首页> 美国卫生研究院文献>Microorganisms >Killing Effect of Bacillus velezensis FZB42 on a Xanthomonas campestris pv. Campestris (Xcc) Strain Newly Isolated from Cabbage Brassica oleracea Convar. Capitata (L.): A Metabolomic Study
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Killing Effect of Bacillus velezensis FZB42 on a Xanthomonas campestris pv. Campestris (Xcc) Strain Newly Isolated from Cabbage Brassica oleracea Convar. Capitata (L.): A Metabolomic Study

机译:Bacillusslyzensis FZB42对Xanthomonas Campestris PV的杀伤作用。 Campestris(XCC)菌株从白菜芸苔Oleracea Supar新隔离。 Capitata(L.):一种代谢物研究

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摘要

The potential use of Bacillus velezensis 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 Xanthomonas campestris pv. campestris cells in a co-culture with B. velezensis 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 B. velezensis was observed. Bacillibactin and lipopeptides (surfactin, fengycin, and bacillomycin) were present in the co-culture and the monoculture of B. velezensis. 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 B. velezensis FZB42 to act as a potent antagonistic strain against Xcc.
机译:各种植物病原体的生物控制的潜在用途velezensis芽孢杆菌FZB42已经在过去的几年里记载过,但它与xanthomonads拮抗作用还没有详细研究。在这项研究中新的方面包括黄单胞菌光伏死亡的密切观察。油菜细胞在共培养B. velezensis FZB42,和脂肽的定量和铁载体,bacillibactin,参与杀伤过程。使用一个新的健壮XCC-SU分离容忍高浓度的铁离子。在共培养与拮抗剂,XCC-SU的人口24-48小时内被完全破坏,这取决于用于接种拮抗剂的细胞的数目。观察XCC-SU对B. velezensis无抑制作用。 Bacillibactin和脂肽(表面活性,芬枯草菌素,和芽孢菌)存在于共培养和B. velezensis的单作。除了bacillibactin,脂肽的最大内容与所述共培养物相比分别在单作拮抗剂更高。扫描电子显微镜表明,XCC-SU细菌的共培养的死亡是由细胞裂解引起的,从而导致扭曲的细胞和细胞空壳的增强发生。质谱分析表明4种显著化合物,bacillibactin,表面活性,芬枯草菌素,和芽孢菌d之间在共培养物上清液共计24种不同的形式检测到:也检测不同形式的表面活性的和芬枯草菌素在其侧链长度的变化。这些结果证明B. velezensis FZB42的充当针对XCC的强效拮抗应变的能力。

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