Canonical ammonia oxidizers, rather than comammox Nitrospira, dominated autotrophic nitrification during the mineralization of organic substances in two paddy soils

硝化作用 硝基螺 矿化(土壤科学) 自养 环境化学 土壤水分 化学 氮气循环 亚硝酸盐 环境科学 氮气 农学 微生物 分解 亚硝基单胞菌 氨单加氧酶 土壤科学 生物 细菌 生物化学 有机化学 遗传学
作者
Haiyang Liu,Hang‐Wei Hu,Xing Huang,Tida Ge,Yongfu Li,Zhenke Zhu,Xingmei Liu,Wenfeng Tan,Zhongjun Jia,Hongjie Di,Jianming Xu,Yong Li
出处
期刊:Soil Biology & Biochemistry [Elsevier BV]
卷期号:156: 108192-108192 被引量:25
标识
DOI:10.1016/j.soilbio.2021.108192
摘要

Chemoautotrophic canonical ammonia-oxidizers and complete ammonia oxidizers (comammox) are responsible for ammonia oxidation, which is the rate-limiting step of nitrification in terrestrial ecosystems. However, the relative importance of autotrophic nitrification and the related active nitrifiers during mineralization of organic substances with different C/N ratios have not been fully elucidated to date. In this study, 15N tracing and 13CO2-DNA-based stable isotope probing (DNA-SIP) techniques were employed to investigate the responses of soil nitrification processes and the active nitrifying phylotypes in acidic and neutral paddy soils with amendment of glutamine (Gln) or rice straw with low C/N (LS) or high C/N (HS). Acetylene (C2H2) was utilized to differentiate autotrophic and heterotrophic nitrification. The results indicated that C2H2 completely blocked the production of 15NO3− in Gln and LS treatments, implying the predominance of autotrophic nitrification with the N derived from the mineralization of Gln and LS. Neither 15NH4+ nor 15NO3− was detected in the HS-amended soils, suggesting that NH4+ derived from organic N mineralization was immobilized immediately by microorganisms. In the DNA-SIP microcosms, the abundance of ammonia-oxidizing bacteria (AOB) in the unamended control (CK), Gln and LS treatments of acidic paddy soil increased by 22.1-, 71.9- and 27.6-fold, respectively. A significantly larger proportion of Nitrosospira-like AOB, rather than ammonia-oxidizing archaea (AOA) and comammox Nitrospira, was labelled by 13CO2, indicating that AOB made a stronger contribution to autotrophic nitrification in acidic paddy soil. The active nitrification of neutral paddy soil was predominated by AOA affiliated with the Nitrososphaera viennensis lineage in the CK and LS microcosms but by Nitrosospira-like AOB in the Gln microcosm. These results suggest the significance of autotrophic nitrification catalysed by canonical ammonia oxidizers, rather than comammox, during the mineralization of organic substances with low C/N in paddy soils.
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