Fang Feng, Wang Lei, Xi Xue-fei, Hu Jia-jun, Fu Xiao-hua, Lu Bing, Xu Dian-sheng
Huan Jing Ke Xue. 2015 May;36(5):1550-6.
The seawater samples collected from many different areas with different depth in the South China Sea were cultivated using different electron donors respectively. And the variation in the potential carbon fixation capability ( PCFC ) of non-photosynthetic microbial community (NPMC) in seawater with different depth was determined after a cycle of cultivation through the statistic analysis. In addition, the cause for the variation was clarified through analyzing key gene abundance regarding CO2 fixation and characteristics of seawater with different depth. The result showed that the PCFCs of NPMC in seawater with different depth were generally low and had no significant difference when using NaNO2 as the electron donor. The PCFC of NPMC in surface seawater was higher than that in deep seawater when using H2 as the electron donor, on the contrary, the PCFC of NPMC in deep seawater was higher than that in surface seawater when using Na2S2O3 as the electron donor. The abundance of the main CO2 fixation gene cbbL in surface seawater was higher than that in deep seawater while the cbbM gene abundance in deep seawater was higher than that in surface seawater. Most hydrogen-oxidizing bacteria had the cbbL gene, and most sulfur bacteria had the cbbM gene. The tendency of seawater cbbL/cbbM gene abundance with the change of depth revealed that there were different kinds of bacteria accounting for the majority in NPMC fixing CO2 at different depth of ocean, which led to different response of PCFC of NPMC at different depth of the sea to different electron donors. The distributions of dissolved oxygen and inorganic carbon concentration with the change of the depth of the sea might be an important reason leading to the difference of NPMC structure and even the difference of PCFC at different depth of the sea.
分别使用不同的电子供体培养从南海不同区域、不同深度采集的海水样本。通过统计分析,在一个培养周期后测定了不同深度海水中非光合微生物群落(NPMC)潜在碳固定能力(PCFC)的变化。此外,通过分析与CO2固定相关的关键基因丰度以及不同深度海水的特征,阐明了这种变化的原因。结果表明,当以NaNO2作为电子供体时,不同深度海水中NPMC的PCFC普遍较低且无显著差异。当以H2作为电子供体时,表层海水中NPMC的PCFC高于深层海水;相反,当以Na2S2O3作为电子供体时,深层海水中NPMC的PCFC高于表层海水。表层海水中主要CO2固定基因cbbL的丰度高于深层海水,而深层海水中cbbM基因的丰度高于表层海水。大多数氢氧化细菌具有cbbL基因,大多数硫细菌具有cbbM基因。海水cbbL/cbbM基因丰度随深度变化的趋势表明,在海洋不同深度固定CO2的NPMC中,占多数的细菌种类不同,这导致不同深度海水中NPMC的PCFC对不同电子供体有不同反应。溶解氧和无机碳浓度随海水深度的变化分布可能是导致不同深度海水中NPMC结构差异乃至PCFC差异的重要原因。