UWA Oceans Institute (M470) and School of Biological Sciences, University of Western Australia, Crawley, 6009 WA, Australia.
Department of Primary Industries, NSW Fisheries, PO Box 4321, Coffs Harbour, NSW 2450, Australia.
Sci Rep. 2018 Jan 30;8(1):1851. doi: 10.1038/s41598-018-20009-9.
Genetic diversity confers adaptive capacity to populations under changing conditions but its role in mediating impacts of climate change remains unresolved for most ecosystems. This lack of knowledge is particularly acute for foundation species, where impacts may cascade throughout entire ecosystems. We combined population genetics with eco-physiological and ecological field experiments to explore relationships among latitudinal patterns in genetic diversity, physiology and resilience of a kelp ecosystem to climate stress. A subsequent 'natural experiment' illustrated the possible influence of latitudinal patterns of genetic diversity on ecosystem vulnerability to an extreme climatic perturbation (marine heatwave). There were strong relationships between physiological versatility, ecological resilience and genetic diversity of kelp forests across latitudes, and genetic diversity consistently outperformed other explanatory variables in contributing to the response of kelp forests to the marine heatwave. Population performance and vulnerability to a severe climatic event were thus strongly related to latitudinal patterns in genetic diversity, with the heatwave extirpating forests with low genetic diversity. Where foundation species control ecological structure and function, impacts of climatic stress can cascade through the ecosystem and, consequently, genetic diversity could contribute to ecosystem vulnerability to climate change.
遗传多样性赋予了种群在变化环境下的适应能力,但对于大多数生态系统而言,其在调节气候变化影响方面的作用仍未得到解决。对于基础物种来说,这种知识的缺乏尤为严重,因为它们的影响可能会在整个生态系统中蔓延。我们结合种群遗传学、生态生理学和生态学野外实验,探讨了遗传多样性、生理机能和对气候压力的恢复力的纬度模式之间的关系,这些关系存在于一个海带生态系统中。随后的“自然实验”说明了遗传多样性的纬度模式对生态系统对极端气候干扰(海洋热浪)的脆弱性可能产生的影响。在不同纬度的海带林中,生理多样性、生态恢复力和遗传多样性之间存在很强的关系,而且遗传多样性在解释海带林对海洋热浪的反应方面始终优于其他解释变量。种群表现和对严重气候事件的脆弱性与遗传多样性的纬度模式密切相关,热浪使遗传多样性较低的森林灭绝。在基础物种控制生态结构和功能的地方,气候压力的影响可以在生态系统中蔓延,因此,遗传多样性可能有助于生态系统对气候变化的脆弱性。