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通过生物工艺解决方案控制辣椒细菌性斑点病

Pepper Bacterial Spot Control by : Bioprocess Solution.

作者信息

Pajčin Ivana, Vlajkov Vanja, Frohme Marcus, Grebinyk Sergii, Grahovac Mila, Mojićević Marija, Grahovac Jovana

机构信息

Faculty of Technology, University of Novi Sad, Bulevar cara Lazara 1, 21000 Novi Sad, Serbia.

Technical University of Applied Sciences Wildau, Hochschulring 1, 15745 Wildau, Germany.

出版信息

Microorganisms. 2020 Sep 24;8(10):1463. doi: 10.3390/microorganisms8101463.

Abstract

Pepper bacterial spot is one of the most severe plant diseases in terms of infection persistence and economic losses when it comes to fresh pepper fruits used in nutrition and industrial processing. In this study, IP22 isolated from fresh cheese was used as a biocontrol agent of pepper bacterial spot, whose main causal agent is the cosmopolitan pathogen . After optimization of the cultivation medium composition aimed at maximizing of the antimicrobial activity against and validation of the optimized medium at the scale of a laboratory bioreactor, in planta tests were performed. The results have showed significant suppression of bacterial spot symptoms in pepper plants by the produced biocontrol agent, as well as reduction of disease spreading on the healthy (uninoculated) pepper leaves. Furthermore, HPLC-MS (high pressure liquid chromatography-mass spectrometry) analysis was employed to examine antimicrobial metabolites produced by IP22, where lipopeptides were found with similar / values compared to lipopeptides from fengycin and locillomycin families. The bioprocess solution developed at the laboratory scale investigated in this study represents a promising strategy for production of pepper bacterial spot biocontrol agent based on IP22, a food isolate with a great perspective for application in plant protection.

摘要

就营养和工业加工中使用的新鲜辣椒果实而言,辣椒细菌性斑点病是感染持续性和经济损失方面最严重的植物病害之一。在本研究中,从新鲜奶酪中分离出的IP22被用作辣椒细菌性斑点病的生物防治剂,该病的主要病原体是一种世界性病原菌。在优化旨在最大化对该病原菌抗菌活性的培养基组成并在实验室生物反应器规模上验证优化后的培养基后,进行了植物体内试验。结果表明,所产生的生物防治剂对辣椒植株上的细菌性斑点病症状有显著抑制作用,同时也减少了病害在健康(未接种)辣椒叶片上的传播。此外,采用高效液相色谱 - 质谱联用(HPLC - MS)分析来检测IP22产生的抗菌代谢产物,发现其脂肽与丰原素和洛西霉素家族的脂肽具有相似的/值。本研究中在实验室规模开发的生物工艺溶液代表了一种基于IP22生产辣椒细菌性斑点病生物防治剂的有前景的策略,IP22是一种食品分离物,在植物保护方面具有很大的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3193/7656301/3493d3e1468f/microorganisms-08-01463-g001.jpg

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