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Teleconnection between tree growth in the Amazonian floodplains and the El Nino-Southern Oscillation effect

机译:亚马逊河漫滩的树木生长与厄尔尼诺-南方涛动效应之间的遥相关

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摘要

There is a limited knowledge about the El Nino-Southern Oscillation (ENSO) effects on the Amazon basin, the world's largest tropical rain forest and a major factor in the global carbon cycle. Seasonal precipitation in the Andean watershed annually causes a several month-long inundation of the floodplains along the Amazon River that induces the formation of annual rings in trees of the flooded forests. Radial growth of trees is mainly restricted to the nonflooded period and thus the ring width corresponds to its duration. This allows the construction of a tree-ring chronology of the long-living hardwood species Piranhea trifoliata Baill. (Euphorbiaceae). El Nino causes anomalously low precipitation in the catchment that results in a significantly lower water discharge of the Amazon River and consequently in an extension of the vegetation period. In those years tree rings are significantly wider. Thus the tree-ring record can be considered as a robust indicator reflecting the mean climate conditions of the whole Western Amazon basin. We present a more than 200-year long chronology, which is the first ENSO-sensitive dendroclimatic proxy of the Amazon basin and permits the dating of preinstrumental El Nino events. Time series analyses of our data indicate that during the last two centuries the severity of El Nino increased significantly.
机译:关于厄尔尼诺-南方涛动(ENSO)对亚马逊盆地,世界上最大的热带雨林和全球碳循环的主要因素的影响知​​之甚少。安第斯河流域的季节性降水每年导致沿亚马逊河的洪泛区淹没数月,导致泛滥的森林树木中形成年轮。树木的径向生长主要限制在非淹没时期,因此环的宽度与其持续时间相对应。这样就可以构建长寿硬木树种Piranhea trifoliata Baill的树年轮年表。 (大戟科)。厄尔尼诺现象导致集水区降水异常偏低,导致亚马逊河的排水量大大降低,从而延长了植被期。在那些年里,年轮大得多。因此,树木年轮记录可以看作是反映整个西亚马逊盆地平均气候条件的有力指标。我们提出了一个超过200年的年表,这是亚马逊盆地第一个ENSO敏感的树状气候代用物,并且可以对仪器前厄尔尼诺事件进行约会。对我们的数据进行时间序列分析表明,在过去两个世纪中,厄尔尼诺现象的严重性显着增加。

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