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利用核糖体DNA内转录间隔区2对库蚊属(双翅目:蚊科)进行分子鉴定

Molecular identification of (Diptera: Culicidae) using internal transcribed spacer 2.

作者信息

Nguyen Valerie T, Ali Renee L M N, Burini Bianca C, Dryden Dalia S, Riddin Megan A, Saili Kochelani, Simulundu Edgar, Reeves Lawrence E, Norris Douglas E, Lee Yoosook

机构信息

University of Florida.

The Johns Hopkins Malaria Research Institute, Johns Hopkins Bloomberg School of Public Health, Johns Hopkins University.

出版信息

Res Sq. 2025 Aug 19:rs.3.rs-7278578. doi: 10.21203/rs.3.rs-7278578/v1.

Abstract

BACKGROUND

is a widespread mosquito species in sub-Saharan Africa. It is a potential vector for human malaria parasites and has been found naturally infected with and . Morphological identification is challenging even with pristine specimens and current molecular methods such as the use of the internal transcribed spacer 2 (ITS2) polymerase chain reaction (PCR) cannot distinguish from morphologically similar .

METHODS

Multiple alignments of previously published ITS2 contig sequences in NCBI from and . species 11 and 15, were used to identify candidate ITS2 regions for primer design. We evaluated six sets of primers overall for specificity of species identification. The one set with species-specific amplification was tested using 78 specimens from Zambia and South Africa.

RESULTS

A new assay consisting of a forward (ITS2-ASQ-R10, 5'-CCC TCG AAG GGT GCT GTG-3') and reverse (ITS2-ASQ-R10 5'-AAT CCA CGG TGT GAT GGC-3') primer reliably (> 94.8%) amplified an ITS2 fragment of 301bp length for . The -specific primer set can be multiplexed with existing ITS2 assays frequently used for anopheline species identification.

CONCLUSIONS

The development of this robust PCR assay for is vital to accurate identification of this species in malaria vector surveillance efforts. Improved understanding of the anopheline community composition will lead to better targeted methods of vector eradication and malaria prevention. In addition, investigating host association and malaria transmission can be facilitated with this assay by correctly identifying . Applying genomic tools to correctly identified anopheline species may lead to the discovery of genetic factors that influence its behavior and new innovations in malaria elimination.

摘要

背景

是撒哈拉以南非洲广泛分布的蚊种。它是人类疟原虫的潜在传播媒介,已被发现自然感染了[具体寄生虫名称1]和[具体寄生虫名称2]。即使是对于完好无损的标本,形态学鉴定也具有挑战性,而当前的分子方法,如使用内部转录间隔区2(ITS2)聚合酶链反应(PCR),无法将[蚊种名称1]与形态相似的[蚊种名称2]区分开来。

方法

利用美国国立生物技术信息中心(NCBI)先前公布的[蚊种名称1]和[蚊种名称2]、物种11和15的ITS2重叠群序列进行多重比对,以鉴定用于引物设计的候选ITS2区域。我们总共评估了六组引物用于物种鉴定的特异性。使用来自赞比亚和南非的78个标本对一组具有[蚊种名称1]特异性扩增的引物进行了测试。

结果

一种新的检测方法,由正向引物(ITS2 - ASQ - R10,5'-CCC TCG AAG GGT GCT GTG-3')和反向引物(ITS2 - ASQ - R10 5'-AAT CCA CGG TGT GAT GGC-3')组成,能可靠地(>94.8%)扩增出长度为301bp的[蚊种名称1]的ITS2片段。该[蚊种名称1]特异性引物组可与常用于按蚊物种鉴定的现有ITS2检测方法进行多重检测。

结论

这种针对[蚊种名称1]的强大PCR检测方法的开发对于疟疾媒介监测工作中该物种的准确鉴定至关重要。更好地了解按蚊群落组成将有助于采用更有针对性的媒介根除和疟疾预防方法。此外,通过正确鉴定[蚊种名称1],该检测方法有助于调查宿主关联和疟疾传播。将基因组工具应用于正确鉴定的按蚊物种可能会发现影响其行为的遗传因素,并为疟疾消除带来新的创新。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4526/12393599/ae0c5cd75ac5/nihpp-rs7278578v1-f0001.jpg

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