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Altitude patterns of leaf carbon isotope composition in a subtropical monsoon forest

机译:叶碳同位素组成的高度模式在亚热带季风林中

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Leaf carbon isotope composition (delta C-13) of both vascular and non-vascular plants were investigated in order to assess their variability along an altitude gradient (414, 620, 850, 1086, 1286 and 1462 m) from a subtropical monsoon forest located at Mt. Tianmu Reserve, eastern China. Leaf delta C-13 values of all plant species ranged from -34.4 to -26.6 parts per thousand, with an average of -29.8 parts per thousand. There is no significant difference in leaf delta C-13 between vascular plants and mosses, however, trees had significantly higher delta C-13 values than herbs. For pooled data, leaf delta C-13 was positively correlated with altitude. Leaf delta C-13 was significantly and negatively correlated with annual mean temperature and atmospheric pressure, while it was significantly and positively correlated with soil water content. Furthermore, there was no relationship between leaf delta C-13 and soil nitrogen content or soil phosphorus content. The altitudinal trend in leaf delta C-13 is the consequence of the interaction between temperature, atmospheric pressure and soil water content.
机译:研究了血管和非血管植物两种血管和非血管植物的叶碳同位素组合物(Delta C-13),以评估其来自位于亚热带季森林的高度梯度(414,620,850,1086,1286和1462米的可变性在山。中国东部天明储备。所有植物物种的叶δc-13值范围从-34.4至-26.6份,平均每千分别为-29.8份。然而,血管植物和苔藓之间的叶δC-13没有显着差异,然而,树木具有比草药更高的δC-13值。对于汇集数据,叶ΔC-13与高度呈正相关。叶δC-13显着且与年平均温度和大气压呈负相关,同时它与土壤含水量有显着呈正相关。此外,叶δC-13和土壤氮含量或土壤磷含量之间没有关系。叶δC-13的高度趋势是温度,大气压和土壤含水量之间的相互作用的结果。

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