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SRX5126542: GSM3509862: YJM-SD-3; Saccharomyces cerevisiae; RNA-Seq
2 BGISEQ (BGISEQ-500) runs: 43M spots, 4.3G bases, 2.3Gb downloads

Submitted by: NCBI (GEO)
Study: Molecular basis of complex heritability in natural genotype-to-phenotype relationships
show Abstracthide Abstract
The intrinsic complexity of quantitative traits was evident even before the molecular nature of the gene was understood. Yet we still lack a detailed molecular understanding of complex heritability. Here we alleviated statistical roadblocks to high-resolution genetic mapping by using an inbred population of diploid yeast with very low linkage disequilibrium and more individuals than segregating polymorphisms. We mapped over 18,000 quantitative trait loci, resolving more than 3,300 to single nucleotides. This allowed us to explore the molecular origins of complexity, hybrid vigor, pleiotropy, and gene ´ environment interactions and to rigorously estimate the distribution of fitness effects of natural genetic variation. Our results describe a comprehensive, high-resolution genotype-to-phenotype map and define general principles underlying the complexity of heredity. Overall design: mRNA-seq performed on 2 parental diploid strains in 3 growth conditions in biological triplicate
Sample: YJM-SD-3
SAMN10585485 • SRS4139663 • All experiments • All runs
Library:
Instrument: BGISEQ-500
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: PAIRED
Construction protocol: RNA extraction, mRNA isolation by polyA enrichment were performed at the Beijing Genomics Institute cDNA library preparation was performed at the Beijing Genomics Institute
Experiment attributes:
GEO Accession: GSM3509862
Links:
Runs: 2 runs, 43M spots, 4.3G bases, 2.3Gb
Run# of Spots# of BasesSizePublished
SRR831322121,518,2422.2G1.1Gb2018-12-17
SRR831322221,504,0482.2G1.1Gb2018-12-17

ID:
6940529

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