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Pruning Wound Protection Products Induce Alterations in the Wood Mycobiome Profile of Grapevines.

Giovanni Del FrariMarie Rønne AggerbeckAlex GobbiChiara IngràLorenzo VolpiTeresa NascimentoAlessandra FerrandinoLars Hestbjerg HansenRicardo Manuel de Seixas Boavida Ferreira
Published in: Journal of fungi (Basel, Switzerland) (2023)
Fungal pathogens involved in grapevine trunk diseases (GTDs) may infect grapevines throughout their lifetime, from nursery to vineyard, via open wounds in stems, canes or roots. In vineyards, pruning wound protection products (PWPPs) offer the best means to reduce the chance of infection by GTD fungi. However, PWPPs may affect non-target microorganisms that comprise the natural endophytic mycobiome residing in treated canes, disrupting microbial homeostasis and indirectly influencing grapevine health. Using DNA metabarcoding, we characterized the endophytic mycobiome of one-year-old canes of cultivars Cabernet Sauvignon and Syrah in two vineyards in Portugal and Italy and assessed the impact of established and novel PWPPs on the fungal communities of treated canes. Our results reveal a large fungal diversity (176 taxa), and we report multiple genera never detected before in grapevine wood (e.g., Symmetrospora and Akenomyces ). We found differences in mycobiome beta diversity when comparing vineyards ( p = 0.01) but not cultivars ( p > 0.05). When examining PWPP-treated canes, we detected cultivar- and vineyard-dependent alterations in both alpha and beta diversity. In addition, numerous fungal taxa were over- or under-represented when compared to control canes. Among them, Epicoccum sp., a beneficial genus with biological control potential, was negatively affected by selected PWPPs. This study demonstrates that PWPPs induce alterations in the fungal communities of grapevines, requiring an urgent evaluation of their direct and indirect effects on plants health with consideration of factors such as climatic conditions and yearly variations, in order to better advise viticulturists and policy makers.
Keyphrases
  • cell wall
  • public health
  • healthcare
  • mental health
  • human health
  • microbial community
  • risk assessment
  • genome wide
  • newly diagnosed
  • wound healing
  • gene expression
  • nucleic acid
  • surgical site infection