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首页> 外文期刊>Microbes and Environments >Biomass Yield Efficiency of the Marine Anammox Bacterium, 'Candidatus Scalindua sp.,' is Affected by Salinity
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Biomass Yield Efficiency of the Marine Anammox Bacterium, 'Candidatus Scalindua sp.,' is Affected by Salinity

机译:盐度影响海洋厌氧细菌“ Candidatus Scalindua sp。”的生物量产率。

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The growth rate and biomass yield efficiency of anaerobic ammonium oxidation (anammox) bacteria are markedly lower than those of most other autotrophic bacteria. Among the anammox bacterial genera, the growth rate and biomass yield of the marine anammox bacterium "Candidatus Scalindua sp." is still lower than those of other anammox bacteria enriched from freshwater environments. The activity and growth of marine anammox bacteria are generally considered to be affected by the presence of salinity and organic compounds. Therefore, in the present study, the effects of salinity and volatile fatty acids (VFAs) on the anammox activity, inorganic carbon uptake, and biomass yield efficiency of "Candidatus Scalindua sp." enriched from the marine sediments of Hiroshima Bay, Japan, were investigated in batch experiments. Differences in VFA concentrations (0-10 mM) were observed under varying salinities (0.5%-4%). Anammox activity was high at 0.5%-3.5% salinity, but was 30% lower at 4% salinity. In addition, carbon uptake was higher at 1.5%-3.5% salinity. The results of the present study clearly demonstrated that the biomass yield efficiency of the marine anammox bacterium "Candidatus Scalindua sp." was significantly affected by salinity. On the other hand, the presence of VFAs up to 10 mM did not affect anammox activity, carbon uptake, or biomass yield efficiency.
机译:厌氧铵氧化(厌氧氨氧化)细菌的生长速率和生物量生产效率显着低于大多数其他自养细菌。在厌氧细菌属中,海洋厌氧细菌“ Candidatus Scalindua sp。”的生长速率和生物量产量。仍然比从淡水环境中富集的其他厌氧细菌低。通常认为海水厌氧细菌的活性和生长受盐度和有机化合物的影响。因此,在本研究中,盐度和挥发性脂肪酸(VFA)对“ Candidatus Scalindua sp。”厌氧菌活性,无机碳吸收和生物量产量效率的影响。批量实验研究了从日本广岛湾海洋沉积物中富集的水。在不同盐度(0.5%-4%)下观察到VFA浓度(0-10 mM)存在差异。 Anammox活性在0.5%-3.5%的盐度下较高,但在4%的盐度下则低30%。另外,碳吸收在盐度为1.5%-3.5%时较高。本研究的结果清楚地表明,海洋厌氧菌细菌“ Candidatus Scalindua sp。”的生物质产量效率。受盐度影响很大。另一方面,高达10 mM的VFA的存在并不影响厌氧氨氧化活性,碳吸收或生物质产量效率。

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