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Alanin, K. W. S.

Publications and source records attributed to Alanin, K. W. S..

2 recordsLinked to original sources

Viruses roam the wheat phyllosphere

The phyllosphere comprises all the above-ground sections of plants. This niche is colonised by complex microbial communities, including algae, fungi, archaea, and bacteria1-3. They are known to induce plant growth and promote health4,5 or act as causative agents of plant diseases6-8. It is thought that the most abundant organisms are phyllobacteria2, with an estimate between 106 to 107 cells per cm2. Viruses are highly abundant across many environments, often outnumbering bacteria 10 to 19. However, not much is known about their abundance and composition in the phyllosphere, a harsh environment for viruses due to environmental variability and high UV exposure. To investigate this niche in detail, we extracted, sequenced and analysed phyllosphere virome. Using leaf samples from winter wheat (Triticum aestivum), we identified a total of 876 viral populations (vOTUs), mostly belonging to the Caudovirales order. Most of these were predicted to be lytic. Remarkably, 810 of these viral populations correspond to new viral species with no matches to known sequences. We estimate a minimum of 2.0 x106 viral particles per leaf. Overall, these findings suggest that the phyllosphere ecosystem harbours an abundant and active community of novel viruses that play essential roles in shaping this habitat.

microbiology↗

Metaviromes reveal the dynamics of Pseudomonas host-specific phages cultured and uncultured by plaque assay

Isolating single phages using plaque assays is a laborious and time-consuming process. Whether single isolated phages are the most lyse-effective, the most abundant in viromes, or the ones with highest ability to plaque on solid media is not well known. With the increasing accessibility of high-throughput sequencing, metaviromics is often used to describe viruses in envi-ronmental samples. By extracting and sequencing metaviromes from organic waste with and without exposure to a host-of-interest, we show a host-related phage communitys shift, as well as identify the most enriched phages. Moreover, we isolated plaque-forming single phages using the same virome-host matrix to observe how enrichments in liquid media corresponds to the metaviromic data. In this study, we observed a significant shift (p = 0.015) of the 47 identified putative Pseudomonas phages with a minimum 2-fold change above 0 in read abundance when adding a Pseudomonas syringae DC3000 host. Surprisingly, it appears that only two out of five plaque-forming phages from the same organic waste sample, targeting the Pseudomonas strain, was highly abundant in the metavirome, while the other three were almost absent despite host exposure. Lastly, our sequencing results highlights how long reads from Oxford Nanopore elevates the assembly quality of metaviromes, compared to short reads alone.

microbiology↗