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植物共生体中的相互作用和协同进化。

Interactions and Coadaptation in Plant Metaorganisms.

机构信息

Environmental Genomics, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany; email:

Environmental Genomics, Christian-Albrechts University of Kiel, 24118 Kiel, Germany.

出版信息

Annu Rev Phytopathol. 2019 Aug 25;57:483-503. doi: 10.1146/annurev-phyto-082718-100008. Epub 2019 Jul 26.

Abstract

Plants associate with a wide diversity of microorganisms. Some microorganisms engage in intimate associations with the plant host, collectively forming a metaorganism. Such close coexistence with plants requires specific adaptations that allow microorganisms to overcome plant defenses and inhabit plant tissues during growth and reproduction. New data suggest that the plant immune system has a broader role beyond pathogen recognition and also plays an important role in the community assembly of the associated microorganism. We propose that core microorganisms undergo coadaptation with their plant host, notably in response to the plant immune system allowing them to persist and propagate in their host. Microorganisms, which are vertically transmitted from generation to generation via plant seeds, putatively compose highly adapted species and may have plant-beneficial functions. The extent to which plant domestication has impacted the underlying genetics of plant-microbe associations remains poorly understood. We propose that the ability of domesticated plants to select and maintain advantageous microbial partners may have been affected. In this review, we discuss factors that impact plant metaorganism assembly and function. We underline the importance of microbe-microbe interactions in plant tissues, as they are still poorly studied but may have a great impact on plant health.

摘要

植物与各种各样的微生物相关联。一些微生物与植物宿主进行密切的共生关系,共同形成一个超有机体。这种与植物的紧密共存需要特定的适应性,使微生物能够克服植物的防御,并在生长和繁殖过程中栖息在植物组织中。新的数据表明,植物免疫系统的作用不仅仅是识别病原体,它在相关微生物的群落组装中也起着重要作用。我们提出核心微生物与它们的植物宿主共同进化,特别是对植物免疫系统的响应,使它们能够在宿主中持续存在和繁殖。通过植物种子垂直传递的微生物,推测组成了高度适应的物种,并可能具有植物有益的功能。植物驯化对植物-微生物关联的潜在遗传基础的影响程度仍知之甚少。我们提出,驯化植物选择和维持有利微生物伙伴的能力可能受到了影响。在这篇综述中,我们讨论了影响植物超有机体组装和功能的因素。我们强调了植物组织中微生物-微生物相互作用的重要性,因为它们仍未得到充分研究,但可能对植物健康产生重大影响。

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