The priming effects of plant leachates on dissolved organic matter degradation in water depend on leachate type and water stability

溶解有机碳 渗滤液 芦苇 环境化学 化学 生物地球化学循环 降级(电信) 环境科学 生态学 生物 计算机科学 湿地 电信
作者
Yuan Cui,Jian-Qiao Meng,Yuhan Chen,Fei-Fan Shao,Xuan-Zheng Chen,Yu Jin,Mingxiang Zhang,Yunqian Guo,Fang‐Li Luo,Fei‐Hai Yu
出处
期刊:Environmental Research [Elsevier BV]
卷期号:223: 115482-115482 被引量:6
标识
DOI:10.1016/j.envres.2023.115482
摘要

The modification of dissolved organic matter (DOM) degradation by plant carbon inputs represents a critical biogeochemical process that controls carbon dynamics. However, the priming effects (PEs) different plant tissues induce on the degradation of DOM pools with different stabilities remain unknown. In this study, PEs, induced by different tissue leachates of Phragmites australis, were evaluated via changes in DOM components and properties of both fresh and tidal water (with different stabilities). The results showed that DOM derived from different plant tissue leachates differed in composition and bioavailability. Inputs of tissue leachates induced PEs with different intensities and directions (negative or positive) on DOM degradation of fresh and tidal water. In fresh water, the PEs of leaf and root leachates were significantly higher than those of stem and rhizome leachates. The PE direction changed for DOM degradation between fresh and tidal water. The addition of leaf and root leachates tended to induce positive PEs on DOM degradation of fresh water, while resulting in negative PEs on DOM degradation of tidal water. Negative PEs for tidal water DOM may be due to preferential utilization of microbes, high salinity, and/or the promotion of exogenous DOM production from plant tissues. The results indicate that intensity and direction of PEs induced by plant leachates depend on both leachate type and water stability. The findings highlight the necessity to examine the nature of exogenous and native DOM when interpreting the interactive processes that regulate DOM degradation.
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