Cai Mingwei, Ng Siu-Kin, Lim Chee Kent, Lu Hongyuan, Jia Yangyang, Lee Patrick K H
School of Energy and Environment, City University of Hong Kong, Kowloon, Hong Kong.
Front Microbiol. 2018 Feb 27;9:280. doi: 10.3389/fmicb.2018.00280. eCollection 2018.
Nitrification plays a crucial role in global nitrogen cycling and treatment processes. However, the relationships between the nitrifier guilds of ammonia-oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB) are still poorly understood, especially in freshwater habitats. This study examined the physiological interactions between the AOB and NOB present in a freshwater aquarium biofilter by culturing them, either together or separately, in a synthetic medium. Metagenomic and 16S rRNA gene sequencing revealed the presence and the draft genomes of -like AOB as well as -like NOB in the cultures, including the first draft genome of . The nitrifiers exhibited different growth rates with different ammonium (NH) or nitrite concentrations (50-1,500 μM) and the growth rates were elevated under a high bicarbonate (HCO) concentration. The half-saturation constant ( for NH), the maximum growth rate (μ), and the lag duration indicated a strong dependence on the synergistic relationships between the two guilds. Overall, the ecophysiological and metagenomic results in this study provided insights into the phylogeny of the key nitrifying players in a freshwater biofilter and showed that interactions between the two nitrifying guilds in a microbial community enhanced nitrification.
硝化作用在全球氮循环和处理过程中起着至关重要的作用。然而,氨氧化细菌(AOB)和亚硝酸盐氧化细菌(NOB)这两类硝化菌之间的关系仍知之甚少,尤其是在淡水生境中。本研究通过在合成培养基中共同培养或单独培养淡水水族箱生物滤池中存在的AOB和NOB,研究了它们之间的生理相互作用。宏基因组学和16S rRNA基因测序揭示了培养物中类AOB以及类NOB的存在和草图基因组,包括的首个草图基因组。硝化菌在不同铵(NH)或亚硝酸盐浓度(50 - 1500 μM)下表现出不同的生长速率,并且在高碳酸氢盐(HCO)浓度下生长速率提高。半饱和常数(对NH而言)、最大生长速率(μ)和延迟持续时间表明对这两类菌之间的协同关系有很强的依赖性。总体而言,本研究中的生态生理学和宏基因组学结果为淡水生物滤池中关键硝化菌的系统发育提供了见解,并表明微生物群落中这两类硝化菌之间的相互作用增强了硝化作用。