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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Pathogen adaptation to seasonal forcing and climate change
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Pathogen adaptation to seasonal forcing and climate change

机译:病原体适应季节性强迫和气候变化

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Many diverse infectious diseases exhibit seasonal dynamics. Seasonality in disease incidence has been attributed to seasonal changes in pathogen transmission rates, resulting from fluctuations in extrinsic climate factors. Multi-strain infectious diseases with strain-specific seasonal signatures, such as cholera, indicate that a range of seasonal patterns in transmission rates is possible in identical environments. We therefore consider pathogens capable of evolving their 'seasonal phenotype', a trait that determines the sensitivity of their transmission rates to environmental variability. We introduce a theoretical framework, based on adaptive dynamics, for predicting the evolution of disease dynamics in seasonal environments. Changes in the seasonality of environmental factors are one important avenue for the effects of climate change on disease. This model also provides a framework for examining these effects on pathogen evolution and associated disease dynamics. An application of this approach gives an explanation for the recent cholera strain replacement in Bangladesh, based on changes in monsoon rainfall patterns.
机译:许多不同的传染病表现出季节性变化。疾病发病率的季节性归因于外在气候因素的波动导致的病原体传播率的季节性变化。具有特定菌株季节性特征的多菌株传染病(例如霍乱)表明,在相同的环境中,传播速率的一系列季节性模式都是可能的。因此,我们考虑了能够演变其“季节性表型”的病原体,这种特征决定了其传播速率对环境变异性的敏感性。我们介绍了一种基于自适应动力学的理论框架,用于预测季节性环境中疾病动力学的演变。环境因素的季节性变化是气候变化对疾病影响的重要途径之一。该模型还提供了一个框架,用于检查这些对病原体进化和相关疾病动态的影响。根据季风降雨模式的变化,这种方法的应用为孟加拉国最近的霍乱毒株替代提供了解释。

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