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共生微生物控制豆科植物根系多细胞内感染的共性和差异。

Commonalities and Differences in Controlling Multipartite Intracellular Infections of Legume Roots by Symbiotic Microbes.

机构信息

University of Freiburg, Faculty of Biology, Cell Biology, Schänzlestr. 1, D-79104 Freiburg, Germany.

出版信息

Plant Cell Physiol. 2018 Apr 1;59(4):661-672. doi: 10.1093/pcp/pcy043.

Abstract

Legumes have the almost unique ability to establish symbiotic associations with rhizobia and arbuscular mycorrhizal fungi. Forward and reverse genetics have identified a large number of genes that are required for either or both interactions. However, and in sharp contrast to natural soils, these interactions have been almost exclusively investigated under laboratory conditions by using separate inoculation systems, whereas both symbionts are simultaneously present in the field. Considering our recent understanding of the individual symbioses, the community is now promisingly positioned to co-inoculate plants with two or more microbes in order to understand mechanistically how legumes efficiently balance, regulate and potentially separate these symbioses and other endophytic microbes within the same root. Here, we discuss a number of key control layers that should be considered when assessing tri- or multipartite beneficial interactions and that may contribute to colonization patterns in legume roots.

摘要

豆类植物具有与根瘤菌和丛枝菌根真菌建立共生关系的几乎独一无二的能力。正向和反向遗传学已经确定了大量的基因,这些基因要么是两者相互作用所必需的,要么是两者相互作用所必需的。然而,与自然土壤形成鲜明对比的是,这些相互作用几乎完全是在实验室条件下通过使用单独的接种系统来研究的,而在田间,两种共生体同时存在。考虑到我们最近对单个共生体的理解,该领域现在有望对植物进行双重或多重微生物接种,以便从机制上理解豆科植物如何有效地平衡、调节和潜在地分离这些共生体和同一根系内的其他内生微生物。在这里,我们讨论了在评估三方或多方有益相互作用时应该考虑的一些关键控制层,这些控制层可能有助于豆科植物根系的定殖模式。

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