中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Attribution of seasonal leaf area index trends in the northern latitudes with "optimally" integrated ecosystem models

文献类型:期刊论文

作者Zhu, ZC (Zhu, Zaichun)1; Piao, SL (Piao, Shilong)1,2; Lian, X (Lian, Xu)1; Myneni, RB (Myneni, Ranga B.)3; Peng, SS (Peng, Shushi)1; Yang, H (Yang, Hui)1; Piao, SL
刊名GLOBAL CHANGE BIOLOGY
出版日期2017
卷号23期号:11页码:4798-4813
关键词Vegetation Greening Trend Xilingol Steppe Region Net Primary Production Water-use Efficiency Land-surface Models Nitrogen Limitation Climate-change Primary Productivity Multimodel Ensemble Inner-mongolia
DOI10.1111/gcb.13723
文献子类Article
英文摘要Significant increases in remotely sensed vegetation indices in the northern latitudes since the 1980s have been detected and attributed at annual and growing season scales. However, we presently lack a systematic understanding of how vegetation responds to asymmetric seasonal environmental changes. In this study, we first investigated trends in the seasonal mean leaf area index (LAI) at northern latitudes (north of 30 degrees N) between 1982 and 2009 using three remotely sensed long-term LAI data sets. The most significant LAI increases occurred in summer (0.009 m(2) m(-2) year(-1), p<.01), followed by autumn (0.005 m(2) m(-2) year(-1), p<.01) and spring (0.003 m(2) m(-2) year(-1), p<.01). We then quantified the contribution of elevating atmospheric CO2 concentration (eCO(2)), climate change, nitrogen deposition, and land cover change to seasonal LAI increases based on factorial simulations from 10 state-of-the-art ecosystem models. Unlike previous studies that used multimodel ensemble mean (MME), we used the Bayesian model averaging (BMA) to optimize the integration of model ensemble. The optimally integrated ensemble LAI changes are significantly closer to the observed seasonal LAI changes than the traditional MME results. The BMA factorial simulations suggest that eCO(2) provides the greatest contribution to increasing LAI trends in all seasons (0.003-0.007 m(2) m(-2) year(-1)), and is the main factor driving asymmetric seasonal LAI trends. Climate change controls the spatial pattern of seasonal LAI trends and dominates the increase in seasonal LAI in the northern high latitudes. The effects of nitrogen deposition and land use change are relatively small in all seasons (around 0.0002 m(2) m(-2) year(-1) and 0.0001-0.001 m(2) m(-2) year(-1), respectively). Our analysis of the seasonal LAI responses to the interactions between seasonal changes in environmental factors offers a new perspective on the response of global vegetation to environmental changes.
学科主题普通生物学
WOS研究方向Biodiversity & Conservation; Environmental Sciences & Ecology
语种英语
WOS记录号WOS:000412322700030
源URL[http://ir.itpcas.ac.cn/handle/131C11/7958]  
专题青藏高原研究所_图书馆
通讯作者Piao, SL
作者单位1.Peking Univ, Sinofrench Inst Earth Syst Sci, Coll Urban & Environm Sci, Beijing, Peoples R China.
2.Chinese Acad Sci, Inst Tibetan Plateau Res, CAS Ctr Excellence Tibetan Plateau Earth Sci, Key Lab Alpine Ecol & Biodivers, Beijing, Peoples R China.
3.Boston Univ, Dept Earth & Environm, Boston, MA 02215 USA.
推荐引用方式
GB/T 7714
Zhu, ZC ,Piao, SL ,Lian, X ,et al. Attribution of seasonal leaf area index trends in the northern latitudes with "optimally" integrated ecosystem models[J]. GLOBAL CHANGE BIOLOGY,2017,23(11):4798-4813.
APA Zhu, ZC .,Piao, SL .,Lian, X .,Myneni, RB .,Peng, SS .,...&Piao, SL.(2017).Attribution of seasonal leaf area index trends in the northern latitudes with "optimally" integrated ecosystem models.GLOBAL CHANGE BIOLOGY,23(11),4798-4813.
MLA Zhu, ZC ,et al."Attribution of seasonal leaf area index trends in the northern latitudes with "optimally" integrated ecosystem models".GLOBAL CHANGE BIOLOGY 23.11(2017):4798-4813.

入库方式: OAI收割

来源:青藏高原研究所

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