亚热带
高原(数学)
季风
植被(病理学)
生态系统
仰角(弹道)
生物多样性
地理
古生物学
地质学
亚热带湿润气候
自然地理学
生态学
生物
海洋学
医学
数学分析
几何学
数学
病理
作者
Tao Su,Robert A. Spicer,Feixiang Wu,Alexander Farnsworth,Jian Huang,Cédric Del Rio,Tao Deng,Lin Ding,Wei‐Yu‐Dong Deng,Yong‐Jiang Huang,Alice C. Hughes,Lin‐Bo Jia,Jianhua Jin,Shufeng Li,Shuiqing Liang,Jia Liu,Xiaoyan Liu,Sarah C. Sherlock,Teresa E.V. Spicer,Gaurav Srivastava
标识
DOI:10.1073/pnas.2012647117
摘要
Significance The ancient topography of the Tibetan Plateau and its role in biotic evolution are still poorly understood, mostly due to a lack of fossil evidence. Our discovery of ∼47-Mya plant fossils from a present elevation of 4,850 m in central Tibet, diminishes, significantly, that lack of knowledge. The fossils represent a humid subtropical vegetation and some of the 70 different plant forms show affinity to Early-Middle Eocene floras in both North America and Europe. Using leaf architecture, we calculate that the forest grew at ∼1,500-m elevation within an east–west trending valley under a monsoonal climate. Our findings highlight the complexity of Tibet’s ancient landscape and emphasize the importance of Tibet in the history of global biodiversity.
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