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FZB42对从甘蓝变种(L.)中最新分离出的野油菜黄单胞菌(Xcc)菌株的杀灭作用:一项代谢组学研究

Killing Effect of FZB42 on a pv. (Xcc) Strain Newly Isolated from Cabbage Convar. (L.): A Metabolomic Study.

作者信息

Mácha Hynek, Marešová Helena, Juříková Tereza, Švecová Magdaléna, Benada Oldřich, Škríba Anton, Baránek Miroslav, Novotný Čeněk, Palyzová Andrea

机构信息

Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 142 20 Prague, Czech Republic.

Department of Analytical Chemistry, Faculty of Science, Palacký University, 17. Listopadu 12, 771 46 Olomouc, Czech Republic.

出版信息

Microorganisms. 2021 Jun 29;9(7):1410. doi: 10.3390/microorganisms9071410.

Abstract

The potential use of FZB42 for biological control of various phytopathogens has been documented over the past few years, but its antagonistic interactions with xanthomonads has not been studied in detail. Novel aspects in this study consist of close observation of the death of pv. cells in a co-culture with FZB42, and quantification of lipopeptides and a siderophore, bacillibactin, involved in the killing process. A new robust Xcc-SU isolate tolerating high concentrations of ferric ions was used. In a co-culture with the antagonist, the population of Xcc-SU was entirely destroyed within 24-48 h, depending on the number of antagonist cells used for inoculation. No inhibitory effect of Xcc-SU on was observed. Bacillibactin and lipopeptides (surfactin, fengycin, and bacillomycin) were present in the co-culture and the monoculture of Except for bacillibactin, the maximum contents of lipopeptides were higher in the antagonist monoculture compared with the co-culture. Scanning electron microscopy showed that the death of Xcc-SU bacteria in co-culture was caused by cell lysis, leading to an enhanced occurrence of distorted cells and cell ghosts. Analysis by mass spectrometry showed four significant compounds, bacillibactin, surfactin, fengycin, and bacillomycin D amongst a total of 24 different forms detected in the co-culture supernatant: Different forms of surfactin and fengycin with variations in their side-chain length were also detected. These results demonstrate the ability of FZB42 to act as a potent antagonistic strain against Xcc.

摘要

在过去几年中,已证明FZB42在多种植物病原体的生物防治中具有潜在用途,但尚未对其与黄单胞菌的拮抗相互作用进行详细研究。本研究的新内容包括密切观察Xcc菌株与FZB42共培养时细胞的死亡情况,以及对参与杀灭过程的脂肽和铁载体杆菌素进行定量分析。使用了一种新的耐高浓度铁离子的Xcc-SU强毒株。在与拮抗剂的共培养中,Xcc-SU的菌落在24至48小时内被完全破坏,这取决于用于接种的拮抗剂细胞数量。未观察到Xcc-SU对FZB42有抑制作用。杆菌素和脂肽(表面活性素、丰原素和芽孢霉素)存在于FZB42的共培养物和单培养物中。除杆菌素外,脂肽的最大含量在拮抗剂单培养物中高于共培养物。扫描电子显微镜显示,共培养中Xcc-SU细菌的死亡是由细胞裂解引起的,导致变形细胞和细胞残骸的出现增加。质谱分析表明,在共培养上清液中检测到的总共24种不同形式的物质中,有四种重要化合物,即杆菌素、表面活性素、丰原素和芽孢霉素D:还检测到了侧链长度不同的不同形式的表面活性素和丰原素。这些结果证明了FZB42作为一种对Xcc有效的拮抗菌株的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a51/8303752/55ddb3e9496a/microorganisms-09-01410-g001.jpg

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