The hidden world within plants: metatranscriptomics unveils the complexity of wood microbiomes

Author:

Nerva Luca12ORCID,Garcia Jadran F3,Favaretto Francesco14,Giudice Gaetano15,Moffa Loredana16,Sandrini Marco16,Cantu Dario3ORCID,Zanzotto Alessandro1,Gardiman Massimo1,Velasco Riccardo1,Gambino Giorgio2,Chitarra Walter12ORCID

Affiliation:

1. Council for Agricultural Research and Economics – Research Centre for Viticulture and Enology, Via XXVIII Aprile 26, 31015 Conegliano (TV), Italy

2. Institute for Sustainable Plant Protection, CNR, Strada delle Cacce 73, 10135 Torino, Italy

3. Department of Viticulture and Enology, University of California, Davis, One Shields Ave, Davis, CA 95618, USA

4. University of Padova, Department of Agronomy, Animals, Food, Natural Resources and Environment (DAFNAE), Viale dell’Università 16, 35020 Legnaro (PD), Italy

5. University of Milano, Department of Agricultural and Environmental Sciences - Production, Landscape, Agroenergy (DiSAA), Via Celoria 2, 20133, Milano, Italy

6. University of Udine, Department of Agricultural, Food, Environmental and Animal Sciences, Via delle Scienze 206, 33100 Udine, Italy

Abstract

Abstract The importance of plants as complex entities influenced by genomes of the associated microorganisms is now seen as a new source of variability for a more sustainable agriculture, also in the light of ongoing climate change. For this reason, we investigated through metatranscriptomics whether the taxa profile and behaviour of microbial communities associated with the wood of 20-year-old grapevine plants are influenced by the health status of the host. We report for the first time a metatranscriptome from a complex tissue in a real environment, highlighting that this approach is able to define the microbial community better than referenced transcriptomic approaches. In parallel, the use of total RNA enabled the identification of bacterial taxa in healthy samples that, once isolated from the original wood tissue, displayed potential biocontrol activities against a wood-degrading fungal taxon. Furthermore, we revealed an unprecedented high number of new viral entities (~120 new viral species among 180 identified) associated with a single and limited environment and with potential impact on the whole holobiont. Taken together, our results suggest a complex multitrophic interaction in which the viral community also plays a crucial role in raising new ecological questions for the exploitation of microbial-assisted sustainable agriculture.

Funder

Italian Ministry for Agriculture and Forestry

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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