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蚊子的产卵行为与病媒控制

Mosquito Oviposition Behavior and Vector Control.

作者信息

Day Jonathan F

机构信息

Florida Medical Entomology Laboratory, University of Florida, IFAS, 200 9th St. SE, Vero Beach, FL 32962, USA.

出版信息

Insects. 2016 Nov 18;7(4):65. doi: 10.3390/insects7040065.

Abstract

The burden of gene transfer from one mosquito generation to the next falls on the female and her eggs. The selection of an oviposition site that guarantees egg and larval survival is a critical step in the reproductive process. The dangers associated with ephemeral aquatic habitats, lengthy droughts, freezing winters, and the absence of larval nutrition makes careful oviposition site selection by a female mosquito extremely important. Mosquito species exhibit a remarkable diversity of oviposition behaviors that ensure eggs are deposited into microenvironments conducive for successful larval development and the emergence of the next mosquito generation. An understanding of mosquito oviposition behavior is necessary for the development of surveillance and control opportunities directed against specific disease vectors. For example, Linnaeus is the vector of viruses causing important human diseases including yellow fever, dengue, chikungunya, and Zika. The preference of this species to oviposit in natural and artificial containers has facilitated the development of -specific surveillance and toxic oviposition traps designed to detect and control this important vector species in and around disease foci. A better understanding of the wide diversity of mosquito oviposition behavior will allow the development of new and innovative surveillance and control devices directed against other important mosquito vectors of human and animal disease.

摘要

基因从一代蚊子传递到下一代的重担落在了雌蚊及其产下的卵上。选择一个能确保卵和幼虫存活的产卵地点是生殖过程中的关键一步。与短暂的水生栖息地、长期干旱、寒冷冬季以及幼虫缺乏营养相关的危险,使得雌蚊仔细选择产卵地点极为重要。蚊子种类展现出显著多样的产卵行为,以确保卵被产在有利于幼虫成功发育以及下一代蚊子羽化的微环境中。了解蚊子的产卵行为对于针对特定病媒开展监测和控制工作而言是必要的。例如,埃及伊蚊是包括黄热病、登革热、基孔肯雅热和寨卡病毒在内的导致重要人类疾病的病毒的病媒。该物种偏好于在天然和人工容器中产卵,这推动了专门的监测和有毒产卵诱捕器的开发,旨在检测和控制疾病疫源地及其周边的这一重要病媒物种。更好地了解蚊子产卵行为的广泛多样性,将有助于开发针对人类和动物疾病的其他重要蚊子病媒的新型创新监测和控制设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc43/5198213/d20e6b84fb71/insects-07-00065-g001.jpg

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