Phenolic profile changes of grapevine leaves infected with Erysiphe necator

Author:

Hernández María del Mar12ORCID,Castillo Río Carolina1,Blanco González Sara I2,Menéndez Cristina M1

Affiliation:

1. Instituto de Ciencias de la Vid y el Vino (UR‐ICVV‐GR) Logroño Spain

2. Departamento de Agricultura y Alimentación La Rioja University Logroño Spain

Abstract

AbstractBACKGROUNDPowdery mildew in grapevine is caused by Erysiphe necator and its control requires many chemical treatments. Numerous efforts are being made to improve disease management to achieve crop sustainability goals. The exogenous induction of plant immune responses is one of the most encouraging strategies currently being developed. The objective of this research was to analyse differences in phenolic compound concentrations in E. necator‐infected leaves of two varieties of Vitis vinifera, Tempranillo and Tempranillo Blanco, using ultra performance liquid chromatography coupled with mass spectrometry. To understand the susceptibility of the varieties, in vitro assays using whole leaves were done.RESULTSDifferences in susceptibility between varieties were found in the early stage of the disease. In both varieties, total phenolic compounds were higher in infected leaves; however, hydroxycinnamic acid, anthocyanins and stilbenes were higher only in Tempranillo. Twenty‐six compounds showed differential responses to the fungal disease in Tempranillo, but only two in Tempranillo Blanco: syringa resinol, which was not detected in diseased leaves; and gallocatechin, which increased at 5 days post inoculation. In Tempranillo, four anthocyanidins, six hydroxycinnamic acids, mainly feruloyl derivates, and epigallocatechin gallate were higher in infected leaves at the beginning of the infection, whereas (−)‐epicatechin and protocatechuic hexoside contents were lower.CONCLUSIONDisease‐induced changes in phenolic compound biosynthesis were found. The increase in anthocyanidin content and flavan‐3‐ol galloylation could have a role in delaying E. necator growth in Tempranillo. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Publisher

Wiley

Subject

Insect Science,Agronomy and Crop Science,General Medicine

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