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利用自动化蛹性别分拣器提高无菌雄蚊的产量。

Upscaling the production of sterile male mosquitoes with an automated pupa sex sorter.

机构信息

Guangzhou Wolbaki Biotech Co. Ltd., Guangzhou, China.

Insect Pest Control Sub-programme, Joint FAO/IAEA Centre of Nuclear Techniques in Food and Agriculture, Vienna, Austria.

出版信息

Sci Robot. 2024 Jul 31;9(92):eadj6261. doi: 10.1126/scirobotics.adj6261.

Abstract

Effective mosquito population suppression has been repeatedly demonstrated in field trials through the release of male mosquitoes to induce sterile mating with wild females using the incompatible insect technique (IIT), the sterile insect technique (SIT), or their combination. However, upscaling these techniques requires a highly efficient and scalable approach for the sex separation of mass-reared mosquitoes to minimize the unintentional release of females, which can lead to either population replacement or biting nuisance, a major bottleneck up to now. Here, we report the successful development of an automated mosquito pupa sex sorter that can effectively separate large numbers of males from females for population suppression of , , and . The male production capacity of the automated sex sorter was increased by ~17-fold compared with manual sex separation with the Fay-Morlan sorter and enabled one person to separate 16 million males per week. With ~0.5% female contamination, the produced males exhibited high flight ability and mating performance. The field trial demonstrates that the quality of males produced using the automated sex sorter is suitable for inducing population suppression. These results indicate that the automated sex sorter offers the potential to upscale IIT and SIT against mosquito vectors for disease control.

摘要

通过释放雄性蚊子并用不亲和昆虫技术(IIT)、不育昆虫技术(SIT)或它们的组合来诱导与野生雌性蚊子的不育交配,已在田间试验中反复证明了有效的蚊虫种群抑制。然而,要扩大这些技术的规模,需要一种高效且可扩展的大规模饲养蚊子的性别分离方法,以最大程度地减少雌性蚊子的意外释放,否则这可能导致种群替代或叮咬滋扰,这是迄今为止的一个主要瓶颈。在这里,我们报告了一种自动化蚊子蛹性别分拣器的成功开发,该分拣器可有效分离大量雄性和雌性蚊子,用于抑制 、 和 。与 Fay-Morlan 分拣器手动性别分离相比,自动化性别分拣器的雄性生产能力提高了约 17 倍,使一个人每周能够分离出 1600 万只雄性蚊子。在存在约 0.5%雌性污染的情况下,所产生的雄性蚊子表现出高飞行能力和交配性能。田间试验表明,使用自动化性别分拣器生产的 雄性蚊子质量适合用于诱导种群抑制。这些结果表明,自动化性别分拣器有可能扩大 IIT 和 SIT 以用于疾病控制中的蚊虫媒介防治。

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