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全基因组测序的 NARO 世界水稻核心收集(WRC)作为多样性和关联研究的基础。

Whole-Genome Sequencing of the NARO World Rice Core Collection (WRC) as the Basis for Diversity and Association Studies.

机构信息

Institute of Crop Science, National Agriculture and Food Research Organization, Tsukuba, Ibaraki, 305-8518 Japan.

Advanced Analysis Center, National Agriculture and Food Research Organization, Tsukuba Ibaraki, 305-8517, Japan.

出版信息

Plant Cell Physiol. 2020 May 1;61(5):922-932. doi: 10.1093/pcp/pcaa019.

Abstract

Genebanks provide access to diverse materials for crop improvement. To utilize and evaluate them effectively, core collections, such as the World Rice Core Collection (WRC) in the Genebank at the National Agriculture and Food Research Organization, have been developed. Because the WRC consists of 69 accessions with a high degree of genetic diversity, it has been used for >300 projects. To allow deeper investigation of existing WRC data and to further promote research using Genebank rice accessions, we performed whole-genome resequencing of these 69 accessions, examining their sequence variation by mapping against the Oryza sativa ssp. japonica Nipponbare genome. We obtained a total of 2,805,329 single nucleotide polymorphisms (SNPs) and 357,639 insertion-deletions. Based on the principal component analysis and population structure analysis of these data, the WRC can be classified into three major groups. We applied TASUKE, a multiple genome browser to visualize the different WRC genome sequences, and classified haplotype groups of genes affecting seed characteristics and heading date. TASUKE thus provides access to WRC genotypes as a tool for reverse genetics. We examined the suitability of the compact WRC population for genome-wide association studies (GWASs). Heading date, affected by a large number of quantitative trait loci (QTLs), was not associated with known genes, but several seed-related phenotypes were associated with known genes. Thus, for QTLs of strong effect, the compact WRC performed well in GWAS. This information enables us to understand genetic diversity in 37,000 rice accessions maintained in the Genebank and to find genes associated with different phenotypes. The sequence data have been deposited in DNA Data Bank of Japan Sequence Read Archive (DRA) (Supplementary Table S1).

摘要

基因库为作物改良提供了多样化的材料。为了有效利用和评估这些材料,已经开发了核心收集品,例如国家农业和食品研究所基因库中的世界水稻核心收集品(WRC)。由于 WRC 由 69 个具有高度遗传多样性的品系组成,因此已被用于 300 多个项目。为了允许对现有 WRC 数据进行更深入的研究,并进一步促进使用基因库水稻品系的研究,我们对这 69 个品系进行了全基因组重测序,通过将其映射到粳稻 Nipponbare 基因组上来检查它们的序列变异。我们总共获得了 2,805,329 个单核苷酸多态性(SNP)和 357,639 个插入缺失。基于这些数据的主成分分析和群体结构分析,WRC 可以分为三大类。我们应用了 TASUKE,一个多基因组浏览器,可视化不同 WRC 基因组序列,并对影响种子特征和抽穗期的基因的单倍型组进行分类。因此,TASUKE 提供了访问 WRC 基因型的工具,用于反向遗传学。我们检查了紧凑的 WRC 群体是否适合全基因组关联研究(GWAS)。抽穗期受大量数量性状位点(QTL)的影响,与已知基因没有关联,但一些与种子相关的表型与已知基因有关。因此,对于强效应的 QTL,紧凑的 WRC 在 GWAS 中表现良好。这些信息使我们能够了解基因库中保存的 37,000 个水稻品系的遗传多样性,并找到与不同表型相关的基因。序列数据已存入日本 DNA 数据银行序列读取档案(DRA)(补充表 S1)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d3/7426033/2c0ae14bccda/pcaa019f1.jpg

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