School of Forestry, Northeast Forestry University, Harbin, China.
Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, Northeast Forestry University, Harbin, China.
Pest Manag Sci. 2021 Mar;77(3):1115-1120. doi: 10.1002/ps.6103. Epub 2020 Oct 9.
The development and physiological status of pest insects are important factors that affect the effectiveness of biological control. Current knowledge reveals that heavy metals can be transferred to phytophagous insects through food chains and cause various chronic toxicological effects on the growth and physiology of phytophagous insects. These findings potentially attribute heavy metal contamination to an environmental factor governing biocontrol efficiency against pest insects, pointing to an urgent demand to better understand the effects of heavy metal exposure on insect susceptibility to entomopathogenic microorganisms. Here we discuss the transfer characteristics of heavy metals along the food chains to phytophagous insects and conclude that heavy metal exposure may promote insect susceptibility to entomopathogenic microorganisms in the heavy metal-contaminated regions. Furthermore, we propose a 'combined effect' hypothesis that combination of entomopathogenic agent and heavy metal stress can cause a much higher overall insect mortality than does the entomopathogenic agent or the heavy metal stress alone. This is a new and relatively unexplored area in the microbial-based biocontrol research, which might have great potential for future optimization of biocontrol strategies against economically and ecologically important agricultural or forest pests in the heavy metal polluted areas. © 2020 Society of Chemical Industry.
害虫的发育和生理状态是影响生物防治效果的重要因素。目前的知识表明,重金属可以通过食物链转移到植食性昆虫体内,并对植食性昆虫的生长和生理产生各种慢性毒理效应。这些发现可能将重金属污染归因于控制害虫生物防治效率的环境因素,这表明迫切需要更好地了解重金属暴露对昆虫对昆虫病原微生物敏感性的影响。在这里,我们讨论了重金属沿着食物链向植食性昆虫转移的特征,并得出结论,重金属暴露可能会促进重金属污染地区昆虫对昆虫病原微生物的敏感性。此外,我们提出了一个“联合效应”假说,即昆虫病原物与重金属胁迫的联合作用会导致比昆虫病原物或重金属胁迫单独作用更高的昆虫总体死亡率。这是基于微生物的生物防治研究中一个新的且相对未被探索的领域,对于未来在重金属污染地区优化针对经济和生态重要的农业或森林害虫的生物防治策略可能具有巨大潜力。© 2020 英国化学学会。