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首页> 外文期刊>Forest Ecology and Management >The impacts of climate change on the radial growth of Pinus koraiensis along elevations of Changbai Mountain in northeastern China.
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The impacts of climate change on the radial growth of Pinus koraiensis along elevations of Changbai Mountain in northeastern China.

机译:气候变化对中国东北长白山海拔红松径向生长的影响。

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摘要

The importance of a better understanding of the growth response of forest to climate change for managing and conserving forest has been realized. In this study, we developed the ring-width chronologies of Korean pine (Pinus koraiensis), one of the main constructive species of Changbai Mountain in northeastern China, to examine the radial growth-climate relationships. The stability of these relationships before and after abrupt climate change was evaluated. We built regression equations to project the future growth of the species under future climate change scenarios projected by the Providing Regional Climates for Impacts Studies (PRECISs) climate model. The results were as follows: (1) The chronologies in the three elevation gradients, HY1 at 740 m.s.l., FA at 940 m.s.l. and HY2 at 1258 m.s.l., had the good spatial similarity with high Gleichlafigkeit (GLK) indices; however, significant differences still existed between the growth-climate relationships of the three sites. The width chronology of Korean pine at site HY1 was positively correlated with the precipitation in September of the previous year (p<0.01) and June of the current year (p<0.05). The chronology at site FA was positively correlated with the temperature in March and April of the current year (p<0.05). Whereas the current July temperature and the previous September precipitation were the main limiting factors for the growth of Korean pine at site HY2. (2) Mann-Kendall test results revealed that the climatic data from the meteorological stations near the sampling sites had an abrupt annual average temperature change in 1989, but the radial growth-climate relationship change only occurred in the chronology with May precipitation at site HY2, which may be caused by water stress. (3) With the projected increasing temperature and decreasing precipitation, compared with the base-line period (1971-2000), the radial growth of Korean pine at HY1 will relatively decrease, and the reduction will gradually increase. In contrast, at the higher elevation, like the FA and HY2 sites, the radial growth of Korean pine will relatively increase. Thus, the higher elevation areas of the Korean pine's vertical distribution belt are more favorable for this species' radial growth and forestation.
机译:已经认识到了更好地了解森林对气候变化的增长响应对于管理和保护森林的重要性。在这项研究中,我们开发了红松(红松)的环宽年表,红松是中国东北长白山的主要构造物种之一,以研究径向生长与气候的关系。评估了这些关系在气候突然变化之前和之后的稳定性。我们建立了回归方程来预测物种在未来气候变化情景下的未来增长,该情景由“提供区域气候影响研究”(PRECISs)气候模型预测。结果如下:(1)在三个海拔梯度上的年代,HY1在740 m.s.l.,FA在940 m.s.l.。和HY2在1258 m.s.l.,具有良好的空间相似性,并具有较高的Gleichlafigkeit(GLK)指数;但是,这三个地点的生长-气候关系之间仍然存在显着差异。 HY1站点的红松宽度年代学与上年9月(p <0.01)和当年6月(p <0.05)的降水量呈正相关。 FA站点的年代与当年3月和4月的温度呈正相关(p <0.05)。目前的7月温度和9月的降水是限制HY2站点红松生长的主要限制因素。 (2)Mann-Kendall试验结果表明,采样点附近气象站的气候数据在1989年具有突然的年平均温度变化,但径向生长与气候的关系变化仅发生在HY2站点5月降水的年代学中。 ,这可能是由于缺水引起的。 (3)随着温度的升高和降水的减少,与基线期(1971-2000年)相比,红松在HY1的径向生长将相对减少,减少量将逐渐增加。相反,在海拔较高的地方,如FA和HY2站点,红松的径向生长将相对增加。因此,红松垂直分布带的高海拔地区对该物种的径向生长和造林更有利。

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