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小兴安岭红松和鱼鳞云杉径向生长对气候变化的响应

于健 刘琪璟 周光 孟盛旺 周华 徐振招 史景宁 杜文先

应用生态学报2017,Vol.28Issue(11):3451-3460,10.
应用生态学报2017,Vol.28Issue(11):3451-3460,10.DOI:10.13287/j.1001-9332.201711.008

小兴安岭红松和鱼鳞云杉径向生长对气候变化的响应

Response of radial growth of Pinus koraiensis and Picea jezoensis to climate change in Xiaoxing'anling Mountains, Northeast China

于健 1刘琪璟 2周光 1孟盛旺 1周华 1徐振招 1史景宁 1杜文先1

作者信息

  • 1. 北京林业大学林学院,北京100083
  • 2. 江苏农林职业技术学院,江苏句容212400
  • 折叠

摘要

Abstract

Based on dendrochronological methods,we established residual chronologies of Pinus koraiensis and Picea jezoensis,with the dominant species of broadleaved Korean pine mixed forest at low altitudes chosen as the research object,to identify the key climatic factors affecting the radial growth of the two species in Xiaoxing'anling Mountains,Northeast China.The results showed that the responses of the two species to climate factors were different,and P.koraiensis was more sensitive,and hence more suitable for dendroclimatological analysis.Response function coefficients indicated that the radial growth of P.koraiensis negatively correlated with June mean temperature of current year,while positively correlated with precipitation in June of current year.There was no significant correlation between P.jezoensis and all climate variables.Spatial correlation analysis revealed that variations in chronology of P.koraiensis contained strong regional signals,and the highest correlation occurred in the vicinity of the study area.Warming caused drought stress,which was the main factor that limited the growth of P.koraiensis,and it might have adverse effects on the Korean pine if global temperature continues to increase.The coupling effects of large-scale atmosphericoceanic variability may affect the radial growth of P.koraiensis in Xiaoxing'anling Mountains.

关键词

小兴安岭/红松/径向生长/气候变化/干旱胁迫

Key words

Xiaoxing'anling Mountains/Pinus koraiensis/radial growth/climate change/drought stress

引用本文复制引用

于健,刘琪璟,周光,孟盛旺,周华,徐振招,史景宁,杜文先..小兴安岭红松和鱼鳞云杉径向生长对气候变化的响应[J].应用生态学报,2017,28(11):3451-3460,10.

基金项目

本文由国家自然科学基金项目(31670436)资助 This work was supported by the National Natural Science Foundation of China (31670436). (31670436)

应用生态学报

OA北大核心CSCDCSTPCD

1001-9332

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