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Tree growth response to ENSO in Durango, Mexico

机译:墨西哥杜兰戈对ENSO树木生长的反应

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摘要

The dynamics of forest ecosystems worldwide have been driven largely by climatic teleconnections. El Nio-Southern Oscillation (ENSO) is the strongest interannual variation of the Earth's climate, affecting the regional climatic regime. These teleconnections may impact plant phenology, growth rate, forest extent, and other gradual changes in forest ecosystems. The objective of this study was to investigate how Pinus cooperi populations face the influence of ENSO and regional microclimates in five ecozones in northwestern Mexico. Using standard dendrochronological techniques, tree-ring chronologies (TRI) were generated. TRI, ENSO, and climate relationships were correlated from 1950-2010. Additionally, multiple regressions were conducted in order to detect those ENSO months with direct relations in TRI (p 0.1). The five chronologies showed similar trends during the period they overlapped, indicating that the P. cooperi populations shared an interannual growth variation. In general, ENSO index showed correspondences with tree-ring growth in synchronous periods. We concluded that ENSO had connectivity with regional climate in northern Mexico and radial growth of P. cooperi populations has been driven largely by positive ENSO values (El Nio episodes).
机译:世界范围内森林生态系统的动态很大程度上是由气候远程连接驱动的。厄尔尼诺南方涛动(ENSO)是地球气候的最强年际变化,影响了区域气候体制。这些遥相关可能会影响植物物候,生长速率,森林范围以及森林生态系统的其他逐渐变化。这项研究的目的是调查在墨西哥西北部五个生态区中,樟子松种群如何面对ENSO和区域小气候的影响。使用标准的树木年代学技术,生成了树年轮年代学(TRI)。 TRI,ENSO和气候关系在1950-2010年之间是相关的。此外,为了检测那些与TRI有直接关系的ENSO月,进行了多次回归(p <0.1)。这五个时间序列在重叠期间显示出相似的趋势,这表明合作社种群共有年际增长差异。总的来说,ENSO指数显示出与同步时期树木年轮增长的对应关系。我们得出的结论是,ENSO与墨西哥北部的区域气候具有联系,而古铜体育种群的放射状增长很大程度上是由ENSO的正值驱动的(厄尔尼诺事件)。

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