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Effect of Selected Monoterpenes on Methane Oxidation Denitrification and Aerobic Metabolism by Bacteria in Pure Culture

机译:所选单萜类化合物对纯培养中细菌的甲烷氧化反硝化和有氧代谢的影响

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摘要

Selected monoterpenes inhibited methane oxidation by methanotrophs (Methylosinus trichosporium OB3b, Methylobacter luteus), denitrification by environmental isolates, and aerobic metabolism by several heterotrophic pure cultures. Inhibition occurred to various extents and was transient. Complete inhibition of methane oxidation by Methylosinus trichosporium OB3b with 1.1 mM (−)-α-pinene lasted for more than 2 days with a culture of optical density of 0.05 before activity resumed. Inhibition was greater under conditions under which particulate methane monooxygenase was expressed. No apparent consumption or conversion of monoterpenes by methanotrophs was detected by gas chromatography, and the reason that transient inhibition occurs is not clear. Aerobic metabolism by several heterotrophs was much less sensitive than methanotrophy was; Escherichia coli (optical density, 0.01), for example, was not affected by up to 7.3 mM (−)-α-pinene. The degree of inhibition was monoterpene and species dependent. Denitrification by isolates from a polluted sediment was not inhibited by 3.7 mM (−)-α-pinene, γ-terpinene, or β-myrcene, whereas 50 to 100% inhibition was observed for isolates from a temperate swamp soil. The inhibitory effect of monoterpenes on methane oxidation was greatest with unsaturated, cyclic hydrocarbon forms [e.g., (−)-α-pinene, (S)-(−)-limonene, (R)-(+)-limonene, and γ-terpinene]. Lower levels of inhibition occurred with oxide and alcohol derivatives [(R)-(+)-limonene oxide, α-pinene oxide, linalool, α-terpineol] and a noncyclic hydrocarbon (β-myrcene). Isomers of pinene inhibited activity to different extents. Given their natural sources, monoterpenes may be significant factors affecting bacterial activities in nature.
机译:选定的单萜抑制甲烷氧化菌(甲烷甲基毛孢菌OB3b,黄ute甲基甲烷)的甲烷氧化,环境分离物的反硝化作用以及几种异养纯培养物的需氧代谢。抑制在不同程度上发生并且是短暂的。用1.1 mM(-)-α-pine烯对甲基毛孢霉OB3b的甲烷氧化的完全抑制作用持续2天以上,光密度为0.05的培养物才恢复活性。在表达颗粒甲烷单加氧酶的条件下抑制作用更大。气相色谱法未检测到甲烷菌对单萜的明显消耗或转化,尚不清楚发生瞬时抑制的原因。几个异养菌的有氧代谢比甲烷营养缺陷症敏感得多。例如,大肠杆菌(光学密度为0.01)不受最高7.3 mM(-)-α-pine烯的影响。抑制程度是单萜和物种依赖性。 3.7 mM(-)-α-pine烯,γ-萜品烯或β-月桂烯不会抑制污染的分离物的反硝化作用,而温带沼泽土壤分离物的反硝化作用抑制了50%至100%。单萜类对甲烷氧化的抑制作用以不饱和环状烃形式[例如,(-)-α-pine烯,(S)-(-)-柠檬烯,(R)-(+)-柠檬烯和γ-萜品烯]。氧化物和醇衍生物[(R)-(+)-柠檬烯氧化物,α-pine烯氧化物,芳樟醇,α-萜品醇]和非环状烃(β-月桂烯)的抑制作用较低。 pin烯的异构体在不同程度上抑制了活性。鉴于其天然来源,单萜可能是影响自然界细菌活动的重要因素。

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