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筛分子生物学为研究植原体在植物宿主中的生活方式提供了线索。

Sieve element biology provides leads for research on phytoplasma lifestyle in plant hosts.

机构信息

Institute of Phytopathology, Centre for BioSystems, Land Use and Nutrition, Justus-Liebig University, Giessen, Germany.

Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, Udine, Italy.

出版信息

J Exp Bot. 2019 Aug 7;70(15):3737-3755. doi: 10.1093/jxb/erz172.

Abstract

Phytoplasmas reside exclusively in sieve tubes, tubular arrays of sieve element-companion cell complexes. Hence, the cell biology of sieve elements may reveal (ultra)structural and functional conditions that are of significance for survival, propagation, colonization, and effector spread of phytoplasmas. Electron microscopic images suggest that sieve elements offer facilities for mobile and stationary stages in phytoplasma movement. Stationary stages may enable phytoplasmas to interact closely with diverse sieve element compartments. The unique, reduced sieve element outfit requires permanent support by companion cells. This notion implies a future focus on the molecular biology of companion cells to understand the sieve element-phytoplasma inter-relationship. Supply of macromolecules by companion cells is channelled via specialized symplasmic connections. Ca2+-mediated gating of symplasmic corridors is decisive for the communication within and beyond the sieve element-companion cell complex and for the dissemination of phytoplasma effectors. Thus, Ca2+ homeostasis, which affects sieve element Ca2+ signatures and induces a range of modifications, is a key issue during phytoplasma infection. The exceptional physical and chemical environment in sieve elements seems an essential, though not the only factor for phytoplasma survival.

摘要

植原体仅存在于筛管中,即筛分子-伴胞复合体的管状阵列。因此,筛分子的细胞生物学可能揭示了(超)结构和功能条件,这些条件对植原体的存活、繁殖、定殖和效应物传播具有重要意义。电子显微镜图像表明,筛分子为植原体的移动提供了可动和固定阶段的设施。固定阶段可能使植原体能够与不同的筛分子隔室密切相互作用。独特的、简化的筛分子装备需要伴胞细胞的永久支持。这一概念暗示未来将重点关注伴胞细胞的分子生物学,以了解筛分子-植原体的相互关系。伴胞细胞供应大分子是通过专门的胞质连丝连接进行的。Ca2+ 介导的胞质通道门控对于筛分子-伴胞细胞复合体内部和外部的通讯以及植原体效应物的传播是决定性的。因此,Ca2+ 动态平衡影响筛分子的 Ca2+ 特征,并诱导一系列修饰,这是植原体感染期间的一个关键问题。筛分子中特殊的物理和化学环境似乎是植原体存活的一个重要因素,但不是唯一因素。

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