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利用自动相机追踪2000年至2013年北极高纬度地区植被生长模式和生态系统生产力的转变。

Transitions in high-Arctic vegetation growth patterns and ecosystem productivity tracked with automated cameras from 2000 to 2013.

作者信息

Westergaard-Nielsen Andreas, Lund Magnus, Pedersen Stine Højlund, Schmidt Niels Martin, Klosterman Stephen, Abermann Jakob, Hansen Birger Ulf

机构信息

Department of Geosciences and Natural Resource Management, University of Copenhagen, Oestervoldgade 10, 1350, Copenhagen, Denmark.

Center for Permafrost (CENPERM), University of Copenhagen, Oestervoldgade 10, 1350, Copenhagen, Denmark.

出版信息

Ambio. 2017 Feb;46(Suppl 1):39-52. doi: 10.1007/s13280-016-0864-8.

Abstract

Climate-induced changes in vegetation phenology at northern latitudes are still poorly understood. Continued monitoring and research are therefore needed to improve the understanding of abiotic drivers. Here we used 14 years of time lapse imagery and climate data from high-Arctic Northeast Greenland to assess the seasonal response of a dwarf shrub heath, grassland, and fen, to inter-annual variation in snow-cover, soil moisture, and air and soil temperatures. A late snow melt and start of growing season is counterbalanced by a fast greenup and a tendency to higher peak greenness values. Snow water equivalents and soil moisture explained up to 77 % of growing season duration and senescence phase, highlighting that water availability is a prominent driver in the heath site, rather than temperatures. We found a significant advance in the start of spring by 10 days and in the end of fall by 11 days, resulting in an unchanged growing season length. Vegetation greenness, derived from the imagery, was correlated to primary productivity, showing that the imagery holds valuable information on vegetation productivity.

摘要

人们对北半球因气候引起的植被物候变化仍知之甚少。因此,需要持续监测和研究,以加深对非生物驱动因素的理解。在此,我们利用来自格陵兰东北部高北极地区的14年延时影像和气候数据,评估矮灌木石南荒原、草原和沼泽对积雪、土壤湿度以及气温和地温年际变化的季节性响应。晚融雪和生长季开始被快速返青和更高峰值绿度值的趋势所抵消。雪水当量和土壤湿度对生长季持续时间和衰老期的解释率高达77%,突出表明水分有效性是石南荒原的一个重要驱动因素,而非温度。我们发现春季开始显著提前了10天,秋季结束提前了11天,导致生长季长度不变。从影像得出的植被绿度与初级生产力相关,表明该影像包含有关植被生产力的宝贵信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a1a/5258658/8f37a664488b/13280_2016_864_Fig1_HTML.jpg

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