Post Eric, Kerby Jeffrey, Pedersen Christian, Steltzer Heidi
Department of Wildlife, Fish, and Conservation Biology, University of California, Davis, One Shields Avenue, Davis, CA 95616, USA
Neukom Institute, Department of Environmental Studies, Dartmouth College, Hanover, NH, USA.
Biol Lett. 2016 Dec;12(12). doi: 10.1098/rsbl.2016.0332.
We analysed 12 years of species-specific emergence dates of plants at a Low-Arctic site near Kangerlussuaq, Greenland to investigate associations with sea ice dynamics, a potential contributor to local temperature variation in near-coastal tundra. Species displayed highly variable rates of phenological advance, from a maximum of -2.55 ± 0.17 and -2.93 ± 0.51 d yr among a graminoid and forb, respectively, to a minimum of -0.55 ± 0.19 d yr or no advance at all in the two deciduous shrub species. Monthly Arctic-wide sea ice extent was a significant predictor of emergence timing in 10 of 14 species. Despite variation in rates of advance among species, these rates were generally greatest in the earliest emerging species, for which monthly sea ice extent was also the primary predictor of emergence. Variation among species in rates of phenological advance reshuffled the phenological community, with deciduous shrubs leafing out progressively later relative to forbs and graminoids. Because early species advanced more rapidly than late species, and because rates of advance were greatest in species for which emergence phenology was associated with sea ice dynamics, accelerating sea ice decline may contribute to further divergence between early- and late-emerging species in this community.
我们分析了格陵兰康克鲁斯瓦格附近一个低北极地区12年的植物特定物种出芽日期,以研究其与海冰动态的关联,海冰动态可能是近岸苔原局部温度变化的一个因素。不同物种物候提前的速率差异很大,在一种禾本科植物和一种杂类草中,物候提前速率分别最高可达-2.55±0.17天/年和-2.93±0.51天/年,而在两种落叶灌木物种中,物候提前速率最低为-0.55±0.19天/年,甚至根本没有提前。在14个物种中的10个物种中,北极地区月度海冰范围是出芽时间的一个重要预测指标。尽管不同物种的提前速率存在差异,但这些速率通常在最早出芽的物种中最大,对于这些物种,月度海冰范围也是出芽的主要预测指标。物候提前速率在物种间的差异重新排列了物候群落,落叶灌木相对于杂类草和禾本科植物的展叶时间逐渐变晚。由于早期物种比晚期物种提前得更快,并且由于出芽物候与海冰动态相关的物种提前速率最大,海冰加速衰退可能导致该群落中早期和晚期出芽物种之间的进一步分化。