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普达措国家公园2个针叶树种径向生长对温度和降水的响应
引用本文:张贇,尹定财,张卫国,岳海涛,杜杰次丹,李秋平,杨荣,田昆.普达措国家公园2个针叶树种径向生长对温度和降水的响应[J].生态学报,2018,38(15):5383-5392.
作者姓名:张贇  尹定财  张卫国  岳海涛  杜杰次丹  李秋平  杨荣  田昆
作者单位:西南林业大学国家高原湿地研究中心;云南碧塔海省级自然保护区管理局
基金项目:国家自然科学基金项目(31600395);云南省教育厅科学研究基金项目(2015Z136,2017YJS094);云南省高原湿地科学创新团队项目(2012HC007);西南林业大学科技创新基金项目(C17139)
摘    要:基于树轮年代学方法,利用普达措国家公园海拔上、下限丽江云杉(Picea likiangensis)和长苞冷杉(Abies georgei)树轮宽度资料,构建差值年表并分析其与温度和降水的关系,阐明影响该区域2个主要针叶树种径向生长的主要气候要素。结果表明:(1)海拔下限丽江云杉径向生长同时受到温度和降水的影响:与上年11月平均温、当年生长季后期(9—10月)平均温和上年7月降水呈显著正相关;(2)海拔上限丽江云杉径向生长只受温度影响,与上年生长季后期平均温呈显著负相关,与当年生长季盛期(6—8月)平均温呈显著正相关;(3)长苞冷杉径向生长只与温度表现出显著相关性,海拔下限的生长与上年11月平均温呈显著正相关,海拔上限的生长与当年生长季盛期平均温呈显著正相关。结果可为气候变化对滇西北高原树木生长影响研究提供参考,为滇西北高原森林生态系统管理与保护提供理论依据。

关 键 词:树木年轮  海拔分布上限  海拔分布下限  丽江云杉  长苞冷杉  气候响应
收稿时间:2017/10/9 0:00:00
修稿时间:2018/3/7 0:00:00

Response of radial growth of two conifers to temperature and precipitation in Potatso National Park, Southwest China
ZHANG Yun,YIN Dingcai,ZHANG Weiguo,YUE Haitao,DU Jiecidan,LI Qiuping,YANG Rong and TIAN Kun.Response of radial growth of two conifers to temperature and precipitation in Potatso National Park, Southwest China[J].Acta Ecologica Sinica,2018,38(15):5383-5392.
Authors:ZHANG Yun  YIN Dingcai  ZHANG Weiguo  YUE Haitao  DU Jiecidan  LI Qiuping  YANG Rong and TIAN Kun
Institution:National Plateau Wetlands Research Center, Southwest Forestry University, Kunming 650000, China,National Plateau Wetlands Research Center, Southwest Forestry University, Kunming 650000, China,National Plateau Wetlands Research Center, Southwest Forestry University, Kunming 650000, China,National Plateau Wetlands Research Center, Southwest Forestry University, Kunming 650000, China,Administration of Yulong Snow Mountain Provincial Reserve, Lijiang 674400, China,Administration of Yulong Snow Mountain Provincial Reserve, Lijiang 674400, China,Administration of Yulong Snow Mountain Provincial Reserve, Lijiang 674400, China and National Plateau Wetlands Research Center, Southwest Forestry University, Kunming 650000, China
Abstract:The Hengduan Mountain is located to the southeastern margin of the Qinghai-Tibet Plateau, which is sensitive to climate change and a hot spot for tree-ring research; it has rich biodiversity and significant climate changes, so it plays an important role in climate change research. Up to now, tree-ring research in this area concentrated on the upper distributional limits, however the systematic study of both the upper and lower distributional limits was out of focus. Based on the dendrochronological method, we established the residual chronologies of Picea likiangensis and Abies georgei at their upper and lower distributional limits by using tree-ring width data, and studied the relationship between the residual chronologies, temperature and precipitation. The study can identify the key climatic factors that affect the radial growth of two conifers. The results showed that:(1) The radial growth of Picea likiangensis was affected by both temperature and precipitation at its lower limits; there were significant and positive correlations between its growth and November mean temperature (Tmean) in the previous year, Tmean of post growing season (September-October) in the current year and July precipitation in previous year. (2) The radial growth of Picea likiangensis was only affected by temperature at its upper limits, by showing a negative correlation with Tmean of post growing season in the previous year, and a significantly positive correlation with Tmean of growing season (June-August) in the current year. (3) The radial growth of Abies georgei was only correlated with temperature. November Tmean in the previous year and growing season Tmean in the current year positively affected its growth at lower and upper distributional limits respectively. The results of this paper can offer a reference for the study in effects of climate change on tree growth in Northwest Yunnan Plateau, and provide a theoretical basis for the management and protection of forest ecosystems in the area.
Keywords:dendrochronology  upper distributional limits  lower distributional limits  Picea likiangensis  Abies georgei  climate response
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