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首页> 外文期刊>Forest Ecology and Management >Relationship between the radial growth of Picea meyeri and climate along elevations of the Luyashan Mountain in North-Central China.
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Relationship between the radial growth of Picea meyeri and climate along elevations of the Luyashan Mountain in North-Central China.

机译:中北部鹿崖山海拔高度上的 Picea meyeri 径向生长与气候的关系。

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摘要

Picea meyeri is an indigenous evergreen conifer tree species that dominates most of the cold evergreen coniferous forest belt vertically ranging from 1850 to 2700 m a.s.l. in North-Central China. This species is an important agent for soil and water resource conservation in mountainous regions. Based on a tree-ring analysis of 146 increment cores sampled from 73 trees at different elevations, this study aimed to reveal the relationships between the radial growth of P. meyeri and climate along an elevation gradient and to identify the optimum sites for the planting and growth of P. meyeri. The results indicated the following: (1) The low Gleichlaufigkeit (GLK) value (GLK=34.5%) between the chronology of site 1 (at an elevation of 1970 m a.s.l.) and that of site 4 (at an elevation of 2650 m a.s.l.) showed that the radial growth pattern of P. meyeri at the lower elevation, near the species' lower distribution limit, was not accordant with that at higher elevation. This differentiation in radial growth resulted from the varying climatic factors in the growing season, namely, an insufficient water supply in the summer months at lower elevations and cloudy or rainy days that may result in a shortened growing season and decreased solar radiation at higher elevations. (2) Compared to other spruce species in China in which radial growth has been studied along an altitudinal gradient, P. meyeri showed the most diversified relationships between radial growth and monthly mean temperature. Radial growth in this species showed a significant negative correlation with monthly mean temperature in May and June in the lower part of its vertical distribution belt, but this correlation disappeared at middle elevation and became significantly positive at higher elevations. In contrast, the relationship between the radial growth and the total monthly precipitation in the same period within a year displayed the opposite trend. (3) Radial growth of P. meyeri was also found to be more sensitive to climate factors at lower elevations than at higher elevations. This radial growth responded mainly to the temperature and precipitation conditions from May to July rather than from those over the whole year. (4) The large middle part (ranging from 2100 to 2500 m in elevation) of the vertical distribution belt of P. meyeri might provide this species with the best climate conditions and most favorable habitats for growth and, thus, the most appropriate sites for afforestation of this valuable species.Digital Object Identifier http://dx.doi.org/10.1016/j.foreco.2011.10.017
机译:Picea meyeri 是一种本土常绿针叶树种,在1850至2700 m a.s.l.的垂直范围内,大部分冷态常绿针叶林带占主导地位。在中国中北部。该物种是山区水土资源保护的重要媒介。基于对来自不同海拔的73棵树的146个增量岩心的树轮分析,本研究旨在揭示 P径向生长之间的关系。 meyeri 和气候沿海拔梯度变化,并确定 P种植和生长的最佳地点。 meyeri 。结果表明:(1)站点1的时间(海拔1970 m asl)和站点4的时间(海拔2650 m asl)之间的低Gleichlaufigkeit(GLK)值(GLK = 34.5%) )表明 P的径向生长模式。较低海拔处的meyeri 与该物种的较低分布极限相近,与较高海拔处的meyeri不相符。径向生长的这种差异是由于生长季节中不同的气候因素引起的,即夏季海拔较低的夏季水供应不足以及阴天或雨天,这可能导致生长季节缩短和海拔较高的太阳辐射减少。 (2)与中国其他云杉物种相比,在中国其他云杉物种沿高度梯度 P研究了径向生长。 meyeri 显示出径向生长与月平均温度之间的关系最为多样化。在垂直分布带的下部,该物种的径向生长与5月和6月的月平均温度呈显着负相关,但这种相关在中高度消失,而在高海拔则显着正。相反,一年中同一时期的径向增长与月降水总量之间的关系呈现相反的趋势。 (3)P的径向生长。人们还发现,在海拔较低的地方,meyeri对气候因素的敏感性要高于海拔较高的地方。径向增长主要是对5月至7月的温度和降水条件的响应,而不是全年的响应。 (4) P垂直分布带的大中部(海拔2100至2500 m)。 meyeri 可能会为该物种提供最佳的气候条件和最有利的生长环境,从而为该种珍贵物种提供最合适的造林场所。数字对象标识符http://dx.doi.org/10.1016/ j.foreco.2011.10.017

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