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首页> 外文期刊>International Biodeterioration & Biodegradation >Influence of biosurfactant-producing strain Bacillus subtilis BS1 on the mycoremediation of soils contaminated with phenanthrene.
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Influence of biosurfactant-producing strain Bacillus subtilis BS1 on the mycoremediation of soils contaminated with phenanthrene.

机译:产生生物表面活性剂的枯草芽孢杆菌BS1菌株对被菲污染的土壤的mycoremediation的影响。

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In the present study, the biocompatibility between a biosurfactant-producing bacterial strain Bacillus subtilis BS1 and arbuscular mycorrhizal fungi Glomus etunicatum was investigated. Inoculation of BS1 could significantly increase the germination rate and hyphal development of G. etunicatum in vitro, although its metabolic biosurfactant, surfactin, displayed inhibitory effect at high concentrations. Exposed to the stress of phenanthrene inhibited the spore germination and hyphal development of G. etunicatum in vitro, but inoculation of BS1 was found to alleviate the stress of phenanthrene and remarkably promote the mycelium growth of germinated spores. The effect of B. subtilis BS1 on the mycoremediation of soils artificially contaminated with different levels of phenanthrene (0, 50 and 250 mg kg-1) was investigated in pot experiments. Mycorrhizal colonization or BS1 inoculation improved the tolerance to stress of phenanthrene and increased the plant biomass. Biosurfactant secreted by BS1 strain considerably enhanced the solubility of phenanthrene, favoring its enrichment in rhizosphere soil and plant roots. The co-inoculation of BS1 and G. etunicatum significantly decreased the residual concentrations of phenanthrene in soil, and resulted in higher soil enzyme activities of catalase and polyphenol oxidase. Therefore, the inoculation of biosurfactant-producing strain to the mycorrhizosphere could be a potential biotechnological approach for the remediation of soil polluted with polycyclic aromatic hydrocarbons.
机译:在本研究中,研究了产生生物表面活性剂的细菌菌株枯草芽孢杆菌BS1和丛枝菌根真菌Glomus etunicatum的生物相容性。接种BS1可以显着提高紫茎泽兰的发芽率和菌丝发育,尽管它的代谢生物表面活性剂表面活性素在高浓度下表现出抑制作用。暴露于菲胁迫下,可抑制紫茎泽兰的孢子萌发和菌丝发育,但接种BS1可减轻菲的胁迫并显着促进发芽孢子的菌丝体生长。在盆栽实验中研究了枯草芽孢杆菌BS1对人工污染了不同水平的菲(0、50和250 mg kg -1 )的土壤的菌丝介导作用。菌根定植或BS1接种提高了菲对胁迫的耐受性并增加了植物生物量。 BS1菌株分泌的生物表面活性剂大大提高了菲的溶解度,有利于其在根际土壤和植物根系中的富集。 BS1和牛膝菌的共同接种显着降低了土壤中菲的残留浓度,并导致过氧化氢酶和多酚氧化酶的土壤酶活性更高。因此,将生产生物表面活性剂的菌株接种到菌根际可能是修复被多环芳烃污染的土壤的潜在生物技术方法。

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