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聚焦真菌对果胶的利用:从植物病原性到分子识别及工业应用。

Spotlight on fungal pectin utilization-from phytopathogenicity to molecular recognition and industrial applications.

机构信息

Holzforschung München, TUM School of Life Sciences Weihenstephan, Technische Universität München, Freising, Germany.

Department of Molecular and Cell Biology, University of California, Berkeley, CA, USA.

出版信息

Appl Microbiol Biotechnol. 2019 Mar;103(6):2507-2524. doi: 10.1007/s00253-019-09622-4. Epub 2019 Jan 29.

Abstract

Pectin is a complex polysaccharide with D-galacturonic acid as its main component that predominantly accumulates in the middle lamella of the plant cell wall. Integrity and depolymerization of pectic structures have long been identified as relevant factors in fungal phytosymbiosis and phytopathogenicity in the context of tissue penetration and carbon source supply. While the pectic content of a plant cell wall can vary significantly, pectin was reported to account for up to 20-25% of the total dry weight in soft and non-woody tissues with non- or mildly lignified secondary cell walls, such as found in citrus peel, sugar beet pulp, and apple pomace. Due to their potential applications in various industrial sectors, pectic sugars from these and similar agricultural waste streams have been recognized as valuable targets for a diverse set of biotechnological fermentations.Recent advances in uncovering the molecular regulation mechanisms for pectinase expression in saprophytic fungi have led to a better understanding of fungal pectin sensing and utilization that could help to improve industrial, pectin-based fermentations. Related research in phytopathogenic fungi has furthermore added to our knowledge regarding the relevance of pectinases in plant cell wall penetration during onset of disease and is therefore highly relevant for agricultural sciences and the agricultural industry. This review therefore aims at summarizing (i) the role of pectinases in phytopathogenicity, (ii) the global regulation patterns for pectinase expression in saprophytic filamentous fungi as a highly specialized class of pectin degraders, and (iii) the current industrial applications in pectic sugar fermentations and transformations.

摘要

果胶是一种复杂的多糖,其主要成分是 D-半乳糖醛酸,主要积累在植物细胞壁的中层。果胶结构的完整性和解聚长期以来被认为是真菌植物共生和植物致病性的相关因素,涉及组织穿透和碳源供应。虽然植物细胞壁的果胶含量可能有很大差异,但果胶据报道占无木质化或轻度木质化次生细胞壁的软质和非木质组织总干重的 20-25%,如在柑橘皮、糖甜菜渣和苹果渣中发现的组织。由于其在各个工业领域的潜在应用,这些和类似农业废物流中的果胶糖已被认为是各种生物技术发酵的有价值目标。最近在揭示腐生真菌中果胶酶表达的分子调控机制方面的进展,使人们对真菌果胶感应和利用有了更好的理解,这有助于改善工业基于果胶的发酵。植物病原真菌的相关研究进一步增加了我们对果胶酶在疾病发生时穿透植物细胞壁的相关性的认识,因此与农业科学和农业产业高度相关。因此,本综述旨在总结:(i)果胶酶在植物致病性中的作用;(ii)腐生丝状真菌中果胶酶表达的全球调控模式,作为高度专业化的果胶降解类群;(iii)果胶糖发酵和转化中的当前工业应用。

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