一种以菌丝体为基础的二氧化碳源,用于捕获病媒蚊子。

IF 2
Dongmin Kim, Tanise Moitinho S Stenn, Vilma M Cooper, Morgan N Rockwell, Bryna C Wilson, Miles T McCollum, Colton R O'Brien, Nathan D Burkett-Cadena
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引用次数: 0

摘要

二氧化碳(CO2)是蚊子寻找寄主过程中的关键激活剂和引诱剂,通常用于诱捕诱饵。然而,通过干冰、压缩气体、糖-酵母反应或碳酸-酸系统来释放二氧化碳可能成本高、寿命短、劳动密集型。我们评估了一种市售的基于菌丝体的二氧化碳源(呼气袋)在将蚊子吸引到被动和主动陷阱中的有效性。呼气袋最初是为温室使用而开发的,它可以持续释放长达6个月的二氧化碳。在半野外条件下,我们用3种媒介蚊子(致倦库蚊、白纹伊蚊和埃及伊蚊)单独或混合分组,比较了有和没有呼气的生物制剂妊娠伊蚊诱捕器(BG-GAT)。还进行了现场验证,以评估呼气在BG-GAT和BG-Sentinel陷阱中的功效。结果表明,在单种(15.2 ~ 92.3×)和混合(21.7×)试验中,用呼气法诱捕的bt - gats捕获的蚊虫明显多于未诱捕的。在野外试验中,在沿海森林(9.1倍)和郊区(47.5倍)地点,以exhale为诱饵的BG-GATs收集到的蚊子明显更多,包括更广泛的种类。呼气诱蚊器捕获雌蚊较多(1.4倍),但差异无统计学意义。结果表明,呼气法与被动诱捕器相结合,是一种经济有效的媒介蚊虫诱捕系统。二氧化碳生产的长有效期限有利于大规模的蚊子监测,特别是在偏远的野外地点和发展中国家,在那里二氧化碳可能非常昂贵或难以获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A mycelium-based carbon dioxide source for trapping vector mosquitoes.

Carbon dioxide (CO2) is a key activator and attractant for mosquitoes during host-seeking and is routinely used to bait traps. However, deploying CO2 via dry ice, compressed gas, sugar-yeast reactions, or carbonate-acid systems can be expensive, short-lived, and labor-intensive. We evaluated the effectiveness of a commercially available, mycelium-based CO2 source (ExHale bag) for attracting mosquitoes to passive and active traps. Originally developed for greenhouse use, the ExHale bag provides sustained CO2 release for up to 6 mo. Under semi-field conditions, we compared Biogents gravid Aedes traps (BG-GAT) with and without ExHale using single or mixed groups of 3 vector mosquito species (Culex quinquefasciatus, Aedes albopictus, and Aedes aegypti). A field validation was also conducted to assess the efficacy of ExHale in both BG-GAT and BG-Sentinel traps. Our semi-field findings revealed that BG-GATs baited with ExHale captured significantly more mosquitoes than unbaited traps in both single-species (15.2 to 92.3×) and mixed-species (21.7×) tests. In field trials, ExHale-baited BG-GATs collected significantly more mosquitoes, including a broader range of species, at coastal forest (9.1×) and suburban (47.5×) sites. BG-Sentinel traps baited with ExHale also collected more female mosquitoes (1.4×), though the difference was not statistically significant. Our results indicate that ExHale, when coupled with a passive trap, provides an economical and effective trapping system for vector mosquitoes. The long effective period of CO2 production is advantageous for large-scale mosquito surveillance, particularly in remote field sites and developing countries, where CO2 may be prohibitively expensive or difficult to obtain.

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