Gore Michael A, Chia Jer-Ming, Elshire Robert J, Sun Qi, Ersoz Elhan S, Hurwitz Bonnie L, Peiffer Jason A, McMullen Michael D, Grills George S, Ross-Ibarra Jeffrey, Ware Doreen H, Buckler Edward S
United States Department of Agriculture-Agriculture Research Service (USDA-ARS), USA.
Science. 2009 Nov 20;326(5956):1115-7. doi: 10.1126/science.1177837.
Maize is an important crop species of high genetic diversity. We identified and genotyped several million sequence polymorphisms among 27 diverse maize inbred lines and discovered that the genome was characterized by highly divergent haplotypes and showed 10- to 30-fold variation in recombination rates. Most chromosomes have pericentromeric regions with highly suppressed recombination that appear to have influenced the effectiveness of selection during maize inbred development and may be a major component of heterosis. We found hundreds of selective sweeps and highly differentiated regions that probably contain loci that are key to geographic adaptation. This survey of genetic diversity provides a foundation for uniting breeding efforts across the world and for dissecting complex traits through genome-wide association studies.
玉米是一种具有高度遗传多样性的重要作物品种。我们在27个不同的玉米自交系中鉴定并对数百万个序列多态性进行了基因分型,发现基因组具有高度分化的单倍型特征,并且重组率呈现出10到30倍的差异。大多数染色体具有着丝粒周围区域,这些区域的重组受到高度抑制,这似乎影响了玉米自交系发育过程中的选择效率,并且可能是杂种优势的一个主要组成部分。我们发现了数百个选择性清除区域和高度分化区域,这些区域可能包含对地理适应性至关重要的基因座。这项遗传多样性调查为整合全球育种工作以及通过全基因组关联研究剖析复杂性状奠定了基础。