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形态鉴定在控制疟疾方案中对非洲按蚊(双翅目:蚊科)的重要性。

The importance of morphological identification of African anopheline mosquitoes (Diptera: Culicidae) for malaria control programmes.

机构信息

Wits Research Institute for Malaria, MRC Collaborating Centre for Multidisciplinary Research on Malaria, School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

Centre for Emerging Zoonotic and Parasitic Diseases, National Institute for Communicable Diseases, Johannesburg, South Africa.

出版信息

Malar J. 2018 Jan 22;17(1):43. doi: 10.1186/s12936-018-2189-5.

Abstract

BACKGROUND

The correct identification of disease vectors is the first step towards implementing an effective control programme. Traditionally, for malaria control, this was based on the morphological differences observed in the adults and larvae between different mosquito species. However, the discovery of species complexes meant that genetic tools were needed to separate the sibling species and today there are standard molecular techniques that are used to identify the two major malaria vector groups of mosquitoes. On the assumption that species-diagnostic DNA polymerase chain reaction (PCR) assays are highly species-specific, experiments were conducted to investigate what would happen if non-vector species were randomly included in the molecular assays.

METHODS

Morphological keys for the Afrotropical Anophelinae were used to provide the a priori identifications. All mosquito specimens were then subjected to the standard PCR assays for members of the Anopheles gambiae complex and Anopheles funestus group.

RESULTS

One hundred and fifty mosquitoes belonging to 11 morphological species were processed. Three species (Anopheles pretoriensis, Anopheles rufipes and Anopheles rhodesiensis) amplified members of the An. funestus group and four species (An. pretoriensis, An. rufipes, Anopheles listeri and Anopheles squamosus) amplified members of the An. gambiae complex.

CONCLUSIONS

Morphological identification of mosquitoes prior to PCR assays not only saves time and money in the laboratory, but also ensures that data received by malaria vector control programmes are useful for targeting the major vectors.

摘要

背景

正确识别病媒是实施有效控制计划的第一步。传统上,为了控制疟疾,这是基于不同蚊种成虫和幼虫之间观察到的形态差异。然而,物种复合体的发现意味着需要遗传工具来分离同属近缘种,而今天有标准的分子技术用于识别两种主要的疟疾媒介蚊子群。假设物种诊断性聚合酶链反应(PCR)检测具有高度的物种特异性,因此进行了实验来研究如果将非媒介物种随机纳入分子检测会发生什么情况。

方法

使用非洲按蚊的形态学关键特征来提供先验鉴定。然后,所有蚊子标本都接受了针对冈比亚按蚊复合体和致倦库蚊组的标准 PCR 检测。

结果

处理了 150 只属于 11 个形态种的蚊子。有 3 种(嗜人按蚊、斑须按蚊和罗德西亚按蚊)扩增了致倦库蚊组的成员,有 4 种(嗜人按蚊、斑须按蚊、淡色库蚊和鳞斑按蚊)扩增了冈比亚按蚊复合体的成员。

结论

在进行 PCR 检测之前对蚊子进行形态学鉴定,不仅可以节省实验室的时间和金钱,还可以确保疟疾媒介控制计划收到的数据对针对主要媒介有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecea/5778787/77d4bbeabc02/12936_2018_2189_Fig1_HTML.jpg

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