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Identification of a novel acetate-utilizing bacterium belonging to Synergistes group 4 in anaerobic digester sludge

机译:厌氧消化池污泥中属于Synerististes组4的新型利用乙酸的细菌的鉴定

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摘要

Major acetate-utilizing bacterial and archaeal populations in methanogenic anaerobic digester sludge were identified and quantified by radioisotope- and stable-isotope-based functional analyses, microautoradiography-fluorescence in situ hybridization (MAR-FISH) and stable-isotope probing of 16S rRNA (RNA-SIP) that can directly link 16S rRNA phylogeny with in situ metabolic function. First, MAR-FISH with 14C-acetate indicated the significant utilization of acetate by only two major groups, unidentified bacterial cells and Methanosaeta-like filamentous archaeal cells, in the digester sludge. To identify the acetate-utilizing unidentified bacteria, RNA-SIP was conducted with 13C6-glucose and 13C3-propionate as sole carbon source, which were followed by phylogenetic analysis of 16S rRNA. We found that bacteria belonging to Synergistes group 4 were commonly detected in both 16S rRNA clone libraries derived from the sludge incubated with 13C-glucose and 13C-propionate. To confirm that this bacterial group can utilize acetate, specific FISH probe targeting for Synergistes group 4 was newly designed and applied to the sludge incubated with 14C-acetate for MAR-FISH. The MAR-FISH result showed that bacteria belonging to Synergistes group 4 significantly took up acetate and their active population size was comparable to that of Methanosaeta in this sludge. In addition, as bacteria belonging to Synergistes group 4 had high Km for acetate and maximum utilization rate, they are more competitive for acetate over Methanosaeta at high acetate concentrations (2.5–10 m). To our knowledge, it is the first time to report the acetate-utilizing activity of uncultured bacteria belonging to Synergistes group 4 and its competitive significance to acetoclastic methanogen, Methanosaeta.
机译:通过基于放射性同位素和稳定同位素的功能分析,显微放射自显影-荧光原位杂交(MAR-FISH)和16S rRNA(RNA的稳定同位素探测)鉴定和量化产甲烷厌氧消化池污泥中主要利用乙酸的细菌和古细菌种群-SIP),可以直接将16S rRNA系统发育与原位代谢功能联系起来。首先,带有 14 C-乙酸盐的MAR-FISH表明,消化池污泥中只有两个主要组,即未鉴定的细菌细胞和甲烷菌状丝状古细菌细胞,对乙酸盐的利用率很高。为了鉴定利用乙酸盐的未鉴定细菌,使用 13 C6-葡萄糖和 13 C3-丙酸作为唯一碳源进行了RNA-SIP,然后对其进行系统发育分析。 16S rRNA。我们发现,在 13 C-葡萄糖和 13 C-丙酸酯孵育的污泥衍生的16S rRNA克隆文库中,普遍检测到属于协同菌第4组的细菌。为了确认该细菌组可以利用乙酸盐,重新设计了针对Synergistes组4的特异性FISH探针,并将其应用于与 14 C-乙酸盐温育的污泥中进行MAR-FISH处理。 MAR-FISH结果表明,属于Synergistes第4组的细菌明显吸收了乙酸盐,并且该污泥的活性种群大小与Methanosaeta相当。此外,由于属于增效剂第4组的细菌的乙酸盐Km高,且利用率最高,因此,在高乙酸盐浓度(2.5-10μm)下,它们对乙酸盐的竞争性强于甲烷甲烷藻。据我们所知,这是首次报告属于Synergistes组4的未培养细菌的乙酸利用活性及其对乙酰破膜产甲烷菌Methanosaeta的竞争意义。

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