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Local adaptation to temperature in populations and clonal lineages of the Irish potato famine pathogen Phytophthora infestans

机译:爱尔兰马铃薯饥荒病原体疫霉疫菌的种群和克隆谱系对温度的局部适应

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摘要

Environmental factors such as temperature strongly impact microbial communities. In the current context of global warming, it is therefore crucial to understand the effects of these factors on human, animal, or plant pathogens. Here, we used a common‐garden experiment to analyze the thermal responses of three life‐history traits (latent period, lesion growth, spore number) in isolates of the potato late blight pathogen Phytophthora infestans from different climatic zones. We also used a fitness index (FI) aggregating these traits into a single parameter. The experiments revealed patterns of local adaptation to temperature for several traits and for the FI, both between populations and within clonal lineages. Local adaptation to temperature could result from selection for increased survival between epidemics, when isolates are exposed to more extreme climatic conditions than during epidemics. We also showed different thermal responses among two clonal lineages sympatric in western Europe, with lower performances of lineage 13_A2 compared to 6_A1, especially at low temperatures. These data therefore stress the importance of thermal adaptation in a widespread, invasive pathogen, where adaptation is usually considered almost exclusively with respect to host plants. This must now be taken into account to explain, and possibly predict, the global distribution of specific lineages and their epidemic potential.
机译:温度等环境因素会严重影响微生物群落。因此,在当前全球变暖的背景下,了解这些因素对人类,动物或植物病原体的影响至关重要。在这里,我们使用了一个普通的花园实验,分析了来自不同气候区的马铃薯晚疫病病原菌疫霉菌的三个生命史特征(潜伏期,病灶生长,孢子数)的热响应。我们还使用了适应度指数(FI),将这些特征汇总为一个参数。实验揭示了种群之间和克隆世系中几个性状和FI对温度的局部适应模式。当分离株暴露于比流行期间更极端的气候条件下时,对流行的不同选择可能会导致对温度的局部适应。我们还显示出西欧的两个克隆世系同系体之间的热响应不同,与6_A1相比,世系13_A2的性能较低,尤其是在低温下。因此,这些数据强调了热适应在广泛的侵入性病原体中的重要性,在这种病原体中,通常几乎完全只针对寄主植物才考虑适应。现在必须考虑到这一点,以解释并可能预测特定血统的全球分布及其流行潜力。

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