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Detailed information for vg0502105278:

Variant ID: vg0502105278 (JBrowse)Variation Type: SNP
Chromosome: chr05Position: 2105278
Reference Allele: GAlternative Allele: A
Primary Allele: GSecondary Allele: A

Inferred Ancestral Allele : G (evidence from allele frequency in Oryza rufipogon: G: 1.00, others allele: 0.00, population size: 93. )

Flanking Sequence (100 bp) in Reference Genome:


TATGTTATTTTAGGTTATTATACTTTAAAATGAATATGGCAACTTTCTCGAACATCGAAGATATCAACATTAATACTTCCCTGCTTTTACCAAATCATTT[G/A]
TTATATAATACCACTACATTTTCCATTAGTAAAATCCGATAAACCGGCCCCAAAATCACATCGGAAACCGAACACGGAAGAAACATCATATAAGATCCAA

Reverse complement sequence

TTGGATCTTATATGATGTTTCTTCCGTGTTCGGTTTCCGATGTGATTTTGGGGCCGGTTTATCGGATTTTACTAATGGAAAATGTAGTGGTATTATATAA[C/T]
AAATGATTTGGTAAAAGCAGGGAAGTATTAATGTTGATATCTTCGATGTTCGAGAAAGTTGCCATATTCATTTTAAAGTATAATAACCTAAAATAACATA

Allele Frequencies:

Populations Population SizeFrequency of G(primary allele) Frequency of A(secondary allele) Frequency of N Frequency of DEL Frequency of others Allele
All  4726 86.20% 13.80% 0.02% 0.00% NA
All Indica  2759 80.10% 19.80% 0.04% 0.00% NA
All Japonica  1512 99.10% 0.90% 0.00% 0.00% NA
Aus  269 99.30% 0.70% 0.00% 0.00% NA
Indica I  595 100.00% 0.00% 0.00% 0.00% NA
Indica II  465 87.10% 12.90% 0.00% 0.00% NA
Indica III  913 58.20% 41.70% 0.11% 0.00% NA
Indica Intermediate  786 86.50% 13.50% 0.00% 0.00% NA
Temperate Japonica  767 99.90% 0.10% 0.00% 0.00% NA
Tropical Japonica  504 98.00% 2.00% 0.00% 0.00% NA
Japonica Intermediate  241 98.80% 1.20% 0.00% 0.00% NA
VI/Aromatic  96 16.70% 83.30% 0.00% 0.00% NA
Intermediate  90 88.90% 11.10% 0.00% 0.00% NA

Allele Effect:

Var ID Var Locus snpEff Annotation CooVar Annotation Chromatin Accessibility Score PolyPhen-2 Effect PolyPhen-2 Score SIFT Effect SIFT Score
vg0502105278 G -> A LOC_Os05g04530.1 upstream_gene_variant ; 431.0bp to feature; MODIFIER silent_mutation Average:69.264; most accessible tissue: Callus, score: 95.873 N N N N
vg0502105278 G -> A LOC_Os05g04520.1 downstream_gene_variant ; 4850.0bp to feature; MODIFIER silent_mutation Average:69.264; most accessible tissue: Callus, score: 95.873 N N N N
vg0502105278 G -> A LOC_Os05g04530-LOC_Os05g04540 intergenic_region ; MODIFIER silent_mutation Average:69.264; most accessible tissue: Callus, score: 95.873 N N N N

Effects Predicted by Deep Convolutional Neural Networks

For each variant, we constructed two sequences that contain the variation site and the sequence around it, differing only in the variation site. We then used Basenji to predict the chromatin accessibility of each tissue for the two sequences, respectively, and scored the effect of the variant by comparing the changes in chromatin accessibility corresponding to the two genotypes in the 1 kb region around the variation site. The effect score was defined as the logarithmic ratio of the predicted chromatin accessibility of the alternative genotype to the value of the reference genotype.

Var ID Ref Alt Root (RT) Young Leaf (YL) Flag Leaf (FL) Young Panicle (YP) Lemma & Palea (LP) Stamen & Pistil (SP)
vg0502105278 G A -0.01 0.0 0.0 0.0 -0.01 -0.01

Putative Genotype-Phenotype Associations:

Var ID LMM P-value LR P-value Trait Subpopulation Is leadSNP Publication
vg0502105278 1.07E-06 1.07E-06 mr1468_2 All Not Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism, Nat Genet, 46(7):714-21, PMID:24908251
vg0502105278 7.09E-06 7.09E-06 mr1468_2 Ind_All Not Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism, Nat Genet, 46(7):714-21, PMID:24908251
vg0502105278 6.78E-06 6.78E-06 mr1905_2 Ind_All Not Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism, Nat Genet, 46(7):714-21, PMID:24908251
vg0502105278 4.39E-07 8.55E-07 mr1957_2 All Not Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism, Nat Genet, 46(7):714-21, PMID:24908251
vg0502105278 3.03E-07 3.03E-07 mr1957_2 Ind_All YES Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism, Nat Genet, 46(7):714-21, PMID:24908251