 vs. NCBI nr
Match: XP_022943673.1 (histone acetyltransferase MCC1-like [Cucurbita moschata] >XP_022943674.1 histone acetyltransferase MCC1-like [Cucurbita moschata] >XP_022943675.1 histone acetyltransferase MCC1-like [Cucurbita moschata]) HSP 1 Score: 485 bits (1248), Expect = 2.34e-168 Identity = 245/248 (98.79%), Postives = 246/248 (99.19%), Query Frame = 0
BLAST of Csor.00g028120 vs. NCBI nr
Match: XP_023513278.1 (histone acetyltransferase MCC1-like [Cucurbita pepo subsp. pepo] >XP_023513280.1 histone acetyltransferase MCC1-like [Cucurbita pepo subsp. pepo] >XP_023513281.1 histone acetyltransferase MCC1-like [Cucurbita pepo subsp. pepo] >XP_023521587.1 histone acetyltransferase MCC1-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 481 bits (1237), Expect = 1.10e-166 Identity = 241/248 (97.18%), Postives = 246/248 (99.19%), Query Frame = 0
BLAST of Csor.00g028120 vs. NCBI nr
Match: XP_022986590.1 (histone acetyltransferase MCC1-like [Cucurbita maxima] >XP_022986591.1 histone acetyltransferase MCC1-like [Cucurbita maxima] >XP_022986592.1 histone acetyltransferase MCC1-like [Cucurbita maxima]) HSP 1 Score: 476 bits (1226), Expect = 5.14e-165 Identity = 241/248 (97.18%), Postives = 243/248 (97.98%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy TrEMBL
Match: A0A6D2KI12 (N-acetyltransferase domain-containing protein OS=Microthlaspi erraticum OX=1685480 GN=MERR_LOCUS38804 PE=4 SV=1) HSP 1 Score: 558 bits (1439), Expect = 7.62e-193 Identity = 299/505 (59.21%), Postives = 377/505 (74.65%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy TrEMBL
Match: A0A6J1FV17 (histone acetyltransferase MCC1-like OS=Cucurbita moschata OX=3662 GN=LOC111448355 PE=4 SV=1) HSP 1 Score: 485 bits (1248), Expect = 1.13e-168 Identity = 245/248 (98.79%), Postives = 246/248 (99.19%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy TrEMBL
Match: A0A6J1J800 (histone acetyltransferase MCC1-like OS=Cucurbita maxima OX=3661 GN=LOC111484287 PE=4 SV=1) HSP 1 Score: 476 bits (1226), Expect = 2.49e-165 Identity = 241/248 (97.18%), Postives = 243/248 (97.98%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy TrEMBL
Match: A0A1S3CA55 (histone acetyltransferase MCC1 OS=Cucumis melo OX=3656 GN=LOC103498387 PE=4 SV=1) HSP 1 Score: 456 bits (1174), Expect = 1.95e-157 Identity = 228/248 (91.94%), Postives = 238/248 (95.97%), Query Frame = 0
BLAST of Csor.00g028120 vs. ExPASy TrEMBL
Match: A0A5D3CIU5 (Histone acetyltransferase MCC1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold66G00210 PE=4 SV=1) HSP 1 Score: 456 bits (1174), Expect = 1.95e-157 Identity = 228/248 (91.94%), Postives = 238/248 (95.97%), Query Frame = 0
BLAST of Csor.00g028120 vs. TAIR 10
Match: AT5G16800.2 (Acyl-CoA N-acyltransferases (NAT) superfamily protein ) HSP 1 Score: 316.6 bits (810), Expect = 3.5e-86 Identity = 153/248 (61.69%), Postives = 193/248 (77.82%), Query Frame = 0
BLAST of Csor.00g028120 vs. TAIR 10
Match: AT5G16800.3 (Acyl-CoA N-acyltransferases (NAT) superfamily protein ) HSP 1 Score: 297.7 bits (761), Expect = 1.7e-80 Identity = 149/251 (59.36%), Postives = 189/251 (75.30%), Query Frame = 0
BLAST of Csor.00g028120 vs. TAIR 10
Match: AT3G02980.1 (MEIOTIC CONTROL OF CROSSOVERS1 ) HSP 1 Score: 285.8 bits (730), Expect = 6.6e-77 Identity = 137/224 (61.16%), Postives = 178/224 (79.46%), Query Frame = 0
BLAST of Csor.00g028120 vs. TAIR 10
Match: AT5G16800.1 (Acyl-CoA N-acyltransferases (NAT) superfamily protein ) HSP 1 Score: 284.3 bits (726), Expect = 1.9e-76 Identity = 136/213 (63.85%), Postives = 170/213 (79.81%), Query Frame = 0
BLAST of Csor.00g028120 vs. TAIR 10
Match: AT3G02950.1 (Tho complex subunit 7/Mft1p ) HSP 1 Score: 276.6 bits (706), Expect = 4.0e-74 Identity = 146/200 (73.00%), Postives = 178/200 (89.00%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) 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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