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Effects of long-term nitrogen and phosphorus addition on plant defence compounds in a freshwater wetland

机译:长期添加氮磷对淡水湿地植物防御化合物的影响

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摘要

Prominent theories of plant defence have predicted that alleviating nutrient limitation will result in decreased production of defence compounds. Yet effects of nutrient addition on plant defence compounds have been found to vary, and research on plant resource allocation in different organs in response to long-term nutrient addition is limited. In this study, we aimed to elucidate effects of 12-yr nitrogen (N) addition and 10-yr phosphorus (P) addition on plant defence compounds (total polyphenols, condensed tannins, cellulose and lignin) in both leaves and stems of dominant specieGlyceria spiculosain a freshwater wetland in the Sanjiang Plain, Northeast China. Both N addition and P addition reduced the production of defence compounds in plant leaves, but increased the production of lignin in the stems. Notably, the concentrations of plant secondary metabolites closely correlated with the plant C:N:P stoichiometric ratios. The results suggest that long-term nutrient addition can alter plant carbon allocation to C-based defence compounds, and thus potentially exert influences on nutrient cycling and ecological processes in freshwater wetlands.
机译:著名的植物防御理论已经预测,减轻养分限制将导致防御化合物产量下降。然而,已经发现养分添加对植物防御化合物的影响是多种多样的,并且对响应长期养分添加的不同器官中植物资源分配的研究是有限的。在这项研究中,我们旨在阐明添加12年的氮(N)和添加10年的磷(P)对优势树种叶片和茎中植物防御化合物(总多酚,缩合单宁,纤维素和木质素)的影响。 spiculosain是中国东北三江平原的淡水湿地。氮和磷的添加均降低了植物叶片中防御化合物的产生,但增加了茎中木质素的产生。值得注意的是,植物次生代谢产物的浓度与植物C:N:P化学计量比密切相关。结果表明,长期添加养分可以改变植物碳在碳基防御化合物中的分配,从而可能对淡水湿地的养分循环和生态过程产生影响。

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