How do Elevated CO2 and Nitrogen Addition Affect Functional Microbial Community Involved in Greenhouse Gas Flux in Salt Marsh System

被引:12
作者
Lee, Seung-Hoon [1 ]
Megonigal, Patrick J. [2 ]
Kang, Hojeong [1 ]
机构
[1] Yonsei Univ, Sch Civil & Environm Engn, Seoul 120749, South Korea
[2] Smithsonian Environm Res Ctr, Washington, DC 20013 USA
关键词
Salt marsh; Elevated CO2; Naddition; Functional microbial community; C3/C4; plant; ATMOSPHERIC CO2; BACTERIA; ABUNDANCE; RESPONSES; VEGETATION; ECOSYSTEM; IMPACTS; GENES; SOILS;
D O I
10.1007/s00248-017-0960-8
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Salt marshes are unique ecosystem of which a microbial community is expected to be affected by global climate change. In this study, by using T-RFLP analysis, quantitative PCR, and pyrosequencing, we comprehensively analyzed the microbial community structure responding to elevated CO2 (eCO(2)) and N addition in a salt marsh ecosystem subjected to CO2 manipulation and N addition for about 3 years. We focused on the genes of microbes relevant to N-cycling (denitrification and nitrification), CH4-flux (methanogens and methanotrophs), and S-cycling (sulfate reduction) considering that they are key functional groups involved in the nutrient cycle of salt marsh system. Overall, this study suggests that (1) eCO(2) and N addition affect functional microbial community involved in greenhouse gas flux in salt marsh system. Specifically, the denitrification process may be facilitated, while the methanogenesis may be impeded due to the outcompeting of sulfate reduction by eCO(2) and N. This implies that future global change may cause a probable change in GHGs flux and positive feedback to global climate change in salt marsh; (2) the effect of eCO(2) and N on functional group seems specific and to contrast with each other, but the effect of single factor would not be compromised but complemented by combination of two factors. (3) The response of functional groups to eCO(2) and/or N may be directly or indirectly related to the plant community and its response to eCO(2) and/or N. This study provides new insights into our understanding of functional microbial community responses to eCO(2) and/or N addition in a C3/C4 plant mixed salt marsh system.
引用
收藏
页码:670 / 680
页数:11
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