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首页> 外文期刊>Microbial Ecology: An International Journal >Parasite Fitness Traits Under Environmental Variation: Disentangling the Roles of a Chytrid's Immediate Host and External Environment
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Parasite Fitness Traits Under Environmental Variation: Disentangling the Roles of a Chytrid's Immediate Host and External Environment

机译:环境变化下的寄生虫适应性特征:解开壶腹直属宿主和外部环境的作用

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摘要

Parasite environments are heterogeneous at different levels. The first level of variability is the host itself. The second level represents the external environment for the hosts, to which parasites may be exposed during part of their life cycle. Both levels are expected to affect parasite fitness traits. We disentangle the main and interaction effects of variation in the immediate host environment, here the diatom Asterionella formosa (variables host cell volume and host condition through herbicide pre-exposure) and variation in the external environment (variables host density and acute herbicide exposure) on three fitness traits (infection success, development time and reproductive output) of a chytrid parasite. Herbicide exposure only decreased infection success in a low host density environment. This result reinforces the hypothesis that chytrid zoospores use photosynthesis-dependent chemical cues to locate its host. At high host densities, chemotaxis becomes less relevant due to increasing chance contact rates between host and parasite, thereby following the mass-action principle in epidemiology. Theoretical support for this finding is provided by an agent-based simulation model. The immediate host environment (cell volume) substantially affected parasite reproductive output and also interacted with the external herbicide exposed environment. On the contrary, changes in the immediate host environment through herbicide pre-exposure did not increase infection success, though it had subtle effects on zoospore development time and reproductive output. This study shows that both immediate host and external environment as well as their interaction have significant effects on parasite fitness. Disentangling these effects improves our understanding of the processes underlying parasite spread and disease dynamics.
机译:寄生虫环境在不同级别上是异构的。可变性的第一级是宿主本身。第二层代表宿主的外部环境,寄生虫在其生命周期的一部分可能会暴露于该环境。预计这两个水平都会影响寄生虫的适应性状。我们弄清了直接宿主环境中变化的主要和相互作用影响,这里的硅藻福寿藻(可变宿主细胞体积和通过除草剂预暴露的宿主条件)和外部环境的变化(可变宿主密度和急性除草剂暴露)糜烂寄生虫的三个适应性特征(感染成功,发育时间和生殖输出)。在低宿主密度环境下,接触除草剂只会降低感染成功率。该结果加强了假单胞菌游动孢子使用依赖光合作用的化学线索来定位其宿主的假说。在高宿主密度下,趋化性由于宿主与寄生虫之间机会接触率的提高而变得无关紧要,从而遵循了流行病学中的质量作用原理。基于代理的仿真模型为这一发现提供了理论支持。直接宿主环境(细胞体积)大大影响了寄生虫的生殖输出,并且还与外部除草剂暴露环境相互作用。相反,通过除草剂预暴露来改变寄主环境,尽管对游动孢子的发育时间和生殖产量产生了微妙的影响,但并未增加感染的成功率。这项研究表明,寄主和外部环境以及它们之间的相互作用都对寄生虫适应性产生重大影响。消除这些影响可以增进我们对寄生虫传播和疾病动态的潜在过程的了解。

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