每日波动的温度降低了一种致命的两栖动物真菌病原体在培养中的生长和繁殖速度。

IF 2.2 2区 环境科学与生态学 Q1 Agricultural and Biological Sciences BMC Ecology Pub Date : 2020-04-03 DOI:10.1186/s12898-020-00286-7
Alexa L Lindauer, Paul A Maier, Jamie Voyles
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引用次数: 13

摘要

背景:新发传染病(eid)正在导致世界范围内的物种死亡。利用生态学方法研究病原生物学,可以更好地理解eid。例如,病原体在每天、季节和每年的尺度上暴露在不同的温度下。暴露于温度波动可能会减少病原体的生长和繁殖,这可能会影响病原体的毒力、传播和环境持久性,从而影响疾病。研究了不同热环境对真菌病原菌水蛭壶菌(Batrachochytrium dendroatidis, Bd)生殖生活史性状的影响。Bd引起壶菌病,这是一种新兴的两栖动物传染病。作为一种异温寄主的病原菌,Bd可以暴露在自然界较大的温度波动中。为了确定温度波动对Bd生长和繁殖的影响,我们收集了约塞米蒂蟾蜍(Anaxyrus canorus)繁殖池的温度数据,这是一种易感染壶菌病的联邦濒危物种。我们在模拟约塞米蒂蟾蜍繁殖池温度的每日波动温度下培养Bd,并测量Bd的生长、繁殖、繁殖力和生存能力。结果:我们观察到,与在最佳温度范围内恒温生长的培养物相比,在昼夜波动的热环境中,Bd的生长和繁殖有所减少。我们还发现,在恒定低温和恒定高温条件下,Bd表现出温度诱导的权衡。结论:我们的研究结果提供了关于Bd对动态热条件的可变响应的新见解,并强调了将实际温度波动纳入病原体生态学和EIDs调查的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Daily fluctuating temperatures decrease growth and reproduction rate of a lethal amphibian fungal pathogen in culture.

Background: Emerging infectious diseases (EIDs) are contributing to species die-offs worldwide. We can better understand EIDs by using ecological approaches to study pathogen biology. For example, pathogens are exposed to variable temperatures across daily, seasonal, and annual scales. Exposure to temperature fluctuations may reduce pathogen growth and reproduction, which could affect pathogen virulence, transmission, and environmental persistence with implications for disease. We examined the effect of a variable thermal environment on reproductive life history traits of the fungal pathogen Batrachochytrium dendrobatidis (Bd). Bd causes chytridiomycosis, an emerging infectious disease of amphibians. As a pathogen of ectothermic hosts, Bd can be exposed to large temperature fluctuations in nature. To determine the effect of fluctuating temperatures on Bd growth and reproduction, we collected temperature data from breeding pools of the Yosemite toad (Anaxyrus canorus), a federally threatened species that is susceptible to chytridiomycosis. We cultured Bd under a daily fluctuating temperature regime that simulated Yosemite toad breeding pool temperatures and measured Bd growth, reproduction, fecundity, and viability.

Results: We observed decreased Bd growth and reproduction in a diurnally fluctuating thermal environment as compared to cultures grown at constant temperatures within the optimal Bd thermal range. We also found that Bd exhibits temperature-induced trade-offs under constant low and constant high temperature conditions.

Conclusions: Our results provide novel insights on variable responses of Bd to dynamic thermal conditions and highlight the importance of incorporating realistic temperature fluctuations into investigations of pathogen ecology and EIDs.

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来源期刊
BMC Ecology
BMC Ecology ECOLOGY-
CiteScore
5.80
自引率
4.50%
发文量
0
审稿时长
22 weeks
期刊介绍: BMC Ecology is an open access, peer-reviewed journal that considers articles on environmental, behavioral and population ecology as well as biodiversity of plants, animals and microbes.
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