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在共生固氮菌植物 Discaria trinervis 中细胞重塑和枯草溶菌素基因表达突显了宿主对细胞间弗兰克氏菌定殖的协调作用。

Cell remodeling and subtilase gene expression in the actinorhizal plant Discaria trinervis highlight host orchestration of intercellular Frankia colonization.

机构信息

LIPM, Université de Toulouse, INRA, CNRS, Castanet-Tolosan, 31326, France.

LBMIBS, Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, B1876BXD, Argentina.

出版信息

New Phytol. 2018 Aug;219(3):1018-1030. doi: 10.1111/nph.15216. Epub 2018 May 23.

Abstract

Nitrogen-fixing filamentous Frankia colonize the root tissues of its actinorhizal host Discaria trinervis via an exclusively intercellular pathway. Here we present studies aimed at uncovering mechanisms associated with this little-researched mode of root entry, and in particular the extent to which the host plant is an active partner during this process. Detailed characterization of the expression patterns of infection-associated actinorhizal host genes has provided valuable tools to identify intercellular infection sites, thus allowing in vivo confocal microscopic studies of the early stages of Frankia colonization. The subtilisin-like serine protease gene Dt12, as well as its Casuarina glauca homolog Cg12, are specifically expressed at sites of Frankia intercellular colonization of D. trinervis outer root tissues. This is accompanied by nucleo-cytoplasmic reorganization in the adjacent host cells and major remodeling of the intercellular apoplastic compartment. These findings lead us to propose that the actinorhizal host plays a major role in modifying both the size and composition of the intercellular apoplast in order to accommodate the filamentous microsymbiont. The implications of these findings are discussed in the light of the analogies that can be made with the orchestrating role of host legumes during intracellular root hair colonization by nitrogen-fixing rhizobia.

摘要

固氮丝状弗兰克氏菌通过专性的细胞间途径定殖于其共生的 actinorhizal 宿主 Discaria trinervis 的根组织中。在这里,我们进行了旨在揭示与这种研究较少的根入侵模式相关的机制的研究,特别是宿主植物在这个过程中充当积极伙伴的程度。感染相关 actinorhizal 宿主基因表达模式的详细表征为鉴定细胞间感染部位提供了有价值的工具,从而允许对弗兰克氏菌定殖的早期阶段进行体内共聚焦显微镜研究。类枯草杆菌蛋白酶基因 Dt12 及其 Casuarina glauca 同源物 Cg12 特异性地在 D. trinervis 外根组织中弗兰克氏菌细胞间定殖的部位表达。这伴随着相邻宿主细胞中的核质重排和细胞间质外体的主要重塑。这些发现使我们提出,actinorhizal 宿主在修饰细胞间质外体的大小和组成方面起着主要作用,以适应丝状微生物共生体。鉴于可以与固氮根瘤菌在细胞内根毛定殖过程中宿主豆科植物的协调作用进行类比,讨论了这些发现的意义。

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