Long-Term Fertilization Alters Nitrous Oxide Cycling Dynamics in Salt Marsh Sediments

被引:11
作者
Peng, Xuefeng [1 ,7 ]
Ji, Qixing [1 ,2 ]
Angell, John H. [3 ,4 ]
Kearns, Patrick J. [3 ,5 ]
Bowen, Jennifer L. [3 ,6 ]
Ward, Bess B. [1 ]
机构
[1] Princeton Univ, Dept Geosci, Princeton, NJ 08544 USA
[2] Sun Yat Sen Univ, Sch Marine Sci, Zhuhai 519082, Guangdong, Peoples R China
[3] Univ Massachusetts, Dept Biol, Boston, MA 02125 USA
[4] Boston Univ, Dept Biol, Boston, MA 02125 USA
[5] Fisher Coll, Dept Biol, Boston, MA 02125 USA
[6] Northeastern Univ, Marine Sci Ctr, Dept Marine & Environm Sci, Nahant, MA 01908 USA
[7] Univ South Carolina, Sch Earth Ocean & Environm, Columbia, SC 29208 USA
基金
美国国家科学基金会;
关键词
nitrous oxide; nitrification; denitrification; salt marsh sediments; eutrophication; N-15-tracer; numerical modeling; MICROBIAL COMMUNITY COMPOSITION; NITRIC-OXIDE; COASTAL WETLAND; HYDROXYLAMINE; NUTRIENT; DENITRIFICATION; NITRIFICATION; EUTROPHICATION; NITRATE; N2O;
D O I
10.1021/acs.est.1c01542
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Salt marsh sediments are known hotspots for nitrogen cycling, including the production and consumption of nitrous oxide (N2O), a potent greenhouse gas and ozone-depleting agent. Coastal eutrophication, particularly elevated nitrogen loading from the application of fertilizers, is accelerating nitrogen cycling processes in salt marsh sediments. Here, we examine the impact of long-term fertilization on nitrogen cycling processes with a focus on N2O dynamics in a New England salt marsh. By combining N-15-tracer experiments with numerical modeling, we found that both nitrification and denitrification contribute to net N2O production in fertilized sediments. Long-term fertilization increased the relative importance of nitrification to N2O production, likely a result of increased oxygen penetration from nutrient-induced increases in marsh elevation. Substrate utilization rates of key nitrogen cycling processes revealed links between functions and the corresponding microbial communities. Higher specific substrate utilization rates leading to N2O production from nitrification in fertilized sediments indicate a shift in the community composition of ammonia oxidizers, whereas the lack of change in specific substrate utilization of N2O production from denitrification under long-term fertilization suggests resilience of the denitrifying communities. Both are consistent with previous studies on the functional gene community composition in these experimental plots.
引用
收藏
页码:10832 / 10842
页数:11
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