首页> 外文期刊>Microbiological Research >Antagonistic effects of Bacillus subtilis subsp subtilis and B. amyloliquefaciens against Macrophomina phaseolina: SEM study of fungal changes and UV-MALDI-TOF MS analysis of their bioactive compounds
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Antagonistic effects of Bacillus subtilis subsp subtilis and B. amyloliquefaciens against Macrophomina phaseolina: SEM study of fungal changes and UV-MALDI-TOF MS analysis of their bioactive compounds

机译:枯草芽孢杆菌枯草芽孢杆菌和解淀粉芽孢杆菌对菜豆巨噬菌的拮抗作用:真菌变化的SEM研究以及其生物活性化合物的UV-MALDI-TOF MS分析

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The antifungal effect of Bacillus subtilis subsp. subtilis PGPMori7 and Bacillus amyloliquefaciens PGPBacCA1 was evaluated against Macrophomina phaseolina (Tassi) Gold. Cell suspension (CS), cell-free supernatant (CFS) and the lipopeptide fraction (LF) of PGPMori7 and PGPBacCA1 were screened against three different M. phaseolina strains. CS exhibited the highest inhibitory effect (around 50%) when compared to those of CFS and LF, regardless of the fungal strain studied. The synthesis of lipopeptides was studied by UV-MALDI TOF. Chemical analysis of Bacillus metabolite synthesis revealed that surfactin and iturin were mainly produced in liquid medium. Potential fengycin was also co-produced when both Bacillus were cultivated in solid medium. In co-culture assays, the bacterial colony-fungal mycelium interface at the inhibition zone was evaluated by both scanning electron microscopy (SEM) and UV-MALDI TOF, the former to determine the structural changes on M. phaseolina cells and the latter to identify the main bioactive molecules involved in the inhibitory effect. PGPBacCA1 produced surfactin, iturin and fengycin in the inhibition zone while PGPMori7 only produced these metabolites within its colony and not in the narrow inhibition zone. Interestingly, SEM revealed that PGPBacCA1 induced damage in M. phaseolina sclerotia, generating a fungicidal effect as no growth was observed when normal growth conditions were reestablished. In turn, PGPMori7 inhibited the growth of the Macrophomina mycelium without fungal injury, resulting only in a fungistatic activity. From these results, it was determined that the two bacilli significantly inhibited the growth of an important phytopathogenic fungus by at least two different mechanisms: lipopeptide synthesis and competition among microorganisms. (c) 2015 Elsevier GmbH. All rights reserved.
机译:枯草芽孢杆菌亚种的抗真菌作用。枯草芽孢杆菌PGPMori7和解淀粉芽孢杆菌PGPBacCA1针对巨噬性菜豆(Tassi)Gold进行了评估。针对三种不同的菜豆分枝杆菌菌株筛选了PGPMori7和PGPBacCA1的细胞悬液(CS),无细胞上清液(CFS)和脂肽级分(LF)。与CFS和LF相比,CS表现出最高的抑制作用(约50%),而与所研究的真菌菌株无关。通过UV-MALDI TOF研究脂肽的合成。芽孢杆菌代谢产物合成的化学分析表明,表面活性素和iturin主要在液体培养基中产生。当两种芽孢杆菌都在固体培养基中培养时,潜在的风霉素也被共同产生。在共培养测定中,通过扫描电子显微镜(SEM)和UV-MALDI TOF来评估抑制区的细菌菌落-真菌菌丝体界面,前者用于确定菜豆分枝杆菌细胞的结构变化,后者用于鉴定主要的生物活性分子参与了抑制作用。 PGPBacCA1在抑制区内产生表面活性素,iturin和丰霉素,而PGPMori7仅在其菌落内而不是在狭窄的抑制区内产生这些代谢产物。有趣的是,SEM揭示PGPBacCA1诱导了菜豆分枝杆菌菌核的破坏,产生了杀菌作用,因为当恢复正常生长条件时未观察到生长。反过来,PGPMori7抑制了巨光菌丝体的生长而没有真菌损伤,仅导致了抑真菌活性。根据这些结果,可以确定这两种杆菌通过至少两种不同的机制显着抑制重要的植物病原真菌的生长:脂肽合成和微生物之间的竞争。 (c)2015 Elsevier GmbH。版权所有。

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