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体外评估五种抗菌肽对植物病原菌的作用

In Vitro Evaluation of Five Antimicrobial Peptides against the Plant Pathogen .

机构信息

Faculty of Sciences, University of Porto, 4169-007 Porto, Portugal.

LAQV-REQUIMTE, Biology Department, Faculty of Sciences, University of Porto, 4169-007 Porto, Portugal.

出版信息

Biomolecules. 2021 Apr 9;11(4):554. doi: 10.3390/biom11040554.

Abstract

Fire blight is a major pome fruit trees disease that is caused by the quarantine phytopathogenic , leading to major losses, namely, in pear and apple productions. Nevertheless, no effective sustainable control treatments and measures have yet been disclosed. In that regard, antimicrobial peptides (AMPs) have been proposed as an alternative biomolecule against pathogens but some of those AMPs have yet to be tested against . In this study, the potential of five AMPs (RW-BP100, CA-M, 3.1, D4E1, and Dhvar-5) together with BP100, were assessed to control . Antibiograms, minimal inhibitory, and bactericidal concentrations (minimal inhibitory concentration (MIC) and minimal bactericidal concentration (MBC), growth and IC were determined and membrane permeabilization capacity was evaluated by flow cytometry analysis and colony-forming units (CFUs) plate counting. For the tested AMPs, the higher inhibitory and bactericidal capacity was observed for RW-BP100 and CA-M (5 and 5-8 µM, respectively for both MIC and MBC), whilst for IC RW-BP100 presented higher efficiency (2.8 to 3.5 µM). Growth curves for the first concentrations bellow MIC showed that these AMPs delayed growth. Flow cytometry disclosed faster membrane permeabilization for CA-M. These results highlight the potential of RW-BP100 and CA-M AMPs as sustainable control measures against .

摘要

火疫病是一种主要的核果类果树病害,由检疫性植物病原菌引起,导致梨和苹果产量的重大损失。然而,目前尚未公开有效的可持续控制处理和措施。在这方面,抗菌肽(AMPs)已被提议作为一种针对病原体的替代生物分子,但其中一些 AMP 尚未针对 进行测试。在本研究中,评估了五种 AMP(RW-BP100、CA-M、3.1、D4E1 和 Dhvar-5)以及 BP100 的潜力,以控制 。通过抗生素谱、最小抑菌和杀菌浓度(最小抑菌浓度(MIC)和最小杀菌浓度(MBC)、生长和 IC 来确定膜通透性能力,并通过流式细胞术分析和菌落形成单位(CFU)平板计数进行评估。对于测试的 AMPs,RW-BP100 和 CA-M 表现出更高的抑制和杀菌能力(分别为 5 和 5-8 µM,MIC 和 MBC 均如此),而对于 IC,RW-BP100 表现出更高的效率(2.8 至 3.5 µM)。低于 MIC 的第一个浓度的生长曲线表明,这些 AMP 延迟了 生长。流式细胞术揭示 CA-M 的膜通透性更快。这些结果突出了 RW-BP100 和 CA-M AMP 作为针对 的可持续控制措施的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6551/8069920/041d461327ec/biomolecules-11-00554-g001.jpg

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