Needle in a Haystack: A Droplet Digital Polymerase Chain Reaction Assay to Detect Rare Helminth Parasites Infecting Natural Host Populations.

IF 5.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chloe A Fouilloux, Eric Neeno-Eckwall, Ipsita Srinivas, Jonathan S Compton, Josh Sampson, Jesse Weber, Cole Wolf, Amanda Hund, John Berini, Heather Alexander, Emma Choi, Daniel I Bolnick, Jessica L Hite
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引用次数: 0

Abstract

Helminths infect humans, livestock, and wildlife, yet remain understudied despite their significant impact on public health and agriculture. Because many of the most prevalent helminth-borne diseases are zoonotic, understanding helminth transmission among wildlife could improve predictions and management of infection risks across species. A key challenge to understanding helminth transmission dynamics in wildlife is accurately and quantitatively tracking parasite load across hosts and environments. Traditional methods, such as visual parasite identification from environmental samples or infected hosts, are time-consuming, while standard molecular techniques (e.g., PCR and qPCR) often lack the sensitivity to reliably detect lower parasite burdens. These limitations can underestimate the prevalence and severity of infection, hindering efforts to manage infectious diseases. Here, we developed a multiplexed droplet digital PCR (ddPCR) assay to quantify helminth loads in aquatic habitats using 18S rRNA target genes. Using Schistocephalus solidus and their copepod hosts as a case study, we demonstrate ddPCR's sensitivity and precision. The assay is highly reproducible, reliably detecting target genes at concentrations as low as 1 pg of DNA in lab standards and field samples (multi-species and eDNA). Thus, we provide a toolkit for quantifying parasite load in intermediate hosts and monitoring infection dynamics across spatio-temporal scales in multiple helminth systems of concern for public health, agriculture, and conservation biology.

大海捞针:用液滴数字聚合酶链反应检测感染自然宿主种群的罕见寄生虫。
蠕虫感染人类、牲畜和野生动物,尽管它们对公共卫生和农业产生重大影响,但对它们的研究仍然不足。由于许多最普遍的蠕虫传播疾病是人畜共患的,因此了解蠕虫在野生动物中的传播可以改善对跨物种感染风险的预测和管理。了解野生动物中寄生虫传播动力学的一个关键挑战是准确和定量地跟踪宿主和环境中的寄生虫负荷。传统的方法,例如从环境样本或受感染宿主中进行寄生虫视觉鉴定,是耗时的,而标准的分子技术(例如,PCR和qPCR)往往缺乏可靠地检测较低寄生虫负荷的灵敏度。这些限制可能低估了感染的流行程度和严重程度,阻碍了管理传染病的努力。在这里,我们开发了一种多重液滴数字PCR (ddPCR)方法,利用18S rRNA靶基因来定量水生栖息地的蠕虫负荷。以固头血吸虫及其桡足类宿主为研究对象,验证了ddPCR的敏感性和精确性。该方法重复性高,在实验室标准和现场样品(多物种和eDNA)的DNA浓度低至1 pg时,可可靠地检测目标基因。因此,我们提供了一个工具包,用于量化中间宿主的寄生虫负荷,并在公共卫生,农业和保护生物学关注的多个寄生虫系统中监测跨时空尺度的感染动态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Ecology Resources
Molecular Ecology Resources 生物-进化生物学
CiteScore
15.60
自引率
5.20%
发文量
170
审稿时长
3 months
期刊介绍: Molecular Ecology Resources promotes the creation of comprehensive resources for the scientific community, encompassing computer programs, statistical and molecular advancements, and a diverse array of molecular tools. Serving as a conduit for disseminating these resources, the journal targets a broad audience of researchers in the fields of evolution, ecology, and conservation. Articles in Molecular Ecology Resources are crafted to support investigations tackling significant questions within these disciplines. In addition to original resource articles, Molecular Ecology Resources features Reviews, Opinions, and Comments relevant to the field. The journal also periodically releases Special Issues focusing on resource development within specific areas.
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