Survival of the copepod Mesocyclops longisetus during simulations of transport from hatchery to target areas for biological control of mosquito larvae

Pub Date : 2020-03-06 DOI:10.3897/zoologia.37.e37658
Aline Nunes-Silva, Isabela de Lima-Keppe, R. V. de Souza, G. Perbiche-Neves
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引用次数: 1

Abstract

Copepods have been successfully used in many countries for the biological control of larvae of mosquitoes that vector diseases. In Brazil, this line of research has been focused on the use of the copepod Mesocyclops longisetus (Thiébaud, 1914) for the biological control of the mosquito Aedes aegypti (Linnaeus, 1792). The transportation of the copepods from the place where they are reared to where they will be used often involves long distances for extended periods of time. This study assesses the survivorship of M. longisetus during simulation of transport under different conditions. Different loading densities (20, 30, 40, 80, and 120 ind.L) and stirring times (30 minutes, one hour, two hours, and four hours) were tested. Survivorship was high, with 75% of the results equal or higher than 90% survival. Reduced mortality was observed when transportation time was up to 120 minutes and densities were up to 40 ind.L. In higher densities or longer transportation times, the mortality rate was significantly affected.
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模拟从孵化场到蚊虫幼虫生物防治目标区的运输过程中,长中环足桡足动物的存活
桡足类动物已在许多国家成功地用于生物控制传播疾病的蚊子幼虫。在巴西,这条研究路线的重点是利用桡足类长尾猿(thi baud, 1914年)对埃及伊蚊(Linnaeus, 1792年)进行生物防治。桡足类动物从它们被饲养的地方运送到它们被使用的地方,通常需要很长一段时间的长途跋涉。本研究评估了不同条件下长鼻曲霉在模拟运输过程中的生存能力。测试了不同的加载密度(20、30、40、80和120 l)和搅拌时间(30分钟、1小时、2小时和4小时)。存活率很高,75%的结果等于或高于90%的存活率。当运输时间达到120分钟,密度达到40升时,死亡率降低。密度越大,运输时间越长,对死亡率影响越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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