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埃希氏类芽孢杆菌IB-X-b的广谱抗真菌拮抗作用及其对几丁质酶和β-1,3-葡聚糖酶产生的依赖性

Wide-range antifungal antagonism of Paenibacillus ehimensis IB-X-b and its dependence on chitinase and beta-1,3-glucanase production.

作者信息

Aktuganov G, Melentjev A, Galimzianova N, Khalikova E, Korpela T, Susi P

机构信息

Institute of Biology, Ufa Research Centre of Russian Academy of Sciences, Prospect Oktyabrya 69, Ufa 450054, Russia.

出版信息

Can J Microbiol. 2008 Jul;54(7):577-87. doi: 10.1139/w08-043.

Abstract

Previously, we isolated a strain of Bacillus that had antifungal activity and produced lytic enzymes with fungicidal potential. In the present study, we identified the bacterium as Paenibacillus ehimensis and further explored its antifungal properties. In liquid co-cultivation assays, P. ehimensis IB-X-b decreased biomass production of several pathogenic fungi by 45%-75%. The inhibition was accompanied by degradation of fungal cell walls and alterations in hyphal morphology. Residual medium from cultures of P. ehimensis IB-X-b inhibited fungal growth, indicating the inhibitors were secreted into the medium. Of the 2 major lytic enzymes, chitinases were only induced by chitin-containing substrates, whereas beta-1,3-glucanase showed steady levels in all carbon sources. Both purified chitinase and beta-1,3-glucanase degraded cell walls of macerated fungal mycelia, whereas only the latter also degraded cell walls of intact mycelia. The results indicate synergism between the antifungal action mechanisms of these enzymes in which beta-1,3-glucanase is the initiator of the cell wall hydrolysis, whereas the degradation process is reinforced by chitinases. Paenibacillus ehimensis IB-X-b has pronounced antifungal activity with a wide range of fungi and has potential as a biological control agent against plant pathogenic fungi.

摘要

此前,我们分离出了一种具有抗真菌活性并能产生具有杀真菌潜力的裂解酶的芽孢杆菌菌株。在本研究中,我们将该细菌鉴定为埃希氏类芽孢杆菌,并进一步探究了其抗真菌特性。在液体共培养试验中,埃希氏类芽孢杆菌IB-X-b使几种致病真菌的生物量产量降低了45%-75%。这种抑制伴随着真菌细胞壁的降解和菌丝形态的改变。埃希氏类芽孢杆菌IB-X-b培养物的残留培养基抑制了真菌生长,表明抑制剂分泌到了培养基中。在两种主要的裂解酶中,几丁质酶仅由含几丁质的底物诱导产生,而β-1,3-葡聚糖酶在所有碳源中均呈现稳定水平。纯化后的几丁质酶和β-1,3-葡聚糖酶均能降解研磨后的真菌菌丝体的细胞壁,而只有后者还能降解完整菌丝体的细胞壁。结果表明这些酶的抗真菌作用机制之间存在协同作用,其中β-1,3-葡聚糖酶是细胞壁水解的启动者,而几丁质酶则加强了降解过程。埃希氏类芽孢杆菌IB-X-b对多种真菌具有显著的抗真菌活性,具有作为植物致病真菌生物防治剂的潜力。

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