4.6 Article

Fast Electrochemical Measurement of Laccase Activity for Monitoring Grapes' Infection with Botrytis cinerea

期刊

PROCESSES
卷 10, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/pr10030575

关键词

Botrytis cinerea; laccase; ABTS; amperometry; grapes

资金

  1. Romanian Executive Agency for Higher Education, Research, Development and Innovation (UEFISCDI), ERANET-MANUNET-III-WINBIOTOOL-2 [151/9.03.2020, 150/9.03.2020, 152/9.03.2020]
  2. Romanian Academy [RO1567-IBB05/2021]
  3. Basque Government
  4. European Union through the European regional development fund 2014-2020 (FEDER) [ZL-2020/00532, ZL-2021/00340]
  5. Diputacion Foral de alava (ALAVA INNOVA program) [INNOEM-2020/00045]

向作者/读者索取更多资源

This study develops a fast method for measuring grape laccase activity using a combination of optical and electrochemical detection techniques. The method allows for quantitative detection of laccase activities in just 5 minutes, making it a valuable tool for monitoring Botrytis cinerea infection in grapes.
Grapes' infection with the fungi Botrytis cinerea is one of the major causes of economic loss in the winemaking sector worldwide. The laccase activity of grapes is considered an appropriate indicator of this type of fungal infection, and enzymatic activity higher than 3 U/mL indicates a high risk of irreversibly damaged grape must due to enzymatic browning. This work describes a fast test for the measurement of laccase activity based on a dual optical and electrochemical detection method. A paper sensor impregnated with the enzymatic substrate dye 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) provides a semi-quantitative optical measurement. While the paper sensor can be used independently, when combined with a screen-printed electrode and amperometry measurements, it enables the quantitative detection of laccase activities down to 0.4 U/mL in only 5 min. The method was applied for monitoring the artificial infection of white, rose, and red grapes with different strains of Botrytis cinerea. The results were confirmed by parallel analysis using the spectrophotometric method of laccase activity determination based on syringaldazine. The influence of the fungal strain and type of grape on laccase activity levels is reported. The demonstrated robustness, simplicity, and versatility of the developed method make it ideal for application on-site in the vineyard or at grape processing points.

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