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Slow and temperature‐mediated pathogen adaptation to a nonspecific fungicide in agricultural ecosystem

机译:温度和温度介导的病原体对农业生态系统中非特异性杀菌剂的适应性

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摘要

The spread of antimicrobial resistance and global change in air temperature represent two major phenomena that are exerting a disastrous impact on natural and social issues but investigation of the interaction between these phenomena in an evolutionary context is limited. In this study, a statistical genetic approach was used to investigate the evolution of antimicrobial resistance in agricultural ecosystem and its association with local air temperature, precipitation, and UV radiation. We found no resistance to mancozeb, a nonspecific fungicide widely used in agriculture for more than half a century, in 215 Alternaria alternata isolates sampled from geographic locations along a climatic gradient and cropping system representing diverse ecotypes in China, consistent with low resistance risk in many nonspecific fungicides. Genetic variance accounts for ~35% of phenotypic variation, while genotype–environment interaction is negligible, suggesting that heritability plays a more important role in the evolution of resistance to mancozeb in plant pathogens than phenotypic plasticity. We also found that tolerance to mancozeb in agricultural ecosystem is under constraining selection and significantly associated with local air temperature, possibly resulting from a pleiotropic effect of resistance with thermal and other ecological adaptations. The implication of these results for fungicide and other antimicrobial management in the context of global warming is discussed.
机译:抗菌素耐药性的扩散和气温的总体变化是两个主要现象,它们对自然和社会问题产生了灾难性的影响,但在进化的背景下对这些现象之间相互作用的研究是有限的。在这项研究中,采用统计遗传方法来研究农业生态系统中抗菌素耐药性的演变及其与当地气温,降水和紫外线辐射的关系。我们没有发现对半个世纪以来广泛用于农业的非特异杀真菌剂mancozeb的抗药性,在代表中国多种生态类型的气候梯度和耕作系统的地理区域取样的215个链格孢菌中,这与许多国家的抗药性低风险相符。非特异性杀菌剂。遗传变异约占表型变异的35%,而基因型与环境的相互作用可忽略不计,这表明遗传性在植物病原体对锰锌抗药性的进化中比表型可塑性起着更重要的作用。我们还发现,在农业生态系统中对锰锌的耐受性受到限制,并且与当地空气温度显着相关,这可能是由于热和其他生态适应性的抗性的多效性造成的。讨论了这些结果对全球变暖背景下的杀菌剂和其他抗菌药物管理的影响。

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