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Phenotypic responses to microbial volatiles render a mold fungus more susceptible to insect damage

机译:对微生物挥发物的表型反应使霉菌更容易受到昆虫的伤害

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In decomposer systems, fungi show diverse phenotypic responses to volatile organic compounds of microbial origin (volatiles). The mechanisms underlying such responses and their consequences for the performance and ecological success of fungi in a multitrophic community context have rarely been tested explicitly. We used a laboratory‐based approach in which we investigated a tripartite yeast–mold–insect model decomposer system to understand the possible influence of yeast‐borne volatiles on the ability of a chemically defended mold fungus to resist insect damage. The volatile‐exposed mold phenotype (1) did not exhibit protein kinase A‐dependent morphological differentiation, (2) was more susceptible to insect foraging activity, and (3) had reduced insecticidal properties. Additionally, the volatile‐exposed phenotype was strongly impaired in secondary metabolite formation and unable to activate “chemical defense” genes upon insect damage. These results suggest that volatiles can be ecologically important factors that affect the chemical‐based combative abilities of fungi against insect antagonists and, consequently, the structure and dynamics of decomposer communities.
机译:在分解系统中,真菌对微生物来源的挥发性有机化合物(挥发物)表现出不同的表型反应。很少明确测试这种反应的基础机制及其对多营养社区环境中真菌的性能和生态成功的影响。我们采用了一种基于实验室的方法,在该方法中,我们研究了一个三方酵母菌,霉菌,昆虫模型分解系统,以了解酵母菌挥发物对化学防御霉菌抵抗昆虫损害的能力的可能影响。挥发性暴露的霉菌表型(1)没有表现出蛋白激酶A依赖性的形态学分化,(2)更容易受到昆虫觅食的侵害,(3)杀虫特性降低。此外,挥发性暴露的表型在次生代谢产物形成中受到严重损害,并且在昆虫受到伤害后无法激活“化学防御”基因。这些结果表明,挥发物可能是重要的生态因素,会影响真菌对昆虫拮抗剂的化学作用,从而破坏分解物群落的结构和动力学。

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