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Heterogeneity in global vegetation and terrestrial climate change during the late Eocene to early Oligocene transition

机译:始新世晚期至渐新世过渡期间全球植被的异质性和陆地气候变化

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摘要

Rapid global cooling at the Eocene – Oligocene Transition (EOT), ~33.9–33.5 Ma, is widely considered to mark the onset of the modern icehouse world. A large and rapid drop in atmospheric pCO2 has been proposed as the driving force behind extinctions in the marine realm and glaciation on Antarctica. However, the global terrestrial response to this cooling is uncertain. Here we present the first global vegetation and terrestrial temperature reconstructions for the EOT. Using an extensive palynological dataset, that has been statistically grouped into palaeo-biomes, we show a more transitional nature of terrestrial climate change by indicating a spatial and temporal heterogeneity of vegetation change at the EOT in both hemispheres. The reconstructed terrestrial temperatures show for many regions a cooling that started well before the EOT and continued into the Early Oligocene. We conclude that the heterogeneous pattern of global vegetation change has been controlled by a combination of multiple forcings, such as tectonics, sea-level fall and long-term decline in greenhouse gas concentrations during the late Eocene to early Oligocene, and does not represent a single response to a rapid decline in atmospheric pCO2 at the EOT.
机译:始新世-渐新世过渡带(EOT)的快速全球降温(〜33.9–33.5 Ma)被广泛认为是现代冰屋世界的开始。有人提出,大气中pCO2的大量快速下降是海洋领域灭绝和南极冰川消退的驱动力。但是,全球陆地对这种降温的反应尚不确定。在这里,我们介绍了EOT的第一个全球植被和地面温度重建。使用广泛的古生物学数据集,该数据集已被统计地划分为古生物群落,我们通过指示两个半球EOT处植被变化的时空异质性,显示了陆生气候变化的更多过渡性。重建的地面温度显示出许多区域的冷却,该冷却早于EOT之前就开始了,并一直持续到渐新世。我们得出结论,全球植被变化的非均质模式已经受到多种强迫因素的共同控制,例如构造,海平面下降和始新世晚期至渐新世初期温室气体浓度的长期下降,但这并不代表对EOT大气中pCO2迅速下降的单一反应。

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