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首页> 外文期刊>Global change biology >Twentieth century changes of tree-ring delta C-13 at the southern range-edge of Fagus sylvatica: increasing water-use efficiency does not avoid the growth decline induced by warming at low altitudes
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Twentieth century changes of tree-ring delta C-13 at the southern range-edge of Fagus sylvatica: increasing water-use efficiency does not avoid the growth decline induced by warming at low altitudes

机译:二十世纪古树南部边缘的树轮状三角洲C-13的变化:用水效率的提高并不能避免低海拔变暖引起的生长下降

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We aimed to gain knowledge on the changes in intrinsic water use efficiency (iWUE) in response to increasing atmospheric CO2 concentrations and climate change over the last century. We investigated the variation in the iWUE of mature Fagus sylvatica trees located in the higher, central and lower altitudinal forest limits (HFL, CFA and LFL) of one of the southernmost sites of beech distribution in Europe, the Montseny Mountains in Catalonia (northeast Spain), during the last century by analysing the delta C-13 of their tree rings. Pre- and post-maturation phases of the trees presented different trends in delta C-13, Delta C-13, Ci (internal CO2 concentration), iWUE and basal area increment (BAI). Moreover, these variables showed different trends and absolute values in the LFL than in the other altitudinal sites, CFA and HFL. Our results show the existence of an age effect on delta C-13 in the CFA and HFL (values increased by ca. 1.25 parts per thousand coinciding with the BAI suppression and release phases, previous to maturation). These age-related changes were not found in the LFL, whose beech trees arrived to maturation earlier and experienced drier conditions during the suppression phase. In the last 26 years of comparable mature trees, the increase of iWUE deduced from the Delta C-13 analyses was ca. 10% in LFL, ca. 6% in CFA and not significant in HFL. These results show that climate change towards more arid conditions accounted for these higher Delta C-13-values and increases in the LFL more than the continuous increase in atmospheric CO2 concentrations. This increased iWUE in the LFL did not avoid a decline in growth in these lowest altitudes of this beech southern range-edge as a result of warming. Furthermore, since there was no apparent change in iWUE and growth in the beech forests growing in the more standard-adequate environments of higher altitudes in the last 26 years, the rate of sequestration of C into temperate ecosystems may not increase with increasing atmospheric CO2 concentrations as predicted by most models based on short-term small scale experiments.
机译:我们的目标是了解上个世纪随着大气CO2浓度增加和气候变化而引起的内在用水效率(iWUE)变化的知识。我们调查了欧洲最南端的山毛榉分布之一,加泰罗尼亚的蒙特塞山脉(西班牙北部)的海拔较高,中部和较低海拔森林界限(HFL,CFA和LFL)中成熟的香柏树的iWUE的变化。 ),在上个世纪通过分析其年轮的C-13来确定。树木的成熟前和成熟后阶段在δC-13,δC-13,Ci(内部CO2浓度),iWUE和基础面积增加(BAI)方面呈现出不同的趋势。而且,这些变量在LFL中显示出与其他海拔站点CFA和HFL不同的趋势和绝对值。我们的结果表明,年龄对CFA和HFL中C-13的年龄存在影响(在成熟之前,BAI抑制和释放阶段,其值增加了约1.25千分之一)。这些与年龄相关的变化在LFL中没有发现,LFL的山毛榉树早熟并在抑制阶段经历了更干燥的条件。在可比较的成熟树木的最近26年中,从Delta C-13分析推断出的iWUE的增加约为。大约10%的LFL, CFA为6%,而HFL则不显着。这些结果表明,朝向更干旱条件的气候变化导致了这些较高的Delta C-13值,并且LFL的增加比大气中CO2浓度的持续增加更多。 LFL中iWUE的增加并不能避免由于变暖而导致山毛榉南部山脉边缘这些最低海拔的增长下降。此外,由于在过去26年中,在更高标准的较高海拔环境下生长的山毛榉森林的iWUE和生长没有明显变化,因此,随着大气CO2浓度的增加,向温带生态系统中固碳的速率可能不会增加正如大多数模型基于短期小规模实验所预测的那样。

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