4.7 Article

Characterization of a new Bacillus velezensis as a powerful biocontrol agent against tomato gray mold

Journal

PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY
Volume 187, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.pestbp.2022.105199

Keywords

Bacillus velezensis; Botrytis cinerea; Bioagent; Bio-control mechanism; Antifungal substances

Funding

  1. Chongqing Science and Technology Commission, Chongqing, China [cstc2017shms-xdny80084, cstc2018jscx-mszdX0011]

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Biocontrol microorganisms are safe for the environment and pose no risks to humans and animals. This study identified a novel self-isolated biocontrol bacterium, Bacillus velezensis HY19, which showed multiple antagonistic effects against Botrytis cinerea and effectively reduced the incidence of tomato gray mold.
Biocontrol microbes are environment-friendly and safe for humans and animals. To seek biocontrol microbes effective in suppressing tomato gray mold is important for tomato production. Therefore, serial experiments were conducted to characterize the antagonism of Bacillus velezensis HY19, a novel self-isolated biocontrol bacterium, against Botrytis cinerea in vitro and the control on tomato gray mold in greenhouse. This bacterium produced extracellular phosphatase, protease, cellulose and siderophores, and considerably inhibited the growth of B. cinerea. A liquid chromatography-mass spectrometry (LC-MS) detected salicylic acid and numerous antifungal substances present in B. velezensis HY19 fermentation liquid (BVFL). When B. cinerea was grown on potato glucose agar, BVFL crude extract remarkably suppressed the fungal growth and reduced protein content and the activities of catalase (CAT), superoxide dismutase (SOD), and peroxidase (POD). Transcriptome studies showed that BVFL crude extract significantly induced different expression of numerous genes in B. cinerea, most of which were down-regulated. Theses differently expressed genes were involved in the biological process, cell compartment, molecular functions, and metabolisms of glycine, serine, threonine, and sulfur in pathogen hyphae. Thus, this biocontrol bacterium antagonized B. cinerea in multiple ways due to the production of numerous antifungal substances that acted on multiple targets in the cells. BVFL significantly increased antioxidant enzyme activities in tomato leaves and decreased the incidence of tomato gray mold, with the control efficacies of 73.12-76.51%. Taken together, B. velezensis HY19 showed a promising use potential as a powerful bioagent against tomato gray mold.

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