The genetics of plant-plant interactions and their cascading effects on agroecosystem – from model plants to application

Yasuhiro Sato, Wuest Samuel E
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Abstract

Plants are typically surrounded by neighboring individuals in agricultural fields or natural environments. In such circumstances, plant-plant interactions (PPI) are ubiquitous and represent not only important evolutionary forces but also have consequences on (agro-)ecosystem functioning, such as increased productivity and resistance. However, many mechanisms underlying these PPIs remain poorly understood. Recently, new genomic technologies and tools, such as genome-wide association studies, have facilitated genetic approaches to study PPIs, particularly among conspecific individuals. Here, we highlight emerging issues and advances in the field by focusing on three different aspects. First, we overview the current status of genetic mapping studies on PPIs and pinpoint that these studies open a new opportunity that is relevant to agriculture and breeding. Second, we introduce two proof-of-concept studies in Arabidopsis thaliana, in which genetic differences among plants improved the functioning of genotype mixtures. Both studies were able to predict effective mixtures with different experimental designs applied to different outcomes (productivity increase vs. herbivory mitigation). Third, we discuss implications from these case studies about how PPIs have cascading effects that propagate to higher levels of biological organization, such as populations or communities. At the population level, plant yield or resistance can be optimized through breeding that achieves reduced competition or push-pull protection systems, respectively. At the community level, these population-level changes may have further beneficial effects on plant-associated organisms. Overall, we suggest that the increasing availability of genomic resources will improve our understanding of PPIs and thereby contribute to the management of crops or semi-natural ecosystems.
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植物与植物之间相互作用的遗传学及其对农业生态系统的连锁效应--从模式植物到应用
在农田或自然环境中,植物通常被相邻的个体所包围。在这种情况下,植物与植物之间的相互作用(PPI)无处不在,不仅代表着重要的进化力量,还对(农业)生态系统的功能产生影响,如提高生产力和抵抗力。然而,人们对这些 PPIs 的许多内在机制仍然知之甚少。最近,新的基因组技术和工具(如全基因组关联研究)促进了研究 PPIs(尤其是同种个体间的 PPIs)的遗传方法。在此,我们将从三个不同方面重点介绍该领域的新问题和新进展。首先,我们概述了 PPIs 遗传图谱研究的现状,并指出这些研究为农业和育种带来了新的机遇。其次,我们介绍了在拟南芥中进行的两项概念验证研究,在这些研究中,植物间的遗传差异改善了基因型混合物的功能。这两项研究都能通过不同的实验设计预测有效的混合物,并应用于不同的结果(提高生产力与减轻草食性)。第三,我们将从这些案例研究中讨论PPI如何产生级联效应,并传播到生物组织的更高层次,如种群或群落。在种群层面,植物的产量或抗性可以通过育种得到优化,从而分别实现减少竞争或推拉保护系统。在群落层面,这些种群层面的变化可能会对与植物相关的生物产生进一步的有益影响。总之,我们认为,基因组资源的不断增加将提高我们对PPIs的认识,从而有助于作物或半自然生态系统的管理。
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