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佛罗里达州李县多年基线上埃及伊蚊的昆虫学数据对综合蚊虫管理的季节性见解。

Seasonal insights for integrative mosquito management from multi-year baseline entomological data on Aedes aegypti in Lee County, Florida.

机构信息

Lee County Mosquito Control District, Lehigh Acres, FL, United States of America.

Department of Entomology & Nematology, University of Florida, Gainesville, FL, United States of America.

出版信息

PLoS One. 2024 Oct 11;19(10):e0311407. doi: 10.1371/journal.pone.0311407. eCollection 2024.

Abstract

The spread of arboviruses like yellow fever, dengue, chikungunya, and Zika, transmitted by the invasive mosquito Aedes aegypti has led to the development of many strategies to suppress mosquito populations. Given the rapid development of resistance to common chemical larvicides and adulticides in some Ae. aegypti populations, as well as the ever-shrinking chemical options for mosquito control, there is a pressing need for new tools and deployment of those innovative tools as a component of integrative mosquito management programs. Prior to the adoption of any mosquito population intervention, be it conventional or innovative, understanding the baseline population is essential to evaluate the efficacy of the control measure. The Lee County Mosquito Control District in Florida has collected a three-year-long period of baseline entomological surveillance data collection for Ae. aegypti on Captiva and Sanibel Islands as foundational information prior to implementation of a new integrative mosquito management approach. We identified 18 mosquito species and described their population dynamics during the rainy and dry seasons. The two islands had no significant differences in species richness, diversity, dominance, or evenness overall. Yet, there were clear differences between the high rain season and low rain season in the Shannon diversity index, Simpson dominance index, and Pielou species evenness index within each site. Our data suggest that any innovative intervention should begin before mid to late April when the mosquito population is at its lowest and certainly before populations build up to their summer peak between June and September. These data also show the spatial distribution of Ae. aegypti is dynamic in space and time, identifying hotspots of mosquito abundance to focus on for future interventions. Overall, our study emphasizes the importance of entomological data collection to understand the population dynamics of Ae. aegypti mosquitoes, including the impact of environmental factors such as temperature and precipitation.

摘要

黄热病、登革热、基孔肯雅热和寨卡病毒等虫媒病毒的传播,由入侵性蚊子埃及伊蚊传播,导致了许多抑制蚊子种群的策略的发展。鉴于一些埃及伊蚊种群对常见化学幼虫剂和成虫剂的抗药性迅速发展,以及用于控制蚊子的化学选择方案不断减少,迫切需要新的工具,并将这些创新工具作为综合蚊子管理计划的一部分加以部署。在采用任何蚊子种群干预措施之前,无论是常规措施还是创新措施,了解基线种群对于评估控制措施的效果至关重要。佛罗里达州李县蚊虫控制区在实施新的综合蚊虫管理方法之前,收集了三年来卡普蒂瓦和圣伊内斯岛上埃及伊蚊的基线昆虫学监测数据,以此作为基础信息。我们确定了 18 种蚊子,并描述了它们在雨季和旱季的种群动态。这两个岛屿在物种丰富度、多样性、优势度和均匀度方面没有显著差异。然而,在每个地点,高雨季节和低雨季节之间的 Shannon 多样性指数、Simpson 优势度指数和 Pielou 物种均匀度指数存在明显差异。我们的数据表明,任何创新干预措施都应在 4 月中旬至下旬蚊子数量最低时开始,当然也应在蚊子数量在 6 月至 9 月之间达到夏季高峰之前开始。这些数据还显示了埃及伊蚊的空间分布在时空上是动态的,确定了蚊子丰度的热点,以便为未来的干预措施提供重点。总的来说,我们的研究强调了收集昆虫学数据以了解埃及伊蚊种群动态的重要性,包括环境因素(如温度和降水)对其的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/345b/11469506/a004a56dfb09/pone.0311407.g001.jpg

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