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Why Are Daphnia in Some Lakes Sicker? Disease Ecology, Habitat Structure, and the Plankton

机译:为什么某些湖泊的水蚤会更臭?疾病生态,栖息地结构和浮游生物

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Some aspects of habitat seem to enhance the spread of disease whereas others inhibit it. Here, we illustrate and identify mechanisms that connect habitat to epidemiology using a case study of disease in plankton. We see a pronounced relationship between the basin shapes of lakes and fungal (Metschnikowia bicuspidata) disease in the zooplankton grazer Daphnia dentifera. As we work through seven mechanisms that could explain why Daphnia in some lakes are sicker, we can eliminate some hypotheses (i.e., those relating on index of lake productivity to disease through host density, links between resource quality and transmission rate, and variation in host susceptibility) and find support for others involving food-web actors (e.g., selective predation on infected hosts by fishes, "sloppy predation" by an invertebrate, a possible dilution effect in V-shaped lakes). Furthermore, we identify physical mechanisms (gravity currents, turbulence) that could lead to greater transport of fungal spores to habitat occupied by Daphnia hosts in U-shaped lakes. These results highlight how habitat structure, through its effects on food-web structure and physical processes, can shape wildlife disease.
机译:生境的某些方面似乎促进了疾病的传播,而另一些方面则抑制了疾病的传播。在这里,我们使用浮游生物疾病的案例研究来说明和确定将栖息地与流行病学联系起来的机制。我们看到湖泊的流域形状与浮游动物放牧水蚤(Daphnia dentifera)中的真菌(Metschnikowia bicuspidata)病之间存在明显的关系。当我们通过七种机制解释可能导致某些湖泊的水蚤病的原因时,我们可以消除一些假设(即,通过寄主密度,资源质量与传播速率之间的联系以及寄主的变化与湖泊生产力与疾病指数相关的假设)易感性)并寻求其他与食物网参与者相关的支持(例如,鱼类对感染宿主的选择性捕食,无脊椎动物的“草率捕食”,在V形湖泊中可能的稀释作用)。此外,我们确定了物理机制(重力流,湍流),这些物理机制可能导致真菌孢子更多地运输到U形湖泊中的水蚤宿主所占据的栖息地。这些结果凸显了栖息地结构如何通过其对食物网结构和物理过程的影响而形成野生动植物疾病。

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