Plant Health and Sound Vibration: Analyzing Implications of the Microbiome in Grape Wine Leaves.

Vitis vinifera grapevine microbiota phyllosphere resilience synthetic sound vibration terroir

Journal

Pathogens (Basel, Switzerland)
ISSN: 2076-0817
Titre abrégé: Pathogens
Pays: Switzerland
ID NLM: 101596317

Informations de publication

Date de publication:
12 Jan 2021
Historique:
received: 08 10 2020
revised: 24 12 2020
accepted: 08 01 2021
entrez: 15 1 2021
pubmed: 16 1 2021
medline: 16 1 2021
Statut: epublish

Résumé

Understanding the plant microbiome is a key for plant health and controlling pathogens. Recent studies have shown that plants are responsive towards natural and synthetic sound vibration (SV) by perception and signal transduction, which resulted in resistance towards plant pathogens. However, whether or not native plant microbiomes respond to SV and the underlying mechanism thereof remains unknown. Within the present study we compared grapevine-associated microbiota that was perpetually exposed to classical music with a non-exposed control group from the same vineyard in Stellenbosch, South Africa. By analyzing the 16S rRNA gene and ITS fragment amplicon libraries we found differences between the core microbiome of SV-exposed leaves and the control group. For several of these different genera, e.g.,

Identifiants

pubmed: 33445765
pii: pathogens10010063
doi: 10.3390/pathogens10010063
pmc: PMC7828301
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Servicestelle für Mobilitätsprogramme des österreichischen Bundesministeriums für Bildung, Wissenschaft und Forschung, KulturKontakt Austria
ID : ZA 01/2019

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Auteurs

Birgit Wassermann (B)

Institute of Environmental Biotechnology, Graz University of Technology, Petersgasse 12, 8010 Graz, Austria.

Lise Korsten (L)

Department of Plant and Soil Sciences, University of Pretoria, Pretoria 0002, South Africa.

Gabriele Berg (G)

Institute of Environmental Biotechnology, Graz University of Technology, Petersgasse 12, 8010 Graz, Austria.

Classifications MeSH