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Ammonium and Nitrite Inhibition of Methane Oxidation by Methylobacter albus BG8 and Methylosinus trichosporium OB3b at Low Methane Concentrations

机译:甲烷和亚硝酸盐抑制甲烷在低甲烷浓度下被甲烷杆菌BG8和甲基毛孢菌OB3b氧化甲烷氧化

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摘要

Methane oxidation by pure cultures of the methanotrophs Methylobacter albus BG8 and Methylosinus trichosporium OB3b was inhibited by ammonium choride and sodium nitrite relative to that in cultures assayed in either nitrate-containing or nitrate-free medium. M. albus was generally more sensitive to ammonium and nitrite than M. trichosporium. Both species produced nitrite from ammonium; the concentrations of nitrite produced increased with increasing methane concentrations in the culture headspaces. Inhibition of methane oxidation by nitrite was inversely proportional to headspace methane concentrations, with only minimal effects observed at concentrations of>500 ppm in the presence of 250 μM nitrite. Inhibition increased with increasing ammonium at methane concentrations of 100 ppm. In the presence of 500 μM ammonium, inhibition increased initially with increasing methane concentrations from 1.7 to 100 ppm; the extent of inhibition decreased with methane concentrations of > 100 ppm. The results of this study provide new insights that explain some of the previously observed interactions among ammonium, nitrite, methane, and methane oxidation in soils and aquatic systems.
机译:相对于在含硝酸盐或无硝酸盐的培养基中测定的甲烷培养物,氯甲烷和亚硝酸钠抑制了甲烷甲烷营养菌纯培养物甲烷氧化,而甲烷甲烷亚硝酸钠OB3b抑制了甲烷氧化。与白毛孢霉相比,白毛霉通常对铵和亚硝酸盐更敏感。两种物种都从铵中产生亚硝酸盐。随着培养液顶部空间甲烷浓度的增加,产生的亚硝酸盐浓度也随之增加。亚硝酸盐对甲烷氧化的抑制与顶空甲烷浓度成反比,在存在250μM亚硝酸盐的情况下,当浓度> 500 ppm时,观察到的影响很小。在100 ppm的甲烷浓度下,抑制作用随着铵盐的增加而增加。在存在500μM铵的情况下,抑制作用最初随着甲烷浓度从1.7增加到100 ppm而增加。甲烷浓度> 100 ppm时抑制程度降低。这项研究的结果提供了新的见解,可以解释先前观察到的土壤,水生系统中铵,亚硝酸盐,甲烷和甲烷氧化之间的相互作用。

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