首页> 外文OA文献 >Prepenetration Apparatus Assembly Precedes and Predicts the Colonization Patterns of Arbuscular Mycorrhizal Fungi within the Root Cortex of Both Medicago truncatula and Daucus carota[W]
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Prepenetration Apparatus Assembly Precedes and Predicts the Colonization Patterns of Arbuscular Mycorrhizal Fungi within the Root Cortex of Both Medicago truncatula and Daucus carota[W]

机译:穿刺前设备组件可预测并预测Medi藜苜蓿和胡萝卜的根皮层内丛枝菌根真菌的定殖模式[W]

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摘要

Arbuscular mycorrhizas (AM) are widespread, ancient endosymbiotic associations that contribute significantly to soil nutrient uptake in plants. We have previously shown that initial fungal penetration of the host root is mediated via a specialized cytoplasmic assembly called the prepenetration apparatus (PPA), which directs AM hyphae through the epidermis (Genre et al., 2005). In vivo confocal microscopy studies performed on Medicago truncatula and Daucus carota, host plants with different patterns of AM colonization, now reveal that subsequent intracellular growth across the root outer cortex is also PPA dependent. On the other hand, inner root cortical colonization leading to arbuscule development involves more varied and complex PPA-related mechanisms. In particular, a striking alignment of polarized PPAs can be observed in adjacent inner cortical cells of D. carota, correlating with the intracellular root colonization strategy of this plant. Ultrastructural analysis of these PPA-containing cells reveals intense membrane trafficking coupled with nuclear enlargement and remodeling, typical features of arbusculated cells. Taken together, these findings imply that prepenetration responses are both conserved and modulated throughout the AM symbiosis as a function of the different stages of fungal accommodation and the host-specific pattern of root colonization. We propose a model for intracellular AM fungal accommodation integrating peri-arbuscular interface formation and the regulation of functional arbuscule development.
机译:丛枝菌根(AM)是广泛存在的古老共生共生体,对植物土壤养分的吸收有很大贡献。先前我们已经表明,宿主根部的最初真菌穿透是通过称为预渗透装置(PPA)的专门细胞质组件介导的,该装置引导AM菌丝通过表皮(Genre等人,2005)。现在,对具有不同AM定殖模式的寄主苜蓿,紫花苜蓿和Daucus carota进行的体内共聚焦显微镜研究表明,随后整个根外皮层的细胞内生长也是PPA依赖性的。另一方面,导致丛枝发育的内部根皮层定植涉及更多和更复杂的PPA相关机制。特别是,在相邻的D. carota内皮层细胞中可以观察到极化PPA的惊人排列,这与该植物的细胞内根部定植策略有关。这些包含PPA的细胞的超微结构分析表明,强烈的膜运输与核增大和重塑(已接种细胞的典型特征)相结合。综上所述,这些发现暗示,在整个AM共生过程中,根据真菌适应的不同阶段和根定殖的宿主特异性模式,预渗透反应既被保守又被调节。我们提出了一个模型,用于整合胞内界面形成和功能性丛枝发育的调控的胞内AM真菌适应。

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