Metagenomic analyses of plant virus sequences in sewage water for plant viruses monitoring.

IF 2.5 3区 农林科学 Q2 Agricultural and Biological Sciences Tropical Plant Pathology Pub Date : 2023-04-28 DOI:10.1007/s40858-023-00575-8
Macária Ferreira Duarte, Ikaro Alves de Andrade, João Marcos Fagundes Silva, Fernando Lucas de Melo, Ana Maria Machado, Alice Kazuko Inoue-Nagata, Tatsuya Nagata
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引用次数: 1

Abstract

Frequent monitoring of emerging viruses of agricultural crops is one of the most important missions for plant virologists. A fast and precise identification of potential harmful viruses may prevent the occurrence of serious epidemics. Nowadays, high-throughput sequencing (HTS) technologies became an accessible and powerful tool for this purpose. The major discussion of this strategy resides in the process of sample collection, which is usually laborious, costly and nonrepresentative. In this study, we assessed the use of sewage water samples for monitoring the widespread, numerous, and stable plant viruses using HTS analysis and RT-qPCR. Plant viruses belonged to 12 virus families were found, from which Virgaviridae, Solemoviridae, Tymoviridae, Alphaflexiviridae, Betaflexiviridae, Closteroviridae and Secoviridae were the most abundant ones with more than 20 species. Additionally, we detected one quarantine virus in Brazil and a new tobamovirus species. To assess the importance of the processed foods as virus release origins to sewage, we selected two viruses, the tobamovirus pepper mild mottle virus (PMMoV) and the carlavirus garlic common latent virus (GarCLV), to detect in processed food materials by RT-qPCR. PMMoV was detected in large amount in pepper-based processed foods and in sewage samples, while GarCLV was less frequent in dried and fresh garlic samples, and in the sewage samples. This suggested a high correlation of virus abundance in sewage and processed food sources. The potential use of sewage for a virus survey is discussed in this study.

Supplementary information: The online version contains supplementary material available at 10.1007/s40858-023-00575-8.

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污水中植物病毒序列的宏基因组分析用于植物病毒监测。
频繁监测农作物中新出现的病毒是植物病毒学家最重要的任务之一。快速准确地识别潜在的有害病毒可以防止严重流行病的发生。如今,高通量测序(HTS)技术已成为实现这一目的的一种可访问且强大的工具。对这一策略的主要讨论在于样本收集过程,这通常是费力、昂贵和不具代表性的。在这项研究中,我们使用HTS分析和RT-qPCR评估了污水样本用于监测广泛、大量和稳定的植物病毒的使用情况。植物病毒共分为12个病毒家族,其中以Virgovridae、Solemoviridae、Tymovirdae、Alpaflexividae、Betaflexiviidae、Closterovidae和Secondovidae病毒最多,有20多种。此外,我们在巴西发现了一种隔离病毒和一种新的烟草病毒。为了评估加工食品作为病毒向污水释放来源的重要性,我们选择了两种病毒,即烟草病毒-辣椒轻度斑点病毒(PMMoV)和卡氏病毒-大蒜常见潜伏病毒(GarCLV),通过RT-qPCR在加工食品中检测。PMMoV在辣椒加工食品和污水样本中大量检测到,而GarCLV在干大蒜和新鲜大蒜样本以及污水样本中不太常见。这表明污水和加工食品来源中的病毒丰度之间存在高度相关性。本研究讨论了污水在病毒调查中的潜在用途。补充信息:在线版本包含补充材料,可访问10.1007/s40858-023-00575-8。
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来源期刊
Tropical Plant Pathology
Tropical Plant Pathology PLANT SCIENCES-
CiteScore
4.50
自引率
4.00%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Tropical Plant Pathology is an international journal devoted to publishing a wide range of research on fundamental and applied aspects of plant diseases of concern to agricultural, forest and ornamental crops from tropical and subtropical environments.  Submissions must report original research that provides new insights into the etiology and epidemiology of plant disease as well as population biology of plant pathogens, host-pathogen interactions, physiological and molecular plant pathology, and strategies to promote crop protection. The journal considers for publication: original articles, short communications, reviews and letters to the editor. For more details please check the submission guidelines. Founded in 1976, the journal is the official publication of the Brazilian Phytopathology Society.
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