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壳聚糖与真菌和植物相互作用的分子机制。

Molecular Mechanisms of Chitosan Interactions with Fungi and Plants.

机构信息

Department of Marine Sciences and Applied Biology, Laboratory of Plant Pathology, Multidisciplinary Institute for Environmental Studies (MIES) Ramon Margalef, University of Alicante, 03080 Alicante, Spain.

出版信息

Int J Mol Sci. 2019 Jan 15;20(2):332. doi: 10.3390/ijms20020332.

Abstract

Chitosan is a versatile compound with multiple biotechnological applications. This polymer inhibits clinically important human fungal pathogens under the same carbon and nitrogen status as in blood. Chitosan permeabilises their high-fluidity plasma membrane and increases production of intracellular oxygen species (ROS). Conversely, chitosan is compatible with mammalian cell lines as well as with biocontrol fungi (BCF). BCF resistant to chitosan have low-fluidity membranes and high glucan/chitin ratios in their cell walls. Recent studies illustrate molecular and physiological basis of chitosan-root interactions. Chitosan induces auxin accumulation in roots. This polymer causes overexpression of tryptophan-dependent auxin biosynthesis pathway. It also blocks auxin translocation in roots. Chitosan is a plant defense modulator. Endophytes and fungal pathogens evade plant immunity converting chitin into chitosan. LysM effectors shield chitin and protect fungal cell walls from plant chitinases. These enzymes together with fungal chitin deacetylases, chitosanases and effectors play determinant roles during fungal colonization of plants. This review describes chitosan mode of action (cell and gene targets) in fungi and plants. This knowledge will help to develop chitosan for agrobiotechnological and medical applications.

摘要

壳聚糖是一种多功能化合物,具有多种生物技术应用。在与血液中相同的碳氮状态下,该聚合物能抑制临床上重要的人类真菌病原体。壳聚糖使它们高流动性的质膜穿孔,并增加细胞内氧自由基(ROS)的产生。相反,壳聚糖与哺乳动物细胞系以及生防真菌(BCF)兼容。对壳聚糖具有抗性的 BCF 具有低流动性的膜和细胞壁中高的葡聚糖/几丁质比。最近的研究说明了壳聚糖-根相互作用的分子和生理基础。壳聚糖诱导根中生长素的积累。这种聚合物导致色氨酸依赖的生长素生物合成途径的过表达。它还阻止了根中的生长素转运。壳聚糖是一种植物防御调节剂。内生真菌和真菌病原体通过将几丁质转化为壳聚糖来逃避植物的免疫。LysM 效应物保护几丁质,并防止真菌细胞壁受到植物几丁质酶的侵害。这些酶与真菌几丁质脱乙酰酶、壳聚糖酶和效应物一起,在真菌对植物的定殖过程中发挥着决定性的作用。本综述描述了壳聚糖在真菌和植物中的作用模式(细胞和基因靶标)。这些知识将有助于开发壳聚糖在农业生物技术和医学中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcfe/6359256/4cd2ef1763e7/ijms-20-00332-g001.jpg

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