Khan Subhanullah, Lang Minglin
CAS Center for Excellence in Biotic Interactions, College of Life Science, University of Chinese Academy of Sciences, Beijing 100049, China.
College of Life Science, Agricultural University of Hebei, Baoding 071000, China.
Metabolites. 2023 Jul 11;13(7):839. doi: 10.3390/metabo13070839.
Insects and microbial pathogens are ubiquitous and play significant roles in various biological processes, while microbial pathogens are microscopic organisms that can cause diseases in multiple hosts. Insects and microbial pathogens engage in diverse interactions, leveraging each other's presence. Metals are crucial in shaping these interactions between insects and microbial pathogens. However, metals such as Fe, Cu, Zn, Co, Mo, and Ni are integral to various physiological processes in insects, including immune function and resistance against pathogens. Insects have evolved multiple mechanisms to take up, transport, and regulate metal concentrations to fight against pathogenic microbes and act as a vector to transport microbial pathogens to plants and cause various plant diseases. Hence, it is paramount to inhibit insect-microbe interaction to control pathogen transfer from one plant to another or carry pathogens from other sources. This review aims to succinate the role of metals in the interactions between insects and microbial pathogens. It summarizes the significance of metals in the physiology, immune response, and competition for metals between insects, microbial pathogens, and plants. The scope of this review covers these imperative metals and their acquisition, storage, and regulation mechanisms in insect and microbial pathogens. The paper will discuss various scientific studies and sources, including molecular and biochemical studies and genetic and genomic analysis.
昆虫和微生物病原体无处不在,在各种生物过程中发挥着重要作用,而微生物病原体是能够在多种宿主中引发疾病的微生物。昆虫和微生物病原体存在多种相互作用,相互利用对方的存在。金属在塑造昆虫与微生物病原体之间的这些相互作用中起着关键作用。然而,铁、铜、锌、钴、钼和镍等金属对于昆虫的各种生理过程不可或缺,包括免疫功能和对病原体的抗性。昆虫已经进化出多种机制来摄取、运输和调节金属浓度,以对抗病原微生物,并作为载体将微生物病原体传播到植物上,引发各种植物病害。因此,抑制昆虫与微生物的相互作用对于控制病原体从一种植物转移到另一种植物或携带来自其他来源的病原体至关重要。本综述旨在阐述金属在昆虫与微生物病原体相互作用中的作用。它总结了金属在昆虫、微生物病原体和植物的生理学、免疫反应以及金属竞争中的重要性。本综述的范围涵盖这些重要金属及其在昆虫和微生物病原体中的获取、储存和调节机制。本文将讨论各种科学研究和资料来源,包括分子和生化研究以及遗传和基因组分析。