Aleuy O Alejandro, Kutz S
Department of Ecosystem and Public Health, Faculty of Veterinary Medicine, University of Calgary, Calgary, Canada.
Int J Parasitol Parasites Wildl. 2020 Jul 31;12:308-317. doi: 10.1016/j.ijppaw.2020.07.006. eCollection 2020 Aug.
Climate change is increasing weather unpredictability, causing more intense, frequent and longer extreme events including droughts, precipitation, and both heat and cold waves. The performance of parasites, and host-parasite interactions, under these unpredictable conditions, are directly influenced by the ability of parasites to cope with extremes and their capacity to adapt to the new conditions. Here, we review some of the structural, behavioural, life history and ecological characteristics of parasitic nematodes that allow them to persist and adapt to extreme and changing environmental conditions. We focus primarily, but not exclusively, on parasitic nematodes in the Arctic, where temperature extremes are pronounced, climate change is happening most rapidly, and changes in host-parasite interactions are already documented. We discuss how life-history traits, phenotypic plasticity, local adaptation and evolutionary history can influence the short and long term response of parasites to new conditions. A detailed understanding of the complex ecological processes involved in the survival of parasites in extreme and changing conditions is a fundamental step to anticipate the impact of climate change in parasite dynamics.
气候变化正使天气变得愈发不可预测,导致包括干旱、降水以及热浪和寒潮在内的更强烈、更频繁且持续时间更长的极端事件发生。在这些不可预测的条件下,寄生虫的表现以及宿主与寄生虫之间的相互作用,直接受到寄生虫应对极端情况的能力及其适应新环境条件能力的影响。在此,我们回顾了寄生线虫的一些结构、行为、生活史和生态特征,这些特征使它们能够在极端且不断变化的环境条件下生存并适应。我们主要但并非仅仅关注北极地区的寄生线虫,那里极端温度明显,气候变化最为迅速,并且宿主与寄生虫之间相互作用的变化已有记录。我们讨论生活史特征、表型可塑性、局部适应和进化史如何影响寄生虫对新环境条件的短期和长期反应。深入了解寄生虫在极端且变化的条件下生存所涉及的复杂生态过程,是预测气候变化对寄生虫动态影响的基本步骤。