生物
全基因组关联研究
单核苷酸多态性
遗传力
高粱
遗传学
遗传关联
遗传变异
数量性状位点
基因组
SNP公司
结构变异
表达数量性状基因座
进化生物学
基因型
农学
基因
作者
Zhihai Zhang,João Paulo Gomes Viana,Bosen Zhang,Kimberly K. O. Walden,Hans Müller Paul,Stephen P. Moose,Geoffrey P. Morris,Chris Daum,Kerrie Barry,Nadia Shakoor,Matthew E. Hudson
标识
DOI:10.1101/gr.278396.123
摘要
Genetic diversity is critical to crop breeding and improvement, and dissection of the genomic variation underlying agronomic traits can both assist breeding and give insight into basic biological mechanisms. Although recent genome analyses in plants reveal many structural variants (SVs), most current studies of crop genetic variation are dominated by single-nucleotide polymorphisms (SNPs). The extent of the impact of SVs on global trait variation, as well as their utility in genome-wide selection, is not yet understood. In this study, we built an SV data set based on whole-genome resequencing of diverse sorghum lines (n = 363), validated the correlation of photoperiod sensitivity and variety type, and identified SV hotspots underlying the divergent evolution of cellulosic and sweet sorghum. In addition, we showed the complementary contribution of SVs for heritability of traits related to sorghum adaptation. Importantly, inclusion of SV polymorphisms in association studies revealed genotype-phenotype associations not observed with SNPs alone. Three-way genome-wide association studies (GWAS) based on whole-genome SNP, SV, and integrated SNP + SV data sets showed substantial associations between SVs and sorghum traits. The addition of SVs to GWAS substantially increased heritability estimates for some traits, indicating their important contribution to functional allelic variation at the genome level. Our discovery of the widespread impacts of SVs on heritable gene expression variation could render a plausible mechanism for their disproportionate impact on phenotypic variation. This study expands our knowledge of SVs and emphasizes the extensive impacts of SVs on sorghum.
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