Sediment nitrate dissimilatory reduction processes in the river-lake ecotone of Poyang Lake, China: Mechanisms and environmental implications

被引:0
作者
Jiang, Yinghui [1 ,2 ]
Xie, Zhenglei [3 ]
Ding, Mingjun [1 ,2 ]
Zhang, Hua [1 ,2 ]
Huang, Gaoxiang [1 ,2 ]
Cao, Yun [1 ,2 ]
Yin, Guoyu [4 ]
机构
[1] Jiangxi Normal Univ, Sch Geog & Environm, Nanchang 330022, Peoples R China
[2] Minist Educ Jiangxi, Key Lab Poyang Lake Wetland & Watershed Res, Nanchang 330022, Peoples R China
[3] Nanjing Normal Univ, Coll Marine Sci & Engn, Nanjing 210023, Peoples R China
[4] East China Normal Univ, Minist Educ, Sch Geog Sci, Key Lab Geog Informat Sci, 500 Dongchuan Rd, Shanghai 200241, Peoples R China
关键词
Dissimilatory nitrate reduction; N2O; Sediment; Poyang Lake; NETWORKS SPATIOTEMPORAL VARIATIONS; AMMONIUM DNRA; STREAM SEDIMENTS; SUBTROPICAL LAKE; ORGANIC-CARBON; NITROGEN-CYCLE; PADDY SOILS; HAN RIVER; DENITRIFICATION; DYNAMICS;
D O I
10.1007/s11368-024-03890-y
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Purpose The river-lake ecotone in lake ecosystems can strongly influence sediment nitrate dissimilatory reduction processes. However, the mechanisms underlying these processes in river-lake ecotone ecosystems are still poorly understood. This study aims to investigate the rates of sediment nitrate dissimilatory reduction processes in Poyang Lake and clarify the mechanisms and environmental implications of these processes. Materials and methods Sediment samples from five river-lake ecotones and lake ecosystems were collected from Poyang Lake, China. Sediment nitrate reduction and N2O production rates were measured using N-15 isotope tracing experiments. The abundance of denitrifiers, anammox 16S rRNA bacteria, and nrfA genes was quantified using the polymerase chain reaction method. Correlation analysis, redundancy analysis, and stepwise linear regression were used to evaluate the mechanisms of sediment nitrate reduction processes. Results and discussion Sediments in the river-lake ecotone showed significantly higher denitrification (DEN), N2O production, dissimilatory nitrate reduction to ammonium (DNRA), and anammox rates compared to lake ecosystems. DEN was the dominant process contributing to nitrate reduction, accounting for 73.36% and 74.13% in the river-lake ecotone and lake ecosystem, respectively. DEN, N2O, and DNRA rates were significantly positively correlated with TOC, sulfide, and Fe2+ contents, which control the abundance of denitrifying and nrfA genes, ultimately increasing these rates. Conclusion The annual input of reactive N to the lake from the watershed is almost equivalent to the annual N removal. However, higher DNRA and N2O production rates indicate that approximately 23.59% of the annual N input to the lake may be transformed to NH4+ or N2O. N retention and N2O production in the river-lake ecotone significantly exceed those in the lake ecosystem, highlighting the ecotone as a hotspot for eutrophication risk and N2O emissions.
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收藏
页码:3515 / 3529
页数:15
相关论文
共 68 条
  • [41] Influence of bioturbation on denitrification and dissimilatory nitrate reduction to ammonium (DNRA) in freshwater sediments
    Nogaro, Geraldine
    Burgin, Amy J.
    [J]. BIOGEOCHEMISTRY, 2014, 120 (1-3) : 279 - 294
  • [42] Abiotic and microbial interactions during anaerobic transformations of Fe(II) and NOX-
    Picardal, Flynn
    [J]. FRONTIERS IN MICROBIOLOGY, 2012, 3
  • [43] Nitrogen reduction pathways in estuarine sediments: Influences of organic carbon and sulfide
    Plummer, Patrick
    Tobias, Craig
    Cady, David
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2015, 120 (10) : 1958 - 1972
  • [44] Sediment, water column, and open-channel denitrification in rivers measured using membrane-inlet mass spectrometry
    Reisinger, Alexander J.
    Tank, Jennifer L.
    Hoellein, Timothy J.
    Hall, Robert O., Jr.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2016, 121 (05) : 1258 - 1274
  • [45] Gross N transformations vary with soil moisture and time following urea deposition to a pasture soil
    Rex, David
    Clough, Timothy J.
    Lanigan, Gary J.
    Jansen-Willems, Anne B.
    Condron, Leo M.
    Richards, Karl G.
    Mueller, Christoph
    [J]. GEODERMA, 2021, 386
  • [46] Denitrification and N2O:N2 production in temperate grasslands: Processes, measurements, modelling and mitigating negative impacts
    Saggar, Surinder
    Jha, N.
    Deslippe, J.
    Bolan, N. S.
    Luo, J.
    Giltrap, D. L.
    Kim, D. -G.
    Zaman, M.
    Tillman, R. W.
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2013, 465 : 173 - 195
  • [47] Thresholds of lake and reservoir connectivity in river networks control nitrogen removal
    Schmadel, Noah M.
    Harvey, Judson W.
    Alexander, Richard B.
    Schwarz, Gregory E.
    Moore, Richard B.
    Eng, Ken
    Gomez-Velez, Jesus D.
    Boyer, Elizabeth W.
    Scott, Durelle
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [48] Dissimilatory Nitrate Reduction Processes in Typical Chinese Paddy Soils: Rates, Relative Contributions, and Influencing Factors
    Shan, Jun
    Zhao, Xu
    Sheng, Rong
    Xia, Yongqiu
    Ti, Chaopu
    Quan, Xiaofei
    Wang, Shuwei
    Wei, Wenxue
    Yan, Xiaoyuan
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2016, 50 (18) : 9972 - 9980
  • [49] Enhanced hyporheic exchange flow around woody debris does not increase nitrate reduction in a sandy streambed
    Shelley, Felicity
    Klaar, Megan
    Krause, Stefan
    Trimmer, Mark
    [J]. BIOGEOCHEMISTRY, 2017, 136 (03) : 353 - 372
  • [50] Physiological function and catalytic versatility of bacterial multihaem cytochromes c involved in nitrogen and sulfur cycling
    Simon, Joerg
    Kern, Melanie
    Hermann, Bianca
    Einsle, Oliver
    Butt, Julea N.
    [J]. BIOCHEMICAL SOCIETY TRANSACTIONS, 2011, 39 : 1864 - 1870