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Seasonal climate manipulations have only minor effects on litter decomposition rates and N dynamics but strong effects on litter P dynamics of sub-arctic bog species

机译:季节性气候操纵对亚北极沼泽种类的凋落物分解速率和氮动态影响很小但对凋落物P动态影响很大。

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摘要

Litter decomposition and nutrient mineralization in high-latitude peatlands are constrained by low temperatures. So far, little is known about the effects of seasonal components of climate change (higher spring and summer temperatures, more snow which leads to higher winter soil temperatures) on these processes. In a 4-year field experiment, we manipulated these seasonal components in a sub-arctic bog and studied the effects on the decomposition and N and P dynamics of leaf litter of Calamagrostis lapponica, Betula nana, and Rubus chamaemorus, incubated both in a common ambient environment and in the treatment plots. Mass loss in the controls increased in the order Calamagrostis < Betula < Rubus. After 4 years, overall mass loss in the climate-treatment plots was 10 % higher compared to the ambient incubation environment. Litter chemistry showed within each incubation environment only a few and species-specific responses. Compared to the interspecific differences, they resulted in only moderate climate treatment effects on mass loss and these differed among seasons and species. Neither N nor P mineralization in the litter were affected by the incubation environment. Remarkably, for all species, no net N mineralization had occurred in any of the treatments during 4 years. Species differed in P-release patterns, and summer warming strongly stimulated P release for all species. Thus, moderate changes in summer temperatures and/or winter snow addition have limited effects on litter decomposition rates and N dynamics, but summer warming does stimulate litter P release. As a result, N-limitation of plant growth in this sub-arctic bog may be sustained or even further promoted.
机译:高温限制了高纬度泥炭地的凋落物分解和营养物矿化。到目前为止,人们对气候变化的季节性因素(春季和夏季的较高温度,更多的积雪导致冬季较高的土壤温度)的影响知之甚少。在一项为期4年的田间试验中,我们在一个亚北极沼泽中操纵了这些季节性成分,并研究了在共同培养下的Calamagrostis lapponica,Betula nana和Rubus chamaemorus凋落物的分解以及N和P动态的影响。周围环境和治疗区。对照中的质量损失按Calamagrostis

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