CUBIC: an atlas of genetic architecture promises directed maize improvement

Author:

Liu Hai-Jun,Wang Xiaqing,Xiao Yingjie,Luo Jingyun,Qiao Feng,Yang Wenyu,Zhang Ruyang,Meng Yijiang,Sun Jiamin,Yan Shijuan,Peng Yong,Niu Luyao,Jian Liumei,Song Wei,Yan Jiali,Li Chunhui,Zhao Yanxin,Liu Ya,Warburton Marilyn L.,Zhao Jiuran,Yan JianbingORCID

Abstract

Abstract Background Identifying genotype-phenotype links and causative genes from quantitative trait loci (QTL) is challenging for complex agronomically important traits. To accelerate maize gene discovery and breeding, we present the Complete-diallel design plus Unbalanced Breeding-like Inter-Cross (CUBIC) population, consisting of 1404 individuals created by extensively inter-crossing 24 widely used Chinese maize founders. Results Hundreds of QTL for 23 agronomic traits are uncovered with 14 million high-quality SNPs and a high-resolution identity-by-descent map, which account for an average of 75% of the heritability for each trait. We find epistasis contributes to phenotypic variance widely. Integrative cross-population analysis and cross-omics mapping allow effective and rapid discovery of underlying genes, validated here with a case study on leaf width. Conclusions Through the integration of experimental genetics and genomics, our study provides useful resources and gene mining strategies to explore complex quantitative traits.

Funder

National Natural Science Foundation of China

National Basic Research Program of China

Beijing Science and Technology Planning Project

Sci-Tech Innovative Ability Project

Postdoctoral Talent Innovation Program of China

Fundamental Research Funds for the Central Universities

Publisher

Springer Science and Business Media LLC

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