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检测和持久性的环境 DNA(eDNA)的不同发育阶段的一种病媒蚊子,库蚊白纹伊蚊。

Detection and persistence of environmental DNA (eDNA) of the different developmental stages of a vector mosquito, Culex pipiens pallens.

机构信息

Graduate School of Human Development and Environment, Kobe University, Kobe City, Japan.

Kobe University Innovation, Co., Ltd, Kobe City, Japan.

出版信息

PLoS One. 2022 Aug 10;17(8):e0272653. doi: 10.1371/journal.pone.0272653. eCollection 2022.

Abstract

Preventing mosquito-borne infectious diseases requires that vector mosquitoes are monitored and controlled. Targeting immature mosquitoes (eggs, larvae, and pupae), which have less mobility than adults, is an effective management approach. However, conducting these surveys is often difficult due to the limitations of morphological classification and survey costs. The application of environmental DNA (eDNA) analysis can solve these issues because it allows easy estimation of species distribution and morphology-independent species identification. Although a few previous studies have reported mosquito eDNA detection, there is a gap in knowledge regarding the dynamics related to the persistence of immature mosquito eDNA. We used Culex pipiens pallens, a vector of West Nile fever, as a model species. First, we developed a species-specific detection assay and confirmed its specificity using in silico and in vitro tests. Next, we conducted laboratory experiments using breeding tanks. Water samples were collected at each developmental stage. In addition, water samples were collected daily until the seventh day after emergence from the pupae. We quantified eDNA using real-time PCR with the developed assay to investigate the dynamics of mosquito eDNA. The specificity of the developed assay was confirmed by in silico and in vitro tests. Mosquito eDNA was detected at all developmental stages and detected up to seven days after emergence of pupae. In particular, high concentrations of eDNA were detected immediately after hatching from eggs and after emergence from pupae. Highly frequent positive eDNA signals were continuously detected between egg hatching and pupa hatching. Mosquito eDNA was detected immediately after the eggs were introduced, and eDNA-positive detections continued until pupae emergence, suggesting that eDNA analysis is useful for monitoring mosquito larvae. In the future, monitoring immature mosquitoes using eDNA analysis will contribute to prevent mosquito-borne infectious diseases.

摘要

预防蚊媒传染病需要监测和控制病媒蚊。针对移动性不如成虫的幼蚊(卵、幼虫和蛹)进行靶向控制是一种有效的管理方法。然而,由于形态分类和调查成本的限制,进行这些调查往往很困难。环境 DNA (eDNA) 分析的应用可以解决这些问题,因为它可以方便地估计物种分布和形态上独立的物种识别。尽管之前有一些研究报道了蚊子的 eDNA 检测,但关于幼蚊 eDNA 持久性相关的动态知识仍存在空白。我们使用携带西尼罗河热的库蚊作为模型物种。首先,我们开发了一种特定物种的检测方法,并通过计算机模拟和体外试验确认了其特异性。接下来,我们使用繁殖水箱进行了实验室实验。在每个发育阶段收集水样。此外,在蛹孵化后,每天收集水样直至第 7 天。我们使用开发的检测方法通过实时 PCR 定量 eDNA,以研究蚊子 eDNA 的动态。通过计算机模拟和体外试验证实了该检测方法的特异性。在所有发育阶段都检测到了蚊子 eDNA,并在蛹孵化后检测到了七天。特别是,在卵孵化和蛹孵化后立即检测到 eDNA 的高浓度。在卵孵化和蛹孵化之间,连续检测到高频率的阳性 eDNA 信号。在引入卵后立即检测到蚊子 eDNA,并持续进行 eDNA 阳性检测,直到蛹孵化,这表明 eDNA 分析有助于监测蚊子幼虫。在未来,使用 eDNA 分析监测幼蚊将有助于预防蚊媒传染病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4066/9365122/cd9c0587db42/pone.0272653.g001.jpg

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