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利用环境DNA(eDNA)检测和定量实验水生栖息地中广义的蚊虫幼虫。

Detection and quantification of sensu lato mosquito larvae in experimental aquatic habitats using environmental DNA (eDNA).

作者信息

Odero Joel, Gomes Bruno, Fillinger Ulrike, Weetman David

机构信息

Malaria Programme, International Centre of Insect Physiology and Ecology, Thomas Odhiambo Campus, P.O. Box 30, Mbita, 40305, Kenya.

Department of Vector Biology, Liverpool School of Tropical Medicine, Liverpool, L3 5QA, UK.

出版信息

Wellcome Open Res. 2018 Mar 8;3:26. doi: 10.12688/wellcomeopenres.14193.1. eCollection 2018.

Abstract

Growing insecticide resistance and changes in biting and resting behavior of malaria vectors threaten efficacy of insecticide treated nets and indoor residual spraying. Larval source management (LSM) is a promising approach that can target mosquitoes irrespective of their behavior as adults. However, the use of traditional monitoring methods for immature stages of mosquitoes is a major challenge to LSM due to the variability in their breeding habitats.  We evaluate the use of an environmental DNA (eDNA) analysis technique in monitoring sensu lato larvae in experimental aquatic habitats. eDNA was simultaneously sampled and extracted from different volumes of water, number of larvae, and occupation time. Larval presence was detected using PCR and eDNA concentration in samples from 1 L habitats quantified using an and TaqMan assays. The limit of detection of the two assays was tested and larval density correlated with eDNA positivity.  74% of replicates in the 50 mL habitats were PCR positive with at least 6h required to get a signal from a single larva (0.02 larvae/mL). All 12 replicates where 1 L of water was used were positive with stronger PCR bands than replicates with the same larval density in 50 mL for 24 h. There was a correlation between larval densities and eDNA detection in both assays: , = 0.503, p = 0.047; and = 0.558, p = 0.025. There was stochasticity in eDNA detection rates, using both PCR and qPCR across all the dilutions. This study has demonstrated the potential use of eDNA analysis for detection and quantification of s.s. mosquito larvae in aquatic habitats. The stochasticity observed in eDNA detection suggest that this technique is best for monitoring aquatic habitats with many larvae at low densities.

摘要

杀虫剂抗性的不断增强以及疟疾媒介叮咬和栖息行为的变化,威胁着经杀虫剂处理蚊帐和室内滞留喷洒的效果。幼虫源管理(LSM)是一种很有前景的方法,无论蚊子成虫的行为如何,都可以针对它们。然而,由于蚊子繁殖栖息地的变异性,使用传统监测方法监测蚊子的未成熟阶段是LSM面临的一项重大挑战。我们评估了环境DNA(eDNA)分析技术在监测实验性水生生境中广义幼虫方面的应用。从不同体积的水、幼虫数量和占据时间中同时采集并提取eDNA。使用PCR检测幼虫的存在,并使用TaqMan分析法定量1L生境样本中的eDNA浓度。测试了两种分析方法的检测限,并将幼虫密度与eDNA阳性相关联。在50mL生境中,74%的重复样本PCR呈阳性,从单个幼虫(0.02只幼虫/mL)获得信号至少需要6小时。所有使用1L水的12个重复样本均为阳性,其PCR条带比50mL中相同幼虫密度的重复样本在24小时时更强。在两种分析方法中,幼虫密度与eDNA检测之间均存在相关性: ,r = 0.503,p = 0.047; ,r = 0.558,p = 0.025。在所有稀释度下,使用PCR和qPCR检测eDNA的速率都存在随机性。本研究证明了eDNA分析在检测和定量水生生境中按蚊幼虫方面的潜在用途。在eDNA检测中观察到的随机性表明,该技术最适合监测低密度下有许多幼虫的水生生境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ed1/5981191/e3f8143f8136/wellcomeopenres-3-15439-g0000.jpg

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