详细信息
Climatic signal in cellulose microfibril angle and tracheid radial diameter of Piceacrassifolia at different altitudes of the Tibetan plateau, northwest China ( EI收录)
文献类型:期刊文献
英文题名:Climatic signal in cellulose microfibril angle and tracheid radial diameter of Piceacrassifolia at different altitudes of the Tibetan plateau, northwest China
作者:Xu, Jinmei[1] Lu, Jianxiong[1] Evans, Robert[2] Downes, Geoffrey M.[3]
第一作者:徐金梅
通信作者:Lu, Jianxiong|[a00055bdf806ec693db9b]吕建雄;
机构:[1] State Key Laboratory of Tree Genetics and Breeding, Research Institute of Wood Industry, Chinese Academy of Forestry, Beijing, 100091, China; [2] CSIRO Materials Science and Engineering, Private Bag 10, Clayton South, VIC, 3169, Australia; [3] CSIRO Ecosystem Sciences and CRC Forestry, Private Bag 12, Hobart, TAS, 7001, Australia
年份:2015
卷号:49
期号:6
起止页码:1307-1318
外文期刊名:Wood Science and Technology
收录:EI(收录号:20152901035973);Scopus(收录号:2-s2.0-84944351475)
语种:英文
外文关键词:Climate change
摘要:Little attention was given to the climatic signals in wood properties, such as microfibril angle (MFA) and tracheid radial diameter (TRD). In this article, year-to-year variation in MFA and TRD was measured by SilviScan-3 on dated Piceacrassifolia trees growing at three altitudes in the northeastern Tibetan plateau. Climatic signals registered in MFA and TRD were analyzed using dendroclimatology methods. The annual variation of MFA and TRD was strongly linked to high-frequency climatic signals. Both MFA and TRD were negatively correlated with temperature and positively correlated with precipitation. The temperature had a similar influence on MFA and TRD at three different altitudes, while the influence of precipitation decreased with the increasing altitudes. MFA was negatively correlated with TRD, and this MFA–TRD internal relationship (Rt) varied with calendar year. Temperature and precipitation had a strong influence on Rt. Temperature was positively correlated with Rt, and precipitation was negatively correlated with Rt. The influence of temperature was stronger than that of precipitation. The influence of temperature increased with the increase in altitudes, while the influence of precipitation decreased with the increasing altitudes. Results of this study revealed that the trees could change their internal characteristics to adapt to the changing climate. ? 2015, Springer-Verlag Berlin Heidelberg.
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