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开花时间可塑性的反应规范揭示了玉米适应的生理印记。

A reaction norm for flowering time plasticity reveals physiological footprints of maize adaptation.

作者信息

Drouault Justine, Palaffre Carine, Millet Emilie J, Rodriguez Jonas, Martre Pierre, Johnson Kristian, Parent Boris, Welcker Claude, Wisser Randall J

机构信息

LEPSE, INRAE, L'Institut Agro, University of Montpellier, Montpellier 34060, FR.

Unité Expérimentale du Maïs, INRAE, Saint Martin De Hinx 40390, FR.

出版信息

G3 (Bethesda). 2025 Jul 9;15(7). doi: 10.1093/g3journal/jkaf095.

Abstract

Understanding how plant phenotypes are shaped by their environments is crucial for addressing questions about crop adaptation to new environments. This study focused on analyzing genotype-environment interactions and adaptation for flowering time in maize. We present a physiological reaction norm for flowering time plasticity (PRN-FTP), modeled from multienvironment trial networks and decomposed into its physiological components. We show how genotype-specific differences in developmental responses to temperature fluctuations condition differences in photoperiod perceived among genotypes. This occurs not only across but also within common environments, as the perception of photoperiod is altered by variation in rates of development and durations for becoming sensitized to photoperiod. Using a new metric for envirotyping sensed photoperiods for maize, it was found that, at high latitudes, different genotypes in the same environment can experience up to hours-long differences in photoperiod. This emphasizes the importance of considering genotype-specific differences in the experienced environment when investigating plasticity. Modeling the PRN-FTP for globally representative breeding material showed that tropical and temperate germplasm occupy distinct territories of the trait space for PRN-FTP parameters. Placed in the historical context of maize, our findings suggest that the geographical spread and breeding of maize was mediated by a specific modality of ecophysiological adaptation of flowering time. Our study has implications for understanding crop adaptation and for future crop improvement efforts.

摘要

了解植物表型如何受其环境塑造对于解决作物适应新环境的问题至关重要。本研究聚焦于分析玉米开花时间的基因型-环境互作及适应性。我们提出了一个开花时间可塑性的生理反应规范(PRN-FTP),它由多环境试验网络建模,并分解为其生理组成部分。我们展示了发育对温度波动的基因型特异性差异如何决定基因型间感知光周期的差异。这不仅发生在不同环境之间,也发生在共同环境之中,因为光周期的感知会因发育速率和对光周期敏感化持续时间的变化而改变。使用一种新的指标对玉米感知到的光周期进行环境分型,发现高纬度地区同一环境中的不同基因型在光周期上可能存在长达数小时的差异。这强调了在研究可塑性时考虑经历环境中基因型特异性差异的重要性。对全球代表性育种材料的PRN-FTP进行建模表明,热带和温带种质在PRN-FTP参数的性状空间中占据不同区域。从玉米的历史背景来看,我们的研究结果表明,玉米的地理传播和育种是由开花时间的一种特定生态生理适应模式介导的。我们的研究对于理解作物适应性以及未来的作物改良工作具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/300f/12239609/11c1db210b5c/jkaf095f1.jpg

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