首页> 外文期刊>Forests >Topography- and Species-Dependent Climatic Responses in Radial Growth of Picea meyeri and Larix principis-rupprechtii in the Luyashan Mountains of North-Central China
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Topography- and Species-Dependent Climatic Responses in Radial Growth of Picea meyeri and Larix principis-rupprechtii in the Luyashan Mountains of North-Central China

机译:华北芦芽山青海云杉和华北落叶松径向生长的地形和物种相关气候响应

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Dendroecological techniques were used to examine the relationships between topographic aspects, climate factors and radial growth of Picea meyeri and Larix principis-rupprechtii in Luyashan Mountains, North-Central China. Four sites were selected at timberline and totally 67 trees and 134 cores were collected. Pearson correlation and regression surface analysis were conducted to reveal the growth-climate relationships. The results indicated that the two species both showed significant negative correlations with temperature during preceding November on the two topographic aspects. On both slope aspects, growth of P. meyeri exhibited significant negative correlations with precipitation in current June, whereas growth of L. principis-rupprechtii showed significant negative correlations with precipitation in preceding September. On north-facing slope, tree growth was limited by low temperature in early growing season, which not shown on south-facing slope. If climate warming continues, L. principis-rupprechtii may be more favored and a reverse between relationships with temperature and precipitation maybe occur in growth of trees. Treeline position on the north-facing slope may possess a greater potential for elevation shifting than the south-facing slope. Our results supply useful information for discussing the potential effect of future climate on the forest growth in North-Central China.
机译:利用树状生态学技术研究了华北中部芦芽山的云杉和华北落叶松的地形,气候因素与径向生长之间的关系。在林线选择了四个地点,总共收集了67棵树和134个核心。进行了Pearson相关和回归表面分析,以揭示生长与气候的关系。结果表明,在11月的两个地形方面,这两个物种均与温度呈显着负相关。在两个坡度上,P。meyeri的增长与当前6月的降水呈显着负相关,而L. principis-rupprechtii的增长与9月之前的降水呈显着负相关。在北坡,树木生长受到早期生长季节的低温的限制,而在南坡上没有显示。如果气候继续变暖,则可能更有利于L. principis-rupprechtii,并且树木生长中与温度和降水之间的关系可能会发生逆转。朝北的斜坡上的林线位置可能比朝南的斜坡上具有更大的海拔升高潜力。我们的结果为讨论未来气候对中国中北部森林生长的潜在影响提供了有用的信息。

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