GSTDTAP  > 资源环境科学
DOI10.1111/ele.13845
Host adaptation to novel pathogen introduction: Predicting conditions that promote evolutionary rescue
Benjamin D. Golas; Brandon Goodell; Colleen T. Webb
2021-07-26
发表期刊Ecology Letters
出版年2021
英文摘要

Novel pathogen introduction can have drastic consequences for naive host populations, and outcomes can be difficult to predict. Evolutionary rescue (ER) provides a foundation for understanding whether hosts are driven to extinction or survive via adaptation. Currently, patterns of host population dynamics alongside evidence of adaptation are used to infer ER. However, the gap between established ER theory and complexity inherent in natural systems makes interpreting empirical patterns difficult because they can be confounded with ecological drivers of survival under current theory. To bridge this gap, we expand ER theory to include biological selective agents, such as pathogens. We find birth processes to be more important than previously theorised in determining ER potential. We employ a novel framework evaluating ER potential within natural systems and gain ability to identify system characteristics that make ER possible. Identifying these characteristics allows a shift from retrospective observation to a predictive mindset, and our findings suggest that ER occurrence may be more limited than previously thought. We use the plague system of Yersinia pestis infecting Cynomys ludovicianus (black-tailed prairie dogs) and Spermophilus beecheyi (California ground squirrels) as a case study.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/335390
专题资源环境科学
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Benjamin D. Golas,Brandon Goodell,Colleen T. Webb. Host adaptation to novel pathogen introduction: Predicting conditions that promote evolutionary rescue[J]. Ecology Letters,2021.
APA Benjamin D. Golas,Brandon Goodell,&Colleen T. Webb.(2021).Host adaptation to novel pathogen introduction: Predicting conditions that promote evolutionary rescue.Ecology Letters.
MLA Benjamin D. Golas,et al."Host adaptation to novel pathogen introduction: Predicting conditions that promote evolutionary rescue".Ecology Letters (2021).
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