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Interspecific competition influences the response of oak transpiration to increasing drought stress in a mixed Mediterranean forest

机译:种间竞争影响橡木蒸腾作用对混合地中海森林中干旱胁迫的响应

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摘要

Increasingly severe droughts are expected to negatively impact forest functioning in the future, especially in the Mediterranean region. Favoring mixed species stands has been advocated as a compromise between wood production and biodiversity conservation, but whether such management practices would allow forest ecosystems to acclimate to future climate conditions remains to be addressed. We tested whether the transpiration of Quercus cerris (Qc) and Quercus petraea (Qp) during droughts differ when they grow in pure or mixed forests. We measured sap flux density (F-D) and leaf carbon isotope composition (delta C-13), as a proxy for intrinsic water use efficiency (WUEint), in pure and mixed Qc and/or Qp forest plots in Italy during the summer 2012. Qc and Op showed a drop in FD of 41% and 52% respectively during the summer drought independently of the mixtures, but with different seasonal trends. Qp transpiration response to soil drought did not differ between pure and mixed plots. In contrast, Qc transpiration was reduced by 56% in mixed plots at the maximum of the drought and only by 31% in the pure plot. Furthermore, we observed higher WUEint for Qc in the mixed plot and no change for Qp, supporting the higher water stress intensity in the mixed plot for Qc. Our study illustrated the negative impact of Qp on Qc when these species compete for water resources. We suggest that managing for mixed stands in the Mediterranean region might, in some cases, increase the detrimental effect of drought on species functioning.
机译:越来越多的严重干旱预计将影响负林在今后的运作,尤其是在地中海地区。有利于混种看台一直主张作为木材生产和生物多样性保护之间的妥协,但这种管理方式是否允许森林生态系统来适应环境未来的气候条件,仍有待解决。我们测试时,他们在纯或混交林种植栎(QC)和干旱期间无梗花栎(QP)的蒸腾是否不同。我们在2012年夏天期间测量液流密度(FD)和叶碳同位素组合物(△C-13),作为用于固有水分利用效率(WUEint),为纯的和混合的QC和/或的Qp森林图在意大利的代理。 QC和运算显示夏季干旱独立地混合物的过程中的分别为41%和52%FD的下降,但具有不同的季节性趋势。 QP蒸腾响应土壤干旱并没有纯和混合地块之间的差异。与此相反,QC蒸腾减少了56%的混合曲线在最大的干旱和仅31%在纯情节。此外,我们在混合积和的Qp没有变化观察到的高WUEint为QC,支撑在QC混合情节更高的水应力的强度。我们的研究说明QP的负面影响,对QC当这些物种争夺水资源。我们认为,管理在地中海地区强权混交林,在某些情况下,增加了干旱对种功能的不利影响。

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