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昆虫病原真菌与昆虫的相互作用及聚糖研究前景

Interactions between Entomopathogenic Fungi and Insects and Prospects with Glycans.

作者信息

Liu Dongdong, Smagghe Guy, Liu Tong-Xian

机构信息

Institute of Entomology, Guizhou University, Guiyang 550025, China.

Institute of Plant Health and Medicine, Guizhou University, Guiyang 550025, China.

出版信息

J Fungi (Basel). 2023 May 15;9(5):575. doi: 10.3390/jof9050575.

Abstract

Concerns regarding the ecological and health risks posed by synthetic insecticides have instigated the exploration of alternative methods for controlling insects, such as entomopathogenic fungi (EPF) as biocontrol agents. Therefore, this review discusses their use as a potential alternative to chemical insecticides and especially focuses on the two major ones, and , as examples. First, this review exemplifies how - and -based biopesticides are used in the world. Then, we discuss the mechanism of action by which EPF interacts with insects, focusing on the penetration of the cuticle and the subsequent death of the host. The interactions between EPF and the insect microbiome, as well as the enhancement of the insect immune response, are also summarized. Finally, this review presents recent research that N-glycans may play a role in eliciting an immune response in insects, resulting in the increased expression of immune-related genes and smaller peritrophic matrix pores, reducing insect midgut permeability. Overall, this paper provides an overview of the EPF in insect control and highlights the latest developments relating to the interaction between fungi and insect immunity.

摘要

对合成杀虫剂所带来的生态和健康风险的担忧促使人们探索控制昆虫的替代方法,比如将昆虫病原真菌(EPF)用作生物防治剂。因此,本综述讨论了其作为化学杀虫剂潜在替代品的用途,并特别以两种主要的昆虫病原真菌为例进行重点阐述。首先,本综述举例说明了基于[两种真菌名称未给出]的生物农药在世界范围内的使用情况。然后,我们讨论了昆虫病原真菌与昆虫相互作用的作用机制,重点关注其对昆虫表皮的穿透以及宿主随后的死亡。还总结了昆虫病原真菌与昆虫微生物群之间的相互作用以及昆虫免疫反应的增强。最后,本综述介绍了最近的研究,即N-聚糖可能在引发昆虫免疫反应中发挥作用,导致免疫相关基因表达增加以及围食膜孔隙变小,从而降低昆虫中肠通透性。总体而言,本文概述了昆虫病原真菌在昆虫控制中的应用,并突出了真菌与昆虫免疫相互作用的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92e9/10219344/7a68efde7e28/jof-09-00575-g001.jpg

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