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Eco-evolutionary feedbacks between private and public goods: evidence from toxic algal blooms

机译:私人和公共物品之间的生态进化反馈:有毒藻华的证据

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The importance of 'eco-evolutionary feedbacks' in natural systems is currently unclear. Here, we advance a general hypothesis for a particular class of eco-evolutionary feedbacks with potentially large, long-lasting impacts in complex ecosystems. These eco-evolutionary feedbacks involve traits that mediate important interactions with abiotic and biotic features of the environment and a self-driven reversal of selection as the ecological impact of the trait varies between private (small scale) and public (large scale). Toxic algal blooms may involve such eco-evolutionary feedbacks due to the emergence of public goods. We review evidence that toxin production by microalgae may yield 'privatised' benefits for individual cells or colonies under pre- and early-bloom conditions; however, the large-scale, ecosystem-level effects of toxicity associated with bloom states yield benefits that are necessarily 'public'. Theory predicts that the replacement of private with public goods may reverse selection for toxicity in the absence of higher level selection. Indeed, blooms often harbor significant genetic and functional diversity: bloom populations may undergo genetic differentiation over a scale of days, and even genetically similar lineages may vary widely in toxic potential. Intriguingly, these observations find parallels in terrestrial communities, suggesting that toxic blooms may serve as useful models for eco-evolutionary dynamics in nature. Eco-evolutionary feedbacks involving the emergence of a public good may shed new light on the potential for interactions between ecology and evolution to influence the structure and function of entire ecosystems.
机译:目前尚不清楚“生态进化反馈”在自然系统中的重要性。在此,我们针对特定类别的生态进化反馈提出了一般假设,这些反馈在复杂的生态系统中可能会产生巨大而持久的影响。这些生态进化反馈涉及一些特性,这些特性会介导与环境中非生物和生物特征的重要相互作用,并且随着性状的生态影响在私人(小规模)和公共(大范围)之间变化,自我选择的逆转。由于公共物品的出现,有毒藻华可能涉及这种生态进化反馈。我们审查了证据,即微藻产生的毒素可能会在开花前和开花早期条件下对单个细胞或菌落产生“私有化”的好处。但是,与开花状态相关的毒性的大规模,生态系统级影响产生的收益必定是“公开的”。理论预测,在没有更高水平的选择的情况下,用公共物品代替私人可能会逆转选择毒性。的确,水华通常具有重要的遗传和功能多样性:水华种群可能会在几天内经历遗传分化,甚至遗传相似的世系也可能在毒性潜力方面差异很大。有趣的是,这些发现在陆地群落中发现了相似之处,这表明有毒的水华可以作为自然生态进化动力学的有用模型。涉及公共物品出现的生态进化反馈可能为生态与进化之间相互作用影响整个生态系统结构和功能的潜力提供新的启示。

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