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在宿主-寄生系统中,种群生存力受种群阶段结构和对毒物的生命阶段差异敏感性之间相互作用的调节。

Population viability in a host-parasitoid system is mediated by interactions between population stage structure and life stage differential susceptibility to toxicants.

机构信息

Ecotoxicology Program, Department of Entomology, Research and Extension Center, Washington State University, Puyallup, WA, 98371, USA.

Research and Extension Center, School of the Environment, Washington State University, Puyallup, WA, 98371, USA.

出版信息

Sci Rep. 2020 Nov 27;10(1):20746. doi: 10.1038/s41598-020-77496-y.

Abstract

The effects of toxicants, such as pesticides, may be more severe for some life stages of an organism than others. However, in most toxicity studies, data is developed for only one life stage, which may lead to misleading interpretations. Furthermore, population stage-structure may interact with differential susceptibility, especially when populations consist of higher proportions of individuals in more susceptible stages at the time of toxicant exposure. We explore the interaction of differential stage susceptibility and stage distribution using a stage-structured Lefkovitch matrix model. We incorporate lab-derived toxicity data for a common parasitoid, the braconid Diaeretiella rapae (M'Intosh), a common natural enemy of the cabbage aphid (Brevicoryne brassicae L.), exposed to the pesticide imidacloprid. We compare population outcomes of simulations in which we vary both the population stage structure along with the susceptibility of each stage to toxicants. Our results illustrate an interaction between differential susceptibility and initial stage distribution, highlighting the fact that both of these demographic features should be considered in interpreting toxicity data and the development of ecological risk assessments.

摘要

有毒物质(如杀虫剂)的影响可能在生物体的某些生命阶段比其他阶段更为严重。然而,在大多数毒性研究中,仅为一个生命阶段开发数据,这可能导致误导性的解释。此外,种群阶段结构可能与差异敏感性相互作用,特别是当种群在有毒物质暴露时包含更高比例的更易受影响阶段的个体时。我们使用阶段结构的 Lefkovitch 矩阵模型来探索差异阶段敏感性和阶段分布的相互作用。我们将实验室获得的毒性数据纳入其中,研究对象是一种常见的寄生蜂,小菜蛾绒茧蜂(Diaeretiella rapae (M'Intosh)),这是一种常见的白菜蚜虫(Brevicoryne brassicae L.)的天敌,接触杀虫剂吡虫啉。我们比较了模拟中种群结果,这些模拟中我们同时改变了种群阶段结构以及每个阶段对有毒物质的敏感性。我们的结果说明了差异敏感性和初始阶段分布之间的相互作用,突出了这样一个事实,即这两个人口特征都应该在解释毒性数据和制定生态风险评估时考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d28/7699617/9501017cad54/41598_2020_77496_Fig1_HTML.jpg

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