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首页> 外文期刊>Trees. Structure and Function >Intra-annual stem radial increment patterns of Chinese pine, Helan Mountains, Northern Central China
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Intra-annual stem radial increment patterns of Chinese pine, Helan Mountains, Northern Central China

机译:中国北部北部贺兰山脉内杆径向增量模式

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Key messageWe investigate the intra-annual growth patterns of Chinese pine in Helan Mountains, confirming that regional water status plays a dominated role in stem radial increment.AbstractThe associations between environmental conditions and stem radial increment (SRI) are useful for assessing a species' growth response to climate change. Intra-annual SRI dynamics of Chinese pine (Pinus tabulaeformis) were monitored half-hourly by automatic point dendrometer during the growing season (May-September) in 2016 and 2017 at two altitudes in the Helan Mountains, northern central China. Here, we compared the seasonal growth patterns between two altitudes and 2 years. Trees at low altitude are characterized by earlier cessation, shorter growing season, and lower growth rate, resulting in less annual growth, which may reflect the greater drought intensified by rising temperature at low altitude. June precipitation significantly affected tree growth rate. The xylem growth was active when daily mean air temperature was 9.9 degrees C at our study region for P. tabulaeformis in an arid environment. During the growing season, daily stem radial increment showed a significantly positive correlation with precipitation and a negative correlation with daily air temperature at all altitudes. Climatic variables associated with tree water status, namely precipitation, vapor pressure deficit, and relative humidity, played important roles in daily stem radial increment as the same result as a linear mixed model. These factors drive the complex physiological processes of stem radial increment by influencing the moisture available to the tree.
机译:关键消息我们调查了贺兰山脉中中国松树内的年度增长模式,确认区域水状况在茎径向增量中起到主导作用。抽象环境条件与茎径向增量(SRI)之间的关联可用于评估物种的生长应对气候变化。在2016年生长季节(5月9月)在2016年和2017年,在2016年和2017年,在2016年和2017年,在2016年和2017年,在2016年和2017年,在2016年和2017年,在2016年和2017年,在2016年和2017年,在中国北部的贺兰山脉的两次高度,通过自动点线路监测了中国松树(Pinus TabulaeFormis)的半小时。在这里,我们将季节性增长模式与2年间进行比较。低空的树木的特点是早期停止,增长季节较短,增长率较低,导致年增长率较少,这可能反映出低海拔温度上升加剧的大旱灾。六月降水量显着影响树增长率。当在干旱环境中,当我们的研究区的日常平均空气温度为9.9摄氏度时,Xylem生长是活跃的。在生长季节期间,每日茎径向增量与所有海拔高度的降水和与日常气温的负相关性显着正相关。与树水状态相关的气候变量,即降水,蒸气压缺损和相对湿度,在日常杆径向增量中发挥了重要作用,与线性混合模型相同的结果。这些因素通过影响树的水分来驱动茎径向增量的复杂生理过程。

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