Horticulture Biology and Metabolomics Center, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, Hubei, China.
Mol Biol Evol. 2021 Apr 13;38(4):1262-1275. doi: 10.1093/molbev/msaa283.
Plant phenotypic plasticity describes altered phenotypic performance of an individual when grown in different environments. Exploring genetic architecture underlying plant plasticity variation may help mitigate the detrimental effects of a rapidly changing climate on agriculture, but little research has been done in this area to date. In the present study, we established a population of 976 maize F1 hybrids by crossing 488 diverse inbred lines with two elite testers. Genome-wide association study identified hundreds of quantitative trait loci associated with phenotypic plasticity variation across diverse F1 hybrids, the majority of which contributed very little variance, in accordance with the polygenic nature of these traits. We identified several quantitative trait locus regions that may have been selected during the tropical-temperate adaptation process. We also observed heterosis in terms of phenotypic plasticity, in addition to the traditional genetic value differences measured between hybrid and inbred lines, and the pattern of which was affected by genetic background. Our results demonstrate a landscape of phenotypic plasticity in maize, which will aid in the understanding of its genetic architecture, its contribution to adaptation and heterosis, and how it may be exploited for future maize breeding in a rapidly changing environment.
植物表型可塑性描述了个体在不同环境中生长时表型表现的改变。探索植物可塑性变化的遗传结构可能有助于减轻快速变化的气候对农业的不利影响,但迄今为止,在这一领域的研究很少。在本研究中,我们通过将 488 个不同的自交系与两个优秀的测验系杂交,建立了一个由 976 个玉米 F1 杂种组成的群体。全基因组关联研究鉴定了数百个与不同 F1 杂种表型可塑性变化相关的数量性状位点,其中大多数数量性状位点的变异贡献很小,这与这些性状的多基因性质相符。我们鉴定了一些数量性状位点区域,这些区域可能在热带-温带适应过程中被选择。除了杂种与自交系之间测量的传统遗传值差异外,我们还观察到了表型可塑性杂种优势,其模式受遗传背景的影响。我们的研究结果展示了玉米表型可塑性的全貌,这将有助于理解其遗传结构、对适应和杂种优势的贡献,以及在快速变化的环境中如何利用它进行未来的玉米育种。