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泥炭藓的生长、生产与种间竞争:温度、氮和硫处理对北方泥炭地的影响

Growth, production and interspecific competition in Sphagnum: effects of temperature, nitrogen and sulphur treatments on a boreal mire.

作者信息

Gunnarsson Urban, Granberg Gunnar, Nilsson Mats

机构信息

Department of Plant Ecology, Evolutionary Biology Centre, Uppsala University, Villavägen 14, S-752 36 Uppsala, Sweden.

Present address: Department of Biology, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.

出版信息

New Phytol. 2004 Aug;163(2):349-359. doi: 10.1111/j.1469-8137.2004.01108.x.

Abstract

•  Growth and production of Sphagnum balticum and interspecific competition between S. balticum and either Sphagnum lindbergii or transplanted Sphagnum papillosum, were studied in a 4-yr field experiment in a poor fen. •  Temperature and influxes of nitrogen (N) and sulphur (S) were manipulated in a factorial design. The mean daily air temperature was increased by 3.6°C with glasshouse enclosures. Nitrogen loads were increased 15-fold and S loads seven-fold compared with the natural loads up to influxes observed during the 1980s in south-western Sweden. •  Production of S. balticum decreased with increasing temperature and N-influx. The N treatment significantly reduced the incremental length of S. balticum, and this reduction was reinforced with time (24% in the first year to 51% in the final year). The area covered by S. lindbergii changed with time in all treatments and S. papillosum area increased significantly in the temperature-treated plots. •  Growth, production and competitive patterns change if the environmental conditions change. Increased N deposition and raised temperature may transform mires currently dominated by Sphagnum into vascular-plant-dominated mires.

摘要

• 在一个贫养泥炭地进行了为期4年的田间试验,研究了波罗的海泥炭藓的生长与生产,以及波罗的海泥炭藓与林氏泥炭藓或移植的乳头泥炭藓之间的种间竞争。• 采用析因设计对温度以及氮(N)和硫(S)的输入量进行了调控。使用温室围栏使日平均气温升高了3.6°C。与瑞典西南部20世纪80年代观测到的自然输入量相比,氮输入量增加了15倍,硫输入量增加了7倍。• 波罗的海泥炭藓的产量随温度升高和氮输入量增加而降低。氮处理显著降低了波罗的海泥炭藓的增量长度,且这种降低随时间加剧(从第一年的24%增至最后一年的51%)。在所有处理中,林氏泥炭藓覆盖的面积随时间变化,而在温度处理的样地中,乳头泥炭藓的面积显著增加。• 如果环境条件发生变化,生长、生产和竞争模式也会改变。氮沉降增加和温度升高可能会使目前以泥炭藓为主的泥炭地转变为以维管植物为主的泥炭地。

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