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湿度——蚊媒传染病热生物学中被忽视的变量。

Humidity - The overlooked variable in the thermal biology of mosquito-borne disease.

机构信息

Department of Entomology, Cornell University, Ithaca, New York, USA.

Department of Ecology and Evolution, University of Chicago, Chicago, Illinois, USA.

出版信息

Ecol Lett. 2023 Jul;26(7):1029-1049. doi: 10.1111/ele.14228. Epub 2023 May 10.

Abstract

Vector-borne diseases cause significant financial and human loss, with billions of dollars spent on control. Arthropod vectors experience a complex suite of environmental factors that affect fitness, population growth and species interactions across multiple spatial and temporal scales. Temperature and water availability are two of the most important abiotic variables influencing their distributions and abundances. While extensive research on temperature exists, the influence of humidity on vector and pathogen parameters affecting disease dynamics are less understood. Humidity is often underemphasized, and when considered, is often treated as independent of temperature even though desiccation likely contributes to declines in trait performance at warmer temperatures. This Perspectives explores how humidity shapes the thermal performance of mosquito-borne pathogen transmission. We summarize what is known about its effects and propose a conceptual model for how temperature and humidity interact to shape the range of temperatures across which mosquitoes persist and achieve high transmission potential. We discuss how failing to account for these interactions hinders efforts to forecast transmission dynamics and respond to epidemics of mosquito-borne infections. We outline future research areas that will ground the effects of humidity on the thermal biology of pathogen transmission in a theoretical and empirical framework to improve spatial and temporal prediction of vector-borne pathogen transmission.

摘要

虫媒传染病造成了巨大的经济和人力损失,控制虫媒传染病需要花费数十亿美元。节肢动物媒介经历了一系列复杂的环境因素,这些因素影响着它们在多个时空尺度上的适应性、种群增长和物种相互作用。温度和水分可用性是影响其分布和丰度的两个最重要的非生物变量。虽然对温度的研究已经很广泛,但湿度对影响疾病动态的媒介和病原体参数的影响却知之甚少。湿度往往被低估,即使在考虑湿度时,也往往被视为独立于温度,尽管在较暖的温度下,干燥可能会导致特征表现下降。本观点探讨了湿度如何塑造蚊媒病原体传播的热性能。我们总结了已知的湿度影响,并提出了一个概念模型,说明温度和湿度如何相互作用,塑造蚊子持续存在和实现高传播潜力的温度范围。我们讨论了未能考虑这些相互作用如何阻碍了对传播动态的预测以及对蚊媒传染病流行的应对。我们概述了未来的研究领域,这些领域将湿度对病原体传播热生物学的影响建立在理论和经验框架中,以提高对蚊媒病原体传播的时空预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e5a/10299817/7e41ec786778/nihms-1907730-f0001.jpg

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