首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Aggregation of Infective Stages of Parasites as an Adaptation and Its Implications for the Study of Parasite-Host Interactions
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Aggregation of Infective Stages of Parasites as an Adaptation and Its Implications for the Study of Parasite-Host Interactions

机译:寄生虫感染阶段的聚集作为适应及其对寄生虫-宿主相互作用研究的启示

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The causes and consequences of aggregation among conspecifics have received much attention. For infecting macroparasites, causes include variation among hosts in susceptibility and whether infective stages are aggregated in the environment. Here, we link these two phenomena and explore whether aggregation of infective stages in the environment is adaptive to parasites encountering host condition-linked defenses and what effect such aggregations have for parasite-host interactions. Using simulation models, we show that parasite fitness is increased by aggregates attacking a host, particularly when investment into defenses is high. The fitness benefit of aggregation remains despite inclusion of factors that should curb the benefits of aggregation, namely, mortality of low-condition hosts (those hosts expected to be most susceptible to parasitism) and costs of high coinfection. For sample sizes common in studies, aggregation of infective stages reduces the likelihood of detecting host condition-parasitism relations, even when host condition is the only other factor in models affecting parasitism. Thus, it is not surprising that the expected inverse relations between host condition and parasitism, commonly a premise in studies of parasite-host interactions, are inconsistently found. An understanding of how parasites encounter hosts is thus needed for developing theory for parasite-host ecological and evolutionary interactions.
机译:种间聚集的原因和后果已引起广泛关注。对于感染大型寄生虫,原因包括宿主之间易感性的差异以及感染阶段是否在环境中聚集。在这里,我们将这两种现象联系起来,并探索环境中感染阶段的聚集是否适应遇到宿主条件相关防御的寄生虫,以及这种聚集对寄生虫与宿主相互作用的影响。使用仿真模型,我们表明,聚集体攻击宿主会提高寄生虫适应性,尤其是在防御方面的投资很高时。尽管包含了一些应控制聚集收益的因素,即低条件宿主的死亡率(预计这些宿主最容易发生寄生虫病)和高共染成本,聚集的适应性优势仍然存在。对于研究中常见的样本量,即使宿主条件是影响寄生虫的模型中唯一的其他因素,感染阶段的聚集也会降低检测宿主条件与寄生虫关系的可能性。因此,不一致地发现宿主条件和寄生虫之间的预期逆关系(通常是寄生虫-宿主相互作用研究的前提)并不奇怪。因此,需要发展对寄生虫-宿主生态和进化相互作用的理论,以了解寄生虫如何与宿主接触。

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