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短吻鳄与蚊子:在气候变化中作为西尼罗河病毒放大器的北美鳄鱼

The Alligator and the Mosquito: North American Crocodilians as Amplifiers of West Nile Virus in Changing Climates.

作者信息

Andersen Desiree Kirsten, Fischer Gracie Ann, Combrink Leigh

机构信息

School of Natural Resources and the Environment, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Microorganisms. 2024 Sep 14;12(9):1898. doi: 10.3390/microorganisms12091898.

Abstract

In an age of emerging zoonoses, it is important to understand the intricate system of vectors and reservoirs, or hosts, and their relation to humans. West Nile Virus (WNV) has been detected in a myriad of nonhuman hosts. Transmission of the virus to humans is reliant on amplified seroprevalence within the host, which occurs primarily in birds. However, recent studies have found that other animal groups, including crocodilians, can obtain seroprevalence amplification to levels that make them competent hosts able to transmit WNV to mosquitoes, which can then transmit to humans. Climate change could exacerbate this transmission risk by shifting the distributions of mosquito vectors towards novel geographic ranges. Here, we use maximum entropy models to map the current and future distributions of three mosquito vector species and four crocodilian species in North America to determine the emerging risk of WNV outbreaks associated with changing climates and WNV associated with crocodilians in North America. From our models, we determined that one mosquito species in particular, , will increase its distribution across the ranges of all crocodilian species in all tested climate change scenarios. This poses a potential risk to public health for people visiting and living near crocodilian farms and high-density natural crocodilian populations.

摘要

在新发人畜共患病的时代,了解复杂的病媒和宿主系统及其与人类的关系非常重要。西尼罗河病毒(WNV)已在众多非人类宿主中被检测到。该病毒向人类的传播依赖于宿主内血清阳性率的增加,这主要发生在鸟类中。然而,最近的研究发现,包括鳄鱼在内的其他动物群体也能使血清阳性率增加到足以使其成为能够将WNV传播给蚊子的有效宿主的水平,而蚊子随后又能将病毒传播给人类。气候变化可能会通过将病媒蚊子的分布范围转移到新的地理区域而加剧这种传播风险。在此,我们使用最大熵模型来绘制北美三种病媒蚊子物种和四种鳄鱼物种的当前和未来分布,以确定与气候变化相关的WNV疫情以及北美与鳄鱼相关的WNV出现的风险。从我们的模型中可以确定,在所有测试的气候变化情景下尤其有一种蚊子物种,将扩大其在所有鳄鱼物种分布范围内的分布。这对前往鳄鱼养殖场附近和高密度自然鳄鱼种群区域参观及居住的人们的公共健康构成了潜在风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a85/11433929/aac6a8724a5b/microorganisms-12-01898-g001.jpg

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