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首页> 外文期刊>Canadian Journal of Forest Research >Deer browsing effects on temperate forest soil nitrogen cycling shift from positive to negative across fertility gradients
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Deer browsing effects on temperate forest soil nitrogen cycling shift from positive to negative across fertility gradients

机译:鹿浏览对温带森林土壤氮循环从阳性生育梯度的循环转变

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摘要

Herbivores impact soil biogeochemical processes, often increasing nutrient cycling rates under high nutrient availability and decreasing nutrient cycling rates under low nutrient availability. These patterns are far from universal, and interactions between habitat fertility and herbivore effects are under continuing investigation. By sampling inside and outside a network of deer exclosures, we determined deer browsing effects on temperate forest soil nitrogen (N) and carbon (C) cycling along a gradient of soil and litter C-N ratios across our network of sites. Deer browsing increased net N mineralization rates in high nutrient environments and decreased N mineralization rates in low nutrient environments, whereas browsing decreased CO2 respiration rates in high nutrient environments and increased CO2 respiration rates in low nutrient environments. Differences in deer browsing effects on soil processes could be explained by plant responses to herbivory across gradients of resource availability. To our knowledge, our study is one of the first to show that deer browsing can have significant effects on net N mineralization and C respiration in temperate forest soils and that the direction and magnitude of deer browsing effects on soil N and C cycling vary across fertility gradients.
机译:食草动物影响土壤的生物地球化学过程,在高养分有效性条件下,往往会增加养分循环速率,而在低养分有效性条件下,则会降低养分循环速率。这些模式远未普及,栖息地肥力和食草动物效应之间的相互作用正在继续调查中。通过在鹿围封区网络内外取样,我们确定了在我们的网站网络中,鹿对温带森林土壤氮(N)和碳(C)循环的影响,沿着土壤和凋落物C-N比率的梯度。在高营养环境中,鹿的觅食增加了净氮矿化率,在低营养环境中,鹿的觅食降低了氮矿化率,而在高营养环境中,鹿的觅食降低了CO2呼吸率,在低营养环境中,鹿的觅食增加了CO2呼吸率。鹿对土壤过程影响的差异可以通过植物对草食的反应来解释。据我们所知,我们的研究首次表明,在温带森林土壤中,鹿的觅食对净N矿化和C呼吸有显著影响,鹿的觅食对土壤N和C循环的影响方向和大小在肥力梯度上有所不同。

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