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Forero-Junco, L. M.

Publications and source records attributed to Forero-Junco, L. M..

2 recordsLinked to original sources

Activity and diversity of prophages harbored by wheat phyllosphere bacteria

1.The plant microbiome harbors an enormous diversity of fungi, bacteria, and viruses, but little is known on the diversity and function of prophages harbored within plant-associated bacteria. Using "VIP-Seq", a novel method based on supernatant sequencing, we identified and quantified the activity of 120 spontaneously induced prophages in a collection of 63 Erwinia and Pseudomonas strains isolated from wheat flag leaves collected from the same field. These bacterial strains exhibited high levels of spontaneous prophage induction, with some producing > 108 virions/mL in overnight culture. Significant induction in planta also occurred from a lysogenic Erwinia strain inoculated on wheat seedlings. The potential of these active prophages in bacterial warfare was exhibited by their widespread killing of rival bacterial strains. Evidence of transduction was observed, and the prophages were shown to contribute a majority of the non-core genome of E. aphidicola isolates. Many additional prophages were predicted by bioinformatic tools, and we found that the predicted prophages that were not spontaneously induced had a significantly higher number of IS elements. Our results suggest that spontaneous induction of prophages may represent an unknown but wide-spread competition mechanism involved in phyllosphere microbiome assembly and function. This may also have implications for the design and resilience of synthetic bacterial communities used as biocontrol for certain plant diseases.

microbiology↗

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↗