An Effect and Less Spraying Control Method Successfully Controls Botrytis cinerea on Grapes in China

Author:

Wang Hui1,Liu Mei1,Zhang Wei1,Yan Jiye1,Tang Xingmin2,Sanchez-Molina Jorge Antonio3ORCID,Li Xinghong1

Affiliation:

1. Beijing Municipal Key Laboratory for Environmentally Friendly Management on Pests of North China Fruits, Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China

2. Hebei Veyong Bio-Chemical Co., Ltd., Shijiazhuang 050000, China

3. Department of Informatics, University of Almería, CeiA3, CIESOL, 04120 Almería, Spain

Abstract

Gray mold caused by Botrytis cinerea is a destructive disease in grapes. Although the preharvest use of pesticides can control it, fungicide resistance in B. cinerea is now common. We used an Effect and Less Spraying Control (ELSC) method for applying fungicides effective against B. cinerea on grapes. The spraying schedule was determined by exploring the key stages of B. cinerea invasion using field and in vitro inoculation tests. The results indicated that the stage most vulnerable to pathogen invasion is the full-bloom stage. The disease incidence/severity in this stage is highest compared with the pre-bloom, 10-days-after-full-bloom, bunch-closure and veraison stages. Given the inoculation results and the threat of residual infected petals, the ELSC method established an optimum spray schedule at full bloom and 10 days after full bloom. To evaluate the ELSC method, four kinds of fungicides were used in an experimental trial in Beijing in 2015 and 2017; Shanghai in 2016; and Hebei in 2019 and 2021. Fludioxonil was the most effective fungicide, followed by Pythium oligandrum (bio-fungicide), difenoconazole + azoxystrobin and pyraclostrobin. ELSC was more effective against B. cinerea than the traditional control schedule, when comparing the disease severity (i.e., 0.07 ± 0.10% in ELSC and 0.49 ± 0.014% in the traditional practice when using fludioxonil). The average yield per hectare in ELSC confirmed that spraying during flowering does not have a deleterious effect on grape yield. It produced a 1224.37 00 kg/ha greater yield than the control group when fludioxonil was applied.

Funder

China Agriculture Research System of MOF and MARA

Young Talent Support Project of Beijing Association for Science and Technology

Beijing Innovation Consortium of Agriculture Research System

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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