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Intra-annual variability of anatomical structure and δ13C values within tree rings of spruce and pine in alpine temperate and boreal Europe

机译:欧洲温带和寒带欧洲云杉和松树年轮内的解剖结构和δ13C值的年内变化

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摘要

Tree-ring width, wood density, anatomical structure and 13C/12C ratios expressed as δ13C-values of whole wood of Picea abies were investigated for trees growing in closed canopy forest stands. Samples were collected from the alpine Renon site in North Italy, the lowland Hainich site in Central Germany and the boreal Flakaliden site in North Sweden. In addition, Pinus cembra was studied at the alpine site and Pinus sylvestris at the boreal site. The density profiles of tree rings were measured using the DENDRO-2003 densitometer, δ13C was measured using high-resolution laser-ablation-combustion-gas chromatography-infra-red mass spectrometry and anatomical characteristics of tree rings (tracheid diameter, cell-wall thickness, cell-wall area and cell-lumen area) were measured using an image analyzer. Based on long-term statistics, climatic variables, such as temperature, precipitation, solar radiation and vapor pressure deficit, explained <20% of the variation in tree-ring width and wood density over consecutive years, while 29–58% of the variation in tree-ring width were explained by autocorrelation between tree rings. An intensive study of tree rings between 1999 and 2003 revealed that tree ring width and δ13C-values of whole wood were significantly correlated with length of the growing season, net radiation and vapor pressure deficit. The δ13C-values were not correlated with precipitation or temperature. A highly significant correlation was also found between δ13C of the early wood of one year and the late wood of the previous year, indicating a carry-over effect of the growing conditions of the previous season on current wood production. This latter effect may explain the high autocorrelation of long-term tree-ring statistics. The pattern, however, was complex, showing stepwise decreases as well as stepwise increases in the δ13C between late wood and early wood. The results are interpreted in the context of the biochemistry of wood formation and its linkage to storage products. It is clear that the relations between δ13C and tree-ring width and climate are multi-factorial in seasonal climates.
机译:树轮宽度,木材密度,解剖结构和 13 C / 12 C比率表示为云杉全木的δ 13 C值调查了阿比斯在密闭林冠林中生长的树木。样品是从意大利北部的高山Renon站点,德国中部的低地Hainich站点和瑞典北部的北弗拉卡利登站点采集的。此外,在高山地区研究了松树皮,在北方地区研究了樟子松。使用DENDRO-2003密度计测量树木年轮的密度分布,使用高分辨率激光消融-燃烧-气相色谱-红外质谱法测量δ 13 C和树木的解剖特征使用图像分析仪测量环(气管直径,细胞壁厚度,细胞壁面积和细胞腔面积)。根据长期统计数据,气候变量(例如温度,降水,太阳辐射和蒸气压赤字)解释了连续数年<20%的年轮宽度和木材密度变化,而29-58%的变化树木宽度之间的相关性通过树木之间的自相关来解释。在1999年至2003年间对树木年轮的深入研究表明,整个树木的年轮宽度和δ 13 C值与生长季节的长度,净辐射和蒸气压亏缺显着相关。 δ 13 C值与降水或温度无关。在一年的早材和前一年的晚材的δ 13 C之间也发现了高度显着的相关性,表明前一季节的生长条件对当前的结转效应木材生产。后一种效应可以解释长期树环统计数据的高度自相关。但是,该模式很复杂,在早木和早木之间,δ 13 C呈逐步降低和逐步增加的趋势。在木材形成的生物化学及其与存储产品的联系的背景下解释了结果。显然,在季节性气候中,δ 13 C与年轮宽度和气候之间的关系是多因素的。

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