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Tree-ring response of Larix chinensis on regional climate and sea-surface temperature variations in alpine timberline in the Qinling Mountains
Authors:Boqian Yan  Jian Yu  Qijing Liu  Lihua Wang  Lile Hu
Institution:Department of Plant Sciences, Beijing University of Agriculture, Beijing 110016, People's Republic of China;Forestry College, Beijing Forestry University, Tsinghua East Road No.35, Haidian District, Beijing 100083, People's Republic of China;Department of Urban Construction, Beijing City University,Beijing 100085, People's Republic of China;China Environmental Resources Technology Co., Ltd.,Beijing 100012, People's Republic of China
Abstract:Tree-ring width chronologies of Larix chinensis were developed from the northern and southern slopes of the Qinling Mountains in Shaanxi Province,and climatic factors affecting the tree-ring widths of L.chinensis were examined.Correlation analysis showed that similar correlations between tree-ring width chronologies and climatic factors demonstrated that radial growth responded to climate change on both slopes.The radial growth of L.chinensis was mainly limited by temperature,especially the growing season.In contrast,both chronologies were negatively correlated with precipitation in May of the previous year and April of the current year.Spatial climate-correlation analyses with gridded land-surface climate data revealed that our tree-ring width chronologies contained a strong regional temperature signal over much of northcentral and eastern China.Spatial correlation with seasurface temperature fields highlights the influence of the Pacific Ocean,Indian Ocean,and North Atlantic Ocean.Wavelet coherence analysis indicated the existence of some decadal and interannual cycles in the two tree-ring width chronologies.This may suggest the influences of El Nino-Southern Oscillation and solar activity on tree growth in the Qinling Mountains.These findings will help us understand the growth response of L.chinensis to climate change in the Qinling region,and they provide critical information for future climate reconstructions based on this species in semi-humid regions.
Keywords:Climate response  Dendroclimatic  Tree-ring width  L  chinensis  Qinling Mountains
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