首页> 外文期刊>Ecotoxicology and Environmental Safety >Plant-based oil-sorbents harbor native microbial communities effective in spilled oil-bioremediation under nitrogen starvation and heavy metal-stresses
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Plant-based oil-sorbents harbor native microbial communities effective in spilled oil-bioremediation under nitrogen starvation and heavy metal-stresses

机译:基于植物的油脂植物在氮饥饿和重金属胁迫下溢出的油生物修复生物的天然微生物群落

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Cultivation on selective media revealed that the oil-sorbents, wheat straw, corncobs and sugarcane bagasse harbor hydrocarbonoclastic, diazotrophic and heavy metal-resistant microorganisms. Nitrogen-free media containing 1.0% crude oil lost between 32.2 and 37.5% of this oil, after 8 months when they have been inoculated with such microorganism-loaded sorbents. The used wheat straw, corncobs and sugarcane bagasse samples, 1.0 g each, absorbed respectively, 1.9, 1.1 and 2.5 g oil samples, and lost 24.3-39.2% of these amounts, after they had been incubated for 8 months. Total genomic DNA's from culture media and sorbents revealed various nitrogenase-coding nifH-genes. Pure hydrocarbonoclastic microbial isolates tolerated certain concentrations of, Hg2+, Cd2+, Pb2+, AsO43- and AsO33-. Some of those isolates even grew excellently with up to 1000 ppm of Pb2+ and 36,000 ppm of AsO43- also in the presence of oil. Tested strains removed the tested heavy metals, Hg2+, Cd2+ and Pb2+ from the media and thus, reduced their toxicity against the hydrocarbon-degraders. It was concluded that plant-based sorbents, not only remove oil physically, but also harbor microbial communities effective in spilled oil-bioremediation under multiple stresses. Although each community consisted of one to three species only, the consortia which reached in numbers millions of CFU ml(-1) enrich the oily media with fixed nitrogen, and remove heavy metals which otherwise inhibit the oil-degrading microorganisms.
机译:选择性培养基的培养揭示了油吸附剂,麦秸,玉米饼和甘蔗果仁甘蔗酸碳纤维素,无催化和重金属的微生物。在8个月内接种出这种微生物装的吸附剂后8个月后,含有1.0%原油的无氮培养基含有1.0%的原油损失在32.2和37.5%之间。使用的小麦秸秆,玉米粒子和甘蔗蛋白甘蔗渣样品,每次1.0g,分别吸收,1.9,1.1和2.5g油样,在孵育8个月后,这些量的24.3-39.2%。来自培养培养基和吸附剂的总基因组DNA揭示了各种亚硝基酶编码的NiFH-基因。纯烃类细胞癌微生物分离株可容忍一定浓度的Hg2 +,CD2 +,Pb2 +,AsO43和ASO33-。其中一些孤立甚至在油脂存在下甚至超过1000ppm的PB2 +和36,000ppm的效果。测试的菌株从培养基中除去了测试的重金属,Hg2 +,CD2 +和Pb2 +,从而降低了对烃脱氢剂的毒性。得出结论,植物的吸附剂,不仅除去物理上的油,而且还在多次应力下溢出的油生物化有效的微生物群落。虽然每个社区仅由一至三种物种组成,但是达到数百万CFU ml(-1)的联盟富含固定氮的油性培养基,并除去重金属,否则抑制油脂降解的微生物。

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