...
首页> 外文期刊>Ecoscience >Assessing the influence of climate-water table interactions on jack pine and black spruce productivity in western central Canada
【24h】

Assessing the influence of climate-water table interactions on jack pine and black spruce productivity in western central Canada

机译:评估加拿大中部杰克松及黑云杉生产力的气候水表相互作用的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The changes in temperature and precipitation regimes predicted for boreal regions are expected to profoundly affect the productivity of trees situated on waterlogged soils, which underlie large areas of boreal forest in Canada. The consequences for productivity of climatic variation likely depend on site ecology and differ between species. To investigate potential site-dependent responses to climate, we compared the growth of jack pine (Pinus banksiana) trees growing within the same climate conditions but along a transect extending from a fen margin to a sandy ridge. On the fen-margin site, black spruce trees (Picea mariana) were also sampled, allowing for a comparison of the sensitivity of both species. Growth variations at interannual and decadal frequency were analyzed from tree-rings. Our study revealed that the response to climate varied substantially between sites, but, surprisingly, trees growing on the fen margin proved to be very sensitive to fluctuations of precipitation at both interannual and decadal time scales. Black spruce trees responded more sensitively to climate variation than jack pine sampled at the same site. Our study also showed a modest response to temperature even in the driest site. For both species, decadal signals show precipitation as a common, strong productivity driver regardless of water table constraints. These results suggest that the predicted climate warming is therefore less of a threat to the productivity of peatland forested zones than fluctuations in the precipitation regime. Changes in precipitation are expected to have much stronger consequences at both interannual and decadal time scales than projected temperature fluctuations.
机译:预计对北方地区预测的温度和降水制度的变化预计会影响位于涝渍土壤的树木的生产率,这是加拿大北方林林的大面积。对气候变异的生产率的后果可能依赖于现场生态学并在物种之间存在差异。为了调查潜在的地点依赖于气候的反应,我们将杰克松(Pinus Banksiana)树木的生长与在同一气候条件下生长的树木进行了比较,而是沿着从粪便边缘延伸到沙脊的横断面。在葫芦缘地点,也取样了黑云杉树(Picea Mariana),允许比较两种物种的敏感性。从树圈分析了持续的持续跨境和跨越频率的生长变化。我们的研究表明,对遗址之间的气候反应变化,但令人惊讶的是,令人惊讶的是,生长在汾边缘上的树木对持续终际和截止时间尺度的降水波动非常敏感。黑色云杉树更敏感地回应了气候变化,而不是在同一网站上采样的杰克杉木。即使在干燥的网站也,我们的研究也对温度的响应效力。对于两种物种,无论水表约束如何,Decadal信号都显示出常见,强大的生产率驱动器的降水量。这些结果表明,预测的气候变暖因此对泥炭地森林地区生产力的威胁不如降水制度的波动。预计降水的变化预计比预计温度波动的持续温度和截止时间尺度都具有更强的后果。

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