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果胶的众多分子剪刀:植物多聚半乳糖醛酸酶的分类、表达及功能

A Profusion of Molecular Scissors for Pectins: Classification, Expression, and Functions of Plant Polygalacturonases.

作者信息

Yang Yang, Yu Youjian, Liang Ying, Anderson Charles T, Cao Jiashu

机构信息

Laboratory of Cell and Molecular Biology, Institute of Vegetable Science, Zhejiang University, Hangzhou, China.

Key Laboratory of Horticultural Plant Growth, Development and Quality Improvement, Ministry of Agriculture - Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Hangzhou, China.

出版信息

Front Plant Sci. 2018 Aug 14;9:1208. doi: 10.3389/fpls.2018.01208. eCollection 2018.

Abstract

In plants, the construction, differentiation, maturation, and degradation of the cell wall are essential for development. Pectins, which are major constituents of primary cell walls in eudicots, function in multiple developmental processes through their synthesis, modification, and degradation. Several pectin modifying enzymes regulate pectin degradation via different modes of action. Polygalacturonases (PGs), which function in the last step of pectin degradation, are a crucial class of pectin-modifying enzymes. Based on differences in their hydrolyzing activities, PGs can be divided into three main types: exo-PGs, endo-PGs, and rhamno-PGs. Their functions were initially investigated based on the expression patterns of PG genes and measurements of total PG activity in organs. In most plant species, PGs are encoded by a large, multigene family. However, due to the lack of genome sequencing data in early studies, the number of identified PG genes was initially limited. Little was initially known about the evolution and expression patterns of PG family members in different species. Furthermore, the functions of PGs in cell dynamics and developmental processes, as well as the regulatory pathways that govern these functions, are far from fully understood. In this review, we focus on how recent studies have begun to fill in these blanks. On the basis of identified PG family members in multiple species, we review their structural characteristics, classification, and molecular evolution in terms of plant phylogenetics. We also highlight the diverse expression patterns and biological functions of PGs during various developmental processes, as well as their mechanisms of action in cell dynamic processes. How PG functions are potentially regulated by hormones, transcription factors, environmental factors, pH and Ca is discussed, indicating directions for future research into PG function and regulation.

摘要

在植物中,细胞壁的构建、分化、成熟和降解对其发育至关重要。果胶是双子叶植物初生细胞壁的主要成分,通过其合成、修饰和降解在多个发育过程中发挥作用。几种果胶修饰酶通过不同的作用方式调节果胶降解。多聚半乳糖醛酸酶(PGs)在果胶降解的最后一步发挥作用,是一类关键的果胶修饰酶。根据其水解活性的差异,PGs可分为三种主要类型:外切PGs、内切PGs和鼠李糖PGs。它们的功能最初是基于PG基因的表达模式和器官中总PG活性的测量来研究的。在大多数植物物种中,PGs由一个庞大的多基因家族编码。然而,由于早期研究缺乏基因组测序数据,最初鉴定出的PG基因数量有限。最初对不同物种中PG家族成员的进化和表达模式了解甚少。此外,PGs在细胞动态和发育过程中的功能,以及控制这些功能的调控途径,远未被完全理解。在这篇综述中,我们关注近期的研究如何开始填补这些空白。基于多个物种中已鉴定的PG家族成员,我们从植物系统发育学的角度综述它们的结构特征、分类和分子进化。我们还强调了PGs在各种发育过程中的多样表达模式和生物学功能,以及它们在细胞动态过程中的作用机制。讨论了PG功能如何可能受到激素、转录因子、环境因素、pH和钙的调控,为未来PG功能和调控研究指明了方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/426f/6102391/09b087c37853/fpls-09-01208-g001.jpg

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