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小麦生物量分配的农业生态遗传学揭示了基因型与冠层遮荫和植株大小的互作。

Agroecological genetics of biomass allocation in wheat uncovers genotype interactions with canopy shade and plant size.

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), OT Gatersleben, 06466, Seeland, Germany.

Department of Plant and Environmental Sciences, University of Copenhagen, DK-1871, Frederiksberg, Denmark.

出版信息

New Phytol. 2024 Apr;242(1):107-120. doi: 10.1111/nph.19576. Epub 2024 Feb 7.

DOI:10.1111/nph.19576
PMID:38326944
Abstract

How plants distribute biomass among organs influences resource acquisition, reproduction and plant-plant interactions, and is essential in understanding plant ecology, evolution, and yield production in agriculture. However, the genetic mechanisms regulating allocation responses to the environment are largely unknown. We studied recombinant lines of wheat (Triticum spp.) grown as single plants under sunlight and simulated canopy shade to investigate genotype-by-environment interactions in biomass allocation to the leaves, stems, spikes, and grains. Size-corrected mass fractions and allometric slopes were employed to dissect allocation responses to light limitation and plant size. Size adjustments revealed light-responsive alleles associated with adaptation to the crop environment. Combined with an allometric approach, we demonstrated that polymorphism in the DELLA protein is associated with the response to shade and size. While a gibberellin-sensitive allelic effect on stem allocation was amplified when plants were shaded, size-dependent effects of this allele drive allocation to reproduction, suggesting that the ontogenetic trajectory of the plant affects the consequences of shade responses for allocation. Our approach provides a basis for exploring the genetic determinants underlying investment strategies in the face of different resource constraints and will be useful in predicting social behaviours of individuals in a crop community.

摘要

植物在器官间分配生物量的方式影响着资源获取、繁殖以及植物与植物间的相互作用,对理解植物生态学、进化以及农业中的产量生产至关重要。然而,调控对环境分配响应的遗传机制在很大程度上尚不清楚。我们研究了在阳光和模拟冠层遮荫下作为单株生长的小麦(Triticum spp.)重组系,以研究生物量在叶片、茎、穗和籽粒间分配对基因型-环境互作的影响。我们采用了大小校正质量分数和异速生长斜率来剖析对光限制和植株大小的分配响应。大小调整揭示了与适应作物环境有关的对光响应的等位基因。结合一种异速生长方法,我们证明了 DELLA 蛋白的多态性与遮荫和大小的响应有关。虽然当植株被遮荫时,赤霉素敏感的等位基因对茎分配的影响会放大,但该等位基因对大小的依赖效应会驱动对繁殖的分配,这表明植物的个体发育轨迹会影响遮荫响应对分配的后果。我们的方法为探索在不同资源限制下投资策略的遗传决定因素提供了基础,并将有助于预测作物群体中个体的社会行为。

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