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Isolation and characterization of four novel Gram-positive bacteria associated with the rhizosphere of two endemorelict plants capable of degrading a broad range of aromatic substrates

机译:分离和鉴定与两种能降解多种芳香族底物的内生植物的根际相关的四种新型革兰氏阳性细菌

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Four new Gram-positive, phenol-degrading strains were isolated from the rhizospheres of endemorelict plants Ramonda serbica and Ramonda nathaliae known to exude high amounts of phenolics in the soil. Isolates were designated Bacillus sp. PS1, Bacillus sp. PS11, Streptomyces sp. PS12, and Streptomyces sp. PN1 based on 16S rDNA sequence and biochemical analysis. In addition to their ability to tolerate and utilize high amounts of phenol of either up to 800 or up to 1,400 mg l-1 without apparent inhibition in growth, all four strains were also able to degrade a broad range of aromatic substrates including benzene, toluene, ethylbenzene, xylenes, styrene, halogenated benzenes, and naphthalene. Isolates were able to grow in pure culture and in defined mixed culture on phenol and on the mixture of BTEX (benzene, toluene, ethylbenzene, and xylenes) compounds as a sole source of carbon and energy. Pure culture of Bacillus sp. PS11 yielded 1.5-fold higher biomass amounts in comparison to mixed culture, under all conditions. Strains successfully degraded phenol in the soil model system (2 g kg~(-1)) within 6 days. Activities of phenol hydroxylase, catechol 1,2-dioxygenase, and catechol 2,3-dioxygenase were detected and analyzed from the crude cell extract of the isolates. While all four strains use ortho degradation pathway, enzyme indicative of meta degradation pathway (catechol 2,3-dioxygenase) was also detected in Bacillus sp. PS11 and Streptomyces sp. PN1. Phenol degradation activities were induced 2 h after supplementation by phenol, but not by catechol. Catechol slightly inhibited activity of catechol 2,3-dioxygenase in strains PS11 and PN1.
机译:从内生植物Ramonda serbica和Ramonda nathaliae的根际中分离出四种新的革兰氏阳性苯酚降解菌株,已知这些菌株在土壤中散发出大量的酚类物质。分离物命名为芽孢杆菌。 PS1,芽孢杆菌PS11,链霉菌属。 PS12和链霉菌sp。 PN1基于16S rDNA序列和生化分析。除了能够耐受和利用高达800或高达1400 mg l-1的大量苯酚而没有明显抑制生长的能力外,所有四个菌株还能够降解多种芳香族底物,包括苯,甲苯,乙苯,二甲苯,苯乙烯,卤代苯和萘。分离物能够在纯培养物中和在确定的混合培养物中以苯酚和BTEX化合物(苯,甲苯,乙苯和二甲苯)的混合物作为唯一的碳和能量来源生长。芽孢杆菌的纯培养。在所有条件下,与混合培养相比,PS11产生的生物量要高1.5倍。菌株可在6天内成功降解土壤模型系统(2 g kg〜(-1))中的苯酚。从分离物的粗细胞提取物中检测并分析了酚羟化酶,儿茶酚1,2-二加氧酶和儿茶酚2,3-二加氧酶的活性。尽管所有四个菌株均使用邻位降解途径,但在芽孢杆菌属中也检测到指示间位降解途径的酶(邻苯二酚2,3-二加氧酶)。 PS11和链霉菌sp。 PN1。苯酚补充后2 h诱导苯酚降解活性,但儿茶酚不诱导。儿茶酚在菌株PS11和PN1中略微抑制儿茶酚2,3-二加氧酶的活性。

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