Csor.00g169780 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSstart_codoninitialpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAAGACGCTCTTCTCGATGCTGGCATGGACGAAGTCCAGAAGCGCCGCATGTTCGATGATCGGTGCGTATTCCCTTTCCCTTTCTGGTTTCTGATGTAGGGTTTCGGATATCGTTTAGCTTCTTGTTTTTACGGTTTTTATGCTTTTTTGTTTATTGATTTGATGTTTGAGGTTTTTGTGGAGATGAAACCCTACATTCTTCTACATTCAGTTGAATTTTCTGGAGCCATTCTCGTCAATTTGTGCTTTATGTTAGTTGTAATAGTCTTCTATTTCTGCCTCTGTCTCTTCTGATGTTGATTTTCACGTTCTTTTCATTTTTTACGGTTTTTATGTGCTTTTGTTGCTTTTTGAATTTGATTCTTTGAAGTGACTATGTTGATGTGGGGGAAAGAGTGAAATCGGAGCATGTGCTCTGCTTGTTCGTCCCCTTTTCCGCTCGTTTGTCTGCTTAGCATGTGCTCTGCTTGTTGGTGAAAGTATTAGAAACCACGACTCTCTGGAATGGTATGATATTGTCCACTTTGAGTATAAGTTCTCACTAATGAAGATGTATTCCTTACTTATAAACTCTTGATTATCCTCTCTCTTACTTAGCTATCGTGAGACTCTCTCCTAGAACAAAGTACACTATTGAGCCTCTCCTAAGGCCTATAAATCTCTCGAACAACCTCTCCTTAATTGAGGCTCGACTCTTTTATGTGGAGCCCTTGAACAAAGTACACTCTTTGTTCGACACTTGGGCCATTTTTTTACTACACCTTCGAGGCTCACAACTTTTTTGTTCGGCATTTGAGGAACCATGTTAGAAACCACAGCTCTCCCTCCCAATAATCCTTAACATGAAGTGGTATTTGAATGGGGAAAGAATTAAATATGAGTCTCTTTTTTCCATGAAAGGGAATGAGAAGTTGTCGATCAAGTGTTTGAAACCAGTCTAATTGCATTTCATTTGAGGTTCTTGGTGATTTGATGCTTAAAATTTCTTGGATCCTTGGCTGAACAAGGAACCCATCTGGTTAATTTGTGTGATACAATGTTTGAGTTTGAATAATGGGCATGACCAAGACTATGATCCCACCGTACCCATTGATCTGCAAGTAAGAAATGTTGCAGGAATTCAAGTTTGAGATCTTTGTCTTGGTTGAATCACCACTAAATTCAAAACTTAGTCTCTGATGAATCGAACTCGTTAATATATTTTTCAACCTCCTATGTTGCTGGACAGATGCATTTTAGTGGATGAGAACGATCGTGTCGTGGGTCATGAATCCAAGTATAACTGTAAGTCAAATCTTTTTCTGTATTGATTTCTTTGAAGCAAGTTCTTATGACAAAGCTGACAAAGCTAACCGTCATGATTGAACTCTGTCTCCTTGCTATGGTTTGTTAGGAACCACGAACCTTTACAATGGTATAAGATTGTCCACTTTGAGCTCTACGTAGATTGATAATGCCCAATGTTCTCATCTAACCTGCAGGTCACTTGATGGAAAATATCGAATCTAAAAACTGGCTGCATCGCGCTTTCAGCGTCTTTCTATTCAACTCCAAATATGAACTGCTTATTCAGGTATGTTATTTAGGTTTGATTCGGACGGTCTCTGAAATGGTTGCTGTTTGATCTATATATACTCTTCGAGTTCTTTTCGGTGATCGTCTTGAACGACCACTTGCTTGGATTTCCTTTTAAGCTTTGGAGTTTGTATCTTTTGGCCATTAGTCTCTTTTCACGAAGATCTCTCCTTAACTTCTAGGGAAAGAGTTAAAGTTTGTGATAATCAATATGCATTTCTTTTGATGATGTTTTTGACAGAAATGAACTATTGTTTTCATGGCATCTATGGTTTGGTTGTCATTAACATGGTTAATTCTATGTTATCTATGAAGCAACGATCTGCTAAAAAGGTGACGTTTCCGCTTGCGTGGACGGACTCGTGCTGCAGCCATCCATTGTATAAAGAATCTGATCTAATTGAGGAGGATGCCCTTGGTATGTCTATAACAAACGTTAGATCTGCTCCTTACTCTTTTTGAACCTCCTTAATACGGATCTTCCTTTACATCTACAACAACCAGGTGCAAGGAAGGCTGCCCAACGGAAGCTGTTGCACGAACTCGGTATTCCTGCTGAAGATATCCCGGTCGACCAGATCATTCCGGTTGGTCGAATGCTATACAAGGCACCCTCAGATGTCAAATGGGGGGAGCATGAATGTACTTTCCCTGACTATAACTCATCTGTTTACAACTTGAGCTGAATTGGTATCACATTTGTTCTAATAAGTGTAATGTGCAGTGGACTATCTCCTCTTCATCGTTCGAGATGTTAATGTGAACCCGAACCCGAACGAAGTGGCGGATGTGAAGTACGTAAACAAGGAGGAGTTGAAGGAGCTTGTGAGGAAAGTAGATGCTGGAGAAGAGGGCTTGAAGCTGTCTCCTTGGTTCAGGCTTGTTGTGGACAATTTTCTGTTCAAATGGTGGGATCATGTGGAGAAGGGGACTCTCAAGGAAGCTGCTGACATGAAAACAATTCACAAGTTGACCTGAGATCTGAACCTCATCCTCTATGCGACTGTTTGGTTTGAGGTTATGTTATACTATTTGAGAATAAGATATGTGAGAGAAGAATGTCTGTGAATAAAATAAAATATGTAATCACGTTGGATCTCTACTGACCTAAAGATGTTACGGTTTATAGCATATTCTATTATCTATAAATAAAACAGCTAAAACTTTATCATAAAACACTCTCATAGACTTACATGTTTGAAAACGTCTTTAAAACAACGTAAGGAAATACTAAATAAAACATTAAAAGTAATCTTATGCATGTGTCATGGTTTTTACTTGCAATGTTATCATCAACGGCATAAAGTTGTCTTGCCTTTACCTGGAACAAGAGTAGCACACAACTTGAGTATTTCTTAAAATACTCAGTAAATGACTTCACTATTGGGGTTAGGGAATGCAAACACCTGCAACTCATGATTAGGGACTTATGGTTAAAATCATTACAGGGTTGGCCTCCATTCAGATGAAACAAAATTGGATGTGTAGTACCCTACACAAGGTCCACACATGCGAGCGTGAATTCCAAAATCATTACAGGGTTGGCCTCCATTCAAATGAAACAAAATTGGATGTGTAGTACCCTACACAAGGTCCACACATGCGAGCGTGAATTCCCATGCGGTTCGCACCCTCTCCCCGAATCCATCATAGTTGAGCTAGTTGTTTGTAGTCGGACGTCTGGAGGTTAGAAACCTGTAACTGTCATGTGAGACATGATGATGATCATCATCATCATAGTGTGTGCGTCCATACTCATTATCATAATAGGAAGCATATGAACAAATAAAATGCATGAGGTCCCTATAATTTGCATATTTAAATTATTCTTATGACATAGCCTTATACATCATTCATACATTACTCTAAGTAACGTGCATGCATTGCCTTCATACGTTCATCATCATTAACATCAAATTATGTTGTGTCTTAGAAAATCTGTCGTCATATTGCATCATGATATTTAGTACACGCACATTATCATGCATCTTACATCATCATACTATCATGCATCACCATCATATCACCATATAACATCATCACATCGTCATAATGGTATCAGAGCCAGACACCAGACGATATGCCAGTAAGAACGTTGGGCCTCGAAACGGGTAGATTATGAGATCCTATATTGATGGAGAGGAATGAGTGCCAGCGAAGACACTAGACCCCAAAGGGGGGAGGATCATGAGATCCCACATCAATTGGAGAGGGGAACAAGTGACAGTGATGATGTCAAGCCTTGAAGGGGGGTGGATTGTGAGATCCCACATCAACGATATCTTTTTTATAAGGGCGTGGCTCCTTAGTAGACATGTTTTGAAGCTTTGAGGGGAAGCCCGAAAGAGAAAGCCCAAAGAAGACAATATCTAGTATTGGCAGGCATGGACCATTACATGTATATACATACATTCATATCTTAAATATAATCGAAAATATGTTTGTCCCACGTTCACTGATTTAAGGAAAGATAATAGGTTTATAAACAAAGAATATTATTTCCATTTTGGGCAGCCTAATAATAAAGTTCATCATATGATGATGTTGTATTAAAGTAGTGAATTAGTGCTAAAAATATTCTTTAATTATACTTTTCGGGGGTCCACCCATCTGAAATGGAAAACAAAATCAATTTTTATATAACCGATCCGATCCTAAACTTTTGAGATGATAATTGATATCTTATTCACTGAACTATGTTCGAATCGACCATGTCATTCTTAAATTAATAAGTTTGACATATTGCCTAAGAATAAAAGTAATATTGATACTCATCGACATGATGCTTAAAAGTAATATTGATACTCATCGACATGGTGCCCAAAAGTAATATTGATACTCATCGACATGGTGCCTATCAATGAAAGTAGCATTGATACTCATCTCGTACACTAATTTTCTTCTCAATATTCTAATTTTTTTTTTATTGGATGGATGATATAATATTCTAAAAAAAAAAAAAAAAAAGTAAGGAAAGAAAGAGGGAAGATTTAGTTATATTTAGGAGAAGGTGAGTGCCATAATTGGGTTTCACATAACAAACTGATTCCTCAGAATTTCTTCCCTTTTCACTCCATCGTCTTCCATCTTTTCCTCTGCTTTTCTCACTTGTTCTTCAATCCCCCCATCTCCTTCTTCCTTCCTCTACACCTTCAACACTCCCTTTCCGCCCCATCTTCCTAAGGTATTTCATTCTCTCTTTCCTTTTCATTTTTCGATTTTATTTCGGTTTTTTCCTGTTTCAGATTTGCGCGATTCAGATTTCCGTTCTTCTCAGTTGTTTCAAGCTCATTTTCGCTCAAAATCAATGTTTCTTTTATTTTATTTTTTTCATTTTTGTTGTTGTTCAGGTTAGAAATGAGTGAAGTTTGTGTTTCTGACGCTGATTAATTGGGTTTGATCATGTTGGTTATGTTCGTTTTCTCGGATTTCAGATGGGTTTTTGTTTAGATCTGTGAATTCCATTGTTAATGTTGTCTTGTTTGTTTATTTACTCTAAACGTTGGATCGTGGAGATTGAGGATTAATGGGATCAATCATTTCTGTGTTGATTTAATGACTATTGTTGATCTTTTTCTGTTCATCAATTTCTTCGCATTCCTATGTATCTTGCCACTTGTCTGATTTGGATTTGATGTTACTTTTTCCCGAATGAAATTTCTGCACCACAATACATTGTATGTGGCTATGTGCTTTTTGGCTTGCTTTTTTATCCTTTAGCTCTCTGTTTTTGTAATCATTCTTTAAGGCAGAAGAAGAAAAGTACATGGATAATCAAGAAGCAGGGATCTCATCTGATAACTGTTGTCTTTTTTCTTTTCTTCTTTTCTAGAACAAAACTGATATATTTATGGCAATTGCTTACCTTCTGTATTGAAAAGCTAGAATTTGCGAAGAGAAATATGGGTATGATTAGAAGAGTTGTGAGAAAGAAGTGATGCCTTTAGTCTAATAGAGGGAGAGTAGAGCTAGAGTGGAGACCTCGGTTGGAGAGGGGAATGAAACGTTCCTTATAAGGGTGTTGAAACCTTTCCCTAAGAGACGTGTTTTAAAAATGTGAGGCTGATGGCTATATGTAACGGAACAAAGAGGACAATATCTACTAGCGGCGGGCTTGGGCCGGTTACAAATGGTATTAGAGCCAGATACCGGGCAGTGTGCCAGCAAGAACGCTGGCCTCCGGGGGGTGGATTGTGAGATCCCACTTCGATTGGAGAGAGGAACGAAGCATGGCGATCCATAACGAGCCAAAGTGGACAATATCTACTAGTGGTGGGATTGAATTGTTACGAAGAGTAATGAGATATGAGAGAGCAATGCGAAATGTAATCTTTGGATGCAAACTTCAGATGGTTTCCCCTTGTTTTTGGTTGATTAAATTGGTTTTCCCTGGAAGGATATATAACAAGGAGAAGATCAAGTCATCTCTTCCTTTCTGTTCTACTGTGCAAGCTTTACGGCTTAAGCTGCTGACCTTTTTCAACTTATCCTTGCTGATGCCTAGACGAGTGAAGAACTCTATGTTGTTGAGTTTATGTTATGAGGTCACAGTTCTAGGGACAAAGCTAAGACAGGATCGTAGGCAGCAGTGGTCGACCAATAGGTCTTTTTATGGGCATTCGGATTCGGAAGTTATAGGTTATTTGCCTATAACTGACTTATTGCTCTTATGGTAGCGTTTTAAGTGATTTGAGATGGACAAAAGTGGAGAATGAAAGACTCGAAAGGGATCAGGTTTCTCATATCATATATAAAACATTGATTCTAGCTCCTCACCCGTGGAGAATCAGGAAGAATCTAGGCTTGTGACAGCTTTAGTGCTGTTTGATAGAATTTATGGCTTAAGAGACATAAAATAATCTTTAATGATTTGCACAAAAGTTTTGGTCTACTTCAGGAAGTCATAATTTTGTTCCTTCTTAGTTCCTTGTAACGGCTACCCTGCTTCTTTGTGTCCGGGTTGTAGAATCTTATAAGTTGAGGAATGTCGCAATGAGAGAATTATCTTATCGAGTATGTTGATGAGTAGGATTAGTGTGAGATCCCACGTCAATTGAATAGGAGAATGAAACATTCCTTATAAGGGCGTGTAAACCTCTCTCTATTAGATACGTTTTAAAACCTCAAGGAGAAATTCGAAAGGGAAAGTCCAAAGAAGACAATATCTACTAGCAGTGAGCTTGAACGGTTACAATTATTCATATTTAAATGTTCTAGTTTTTGAAATAGTATAGAAAATTTGAACTTTTAACAGTGTTTCTGGTAACTCGTGAGCTCCATTTTACAAGAACCGAACAACAAATACAAGAATGACATGGATAAACCCTTGATCTTGTCATTGACCTTTGTGATCAGGAGCCTTCAAATAAGTGTGCTATCTTTTCCAAGAGGATATTGCACATTGTTTTGCTATGGCTCAAAGTTGGTTGTGATGATCTGCTTTCTACTGCACACGAACATATAAGCCTTTTGTTTTTACTTGCTTCTGATAGTGCTTTTATCAGCAAAGTCCTTGAACTTGTGTTTTCTTTCAAGAAATGACCAAATAGCAGAATCTCTGGTTCACTGAATTCAATATTTGGTTACAAACACAAGGTGCTGGAGCAAATGGCCTTGGTTACCACTGCAGAAGTTTGTGATGCTAATCCACAGCTCATTGTGAGTGGTGAACTCCGAGCCCTGGAGCCAATCTTCCAGATATATGGGCGACGCCAAGTGTTTTCAGGACCAGTAGTGACACTAAAGGTGTTTGAAGACAATGTGTTGGTACGTGAGTTCCTGGAGGAGAAGGGTAAGGGCAGAGTTCTTGTGGTGGACGGAGGCGGTAGCAAGAGGTGTGCAATATTGGGTGGCAATCCTGTTGTCCAAGCTCAGAACAACGGATGGGCTGGCATAGTTGTGAATGGTTGTGTCCGAGACGTGGATGAAATCAATGGGTGCGATATTGGGGTCAGGGCTCTGGCTTCACATCCAATGAAGGCCAACAAGAAGCGGGTTGGAGAGAAGCACGTCCCTATAACTGTGGGCGGGACAAGGATCATGGATGGGGAGTGGCTGTATGCTGATACCGATGGGATTCTGGTTTCACGGACTGAGTTGTCTGTTTAG ATGGAAGACGCTCTTCTCGATGCTGGCATGGACGAAGTCCAGAAGCGCCGCATGTTCGATGATCGATGCATTTTAGTGGATGAGAACGATCGTGTCGTGGGTCATGAATCCAAGTATAACTGTCACTTGATGGAAAATATCGAATCTAAAAACTGGCTGCATCGCGCTTTCAGCGTCTTTCTATTCAACTCCAAATATGAACTGCTTATTCAGCAACGATCTGCTAAAAAGGTGACGTTTCCGCTTGCGTGGACGGACTCGTGCTGCAGCCATCCATTGTATAAAGAATCTGATCTAATTGAGGAGGATGCCCTTGGTGCAAGGAAGGCTGCCCAACGGAAGCTGTTGCACGAACTCGGTATTCCTGCTGAAGATATCCCGGTCGACCAGATCATTCCGGTTGGTCGAATGCTATACAAGGCACCCTCAGATGTCAAATGGGGGGAGCATGAATTGGACTATCTCCTCTTCATCGTTCGAGATGTTAATGTGAACCCGAACCCGAACGAAGTGGCGGATGTGAAGTACGTAAACAAGGAGGAGTTGAAGGAGCTTGTGAGGAAAGTAGATGCTGGAGAAGAGGGCTTGAAGCTGTCTCCTTGGTTCAGGCTTGTTGTGGACAATTTTCTGTTCAAATGGTGGGATCATGTGGAGAAGGGGACTCTCAAGGAAGCTGCTGACATGAAAACAATTCACAAAATTTCTTCCCTTTTCACTCCATCGTCTTCCATCTTTTCCTCTGCTTTTCTCACTTGTTCTTCAATCCCCCCATCTCCTTCTTCCTTCCTCTACACCTTCAACACTCCCTTTCCGCCCCATCTTCCTAAGGTGCTGGAGCAAATGGCCTTGGTTACCACTGCAGAAGTTTGTGATGCTAATCCACAGCTCATTGTGAGTGGTGAACTCCGAGCCCTGGAGCCAATCTTCCAGATATATGGGCGACGCCAAGTGTTTTCAGGACCAGTAGTGACACTAAAGGTGTTTGAAGACAATGTGTTGGTACGTGAGTTCCTGGAGGAGAAGGGTAAGGGCAGAGTTCTTGTGGTGGACGGAGGCGGTAGCAAGAGGTGTGCAATATTGGGTGGCAATCCTGTTGTCCAAGCTCAGAACAACGGATGGGCTGGCATAGTTGTGAATGGTTGTGTCCGAGACGTGGATGAAATCAATGGGTGCGATATTGGGGTCAGGGCTCTGGCTTCACATCCAATGAAGGCCAACAAGAAGCGGGTTGGAGAGAAGCACGTCCCTATAACTGTGGGCGGGACAAGGATCATGGATGGGGAGTGGCTGTATGCTGATACCGATGGGATTCTGGTTTCACGGACTGAGTTGTCTGTTTAG ATGGAAGACGCTCTTCTCGATGCTGGCATGGACGAAGTCCAGAAGCGCCGCATGTTCGATGATCGATGCATTTTAGTGGATGAGAACGATCGTGTCGTGGGTCATGAATCCAAGTATAACTGTCACTTGATGGAAAATATCGAATCTAAAAACTGGCTGCATCGCGCTTTCAGCGTCTTTCTATTCAACTCCAAATATGAACTGCTTATTCAGCAACGATCTGCTAAAAAGGTGACGTTTCCGCTTGCGTGGACGGACTCGTGCTGCAGCCATCCATTGTATAAAGAATCTGATCTAATTGAGGAGGATGCCCTTGGTGCAAGGAAGGCTGCCCAACGGAAGCTGTTGCACGAACTCGGTATTCCTGCTGAAGATATCCCGGTCGACCAGATCATTCCGGTTGGTCGAATGCTATACAAGGCACCCTCAGATGTCAAATGGGGGGAGCATGAATTGGACTATCTCCTCTTCATCGTTCGAGATGTTAATGTGAACCCGAACCCGAACGAAGTGGCGGATGTGAAGTACGTAAACAAGGAGGAGTTGAAGGAGCTTGTGAGGAAAGTAGATGCTGGAGAAGAGGGCTTGAAGCTGTCTCCTTGGTTCAGGCTTGTTGTGGACAATTTTCTGTTCAAATGGTGGGATCATGTGGAGAAGGGGACTCTCAAGGAAGCTGCTGACATGAAAACAATTCACAAAATTTCTTCCCTTTTCACTCCATCGTCTTCCATCTTTTCCTCTGCTTTTCTCACTTGTTCTTCAATCCCCCCATCTCCTTCTTCCTTCCTCTACACCTTCAACACTCCCTTTCCGCCCCATCTTCCTAAGGTGCTGGAGCAAATGGCCTTGGTTACCACTGCAGAAGTTTGTGATGCTAATCCACAGCTCATTGTGAGTGGTGAACTCCGAGCCCTGGAGCCAATCTTCCAGATATATGGGCGACGCCAAGTGTTTTCAGGACCAGTAGTGACACTAAAGGTGTTTGAAGACAATGTGTTGGTACGTGAGTTCCTGGAGGAGAAGGGTAAGGGCAGAGTTCTTGTGGTGGACGGAGGCGGTAGCAAGAGGTGTGCAATATTGGGTGGCAATCCTGTTGTCCAAGCTCAGAACAACGGATGGGCTGGCATAGTTGTGAATGGTTGTGTCCGAGACGTGGATGAAATCAATGGGTGCGATATTGGGGTCAGGGCTCTGGCTTCACATCCAATGAAGGCCAACAAGAAGCGGGTTGGAGAGAAGCACGTCCCTATAACTGTGGGCGGGACAAGGATCATGGATGGGGAGTGGCTGTATGCTGATACCGATGGGATTCTGGTTTCACGGACTGAGTTGTCTGTTTAG MEDALLDAGMDEVQKRRMFDDRCILVDENDRVVGHESKYNCHLMENIESKNWLHRAFSVFLFNSKYELLIQQRSAKKVTFPLAWTDSCCSHPLYKESDLIEEDALGARKAAQRKLLHELGIPAEDIPVDQIIPVGRMLYKAPSDVKWGEHELDYLLFIVRDVNVNPNPNEVADVKYVNKEELKELVRKVDAGEEGLKLSPWFRLVVDNFLFKWWDHVEKGTLKEAADMKTIHKISSLFTPSSSIFSSAFLTCSSIPPSPSSFLYTFNTPFPPHLPKVLEQMALVTTAEVCDANPQLIVSGELRALEPIFQIYGRRQVFSGPVVTLKVFEDNVLVREFLEEKGKGRVLVVDGGGSKRCAILGGNPVVQAQNNGWAGIVVNGCVRDVDEINGCDIGVRALASHPMKANKKRVGEKHVPITVGGTRIMDGEWLYADTDGILVSRTELSV Homology
BLAST of Csor.00g169780 vs. ExPASy Swiss-Prot
Match: O48964 (Isopentenyl-diphosphate Delta-isomerase I OS=Camptotheca acuminata OX=16922 GN=IPI1 PE=2 SV=1) HSP 1 Score: 416.0 bits (1068), Expect = 5.4e-115 Identity = 193/234 (82.48%), Postives = 217/234 (92.74%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy Swiss-Prot
Match: O48965 (Isopentenyl-diphosphate Delta-isomerase II OS=Camptotheca acuminata OX=16922 GN=IPI2 PE=2 SV=1) HSP 1 Score: 408.7 bits (1049), Expect = 8.6e-113 Identity = 188/235 (80.00%), Postives = 215/235 (91.49%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy Swiss-Prot
Match: Q39472 (Isopentenyl-diphosphate Delta-isomerase I OS=Clarkia breweri OX=36903 GN=IPI1 PE=2 SV=2) HSP 1 Score: 402.9 bits (1034), Expect = 4.7e-111 Identity = 184/230 (80.00%), Postives = 214/230 (93.04%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy Swiss-Prot
Match: Q42553 (Isopentenyl-diphosphate Delta-isomerase II, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=IPP2 PE=1 SV=1) HSP 1 Score: 398.3 bits (1022), Expect = 1.2e-109 Identity = 185/228 (81.14%), Postives = 207/228 (90.79%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy Swiss-Prot
Match: Q39664 (Isopentenyl-diphosphate Delta-isomerase II OS=Clarkia xantiana OX=3938 GN=IPI2 PE=3 SV=1) HSP 1 Score: 394.0 bits (1011), Expect = 2.2e-108 Identity = 185/234 (79.06%), Postives = 206/234 (88.03%), Query Frame = 0
BLAST of Csor.00g169780 vs. NCBI nr
Match: KAG6588276.1 (Isopentenyl-diphosphate Delta-isomerase I, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 900 bits (2325), Expect = 0.0 Identity = 446/446 (100.00%), Postives = 446/446 (100.00%), Query Frame = 0
BLAST of Csor.00g169780 vs. NCBI nr
Match: RXI02371.1 (hypothetical protein DVH24_030300 [Malus domestica]) HSP 1 Score: 689 bits (1777), Expect = 2.26e-245 Identity = 346/459 (75.38%), Postives = 382/459 (83.22%), Query Frame = 0
BLAST of Csor.00g169780 vs. NCBI nr
Match: RXH82577.1 (hypothetical protein DVH24_036918 [Malus domestica]) HSP 1 Score: 685 bits (1768), Expect = 2.85e-244 Identity = 337/440 (76.59%), Postives = 370/440 (84.09%), Query Frame = 0
BLAST of Csor.00g169780 vs. NCBI nr
Match: KAB2629989.1 (isopentenyl-diphosphate Delta-isomerase I-like [Pyrus ussuriensis x Pyrus communis]) HSP 1 Score: 681 bits (1756), Expect = 3.42e-243 Identity = 335/440 (76.14%), Postives = 368/440 (83.64%), Query Frame = 0
BLAST of Csor.00g169780 vs. NCBI nr
Match: KAA8533411.1 (hypothetical protein F0562_031154 [Nyssa sinensis]) HSP 1 Score: 595 bits (1535), Expect = 1.92e-210 Identity = 309/449 (68.82%), Postives = 349/449 (77.73%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy TrEMBL
Match: A0A498K4C8 (4-hydroxy-4-methyl-2-oxoglutarate aldolase OS=Malus domestica OX=3750 GN=DVH24_030300 PE=3 SV=1) HSP 1 Score: 689 bits (1777), Expect = 1.09e-245 Identity = 346/459 (75.38%), Postives = 382/459 (83.22%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy TrEMBL
Match: A0A498IKK5 (4-hydroxy-4-methyl-2-oxoglutarate aldolase OS=Malus domestica OX=3750 GN=DVH24_036918 PE=3 SV=1) HSP 1 Score: 685 bits (1768), Expect = 1.38e-244 Identity = 337/440 (76.59%), Postives = 370/440 (84.09%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy TrEMBL
Match: A0A5N5HQ38 (4-hydroxy-4-methyl-2-oxoglutarate aldolase OS=Pyrus ussuriensis x Pyrus communis OX=2448454 GN=D8674_007508 PE=3 SV=1) HSP 1 Score: 681 bits (1756), Expect = 1.66e-243 Identity = 335/440 (76.14%), Postives = 368/440 (83.64%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy TrEMBL
Match: A0A5J5AWM4 (4-hydroxy-4-methyl-2-oxoglutarate aldolase OS=Nyssa sinensis OX=561372 GN=F0562_031154 PE=3 SV=1) HSP 1 Score: 595 bits (1535), Expect = 9.28e-211 Identity = 309/449 (68.82%), Postives = 349/449 (77.73%), Query Frame = 0
BLAST of Csor.00g169780 vs. ExPASy TrEMBL
Match: A0A6A6KDP9 (4-hydroxy-4-methyl-2-oxoglutarate aldolase OS=Hevea brasiliensis OX=3981 GN=GH714_016977 PE=3 SV=1) HSP 1 Score: 567 bits (1462), Expect = 2.01e-199 Identity = 295/451 (65.41%), Postives = 319/451 (70.73%), Query Frame = 0
BLAST of Csor.00g169780 vs. TAIR 10
Match: AT3G02780.1 (isopentenyl pyrophosphate:dimethylallyl pyrophosphate isomerase 2 ) HSP 1 Score: 398.3 bits (1022), Expect = 8.2e-111 Identity = 185/228 (81.14%), Postives = 207/228 (90.79%), Query Frame = 0
BLAST of Csor.00g169780 vs. TAIR 10
Match: AT5G16440.1 (isopentenyl diphosphate isomerase 1 ) HSP 1 Score: 389.8 bits (1000), Expect = 2.9e-108 Identity = 178/228 (78.07%), Postives = 205/228 (89.91%), Query Frame = 0
BLAST of Csor.00g169780 vs. TAIR 10
Match: AT5G16450.1 (Ribonuclease E inhibitor RraA/Dimethylmenaquinone methyltransferase ) HSP 1 Score: 292.7 bits (748), Expect = 4.9e-79 Identity = 138/166 (83.13%), Postives = 155/166 (93.37%), Query Frame = 0
BLAST of Csor.00g169780 vs. TAIR 10
Match: AT5G16450.2 (Ribonuclease E inhibitor RraA/Dimethylmenaquinone methyltransferase ) HSP 1 Score: 292.7 bits (748), Expect = 4.9e-79 Identity = 138/166 (83.13%), Postives = 155/166 (93.37%), Query Frame = 0
BLAST of Csor.00g169780 vs. TAIR 10
Match: AT3G02770.1 (Ribonuclease E inhibitor RraA/Dimethylmenaquinone methyltransferase ) HSP 1 Score: 286.6 bits (732), Expect = 3.5e-77 Identity = 135/166 (81.33%), Postives = 152/166 (91.57%), 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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