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首页> 外文期刊>Arctic, antarctic, and alpine research >Effects of simulated climate change on plant phenology and nitrogen mineralization in Alaskan arctic Tundra
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Effects of simulated climate change on plant phenology and nitrogen mineralization in Alaskan arctic Tundra

机译:模拟气候变化对阿拉斯加北极苔原植物物候和氮矿化的影响

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摘要

This study was part of the International Tundra Experiment (ITEX) and examined the effects of increased winter snow depth and decreased growing season length on the phenology of four arctic plant species (Betula nana, Salix pulchra, Eriophorum vaginatum, and Vaccinium vitis-idaea) and seasonal nitrogen availability in arctic snowbed communities. Increased snow depth had a large effect on the temporal pattern of first date snow-free in spring, bud break, and flowering, but did not affect the rate of plant development. By contrast, snow depth had a large qualitative effect on N mineralization in deep snow zones, causing a shift in the timing and amount of N mineralized compared to ambient snow zones. Nitrogen mineralization in deep snow zones occurred mainly overwinter, whereas N mineralization in ambient snow zones occurred mainly in spring. Concentrations of soil dissolved organic nitrogen (DON) were approximately 5 times greater than concentrations of inorganic nitrogen (DIN) and did not vary significantly over the season. Projected increases in the depth and duration of snow cover in arctic plant communities will likely have minor effects on the rate of plant phenological development, but potentially large effects on patterns of N cycling.
机译:这项研究是国际苔原实验(ITEX)的一部分,研究了冬季积雪深度的增加和生长季节长度的减少对四种北极植物(白桦(Betula nana),柳柳(Salix pulchra),阴道草(Eriophorum阴道)和牛痘(Vaccinium v​​itis-idaea))物候的影响。和北极雪床社区的季节性氮供应。积雪深度的增加对春季初春无雪,花蕾断裂和开花的时间格局有很大影响,但并不影响植物的生长速度。相比之下,积雪深度对深雪区的N矿化具有很大的定性影响,与周围积雪区相比,造成了N矿化的时间和数量的变化。深雪区的氮矿化主要发生在冬季,而周围雪区的氮矿化主要发生在春季。土壤溶解的有机氮(DON)的浓度大约是无机氮(DIN)的浓度的5倍,并且在整个季节中变化不大。预计北极植物群落中积雪的深度和持续时间的增加可能对植物物候发展的速度影响很小,但对氮循环模式的影响可能很大。

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