N<sub>2</sub>O Reduction by <i>Gemmatimonas aurantiaca</i> and Potential Involvement of <i>Gemmatimonadetes</i> Bacteria in N<sub>2</sub>O Reduction in Agricultural Soils

芽单胞菌门 化学 生物 细菌 放线菌门 遗传学 16S核糖体RNA
作者
Mamoru Oshiki,Yuka Toyama,Toshikazu Suenaga,Akihiko Terada,Yasuhiro Kasahara,Takashi Yamaguchi,Nobuo Araki
出处
期刊:Microbes and Environments [Japanese Society Of Microbial Ecology]
卷期号:37 (2): n/a-n/a 被引量:22
标识
DOI:10.1264/jsme2.me21090
摘要

Agricultural soil is the primary N2O sink limiting the emission of N2O gas into the atmosphere. Although Gemmatimonadetes bacteria are abundant in agricultural soils, limited information is currently available on N2O reduction by Gemmatimonadetes bacteria. Therefore, the effects of pH and temperature on N2O reduction activities and affinity constants for N2O reduction were examined by performing batch experiments using an isolate of Gemmatimonadetes bacteria, Gemmatimonas aurantiaca (NBRC100505T). G. aurantiaca reduced N2O at pH 5-9 and 4-50°C, with the highest activity being observed at pH 7 and 30°C. The affinity constant of G. aurantiaca cells for N2O was 4.4‍ ‍μM. The abundance and diversity of the Gemmatimonadetes 16S rRNA gene and nosZ encoding nitrous oxide reductase in agricultural soil samples were also investigated by quantitative PCR (qPCR) and amplicon sequencing ana-lyses. Four N2O-reducing agricultural soil samples were assessed, and the copy numbers of the Gemmatimonadetes 16S rRNA gene (clades G1 and G3), nosZ DNA, and nosZ mRNA were 8.62-9.65×108, 5.35-7.15×108, and 2.23-4.31×109 copies (g dry soil)-1, respectively. The abundance of the nosZ mRNA of Gemmatimonadetes bacteria and OTU91, OUT332, and OTU122 correlated with the N2O reduction rates of the soil samples tested, suggesting N2O reduction by Gemmatimonadetes bacteria. Gemmatimonadetes 16S rRNA gene reads affiliated with OTU4572 and OTU3759 were predominant among the soil samples examined, and these Gemmatimonadetes OTUs have been identified in various types of soil samples.
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