4.7 Article

Next-Generation Sequencing-Based Detection of Common Bean Viruses in Wild Plants from Tanzania and Their Mechanical Transmission to Common Bean Plants

期刊

PLANT DISEASE
卷 105, 期 9, 页码 2541-2550

出版社

AMER PHYTOPATHOLOGICAL SOC
DOI: 10.1094/PDIS-07-20-1420-RE

关键词

NGS; Phaseolus vulgaris; plant virus; wild plants

资金

  1. Bill and Melinda Gates Foundation
  2. Government of Tanzania [OPP1112522]
  3. Helsinki Institute of Life Science [797011042]
  4. Bill and Melinda Gates Foundation (NextGen Phytosanitation)
  5. Bill and Melinda Gates Foundation [OPP1112522] Funding Source: Bill and Melinda Gates Foundation

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The study revealed that more than 15 viruses pose a threat to common bean production in Tanzania, with wild plants potentially carrying viruses from 25 genera. The greatest virus diversity was found in the eastern and northern zones, while only a few viruses were detected in wild plants in the southern highlands zone.
Viral diseases are a major threat for common bean production. According to recent surveys, >15 different viruses belonging to 11 genera were shown to infect common bean (Phaseolus vulgaris L.) in Tanzania. Virus management requires an understanding of how viruses survive from one season to the next. During this study, we explored the possibility that alternative host plants have a central role in the survival of common bean viruses. We used next-generation sequencing (NGS) techniques to sequence virus-derived small interfering RNAs together with conventional reverse-transcription PCRs (RT-PCRs) to detect viruses in wild plants. Leaf samples for RNA extraction and NGS were collected from 1,430 wild plants around and within common bean fields in four agricultural zones in Tanzania. At least partial genome sequences of viruses potentially belonging to 25 genera were detected. The greatest virus diversity was detected in the eastern and northern zones, whereas wild plants in the Lake zone and especially in the southern highlands zone showed only a few viruses. The RT-PCR analysis of all collected plant samples confirmed the presence of yam bean mosaic virus and peanut mottle virus in wild legume plants. Of all viruses detected, only two viruses, cucumber mosaic virus and a novel bromovirus related to cowpea chlorotic mottle virus and brome mosaic virus, were mechanically transmitted from wild plants to common bean plants. The data generated during this study are crucial for the development of viral disease management strategies and predicting crop viral disease outbreaks in different agricultural regions in Tanzania and beyond.

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