Transient anoxic conditions boost N2O emissions by stimulating denitrification capacity and decreasing N2O reduction ratio in soils with different carbon substrates
文献类型: 外文期刊
作者: Zhuang S.;Ding J.;Lin W.;Zheng Q.;Kou X.;Li Q.;Xu C.;Mao L.;Pan Y.;Gao Y.;Han D.;Li Y.
作者机构:
关键词: Dual isotope mapping;Glucose;N2O reduction;Nitrous oxide;Oxalic acid;Serine;Transient anoxic conditions
期刊名称: Soil Biology and Biochemistry
ISSN: 0038-0717
年卷期: 2024 年 192 卷
页码:
收录情况: SCIE(2024版) ; ; EI(2024版)
摘要: Quantitative identification of the dominant N2O production and consumption processes following sudden shifts in soil aeration in well-aerated soils is limited, lagging the development of N2O mitigation strategies. Nitrous oxide emissions from agricultural soils, the largest source of anthropogenic N2O, are strongly influenced by low-molecular-weight organic carbons from root exudates (RootEx). In this study, we conducted a laboratory incubation experiment to investigate the mechanisms of N2O emissions regulated by transient anoxic conditions under the effects of different carbon substrates. Three common components in RootEx, oxalic acid, serine, and glucose were individually added as carbon sources every 24 h to the sandy loam soil. The contribution of microbial processes to N2O production (fungal denitrification, nitrification, bacterial denitrification) and consumption (N2O reduction) was evaluated using a dual isotope mapping approach (SP/δ18O MAP). The result indicated that transient anoxic conditions stimulated N2O production primarily through bacterial denitrification process facilitated by carbon substrates, and diminished the proportion of N2O reduction compared to oxic conditions. Among the three components of RootEx, serine and glucose induced higher N2O emissions and N2O reduction rates than oxalic acid during incubation. The differential effects of these three components on N2O emissions imply that the regulatory effect of carbon substrates on N2O reduction could not counterbalance the influence of transient anoxic conditions on N2O stimulation. Our findings provide a fundamental understanding of the effects of transient anoxic conditions and RootEx on N2O stimulation, facilitating the study of the spatial and temporal heterogeneity of N2O emissions in response to soil aeration changes in various upland soils. © 2024 Elsevier Ltd
分类号:
- 相关文献
作者其他论文 更多>>
-
Transcriptome-Wide Identification of Cytochrome P450s in Tea Black Tussock Moth (Dasychira baibarana) and Candidate Genes Involved in Type-II Sex Pheromone Biosynthesis
作者:Wang T.;Liu X.;Luo Z.;Cai X.;Li Z.;Bian L.;Xiu C.;Chen Z.;Li Q.;Fu N.
关键词:biosynthesis;cytochrome P450s;phylogenetic analysis;RNAseq;tea black tussock moth;Type-II sex pheromone
-
Significant Improvement in Soil Organic Carbon Estimation Using Data-Driven Machine Learning Based on Habitat Patches
作者:Yu W.;Zhou W.;Wang T.;Xiao J.;Peng Y.;Li H.;Li Y.
关键词:clustering algorithm;digital soil mapping;machine learning;soil organic carbon
-
Anti-Biofilm Activity of Assamsaponin A, Theasaponin E1, and Theasaponin E2 against Candida albicans
作者:Chen Y.;Gao Y.;Li Y.;Yin J.
关键词:anti-biofilm activity;assamsaponin A;Camellia sinensis seeds;theasaponin E1;theasaponin E2;virulence factors
-
Global profiling of protein S-palmitoylation in the second-generation merozoites of Eimeria tenella
作者:Qu Z.;Li Y.;Li W.;Zhang N.;Olajide J.S.;Mi X.;Fu B.
关键词:Bioiological process;E. tenella;Protein acylation;The second-generation merozoites
-
Interpretation of the Yak Skin Single-Cell Transcriptome Landscape
作者:Zheng Q.;Ye N.;Bao P.;Wang T.;Ma C.;Chu M.;Wu X.;Kong S.;Guo X.;Liang C.;Pan H.;Yan P.
关键词:cell fate decision;fibroblasts;scRNA-seq;yak
-
Cattle manure hydrochar posed a higher efficiency in elevating tomato productivity and decreasing greenhouse gas emissions than plant straw hydrochar in a coastal soil
作者:Wang X.;Kong Q.;Cheng Y.;Xie C.;Yuan Y.;Zheng H.;Yu X.;Yao H.;Quan Y.;You X.;Zhang C.;Li Y.
关键词:Denitrification;Fruit quality;Global warming potential;Hydrochar;Methanogenesis;Phosphorus availability
-
The maize transcription factor CCT regulates drought tolerance by interacting with Fra a 1, E3 ligase WIPF2, and auxin response factor Aux/IAA8
作者:Zhang Z.;Qu J.;Lu M.;Zhao X.;Xu Y.;Wang L.;Liu Z.;Shi Y.;Liu C.;Li Y.;Wang C.;Xu M.;Nan Z.;Cao Q.;Pan J.;Liu W.;Li X.;Sun Q.;Wang W.
关键词:Auxin;auxin response gene;drought tolerance;plant growth;ubiquitination;ZmCCT