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首页> 外文期刊>Plant Ecology >Stratospheric ozone depletion: high arctic tundra plant growth on Svalbard is not affected by enhanced UV-B after 7 years of UV-B supplementation in the field
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Stratospheric ozone depletion: high arctic tundra plant growth on Svalbard is not affected by enhanced UV-B after 7 years of UV-B supplementation in the field

机译:平流层臭氧消耗:在田间补充紫外线-B 7年后,斯瓦尔巴群岛上北极苔原植物的高生长不受紫外线-B增强的影响

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摘要

The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was studied at two high arctic sites (Isdammen and Adventdalen, 781N, Svalbard).The set-up of the UV-B supplementation systems is described, consisting of large and small UV lamp arrays, installed in 1996 and 2002. After 7 years of exposure to enhanced UV-B radiation, plant cover, density, morphological (leaf fresh and dry weight, leaf thickness, leaf area, reproductive and ecophysiological parameters leafUV-B absor-bance, leaf phenolic content, leaf water content) were not affected by enhanced UV-B radiation. DNA damage in the leaves was not increased with enhanced UV-B in Salix polaris and Cassiope tetragona. DNA damage in Salix polaris leaves was higher than in leaves of C. tetragona. The length of male garnetophyte moss plants of Polytrichum hyperboreum was reduced with elevated UV-B as well as the number of Pedicularis hirsuta plants per plot, but the inflorescence length of Bistorta vivipara was not significantly affected. We discuss the possible causes of tolerance of tundra plants to UV-B (absence of response to enhanced UV-B) in terms of methodology (supplementation versus exclusion), ecophysiological adaptations to UV-B and the biogeographicalhistory of polar plants
机译:在两个高北极地区(Isdammen和Adventdalen,781N,斯瓦尔巴特群岛),研究了苔原植物对模拟的15%和30%臭氧消耗的增强UV-B辐射的响应,描述了UV-B补充系统的设置,包括分别于1996年和2002年安装的大型和小型UV灯阵列。经过增强的UV-B辐射,植物覆盖,密度,形态(叶鲜,干重,叶厚度,叶面积,生殖和生态生理参数)暴露7年后-B吸收率,叶片酚含量,叶片含水量)不受增强的UV-B辐射的影响。在北极柳和仙后草中,UV-B的增强不会增加叶片中的DNA损伤。柳树叶片的DNA损伤程度高于四角锥虫叶片。 UV-B升高以及每块地平蓬草植物的数量减少了高杆male的男性石榴生苔植物的长度,但比斯托亚(Bistorta vivipara)的花序长度并未受到明显影响。我们从方法论(补充与排除),对UV-B的生态生理适应性和极地植物的生物地理历史方面讨论了苔原植物对UV-B耐受的可能原因(缺乏对增强的UV-B的响应)

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