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首页> 外文期刊>Trees. Structure and Function >Climatic influences on intra-annual stem radial increment of Pinus sylvestris (L.) exposed to drought.
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Climatic influences on intra-annual stem radial increment of Pinus sylvestris (L.) exposed to drought.

机译:气候变化对干旱干旱樟子松茎秆年内径向增量的影响。

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Within a dry inner Alpine valley in the Eastern Central Alps (750 m a.s.l., Tyrol, Austria), the influence of climate variables (precipitation, air humidity, temperature) and soil water content on intra-annual dynamics of tree-ring development was determined in Scots pine (Pinus sylvestris L.) at two sites differing in soil water availability (xeric and dry-mesic site). Radial stem development was continuously followed during 2007 and 2008 by band dendrometers and repeated micro-sampling of the developing tree rings of mature trees. Daily and seasonal fluctuations of the stem radius, which reached almost half of total annual increment, primarily reflected changes in tree water status and masked radial stem growth especially during drought periods in spring. However, temporal dynamics of intra-annual radial growth determined by both methods were found to be quite similar, when onset of radial growth in dendrometer traces was defined by the occurrence of first enlarging xylem cells. Radial increments during the growing period, which lasted from early April through early August, showed statistically significant relationships with precipitation (Kendall tau =0.234, p<0.01, and tau =0.184, p<0.05, at the xeric and dry-mesic site, respectively) and relative air humidity (Pearson r=0.290, p<0.05, and r=0.306, p<0.05 at the xeric and dry-mesic site, respectively). Soil water content and air temperature had no influence on radial stem increment. Culmination of radial stem growth was detected at both study plots around mid-May, prior to occurrence of more favourable climatic conditions, i.e., an increase in precipitation during summer. We suggest that the early decrease in radial growth rate is due to a high belowground demand for carbohydrates to ensure adequate resource acquisition on the drought-prone substrate.Digital Object Identifier http://dx.doi.org/10.1007/s00468-010-0458-1
机译:在东部中部阿尔卑斯山一个干燥的内部高山山谷(750 m asl,蒂罗尔州,奥地利)中,确定了气候变量(降水,空气湿度,温度)和土壤含水量对年轮发展的年轮动态的影响在两个不同土壤水分利用率的地点(干旱和旱地)的苏格兰松树(Pinus sylvestris L.)中。在2007年和2008年,通过带式密度计和对成熟树木发育中的树木年轮的反复微采样,不断跟踪Rad茎的发育。茎半径的每日和季节性波动几乎达到了年度总增量的一半,主要反映了树木水分状况的变化并掩盖了径向茎的生长,尤其是在春季干旱期间。然而,当通过首次扩大的木质部细胞的出现确定树状硬度计迹线中的径向生长的开始时,发现通过两种方法确定的年内径向生长的时间动态是非常相似的。从4月初一直持续到8月初的生长期的径向增量显示出与降水的统计显着关系(Kendall tau = 0.234, p <0.01,tau = 0.184, p <0.05,分别在干性和干燥性部位和相对空气湿度(Pearson r = 0.290, p <0.05和 r < /i>=0.306,p<0.05分别位于干性和干性部位。土壤含水量和气温对radial茎的增量没有影响。在5月中旬左右,在出现更有利的气候条件(即夏季降水增加)之前,在两个研究区都发现了radial茎生长的结局。我们建议径向增长率的早期下降是由于地下对碳水化合物的需求旺盛,以确保在干旱多发的基质上获得足够的资源。数字对象标识符http://dx.doi.org/10.1007/s00468-010- 0458-1

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