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根际中可操控微生物行为的演变

Evolution of manipulative microbial behaviors in the rhizosphere.

作者信息

Klein Malin, Stewart Justin D, Porter Stephanie S, Weedon James T, Kiers E Toby

机构信息

Department of Ecological Science Vrije Universiteit Amsterdam Amsterdam The Netherlands.

School of Biological Sciences Washington State University Vancouver Washington USA.

出版信息

Evol Appl. 2022 Jan 14;15(10):1521-1536. doi: 10.1111/eva.13333. eCollection 2022 Oct.

Abstract

The rhizosphere has been called "one of the most complex ecosystems on earth" because it is a hotspot for interactions among millions of microbial cells. Many of these are microbes are also participating in a dynamic interplay with host plant tissues, signaling pathways, and metabolites. Historically, breeders have employed a -centric perspective when trying to harness the potential of microbiome-derived benefits to improve productivity and resilience of economically important plants. This is potentially problematic because: (i) the evolution of the microbes themselves is often ignored, and (ii) it assumes that the fitness of interacting plants and microbes is strictly aligned. In contrast, a -centric perspective recognizes that putatively beneficial microbes are still under selection to increase their own fitness, even if there are costs to the host. This can lead to the evolution of sophisticated, potentially subtle, ways for microbes to manipulate the phenotype of their hosts, as well as other microbes in the rhizosphere. We illustrate this idea with a review of cases where rhizosphere microbes have been demonstrated to directly manipulate host root growth, architecture and exudation, host nutrient uptake systems, and host immunity and defense. We also discuss indirect effects, whereby fitness outcomes for the plant are a consequence of ecological interactions between rhizosphere microbes. If these consequences are positive for the plant, they can potentially be misconstrued as traits that have evolved to promote host growth, even if they are a result of selection for unrelated functions. The ubiquity of both direct microbial manipulation of hosts and context-dependent, variable indirect effects leads us to argue that an evolutionary perspective on rhizosphere microbial ecology will become increasingly important as we continue to engineer microbial communities for crop production.

摘要

根际被称为“地球上最复杂的生态系统之一”,因为它是数百万微生物细胞相互作用的热点区域。其中许多微生物还与宿主植物组织、信号通路和代谢产物进行着动态相互作用。历史上,育种者在试图利用微生物群落带来的益处来提高经济作物的生产力和恢复力时,采用的是以植物为中心的视角。这可能存在问题,原因如下:(i)微生物自身的进化常常被忽视;(ii)它假定相互作用的植物和微生物的适应性是严格一致的。相比之下,以微生物为中心的视角认识到,即使对宿主有成本,假定有益的微生物仍在进行选择以提高自身适应性。这可能导致微生物以复杂、可能微妙的方式进化,从而操纵宿主的表型以及根际中的其他微生物。我们通过回顾一些案例来说明这一观点,在这些案例中,根际微生物已被证明能直接操纵宿主根系生长、结构和分泌物、宿主养分吸收系统以及宿主免疫和防御。我们还讨论了间接影响,即植物的适应性结果是根际微生物之间生态相互作用的结果。如果这些结果对植物是积极的,它们可能会被误解为是为促进宿主生长而进化的性状,即使它们是选择无关功能的结果。微生物对宿主的直接操纵以及依赖环境的可变间接影响无处不在,这使我们认为,随着我们继续为作物生产设计微生物群落,从进化角度看待根际微生物生态学将变得越来越重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90b4/9624083/05845e232879/EVA-15-1521-g001.jpg

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