Department of Pathogen Biology, Institute of Tropical Medicine, School of Public Health, Southern Medical University, Guangzhou, China.
Guangzhou NewVision Electronic and Technology Co. Ltd, Guangzhou, China.
PLoS Negl Trop Dis. 2022 Sep 8;16(9):e0010701. doi: 10.1371/journal.pntd.0010701. eCollection 2022 Sep.
The surveillance of vector mosquitoes is essential for prevention and control of mosquito-borne diseases. In this study, we developed an internet-based vector mosquito monitor, MS-300, and evaluated its efficiency for the capture of the important vector mosquitoes, Aedes albopictus and Culex quinquefasciatus, in laboratory and field trials.
METHODOLOGY/PRINCIPAL FINDINGS: The linear sizes of adult Ae. albopictus and Cx. quinquefasciatus were measured and an infrared window was designed based on these data. A device to specifically attract these two species and automatically transmit the number of captured mosquitoes to the internet was developed. The efficiency of the device in capturing the two species was tested in laboratory, semi-field and open field trials. The efficiency results for MS-300 for catching and identifying Ae. albopictus in laboratory mosquito-net cages were 98.5% and 99.3%, and 95.8% and 98.6%, respectively, for Cx. quinquefasciatus. In a wire-gauze screened house in semi-field trials, the efficiencies of MS-300 baited with a lure in catching Ae. albopictus and Cx. quinquefasciatus were 54.2% and 51.3%, respectively, which were significantly higher than 4% and 4.2% without the lure. The real-time monitoring data revealed two daily activity peaks for Ae. albopictus (8:00-10:00 and 17:00-19:00), and one peak for Cx. quinquefasciatus (20:00-24:00). During a 98-day surveillance trial in the field, totals of 1,118 Ae. albopictus and 2,302 Cx. quinquefasciatus were captured by MS-300. There is a close correlation between the number of captured mosquitoes and the temperature in the field, and a positive correlation in the species composition of the captured samples among the mosquitoes using MS-300, BioGents Sentinel traps and human landing catches.
CONCLUSIONS/SIGNIFICANCE: The data support the conclusion that MS-300 can specifically and efficiently capture Ae. albopictus and Cx. quinquefasciatus, and monitor their density automatically in real-time. Therefore, MS-300 has potential for use as a surveillance tool for prevention and control of vector mosquitoes.
媒介蚊虫监测对于蚊媒疾病的预防和控制至关重要。本研究中,我们开发了一种基于互联网的媒介蚊虫监测器 MS-300,并在实验室和现场试验中评估了其对重要媒介蚊虫白纹伊蚊和致倦库蚊的捕获效率。
方法/主要发现:测量了成蚊的线性尺寸,并据此设计了一个红外窗口。开发了一种专门吸引这两种物种并自动将捕获的蚊虫数量传输到互联网的装置。在实验室、半野外和野外试验中测试了该设备对两种物种的捕获效率。MS-300 在实验室蚊笼中捕获和识别白纹伊蚊的效率分别为 98.5%和 99.3%,对致倦库蚊的效率分别为 95.8%和 98.6%。在半野外的铁丝网罩房内,用诱饵诱捕白纹伊蚊和致倦库蚊时,MS-300 的效率分别为 54.2%和 51.3%,显著高于无诱饵时的 4%和 4.2%。实时监测数据显示,白纹伊蚊有两个每日活动高峰(8:00-10:00 和 17:00-19:00),致倦库蚊有一个高峰(20:00-24:00)。在野外 98 天的监测试验中,MS-300 共捕获白纹伊蚊 1118 只,致倦库蚊 2302 只。捕获的蚊虫数量与野外温度密切相关,使用 MS-300、BioGents Sentinel 诱捕器和人工诱蚊灯捕获的蚊虫样本的物种组成也呈正相关。
结论/意义:数据支持 MS-300 能够特异性和高效地捕获白纹伊蚊和致倦库蚊,并实时自动监测其密度的结论。因此,MS-300 有望成为一种用于媒介蚊虫监测的工具。