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基于个体的模型强调了权衡对于病毒-宿主种群动态和长期共存的重要性。

Individual-based model highlights the importance of trade-offs for virus-host population dynamics and long-term co-existence.

机构信息

Department of Biological Sciences, University of Bergen, Bergen, Norway.

Computer Science Department, University of Massachusetts, Boston, Massachusetts, United States of America.

出版信息

PLoS Comput Biol. 2022 Jun 8;18(6):e1010228. doi: 10.1371/journal.pcbi.1010228. eCollection 2022 Jun.

Abstract

Viruses play diverse and important roles in ecosystems. In recent years, trade-offs between host and virus traits have gained increasing attention in viral ecology and evolution. However, microbial organism traits, and viral population parameters in particular, are challenging to monitor. Mathematical and individual-based models are useful tools for predicting virus-host dynamics. We have developed an individual-based evolutionary model to study ecological interactions and evolution between bacteria and viruses, with emphasis on the impacts of trade-offs between competitive and defensive host traits on bacteria-phage population dynamics and trait diversification. Host dynamics are validated with lab results for different initial virus to host ratios (VHR). We show that trade-off based, as opposed to random bacteria-virus interactions, result in biologically plausible evolutionary outcomes, thus highlighting the importance of trade-offs in shaping biodiversity. The effects of nutrient concentration and other environmental and organismal parameters on the virus-host dynamics are also investigated. Despite its simplicity, our model serves as a powerful tool to study bacteria-phage interactions and mechanisms for evolutionary diversification under various environmental conditions.

摘要

病毒在生态系统中扮演着多样且重要的角色。近年来,宿主与病毒特性之间的权衡关系在病毒生态学和进化领域受到了越来越多的关注。然而,微生物生物特性,特别是病毒种群参数,难以监测。数学模型和个体基础模型是预测病毒-宿主动态的有用工具。我们开发了一个基于个体的进化模型,用于研究细菌和病毒之间的生态相互作用和进化,重点关注竞争和防御性宿主特性之间的权衡对细菌-噬菌体种群动态和特性多样化的影响。通过不同的初始病毒与宿主比(VHR)的实验室结果验证了宿主动态。我们表明,基于权衡的细菌-病毒相互作用,而不是随机的相互作用,会导致有生物学意义的进化结果,从而强调了权衡在塑造生物多样性方面的重要性。还研究了营养浓度和其他环境及生物参数对病毒-宿主动态的影响。尽管模型很简单,但它是研究在各种环境条件下细菌-噬菌体相互作用和进化多样化机制的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afc5/9212155/2ac5ab3c8320/pcbi.1010228.g001.jpg

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