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植物和藻类细胞壁:多样性与功能

Plant and algal cell walls: diversity and functionality.

作者信息

Popper Zoë A, Ralet Marie-Christine, Domozych David S

出版信息

Ann Bot. 2014 Oct;114(6):1043-8. doi: 10.1093/aob/mcu214.

Abstract

BACKGROUND

Although plants and many algae (e.g. the Phaeophyceae, brown, and Rhodophyceae, red) are only very distantly related they are united in their possession of carbohydrate-rich cell walls, which are of integral importance being involved in many physiological processes. Furthermore,wall components have applications within food, fuel, pharmaceuticals, fibres (e.g. for textiles and paper) and building materials and have long been an active topic of research. As shown in the 27 papers in this Special Issue, as the major deposit of photosynthetically fixed carbon, and therefore energy investment, cell walls are of undisputed importance to the organisms that possess them, the photosynthetic eukaryotes ( plants and algae). The complexities of cell wall components along with their interactions with the biotic and abiotic environment are becoming increasingly revealed.

SCOPE

The importance of plant and algal cell walls and their individual components to the function and survival of the organism, and for a number of industrial applications, are illustrated by the breadth of topics covered in this issue, which includes papers concentrating on various plants and algae, developmental stages, organs, cell wall components, and techniques. Although we acknowledge that there are many alternative ways in which the papers could be categorized (and many would fit within several topics), we have organized them as follows: (1) cell wall biosynthesis and remodelling, (2) cell wall diversity, and (3) application of new technologies to cell walls. Finally, we will consider future directions within plant cell wall research. Expansion of the industrial uses of cell walls and potentially novel uses of cell wall components are both avenues likely to direct future research activities. Fundamentally, it is the continued progression from characterization (structure, metabolism, properties and localization) of individual cell wall components through to defining their roles in almost every aspect of plant and algal physiology that will present many of the major challenges in future cell wall research.

摘要

背景

尽管植物和许多藻类(如褐藻纲的褐藻以及红藻纲的红藻)之间的亲缘关系非常遥远,但它们都具有富含碳水化合物的细胞壁,这些细胞壁在许多生理过程中起着不可或缺的作用,因而具有至关重要的意义。此外,细胞壁成分在食品、燃料、制药、纤维(如用于纺织品和纸张)及建筑材料等领域都有应用,长期以来一直是研究的热点话题。正如本期特刊中的27篇论文所示,作为光合固定碳的主要储存部位,也就是能量投资的主要部位,细胞壁对于拥有它们的光合真核生物(植物和藻类)而言,其重要性毋庸置疑。细胞壁成分的复杂性及其与生物和非生物环境的相互作用正日益显现出来。

范围

本期所涵盖的主题广度说明了植物和藻类细胞壁及其各个成分对于生物体功能和生存以及众多工业应用的重要性。这些主题包括专注于各种植物和藻类、发育阶段、器官、细胞壁成分及技术的论文。尽管我们承认这些论文可以有多种分类方式(而且许多论文会适合多个主题),但我们将它们组织如下:(1)细胞壁的生物合成与重塑;(2)细胞壁的多样性;(3)细胞壁的新技术应用。最后,我们将探讨植物细胞壁研究的未来方向。细胞壁工业用途的扩展以及细胞壁成分潜在的新用途都是可能引领未来研究活动的途径。从根本上说,从单个细胞壁成分的表征(结构、代谢、特性和定位)一直到确定它们在植物和藻类生理学几乎各个方面的作用的持续进展,将是未来细胞壁研究面临的许多重大挑战。

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