The active functional microbes contribute differently to soil nitrification and denitrification potential under long-term fertilizer regimes in North-East China
作者:Feng Wang, Xiaolong Liang, Fan Ding, Lingling Ren, Minjie Liang, Tingting An, Shuangyi Li, Jingkuan Wang, Lingzhi Liu · 发表于:Frontiers in Microbiology · 年份:2022 · DOI:10.3389/fmicb.2022.1021080 · 被引用次数:22 · 研究领域:Wastewater Treatment and Nitrogen Removal、Microbial Community Ecology and Physiology、Soil Carbon and Nitrogen Dynamics
Nitrogen (N) cycling microorganisms mediate soil nitrogen transformation processes, thereby affecting agricultural production and environment quality. However, it is not fully understood how active N-cycling microbial community in soil respond to long-term fertilization, as well as which microorganisms regulate soil nitrogen cycling in agricultural ecosystem. Here, we collected the soils from different depths and seasons at a 29-year fertilization experimental field (organic/chemical fertilizer), and investigated the transcriptions of N-cycling functional genes and their contribution to potential nitrification and denitrification. We found that long-term fertilization exerted significant impacts on the transcript abundances of nitrifiers (AOA amo A, AOB amo A and hao ) and denitrifiers ( nar G and nos Z), which was also notably influenced by season variation. The transcriptions of AOA amo A, hao , and nar G genes were lowest in autumn, and AOB amo A and nos Z transcript abundances were highest in autumn. Compared to no fertilization, soil potential nitrification rate (PNR) was reduced in fertilization treatments, while soil potential denitrification rate (PDR) was significantly enhanced in organic combined chemical fertilizer treatment. Both PNR and PDR were highest in 0–20 cm among the tested soil depths. Path model indicated active nitrifiers and denitrifiers had significant impact on soil PNR and PDR, respectively. The transcriptions of AOA amo A and nxr genes were signifi...