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筛管分子:植原体的理想栖息地。

Sieve Elements: The Favourite Habitat of Phytoplasmas.

作者信息

van Bel Aart J E

机构信息

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

出版信息

Methods Mol Biol. 2019;1875:255-277. doi: 10.1007/978-1-4939-8837-2_19.

Abstract

The sieve elements are the only plant compartments, where phytoplasmas can survive and propagate. Therefore, this chapter is focussed on the specific molecular and cell-biological properties of the sieve element. Sieve element-companion cell complexes arise from (pro)cambial mother cells induced by key genes known to be decisive for sieve-element differentiation. The special anatomy, cell biology, and plasma-membrane outfit of sieve elements allows them to act collectively as a tube system that is able to drive a mass flow against the flow induced by transpiration. Plasmodesmal corridors are vital for the translocation of photoassimilates and systemic signals and for survival of the enucleate sieve elements. Of paramount importance is the Ca-dependent gating of plasmodesmata by callose and proteins. Hence, some of the complex, regulatory mechanisms to maintain Ca homoeostasis in sieve elements are presented. Finally, the peculiarities of the chemical and physical sieve-element environment offered to phytoplasmas are discussed.

摘要

筛管分子是植原体能够存活和繁殖的唯一植物细胞区室。因此,本章重点关注筛管分子的特定分子和细胞生物学特性。筛管分子-伴胞复合体起源于由已知对筛管分子分化起决定性作用的关键基因诱导的(原)形成层母细胞。筛管分子特殊的解剖结构、细胞生物学特性和质膜装备使其能够共同作为一个管道系统,驱动物质流逆着蒸腾作用诱导的水流流动。胞间连丝通道对于光合产物和系统性信号的运输以及无核筛管分子的存活至关重要。胼胝质和蛋白质对胞间连丝进行钙依赖性门控至关重要。因此,本文介绍了一些在筛管分子中维持钙稳态的复杂调控机制。最后,讨论了筛管分子为植原体提供的化学和物理环境的特殊性。

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