Genetic variation among 481 diverse soybean accessions, inferred from genomic re-sequencing

Author:

Valliyodan BabuORCID,Brown Anne V.,Wang JuexinORCID,Patil Gunvant,Liu Yang,Otyama Paul I.,Nelson Rex T.,Vuong Tri,Song Qijian,Musket Theresa A.,Wagner Ruth,Marri Pradeep,Reddy Sam,Sessions Allen,Wu Xiaolei,Grant David,Bayer Philipp E.ORCID,Roorkiwal ManishORCID,Varshney Rajeev K.ORCID,Liu XinORCID,Edwards DavidORCID,Xu DongORCID,Joshi Trupti,Cannon Steven B.,Nguyen Henry T.ORCID

Abstract

AbstractWe report characteristics of soybean genetic diversity and structure from the resequencing of 481 diverse soybean accessions, comprising 52 wild (Glycine soja) selections and 429 cultivated (Glycine max) varieties (landraces and elites). This data was used to identify 7.8 million SNPs, to predict SNP effects relative to genic regions, and to identify the genetic structure, relationships, and linkage disequilibrium. We found evidence of distinct, mostly independent selection of lineages by particular geographic location. Among cultivated varieties, we identified numerous highly conserved regions, suggesting selection during domestication. Comparisons of these accessions against the whole U.S. germplasm genotyped with the SoySNP50K iSelect BeadChip revealed that over 95% of the re-sequenced accessions have a high similarity to their SoySNP50K counterparts. Probable errors in seed source or genotype tracking were also identified in approximately 5% of the accessions.

Funder

United States Department of Agriculture | Agricultural Research Service

United Soybean Board

Publisher

Springer Science and Business Media LLC

Subject

Library and Information Sciences,Statistics, Probability and Uncertainty,Computer Science Applications,Education,Information Systems,Statistics and Probability

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