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Vegetation cover regulates the quantity, quality and temporal dynamics of dissolved organic carbon and nitrogen in Antarctic soils

机译:植被覆盖调节南极土壤中溶解的有机碳和氮的数量,质量和时间动态

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Populations of the two native Antarctic vascular plant species (Deschampsia antarctica and Colobanthus quitensis) have expanded rapidly in recent decades, yet little is known about the effects of these expansions on soil nutrient cycling. We measured the concentrations of dissolved organic carbon (DOC) and nitrogen (DON), amino acids and inorganic N in soils under these two vascular plant species, and under mosses and lichens, over a growing season at Signy Island in the maritime Antarctic. We recorded higher concentrations of nitrate, total dissolved nitrogen, DOC, DON and free amino acids in soil under D. antarctica and C. quitensis than in lichen or moss dominated soils. Each vegetation cover gave a unique profile of individual free amino acids in soil solution. Significant interactions between soil type and time were found for free amino acid concentrations and C/N ratios, indicating that vascular plants significantly change the temporal dynamics of N mineralization and immobilization. We conclude that D. antarctica and C. quitensis exert a significant influence over C and N cycling in the maritime Antarctic, and thatrntheir recent population expansion will have led to significant changes in the amount, type and rate of organic C and N cycling in soil.
机译:在最近的几十年中,两种南极本土维管植物物种(南极地香(Deschampsia antarctica)和西番莲(Colobanthus quitensis))的种群迅速增长,但这些扩展对土壤养分循环的影响知之甚少。我们测量了南极海域Signy岛上生长季节下这两种维管植物,苔藓和地衣下土壤中溶解的有机碳(DOC)和氮(DON),氨基酸和无机氮的浓度。我们记录的南极D.和C. quitensis下土壤中的硝酸盐,总溶解氮,DOC,DON和游离氨基酸的浓度高于地衣或苔藓为主的土壤。每个植被覆盖物都给出了土壤溶液中单个游离氨基酸的独特分布。发现土壤类型和时间之间的显着相互作用是游离氨基酸浓度和C / N比,表明维管植物显着改变了N矿化和固定化的时间动态。我们得出的结论是,南极D.和C. quitensis对海上南极的C和N循环产生了重大影响,并且它们最近的种群扩展将导致土壤中有机C和N循环的数量,类型和速率发生重大变化。 。

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