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Microbial metabolism of carbon monoxide in culture and in soil.

机译:一氧化碳在培养物中和土壤中的微生物代谢。

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Nocardia salmonicolor readily oxidized CO to CO2. Slight activity was found among species of Actinoplanes, Agromyces, Microbispora, Mycobacterium, and other nocardias, and no oxidation was detected in the algae, fungi, and other bacteria tested. Carbon monoxide was oxidized rapidly to CO2 in the dark in two soils incubated in air or under flooded conditions, but little of the 14C from 14CO was incorporated into the organic fraction of these soils. The reaction was microbial because appreciable CO was not converted to CO2 in autoclaved or gamma-irradiated soil. Heating the soil for 25 min at 70 degrees C destroyed its CO-oxidizing activity. The incorporation of 14CO2 into the cells of microorganisms in soil and soil suspension was not enhanced by incubating the samples in the presence of CO, suggesting that CO oxidation was not the result of autotrophic metabolism. The oxidation of 17 mu 1 of CO per liter in the head space was nearly complete in 6 h in soil incubated in air or anaerobically.
机译:鲑鱼诺卡氏菌容易将CO氧化成CO2。在放线放线菌,土壤杆菌属,微双孢菌,分枝杆菌和其他诺卡氏菌的物种中发现了轻微的活性,在藻类,真菌和其他测试细菌中未检测到氧化。一氧化碳在黑暗中在空气或水淹条件下孵育的两种土壤中被迅速氧化成CO2,但是14CO中的14C很少被掺入这些土壤的有机部分中。该反应是微生物,因为在高压灭菌或经γ辐照的土壤中,未将明显的CO转化为CO2。将土壤在70摄氏度下加热25分钟会破坏其一氧化碳的活性。在CO的存在下孵育样品不会增强14CO2在土壤和土壤悬浮液中的微生物细胞中的掺入,这表明CO氧化不是自养代谢的结果。在空气或厌氧条件下培养的土壤中,在6小时内,每升顶空的17μ1 CO的氧化几乎完成。

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