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中规模蚊子饲养设施的建立:对大规模生产白纹伊蚊(双翅目:蚊科)笼的测试。

Establishment of a medium-scale mosquito facility: tests on mass production cages for Aedes albopictus (Diptera: Culicidae).

机构信息

Department of Parasitology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, Guangdong, 510080, China.

Key Laboratory for Tropical Disease Control, Ministry of Education, Sun Yat-sen University, Guangzhou, Guangdong, 510080, China.

出版信息

Parasit Vectors. 2018 Mar 19;11(1):189. doi: 10.1186/s13071-018-2750-7.

Abstract

BACKGROUND

Mass egg production is an important component of Aedes albopictus mosquito control programs, such as the sterile insect technique and incompatible insect technique, which requires the releases of large number of sterile males. Developing standard operating procedures and optimized cages for adult maintenance of Ae. albopictus can improve the mass rearing efficiency.

METHODS

Three different sex ratios of females to males with a total number of 4,000 mosquitoes were tested by evaluating the insemination rate, egg production (total number of eggs per cage), female fecundity and egg hatch rate in small cage (30 × 30 × 30 cm). Blood meals with adenosine triphosphate (ATP, 0.05 g/ml), cage structures (Big cage A: 90 × 30 × 30 cm; Big cage B: 90 × 30 × 50 cm or 90 × 50 × 30 cm) and rearing densities (12,000, 16,000 and 20,000 mosquitoes, corresponding to 0.9 cm/mosquito, 0.675 cm/mosquito and 0.54 cm/mosquito, respectively) were also tested and evaluated on the basis of egg production, female fecundity and egg hatch rate. An adult rearing unit holding 15 of Big cage A with optimal egg production was designed to produce 10 million eggs per rearing cycle in a 1.8 m space.

RESULTS

Female to male ratios at 3:1 in small cages resulted in higher egg production but did not affect insemination rate, female fecundity and egg hatch rate. A concentration of 0.05 g/ml of ATP added to blood meals improved the blood-feeding frequency and thus increased the overall egg production per cage. Cage structures affected the egg production per cage, but not egg hatch rate. A medium rearing density at 0.675 cm/mosquito (16,000 mosquitoes) resulted in higher egg production compared to both low and high densities. An adult rearing unit for Ae. albopictus on the basis of Big cage A has been developed with the capacity of producing 10 million eggs within 15 days.

CONCLUSIONS

Our results have indicated that the adult rearing methods and adult maintenance unit are recommended for Ae. albopictus mass rearing in support of the establishment of a medium-sized mosquito factory.

摘要

背景

大量产卵是白纹伊蚊蚊控项目(如不育昆虫技术和不相容昆虫技术)的重要组成部分,这些项目需要释放大量的不育雄蚊。制定成蚊饲养的标准操作程序和优化笼具可以提高大规模饲养的效率。

方法

通过评估小笼(30×30×30cm)中的受精率、产卵量(每笼卵数)、雌蚊的繁殖力和卵孵化率,测试了 4000 只蚊子中 3 种不同雌蚊与雄蚊比例。用血餐中添加三磷酸腺苷(ATP,0.05g/ml)、笼具结构(大笼 A:90×30×30cm;大笼 B:90×30×50cm 或 90×50×30cm)和饲养密度(12000、16000 和 20000 只/笼,分别对应 0.9cm/只、0.675cm/只和 0.54cm/只),根据产卵量、雌蚊繁殖力和卵孵化率进行评估。设计了一个容纳 15 个大笼 A 的成虫饲养单元,在 1.8m 的空间内,每个饲养周期可生产 1000 万枚卵。

结果

小笼中 3:1 的雌/雄比可提高产卵量,但不影响受精率、雌蚊繁殖力和卵孵化率。在血餐中添加 0.05g/ml 的 ATP 可提高吸血频率,从而增加每笼总产卵量。笼具结构影响每笼产卵量,但不影响卵孵化率。中密度(16000 只/笼)饲养比低密度(12000 只/笼)和高密度(20000 只/笼)的产卵量更高。基于大笼 A 的白纹伊蚊成虫饲养单元已开发成功,可在 15 天内生产 1000 万枚卵。

结论

我们的研究结果表明,建议采用成虫饲养方法和成虫饲养单元对白纹伊蚊进行大规模饲养,以支持建立一个中型蚊工厂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f1c/5859650/c32ae98c1f16/13071_2018_2750_Fig1_HTML.jpg

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