Evaluating treatments for the protection of grapevine pruning wounds from natural infection by trunk disease fungi

Author:

Leal C.,Bujanda R.,López-Manzanares B.,Ojeda S.,Berbegal M.,Villa-Llop A.,Santesteban L. G.,Palacios J.,Gramaje D.

Abstract

AbstractInfection of grapevines by fungal pathogens causing grapevine trunk diseases (GTDs) primarily arises from annual pruning wounds made during the dormant season. While various studies have showcased the efficacy of products in shielding pruning wounds against GTDs infections, most of these investigations hinge on artificial pathogen inoculations, which may not faithfully mirror real field conditions. This study aimed to evaluate and compare the efficacy of various liquid formulation fungicides (pyraclostrobin + boscalid) and paste treatments, as well as biological control agents (BCA:Trichoderma atrovirideSC1,T. atrovirideI-1237, andT. asperellumICC012 +T. gamsiiICC080), for their potential to prevent natural infection of grapevine pruning wounds by trunk disease fungi in two field trials located in Samaniego (Northern Spain) and Madiran (Southern France) over three growing seasons. Wound treatments were applied immediately after pruning in February. One year after pruning, canes were harvested from vines and brought to the laboratory for assessment ofTrichodermaspp. and fungal trunk pathogens. More than 1,200 fungal isolates associated with five GTDs (esca, Botryophaeria, Diaporthe and Eutypa diebacks, and Cytospora canker) were collected from the two vineyards each growing season. Our findings reveal that none of the products under investigation exhibited complete effectiveness against all the GTDs. The efficacy of these products was particularly influenced by the specific year of study. A notable exception was observed with the biocontrol agentT. atrovirideI-1237, which consistently demonstrated effectiveness against Botryosphaeria dieback infections throughout each year of the study, irrespective of the location. The remaining products exhibited efficacy in specific years or locations against particular diseases, with the physical barrier (paste) showing the least overall effectiveness. The recovery rates ofTrichodermaspp. in treated plants were highly variable, ranging from 17% to 100%, with both strains ofT. atrovirideyielding the highest isolation rates. This study underscores the importance of customizing treatments for specific diseases, taking into account the influence of environmental factors for BCA applications.

Publisher

Cold Spring Harbor Laboratory

Reference81 articles.

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