首页> 外文期刊>Forest Ecology and Management >Response of floodplain pedunculate oak (Quercus robur L.) tree-ring width and vessel anatomy to climatic trends and extreme hydroclimatic events
【24h】

Response of floodplain pedunculate oak (Quercus robur L.) tree-ring width and vessel anatomy to climatic trends and extreme hydroclimatic events

机译:洪泛区带花梗的橡树栎(Quercus robur L.)年轮宽度和容器解剖对气候趋势和极端水文事件的响应

获取原文
获取原文并翻译 | 示例
           

摘要

Increasing temperatures and recent changes in runoff regimes observed in Central Europe might alter the growth and relative water uptake of floodplain trees. To predict responses of floodplain forests to climate change, it is necessary to determine the climatic controls over tree growth and vessel anatomy. We analysed the responses of tree-ring width and earlywood vessel anatomical parameters (average vessel lumen area, vessel density and total vessel lumen area) of pedunculate oak (Quercus robur L.) growing in a floodplain to hydroclimatic conditions represented by temperature, the drought index (scPDSI), river discharge, groundwater level, and occurrence of floods and drought events. Site chronologies were assembled for floodplain and reference sites and, subsequently, correlated with time series of hydroclimatic conditions. Our results show that radial growth of floodplain trees is particularly positively influenced by temperature during the growing season and during previous year's summer. By contrast, the growth of reference trees is highly drought-limited. Earlywood average vessel lumen area chronologies from both floodplain and reference sites share a positive temperature signal from January to April. However, the effect of water availability (indicated by the drought index) on vessel size is mostly negative for floodplain trees (with a maximum response to the autumn of the year preceding tree-ring formation) and positive or non-significant for reference trees. Vessel density chronologies contain the inverse environmental information as tree-ring width, however, with amplified negative correlations with current year temperatures at floodplain sites. Total vessel area is associated mostly with temperature in previous May and June. The drought index recorded exactly the same information in tree-rings as did river discharges and groundwater levels. The results of both correlation and trend analysis evidence that tree-ring width of floodplain Q, robur unambiguously increases with increasing temperature; on the other hand, droughts can become a serious problem affecting the productivity of reference trees growing in more distal parts of the lowland. Vessel size of Q. robur growing outside the floodplain recently tends to increase with increasing temperatures, making xylem more effective at water transport but also more vulnerable to cavitation. (C) 2016 Elsevier B.V. All rights reserved.
机译:在中欧,温度升高和径流形式的最新变化可能会改变洪泛区树木的生长和相对吸水率。为了预测洪泛区森林对气候变化的响应,有必要确定对树木生长和船只解剖的气候控制。我们分析了在洪泛区生长的带花梗橡木(Quercus robur L.)的树轮宽度和早木脉管解剖参数(平均脉管腔面积,脉管密度和总脉管腔面积)对以温度,干旱为代表的水文气候条件的响应指数(scPDSI),河流流量,地下水位以及洪水和干旱事件的发生。为洪泛区和参考站装配了站点时间顺序,随后与水文气候条件的时间序列相关。我们的结果表明,在生长期和去年夏季,洪泛区树木的径向生长特别受到温度的积极影响。相反,参比树的生长受到干旱的限制。洪泛区和参考点的早材平均血管腔面积时序在1月至4月之间共享正温度信号。但是,水的供应量(以干旱指数表示)对船只尺寸的影响对于洪泛区树木大多是负面的(对树木年轮形成前一年的秋天有最大的响应),而对于参考树木则是正面的或不重要的。船只密度年表包含与环境相反的信息,如树木年轮的宽度,但与洪泛区站点当前年份的温度呈负相关。总的容器面积主要与前五月和六月的温度有关。干旱指数在树木年轮中记录的信息与河流排放量和地下水位完全相同。相关性和趋势分析的结果都表明,洪泛区Q,robur的树轮宽度随温度的升高而明显增加。另一方面,干旱可能成为严重问题,影响到在低地较远地区生长的参考树的生产力。近来,洪泛区以外生长的罗氏沼虾的船只尺寸趋于随着温度的升高而增加,从而使木质部在水运方面更有效,但也更容易发生空化。 (C)2016 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号