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一种真菌病毒感染驱动昆虫病原真菌球孢白僵菌的毒力和生态适应性。

A mycoviral infection drives virulence and ecological fitness of the entomopathogenic fungus Beauveria bassiana.

作者信息

Rueda-Maíllo F, Garrido-Jurado I, Kotta-Loizou I, Quesada-Moraga E

机构信息

Department of Agronomy, Maria de Maeztu Excellence Unit DAUCO, ETSIAM, University of Cordoba, Campus Universitario Rabanales 14071, Cordoba, Spain.

Department of Clinical, Pharmaceutical and Biological Science, School of Life and Medical Sciences, University of Hertfordshire, AL10 9AB, Hatfield, United Kingdom; Department of Life Sciences, Faculty of Natural Sciences, Imperial College London, SW7 2AZ, London, United Kingdom.

出版信息

J Invertebr Pathol. 2025 Mar;209:108251. doi: 10.1016/j.jip.2024.108251. Epub 2024 Dec 5.

Abstract

Entomopathogenic ascomycetes are important natural regulators of insect pest populations and an increasingly adopted microbial control option. Fungal virulence in entomopathogenic ascomycetes can be modified by mycoviruses, viruses that infect fungi, whereas the possible role of these viruses on the physical and biochemical properties of the virus-containing fungal strains and on their ecological fitness has remained largely unexplored. Here, utilizing a Beauveria bassiana strain naturally infected with two mycoviruses, Beauveria bassiana partitivirus 2 (BbPV-2) and Beauveria bassiana polymycovirus 1 (BbPmV-1), we found that the mycovirus-containing strain is hypervirulent towards the experimental insect Galleria mellonella and shows major physical and biochemical changes in spore size, isoelectric point, and Pr1 activity, but even more impactful, the mycoviral infection confers a significant environmental- abiotic and biotic stress tolerance to the fungus. Hence, mycovirus infection expanded the temperature range for fungal growth and germination, and improved tolerance to osmotic stress, water stress, and UV-B radiation. Similarly, the antagonistic activity of the mycovirus-containing strain against Trichoderma harzianum was increased as compared to the mycovirus-free one. Taken together, these data suggest for the first time a mycovirus related adaptation of key traits indicators of environmental competence of a beneficial fungus, rendering these mycoviruses as potent tools for entomopathogenic fungal strain selection and development as mycoinsecticides.

摘要

昆虫病原子囊菌是害虫种群的重要自然调节因子,也是一种越来越被广泛采用的微生物防治手段。昆虫病原子囊菌中的真菌毒力可被真菌病毒(感染真菌的病毒)改变,而这些病毒对含病毒真菌菌株的物理和生化特性及其生态适应性可能产生的作用在很大程度上仍未得到探索。在此,我们利用一株自然感染了两种真菌病毒——球孢白僵菌双分体病毒2(BbPV - 2)和球孢白僵菌多分体病毒1(BbPmV - 1)的球孢白僵菌菌株,发现含真菌病毒的菌株对实验昆虫大蜡螟具有超强毒力,并且在孢子大小、等电点和Pr1活性方面表现出主要的物理和生化变化,但更有影响的是,真菌病毒感染赋予了该真菌显著的环境非生物和生物胁迫耐受性。因此,真菌病毒感染扩大了真菌生长和萌发的温度范围,并提高了对渗透胁迫、水分胁迫和UV - B辐射的耐受性。同样,与不含真菌病毒的菌株相比,含真菌病毒的菌株对哈茨木霉的拮抗活性有所增强。综上所述,这些数据首次表明真菌病毒与有益真菌环境适应性关键性状指标的适应性有关,使这些真菌病毒成为昆虫病原真菌菌株筛选和开发为杀真菌剂的有力工具。

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