首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Comparative Amperometric Study of Uptake Hydrogenase and Hydrogen Photoproduction Activities between Heterocystous Cyanobacterium Anabaena cylindrica B629 and Nonheterocystous Cyanobacterium Oscillatoria sp. Strain Miami BG7
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Comparative Amperometric Study of Uptake Hydrogenase and Hydrogen Photoproduction Activities between Heterocystous Cyanobacterium Anabaena cylindrica B629 and Nonheterocystous Cyanobacterium Oscillatoria sp. Strain Miami BG7

机译:异胞蓝藻蓝藻B629与非异胞蓝藻Oscillatoria sp。吸收氢酶和氢光生产活性的比较安培研究。应变迈阿密BG7

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摘要

Heterocystous filamentous cyanobacterium Anabaena cylindrica B629 and nonheterocystous filamentous cyanobacterium Oscillatoria sp. strain Miami BG7 were cultured in media with N2 as the sole nitrogen source; and activities of oxygen-dependent hydrogen uptake, photohydrogen production, photooxygen evolution, and respiration were compared amperometrically under the same or similar experimental conditions for both strains. Distinct differences in these activities were observed in both strains. The rates of hydrogen photoproduction and hydrogen accumulation were significantly higher in Oscillatoria sp. strain BG7 than in A. cylindrica B629 at every light intensity tested. The major reason for the difference was attributable to the fact that the heterocystous cyanobacterium had a high rate of oxygen-dependent hydrogen consumption activity and the nonheterocystous cyanobacterium did not. The activity of oxygen photoevolution and respiration also contributed to the difference. Oscillatoria sp. strain BG7 had lower O2 evolution and higher respiration than did A. cylindrica B629. Thus, the effect of O2 on hydrogen photoproduction was minimized in Oscillatoria sp. strain BG7.
机译:杂种丝状蓝藻鱼腥藻B629和非杂种丝状蓝藻Oscillatoria sp。在N2为唯一氮源的培养基中培养Miami BG7菌株。在相同或相似的实验条件下,对两种菌株的电流测定法比较了与氧依赖的氢吸收,光氢产生,光氧释放和呼吸的活性。在两种菌株中均观察到这些活性的明显差异。 Oscillatoria sp。中的氢光生速率和氢积累速率显着更高。在每个测试的光强度下,菌株BG7比圆柱曲霉B629中的菌株更强。造成这种差异的主要原因是由于杂藻蓝细菌具有较高的氧依赖性氢消耗活性,而非杂藻蓝细菌却没有。氧气的光进化和呼吸活动也导致了差异。 Oscillatoria sp。菌株BG7具有比圆柱曲霉B629更低的O 2释放和更高的呼吸。因此,在Oscillatoria sp。中O2对氢光生产的影响最小。菌株BG7。

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