globalchange  > 影响、适应和脆弱性
DOI: 10.1088/1748-9326/10/4/044008
论文题名:
Deepened winter snow increases stem growth and alters stem δ13C and δ15N in evergreen dwarf shrub Cassiope tetragona in high-arctic Svalbard tundra
作者: Daan Blok; Stef Weijers; Jeffrey M Welker; Elisabeth J Cooper; Anders Michelsen; Jörg Löffler; Bo Elberling
刊名: Environmental Research Letters
ISSN: 1748-9326
出版年: 2015
发表日期: 2015-04-14
卷: 10, 期:4
语种: 英语
英文摘要:

Deeper winter snow is hypothesized to favor shrub growth and may partly explain the shrub expansion observed in many parts of the arctic during the last decades, potentially triggering biophysical feedbacks including regional warming and permafrost thawing. We experimentally tested the effects of winter snow depth on shrub growth and ecophysiology by measuring stem length and stem hydrogen (δ2H), carbon (δ13C), nitrogen (δ15N) and oxygen (δ18O) isotopic composition of the circumarctic evergreen dwarf shrub Cassiope tetragona growing in high-arctic Svalbard, Norway. Measurements were carried out on C. tetragona individuals sampled from three tundra sites, each representing a distinct moisture regime (dry heath, meadow, moist meadow). Individuals were sampled along gradients of experimentally manipulated winter snow depths in a six-year old snow fence experiment: in ambient (c. 20 cm), medium (c. 100 cm), and deep snow (c. 150 cm) plots. The deep-snow treatment consistently and significantly increased C. tetragona growth during the 2008–2011 manipulation period compared to growth in ambient-snow plots. Stem δ15N and stem N concentration values were significantly higher in deep-snow individuals compared to individuals growing in ambient-snow plots during the course of the experiment, suggesting that soil N-availability was increased in deep-snow plots as a result of increased soil winter N mineralization. Although inter-annual growing season-precipitation δ2H and stem δ2H records closely matched, snow depth did not change stem δ2H or δ18O, suggesting that water source usage by C. tetragona was unaltered. Instead, the deep insulating snowpack may have protected C. tetragona shrubs against frost damage, potentially compensating the detrimental effects of a shortened growing season and associated phenological delay on growth. Our findings suggest that an increase in winter precipitation in the High Arctic, as predicted by climate models, has the potential to alter the growth and ecophysiology of evergreen shrub C. tetragona through changes in plant mineral nutrition and frost damage protection.

URL: http://iopscience.iop.org/article/10.1088/1748-9326/10/4/044008
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/14142
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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作者单位: Center for Permafrost (CENPERM), Department of Geosciences and Natural Resource Management, University of Copenhagen, Copenhagen, Denmark;Department of Geography, University of Bonn, Bonn, Germany;Department of Biological Sciences, University of Alaska, Anchorage, AK, USA;Department of Arctic and Marine Biology, Faculty of Biosciences, Fisheries and Economics, UiT The Arctic University of Norway;Center for Permafrost (CENPERM), Department of Geosciences and Natural Resource Management, University of Copenhagen, Copenhagen, Denmark;Department of Biology, University of Copenhagen, Copenhagen, Denmark;Department of Geography, University of Bonn, Bonn, Germany;Center for Permafrost (CENPERM), Department of Geosciences and Natural Resource Management, University of Copenhagen, Copenhagen, Denmark

Recommended Citation:
Daan Blok,Stef Weijers,Jeffrey M Welker,et al. Deepened winter snow increases stem growth and alters stem δ13C and δ15N in evergreen dwarf shrub Cassiope tetragona in high-arctic Svalbard tundra[J]. Environmental Research Letters,2015-01-01,10(4)
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