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Experimental evolution to increase the efficacy of the entomopathogenic fungus Beauveria bassiana against malaria mosquitoes: Effects on mycelial growth and virulence

机译:提高昆虫病原性球孢白僵菌对疟疾蚊子功效的实验演变:对菌丝体生长和毒力的影响

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Entomopathogenic fungi such as Beauveria bassiana are currently considered as a potential control agent for malaria mosquitoes. The success of such strategies depends among others on the efficacy of the fungus to kill its hosts. As B.?bassiana can use various resources for growth and reproduction, increasing the dependency on mosquitoes as a nutritional source may be instrumental for reaching this goal. Passage of entomopathogenic fungi through an insect host has been shown to increase its virulence. We evaluated the virulence, fungal outgrowth, mycelial growth rate, and sporulation rate of two B.?bassiana isolates (Bb1520 and Bb8028) that underwent 10 consecutive selection cycles through malaria mosquitoes ( Anopheles coluzzii ) using an experimental evolution approach. This cycling resulted in an altered capacity of evolved B.?Bassiana lineages to grow on different substrates while maintaining the ability to kill insects. Notably, however, there were no significant changes in virulence or speed of outgrowth when comparing the evolved lineages against their unevolved ancestors. These results suggest that fungal growth and sporulation evolved through successive and exclusive use of an insect host as a nutritional resource. We discuss the results in light of biocontrol and provide suggestions to increase fungal virulence.
机译:致病性真菌,例如球孢白僵菌,目前被认为是疟疾蚊子的潜在控制剂。这些策略的成功取决于真菌杀死其宿主的功效。由于巴氏杆菌可以利用各种资源进行生长和繁殖,因此增加对蚊子作为营养来源的依赖性可能有助于实现这一目标。昆虫病原真菌通过昆虫宿主的传播已显示会增加其毒力。我们使用实验进化方法评估了通过疟疾蚊子(Anopheles coluzzii)经过10个连续选择周期的两个巴斯德分离株(Bb1520和Bb8028)的毒力,真菌生长,菌丝生长率和孢子形成率。该循环导致进化的巴西芽孢杆菌谱系在保持不同的底物生长能力的同时改变了其杀死昆虫的能力。然而,值得注意的是,当将进化后的血统与其未进化的祖先进行比较时,毒力或生长速度没有显着变化。这些结果表明,真菌的生长和孢子形成是通过连续和排他地使用昆虫寄主作为营养资源而演变而来的。我们根据生物防治来讨论结果,并提供增加真菌毒力的建议。

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