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细胞壁动力学:新工具和研究问题。

Cell wall dynamics: novel tools and research questions.

机构信息

Institute for Biology, Faculty of Natural Sciences, Norwegian University of Science and Technology, 5 Høgskoleringen, Trondheim, 7491, Norway.

Umeå Plant Science Centre (UPSC), Department of Plant Physiology, Umeå University, 901 87 Umeå, Sweden.

出版信息

J Exp Bot. 2023 Nov 21;74(21):6448-6467. doi: 10.1093/jxb/erad310.

Abstract

Years ago, a classic textbook would define plant cell walls based on passive features. For instance, a sort of plant exoskeleton of invariable polysaccharide composition, and probably painted in green. However, currently, this view has been expanded to consider plant cell walls as active, heterogeneous, and dynamic structures with a high degree of complexity. However, what do we mean when we refer to a cell wall as a dynamic structure? How can we investigate the different implications of this dynamism? While the first question has been the subject of several recent publications, defining the ideal strategies and tools needed to address the second question has proven to be challenging due to the myriad of techniques available. In this review, we will describe the capacities of several methodologies to study cell wall composition, structure, and other aspects developed or optimized in recent years. Keeping in mind cell wall dynamism and plasticity, the advantages of performing long-term non-invasive live-imaging methods will be emphasized. We specifically focus on techniques developed for Arabidopsis thaliana primary cell walls, but the techniques could be applied to both secondary cell walls and other plant species. We believe this toolset will help researchers in expanding knowledge of these dynamic/evolving structures.

摘要

多年前,经典教科书会根据被动特征来定义植物细胞壁。例如,一种不变多糖组成的植物外壳,可能是绿色的。然而,如今,这种观点已经扩展到将植物细胞壁视为具有高度复杂性的活跃、异质和动态结构。但是,当我们提到细胞壁是一种动态结构时,我们是什么意思呢?我们如何研究这种动态性的不同含义?虽然第一个问题已经成为最近几篇出版物的主题,但确定解决第二个问题所需的理想策略和工具一直具有挑战性,因为有无数可用的技术。在这篇综述中,我们将描述近年来开发或优化的几种方法来研究细胞壁组成、结构和其他方面的能力。考虑到细胞壁的动态性和可塑性,我们将强调进行长期非侵入性活体成像方法的优势。我们特别关注为拟南芥初生细胞壁开发的技术,但这些技术也可以应用于次生细胞壁和其他植物物种。我们相信,这个工具集将帮助研究人员扩展对这些动态/演变结构的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4492/10662238/2be5d6a8dd34/erad310_fig1.jpg

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