芦苇
盐沼
氮气
生物地球化学循环
盐(化学)
环境科学
氮气循环
沼泽
生态系统
农学
环境化学
植物
化学
生态学
生物
湿地
有机化学
物理化学
作者
Chunyu Zhao,Songlin Liu,Xiaoli Zhang,E Meng,Yan Tang,Zhang Fen,Yang Liu,Peter I Macreadie
标识
DOI:10.1016/j.scitotenv.2024.174396
摘要
Salt marsh has an important 'purification' role in coastal ecosystems by removing excess nitrogen that could otherwise harm aquatic life and reduce water quality. Recent studies suggest that salt marsh root exudates might be the 'control centre' for nitrogen transformation, but empirical evidence is lacking. Here we sought to estimate the direction and magnitude of nitrogen purification by salt marsh root exudates and gain a mechanistic understanding of the biogeochemical transformation pathway(s). To achieve this, we used a laboratory incubation to quantify both the root exudates and soil nitrogen purification rates, in addition to the enzyme activities and functional genes under Phragmites australis populations with different nitrogen forms addition (NO
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