作者
Jason P Cook, Michael D McMullen, James B Holland, Feng Tian, Peter Bradbury, Jeffrey Ross-Ibarra, Edward S Buckler, Sherry A Flint-Garcia
发表日期
2012/2/1
期刊
Plant physiology
卷号
158
期号
2
页码范围
824-834
出版商
American Society of Plant Biologists
简介
The maize (Zea mays) kernel plays a critical role in feeding humans and livestock around the world and in a wide array of industrial applications. An understanding of the regulation of kernel starch, protein, and oil is needed in order to manipulate composition to meet future needs. We conducted joint-linkage quantitative trait locus mapping and genome-wide association studies (GWAS) for kernel starch, protein, and oil in the maize nested association mapping population, composed of 25 recombinant inbred line families derived from diverse inbred lines. Joint-linkage mapping revealed that the genetic architecture of kernel composition traits is controlled by 21–26 quantitative trait loci. Numerous GWAS associations were detected, including several oil and starch associations in acyl-CoA:diacylglycerol acyltransferase1-2, a gene that regulates oil composition and quantity. Results from nested association …
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