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特定环境选择改变了玉米开花时间的可塑性,并导致了广泛的多效性反应。

Environment-specific selection alters flowering-time plasticity and results in pervasive pleiotropic responses in maize.

作者信息

Choquette Nicole E, Holland James B, Weldekidan Teclemariam, Drouault Justine, de Leon Natalia, Flint-Garcia Sherry, Lauter Nick, Murray Seth C, Xu Wenwei, Wisser Randall J

机构信息

Department of Crop and Soil Sciences, North Carolina State University, Raleigh, NC, 27695, USA.

USDA-ARS Plant Science Research Unit, Raleigh, NC, 27695, USA.

出版信息

New Phytol. 2023 Apr;238(2):737-749. doi: 10.1111/nph.18769. Epub 2023 Feb 25.

Abstract

Crop genetic diversity for climate adaptations is globally partitioned. We performed experimental evolution in maize to understand the response to selection and how plant germplasm can be moved across geographical zones. Initialized with a common population of tropical origin, artificial selection on flowering time was performed for two generations at eight field sites spanning 25° latitude, a 2800 km transect. We then jointly tested all selection lineages across the original sites of selection, for the target trait and 23 other traits. Modeling intergenerational shifts in a physiological reaction norm revealed separate components for flowering-time plasticity. Generalized and local modes of selection altered the plasticity of each lineage, leading to a latitudinal pattern in the responses to selection that were strongly driven by photoperiod. This transformation led to widespread changes in developmental, architectural, and yield traits, expressed collectively in an environment-dependent manner. Furthermore, selection for flowering time alone alleviated a maladaptive syndrome and improved yields for tropical maize in the temperate zone. Our findings show how phenotypic selection can rapidly shift the flowering phenology and plasticity of maize. They also demonstrate that selecting crops to local conditions can accelerate adaptation to climate change.

摘要

用于气候适应的作物遗传多样性在全球范围内分布。我们在玉米中进行了实验进化,以了解对选择的响应以及植物种质如何跨越地理区域转移。以一个热带起源的共同群体为初始材料,在跨越25°纬度、长达2800公里的八个田间试验点对开花时间进行了两代人工选择。然后,我们在所有选择谱系的原始选择地点,对目标性状和其他23个性状进行了联合测试。对生理反应规范中的代际变化进行建模,揭示了开花时间可塑性的不同组成部分。广义和局部选择模式改变了每个谱系的可塑性,导致了对选择的响应呈现出纬度模式,这种模式受到光周期的强烈驱动。这种转变导致了发育、形态和产量性状的广泛变化,并以环境依赖的方式共同表现出来。此外,仅对开花时间进行选择就缓解了一种适应不良综合征,并提高了温带地区热带玉米的产量。我们的研究结果表明,表型选择可以迅速改变玉米的开花物候和可塑性。它们还证明,根据当地条件选择作物可以加速对气候变化的适应。

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