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壳聚糖聚合物和低聚物的协同抗菌作用。

Synergistic Antimicrobial Effect of Chitosan Polymers and Oligomers.

机构信息

Institute for Biology and Biotechnology of Plants, University of Münster, Münster, Germany.

Gillet Chitosan SAS, La Ville Es Comte, 22350 Plumaudan, France.

出版信息

Mol Plant Microbe Interact. 2021 Jul;34(7):770-778. doi: 10.1094/MPMI-07-20-0185-R. Epub 2021 Aug 26.

Abstract

This study evaluated the efficacy of the combined application of well-characterized chitosan polymer (degree of acetylation = 10%, degree of polymerization [DPn] = 90, and dispersity [Ð] = 2.8) and oligomers (partially acetylated chitosan polymers and oligosaccharides [paCOS]) (DP = 2 to 17) on conidia germination and mycelial growth of , the major causal agent of Fusarium head blight in wheat. The polymer alone showed a higher inhibitory effect than the paCOS mixture alone, with half-maximal inhibitory concentrations of less than 50 µg ml and more than 100 µg ml, respectively. Using time-lapse microscopy, we also showed that paCOS did not affect conidia germination at 50 µg ml, whereas chitosan polymer at the same concentration led to a delay in germination and in elongation of germ tubes. Scanning electron microscopy was used to observe the chitosan-induced changes in hyphal morphology. Surprisingly, the combination of chitosan polymer and paCOS led to strong synergistic effects in inhibiting conidia germination and fungal growth, as quantified by both the Abbot and Wadley equations. To our knowledge, this is the first report on a synergistic effect of a combination of chitosan polymers and oligomers, also highlighting for the first time the importance of Ð when studying structure-function relationships of functional biopolymers such as chitosan. The consequences of this finding for the improvement of chitosan-based antimicrobial or plant protective products are discussed. Given the economic importance of , this study suggests that the combination of chitosan polymer and oligomers can be used to support an efficient, sustainable plant protection strategy.[Formula: see text] Copyright © 2021 The Author(s). This is an open access article distributed under the CC BY 4.0 International license.

摘要

这项研究评估了特性明确的壳聚糖聚合物(乙酰化程度=10%,聚合度[DPn]=90,分散度[Ð]=2.8)与低聚物(部分乙酰化壳聚糖聚合物和寡糖[paCOS])(DP=2 至 17)联合应用对小麦赤霉病主要病原体 孢子萌发和菌丝生长的效果。单独的聚合物比单独的 paCOS 混合物具有更高的抑制作用,半抑制浓度分别低于 50µg ml 和高于 100µg ml。使用延时显微镜,我们还表明 paCOS 在 50µg ml 时不会影响孢子萌发,而相同浓度的壳聚糖聚合物导致萌发延迟和芽管伸长。扫描电子显微镜用于观察壳聚糖诱导的菌丝形态变化。令人惊讶的是,壳聚糖聚合物和 paCOS 的组合在抑制孢子萌发和真菌生长方面表现出强烈的协同作用,这可以通过 Abbott 和 Wadley 方程来定量。据我们所知,这是首次报道壳聚糖聚合物和低聚物组合的协同效应,同时也首次强调了 Ð 在研究壳聚糖等功能生物聚合物的结构-功能关系时的重要性。讨论了这一发现对基于壳聚糖的抗菌或植物保护产品改进的影响。鉴于 的经济重要性,本研究表明壳聚糖聚合物和低聚物的组合可用于支持高效、可持续的植物保护策略。

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