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Metagenomic Studies of Viruses in Weeds and Wild Plants: A Powerful Approach to Characterise Variable Virus Communities

期刊

VIRUSES-BASEL
卷 13, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/v13101939

关键词

HTS; viromes; weeds; wild plants; plant virus

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资金

  1. National Science Centre, Poland [2017/25/B/NZ9/01715]

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High throughput sequencing has revolutionized virus detection and discovery, showcasing the ubiquity of virus infection and the large number of novel viruses yet to be discovered. While most studies focus on economically important crops, only a few have looked at weeds and wild plants, which are crucial in understanding disease dynamics and virus reservoirs. Despite the limited number of studies on weeds and wild plants, they have already uncovered many novel viruses, revealed unexpected virus distributions, and demonstrated the potential of metagenomics as an approach.
High throughput sequencing (HTS) has revolutionised virus detection and discovery, allowing for the untargeted characterisation of whole viromes. Viral metagenomics studies have demonstrated the ubiquity of virus infection - often in the absence of disease symptoms - and tend to discover many novel viruses, highlighting the small fraction of virus biodiversity described to date. The majority of the studies using high-throughput sequencing to characterise plant viromes have focused on economically important crops, and only a small number of studies have considered weeds and wild plants. Characterising the viromes of wild plants is highly relevant, as these plants can affect disease dynamics in crops, often by acting as viral reservoirs. Moreover, the viruses in unmanaged systems may also have important effects on wild plant populations and communities. Here, we review metagenomic studies on weeds and wild plants to show the benefits and limitations of this approach and identify knowledge gaps. We consider key genomics developments that are likely to benefit the field in the near future. Although only a small number of HTS studies have been performed on weeds and wild plants, these studies have already discovered many novel viruses, demonstrated unexpected trends in virus distributions, and highlighted the potential of metagenomics as an approach.

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