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Application of Picea wilsonii roots to determine erosion rates in eastern Qilian Mountains, Northwest China

机译:青云杉根系在西北祁连山东部侵蚀速率确定中的应用

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As a consequence of global change and human activities, processes of soil erosion are expected to increase in forested areas, resulting in exposed roots. Dendrogeomorphic research was conducted by analyzing exposed roots of Picea wilsonii subjected to continuous denudation along a main road in Tulugou National Forest Reserve, eastern Qilian Mountains, to reconstruct the local soil erosion dynamics. We determined the start of the exposure by examining the shifts in the ring-growth patterns from concentric to eccentric and by analyzing the detailed changes of wood anatomical features of exposed roots. We also find that the width of growth ring, the percentage of latewood and the average cell size of earlywood tracheids are all remarkable signs for soil lowering. According to the analysis of ANOVA (Fisher's least significant difference method), the reduction of the cell size of earlywood tracheids is verified to be the key indicator for dating the first year of exposure and occurs prior to the other two indicators. Using 40 roots from 23 trees spread along the road, it has been found that erosion rates vary between 3.3 and 13.5 mm/year with an average value about 5.3 +/- A 2.1 mm/year. The intensity and occurrence of soil erosion may be influenced by the increase of human activities.
机译:由于全球变化和人类活动的结果,森林地区的土壤侵蚀过程预计会增加,导致根系裸露。通过分析祁连山东部土鲁沟国家森林保护区一条主要道路上连续暴露的云杉云杉的根系,进行树突形态研究,以重建当地的土壤侵蚀动态。我们通过检查环形生长模式从同心到偏心的变化并分析裸露根的木材解剖特征的详细变化来确定暴露的开始。我们还发现,年轮的宽度,晚材的百分比和早材气管的平均细胞大小都是降低土壤的显着迹象。根据方差分析(Fisher最小显着性方法)的分析,早木材气管的细胞大小减少已被证明是接触第一年的关键指标,并且发生在其他两个指标之前。使用沿道路散布的23棵树木的40根树根,发现侵蚀速率在3.3至13.5毫米/年之间变化,平均值约为5.3 +/- A 2.1毫米/年。土壤侵蚀的强度和发生可能受到人类活动增加的影响。

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