Inferring transmission fitness advantage of SARS-CoV-2 variants of concern from wastewater samples using digital PCR, Switzerland, December 2020 through March 2021.

IF 1.2 4区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY Bragantia Pub Date : 2022-03-01 DOI:10.2807/1560-7917.ES.2022.27.10.2100806
Lea Caduff, David Dreifuss, Tobias Schindler, Alexander J Devaux, Pravin Ganesanandamoorthy, Anina Kull, Elyse Stachler, Xavier Fernandez-Cassi, Niko Beerenwinkel, Tamar Kohn, Christoph Ort, Timothy R Julian
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Abstract

BackgroundThroughout the COVID-19 pandemic, SARS-CoV-2 genetic variants of concern (VOCs) have repeatedly and independently arisen. VOCs are characterised by increased transmissibility, increased virulence or reduced neutralisation by antibodies obtained from prior infection or vaccination. Tracking the introduction and transmission of VOCs relies on sequencing, typically whole genome sequencing of clinical samples. Wastewater surveillance is increasingly used to track the introduction and spread of SARS-CoV-2 variants through sequencing approaches.AimHere, we adapt and apply a rapid, high-throughput method for detection and quantification of the relative frequency of two deletions characteristic of the Alpha, Beta, and Gamma VOCs in wastewater.MethodsWe developed drop-off RT-dPCR assays and an associated statistical approach implemented in the R package WWdPCR to analyse temporal dynamics of SARS-CoV-2 signature mutations (spike Δ69-70 and ORF1a Δ3675-3677) in wastewater and quantify transmission fitness advantage of the Alpha VOC.ResultsBased on analysis of Zurich wastewater samples, the estimated transmission fitness advantage of SARS-CoV-2 Alpha based on the spike Δ69-70 was 0.34 (95% confidence interval (CI): 0.30-0.39) and based on ORF1a Δ3675-3677 was 0.53 (95% CI: 0.49-0.57), aligning with the transmission fitness advantage of Alpha estimated by clinical sample sequencing in the surrounding canton of 0.49 (95% CI: 0.38-0.61).ConclusionDigital PCR assays targeting signature mutations in wastewater offer near real-time monitoring of SARS-CoV-2 VOCs and potentially earlier detection and inference on transmission fitness advantage than clinical sequencing.

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2020 年 12 月至 2021 年 3 月,瑞士,利用数字 PCR 技术从废水样本中推断 SARS-CoV-2 变异体的传播优势。
背景在 COVID-19 大流行期间,SARS-CoV-2 基因变异体(VOCs)多次独立出现。VOCs 的特点是传播性增强、毒力增强或被先前感染或接种疫苗后获得的抗体中和的能力降低。跟踪 VOC 的引入和传播依赖于测序,通常是对临床样本进行全基因组测序。在此,我们调整并应用了一种快速、高通量的方法来检测和量化废水中具有 Alpha、Beta 和 Gamma VOCs 特征的两种缺失的相对频率。方法我们开发了落射 RT-dPCR 检测方法,并在 R 软件包 WWdPCR 中实施了相关的统计方法,以分析废水中 SARS-CoV-2 标志性突变(spike Δ69-70 和 ORF1a Δ3675-3677)的时间动态,并量化 Alpha VOC 的传播适应优势。结果根据对苏黎世废水样本的分析,基于尖峰 Δ69-70 的 SARS-CoV-2 Alpha 的估计传播适存优势为 0.34(95% 置信区间 (CI):0.30-0.39),基于 ORF1a Δ3675-3677 的估计传播适存优势为 0.53(95% CI:0.49-0.57)。结论针对废水中特征性突变的数字 PCR 检测可对 SARS-CoV-2 VOC 进行近乎实时的监测,并有可能比临床测序更早地发现和推断传播优势。
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来源期刊
Bragantia
Bragantia AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
2.40
自引率
8.30%
发文量
33
审稿时长
4 weeks
期刊介绍: Bragantia é uma revista de ciências agronômicas editada pelo Instituto Agronômico da Agência Paulista de Tecnologia dos Agronegócios, da Secretaria de Agricultura e Abastecimento do Estado de São Paulo, com o objetivo de publicar trabalhos científicos originais que contribuam para o desenvolvimento das ciências agronômicas. A revista é publicada desde 1941, tornando-se semestral em 1984, quadrimestral em 2001 e trimestral em 2005. É filiada à Associação Brasileira de Editores Científicos (ABEC).
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