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River Regulation Causes Rapid Changes in Relationships Between Floodplain Oak Growth and Environmental Variables

机译:河流调节导致洪泛区橡树生长与环境变量之间的关系迅速变化

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摘要

The radial growth of pedunculate oak (Quercus robur), a species often ecologically dominating European deciduous forests, is closely tied up with local environmental variables. The oak tree-ring series usually contain a climatic and hydrologic signal that allows assessing the main drivers of tree growth in various ecosystems. Understanding the climate-growth relationship patterns in floodplains is important for providing insights into the species persistence and longevity in vulnerable riverine ecosystems experiencing human-induced hydrology alteration. Here, we use 139 years long instrumental records of local temperature, precipitation, and water levels in the Dnipro River in Kyiv to demonstrate that the implementation of river regulation has decoupled the established relationship between the radial growth of floodplain oak and local hydro-climatic conditions. Before the river flow has been altered by engineering modifications of 1965–1977, the water level in the Dnipro River was the key driver of oak radial growth, as reflected in the tree-ring width and earlywood width. The construction of two dams has altered the seasonal distribution of water level diminishing the positive effect of high water on oak growth and subsequently reversing this trend to negative, resulting from a seasonal ground water surplus. The decrease in the correlation between oak growth indices and the river’s water level in April–June was unprecedentedly rapid and clearly distinguishable among other changes in the growth-to-climate relationship. Our findings further demonstrate that trees growing in areas exposed to urban development are the most susceptible to downside effects of river regulation.
机译:有花梗的橡木(Quercus robur)的放射状生长通常是生态上占主导地位的欧洲落叶林,与当地环境变量密切相关。橡树年轮系列通常包含气候和水文信号,可以评估各种生态系统中树木生长的主要驱动力。了解洪泛区的气候-增长关系模式对于洞悉人类遭受水文变化的脆弱河流生态系统中的物种持久性和寿命至关重要。在这里,我们使用长达139年的基辅第聂伯河中当地温度,降水和水位的仪器记录,证明了河流管制的实施已使泛滥橡树的径向生长与当地水文气候条件之间的既定关系脱钩。在1965年至1977年的工程改造改变河流流量之前,第聂伯河的水位是橡树径向生长的主要驱动力,这可以从树轮宽度和早木宽度中反映出来。两座水坝的建设改变了水位的季节性分布,从而减弱了高水对橡树生长的积极影响,随后由于季节性的地下水过剩而使这一趋势变为负面。橡树生长指数与河流水位之间的相关性在4月至6月间以前所未有的速度迅速下降,并且在增长与气候关系的其他变化中也可以明显地区分。我们的发现进一步表明,在城市发展地区种植的树木最容易受到河流调节的不利影响。

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