Origin of angiosperms and the puzzle of the Jurassic gap

被引:0
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作者
Hong-Tao Li
Ting-Shuang Yi
Lian-Ming Gao
Peng-Fei Ma
Ting Zhang
Jun-Bo Yang
Matthew A. Gitzendanner
Peter W. Fritsch
Jie Cai
Yang Luo
Hong Wang
Michelle van der Bank
Shu-Dong Zhang
Qing-Feng Wang
Jian Wang
Zhi-Rong Zhang
Chao-Nan Fu
Jing Yang
Peter M. Hollingsworth
Mark W. Chase
Douglas E. Soltis
Pamela S. Soltis
De-Zhu Li
机构
[1] Kunming Institute of Botany,Germplasm Bank of Wild Species
[2] Chinese Academy of Sciences,CAS Key Laboratory for Plant Diversity and Biogeography of East Asia
[3] Kunming Institute of Botany,Florida Museum of Natural History
[4] Chinese Academy of Sciences,Department of Biology
[5] University of Florida,Department of Botany & Plant Biotechnology
[6] University of Florida,Wuhan Botanical Garden
[7] Botanical Research Institute of Texas,Queensland Herbarium, Department of Environment and Science
[8] University of Johannesburg,Kunming College of Life Science
[9] Chinese Academy of Sciences,Department of Environment and Agriculture
[10] Brisbane Botanic Gardens,Genetics Institute
[11] University of Chinese Academy of Sciences,Biodiversity Institute
[12] Royal Botanic Garden Edinburgh,undefined
[13] Royal Botanic Gardens,undefined
[14] Curtin University,undefined
[15] University of Florida,undefined
[16] University of Florida,undefined
来源
Nature Plants | 2019年 / 5卷
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摘要
Angiosperms are by far the most species-rich clade of land plants, but their origin and early evolutionary history remain poorly understood. We reconstructed angiosperm phylogeny based on 80 genes from 2,881 plastid genomes representing 85% of extant families and all orders. With a well-resolved plastid tree and 62 fossil calibrations, we dated the origin of the crown angiosperms to the Upper Triassic, with major angiosperm radiations occurring in the Jurassic and Lower Cretaceous. This estimated crown age is substantially earlier than that of unequivocal angiosperm fossils, and the difference is here termed the ‘Jurassic angiosperm gap’. Our time-calibrated plastid phylogenomic tree provides a highly relevant framework for future comparative studies of flowering plant evolution.
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页码:461 / 470
页数:9
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