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种间胞间连丝之谜:来自寄生植物的见解

The Enigma of Interspecific Plasmodesmata: Insight From Parasitic Plants.

作者信息

Fischer Karsten, Lachner Lena Anna-Maria, Olsen Stian, Mulisch Maria, Krause Kirsten

机构信息

Department of Arctic and Marine Biology, UiT The Arctic University of Norway, Tromsø, Norway.

Central Microscopy at the Biology Center, Christian-Albrechts-University, Kiel, Germany.

出版信息

Front Plant Sci. 2021 Apr 1;12:641924. doi: 10.3389/fpls.2021.641924. eCollection 2021.

Abstract

Parasitic plants live in intimate physical connection with other plants serving as their hosts. These host plants provide the inorganic and organic compounds that the parasites need for their propagation. The uptake of the macromolecular compounds happens through symplasmic connections in the form of plasmodesmata. In contrast to regular plasmodesmata, which connect genetically identical cells of an individual plant, the plasmodesmata that connect the cells of host and parasite join separate individuals belonging to different species and are therefore termed "interspecific". The existence of such interspecific plasmodesmata was deduced either indirectly using molecular approaches or observed directly by ultrastructural analyses. Most of this evidence concerns shoot parasitic species and root parasitic Orobanchaceae, which can both infect a large range of phylogenetically distant hosts. The existence of an interspecific chimeric symplast is both striking and unique and, with exceptions being observed in closely related grafted plants, exist only in these parasitic relationships. Considering the recent technical advances and upcoming tools for analyzing parasitic plants, interspecific plasmodesmata in parasite/host connections are a promising system for studying secondary plasmodesmata. For open questions like how their formation is induced, how their positioning is controlled and if they are initiated by one or both bordering cells simultaneously, the parasite/host interface with two adjacent distinguishable genetic systems provides valuable advantages. We summarize here what is known about interspecific plasmodesmata between parasitic plants and their hosts and discuss the potential of the intriguing parasite/host system for deepening our insight into plasmodesmatal structure, function, and development.

摘要

寄生植物与作为其宿主的其他植物存在密切的物理联系。这些宿主植物为寄生植物的繁殖提供所需的无机和有机化合物。大分子化合物的摄取通过胞间连丝形式的共质体连接进行。与连接单个植物基因相同细胞的普通胞间连丝不同,连接宿主和寄生细胞的胞间连丝连接属于不同物种的不同个体,因此被称为“种间”胞间连丝。这种种间胞间连丝的存在要么通过分子方法间接推导得出,要么通过超微结构分析直接观察到。这些证据大多涉及茎寄生植物和根寄生列当科植物,它们都能感染多种系统发育关系较远的宿主。种间嵌合共质体的存在既引人注目又独特,除了在亲缘关系密切的嫁接植物中观察到的例外情况外,仅存在于这些寄生关系中。考虑到近期分析寄生植物的技术进展和即将出现的工具,寄生植物/宿主连接中的种间胞间连丝是研究次生胞间连丝的一个有前景的系统。对于诸如它们的形成如何被诱导、它们的定位如何被控制以及它们是否由一个或两个相邻细胞同时启动等悬而未决的问题,具有两个相邻可区分遗传系统的寄生植物/宿主界面提供了宝贵的优势。我们在此总结关于寄生植物与其宿主之间种间胞间连丝的已知信息,并讨论这个有趣的寄生植物/宿主系统在深化我们对胞间连丝结构、功能和发育的理解方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1002/8049502/16e0198e7653/fpls-12-641924-g0001.jpg

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