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Genetic signatures of variation in population size in a native fungal pathogen after the recent massive plantation of its host tree

机译:最近大规模种植寄主树后原生真菌病原体种群大小变异的遗传特征

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摘要

Historical fluctuations in forests’ distribution driven by past climate changes and anthropogenic activities can have large impacts on the demographic history of pathogens that have a long co-evolution history with these host trees. Using a population genetic approach, we investigated that hypothesis by reconstructing the demographic history of Armillaria ostoyae, one of the major pathogens of the maritime pine (Pinus pinaster), in the largest monospecific pine planted forest in Europe (south-western France). Genetic structure analyses and approximate Bayesian computation approaches revealed that a single pathogen population underwent a severe reduction in effective size (12 times lower) 1080–2080 generations ago, followed by an expansion (4 times higher) during the last 4 generations. These results are consistent with the history of the maritime pine forest in the region characterized by a strong recession during the last glaciation (~19 000 years ago) and massive plantations during the second half of the nineteenth century. Results suggest that recent and intensive plantations of a host tree population have offered the opportunity for a rapid spread and adaptation of their pathogens.
机译:由过去的气候变化和人为活动驱动的森林分布的历史波动可能会对与这些寄主树有着长期共同进化历史的病原体的人口统计历史产生重大影响。我们使用种群遗传学方法,通过在欧洲最大的单种松树人工林(法国西南)中重建海藻松(Pinus pinaster)的主要病原体之一的蜜环菌(Armelaria ostoyae)的人口统计学历史来研究该假设。遗传结构分析和近似贝叶斯计算方法表明,单个病原体种群在1080到2080代之前有效尺寸大大降低(降低了12倍),在最近4代中又进行了扩展(提高了4倍)。这些结果与该地区海上松树林的历史相吻合,其特征是在上一次冰川时期(〜19 000年前)出现了严重的衰退,并在19世纪下半叶出现了大规模的人工林。结果表明,最近和密集的寄主树人工林为迅速传播和适应其病原体提供了机会。

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