Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution

被引:0
|
作者
Shu-Miaw Chaw
Yu-Ching Liu
Yu-Wei Wu
Han-Yu Wang
Chan-Yi Ivy Lin
Chung-Shien Wu
Huei-Mien Ke
Lo-Yu Chang
Chih-Yao Hsu
Hui-Ting Yang
Edi Sudianto
Min-Hung Hsu
Kun-Pin Wu
Ling-Ni Wang
James H. Leebens-Mack
Isheng J. Tsai
机构
[1] Academia Sinica,Biodiversity Research Center
[2] Taipei Medical University,Graduate Institute of Biomedical Informatics, College of Medical Science and Technology
[3] National Taiwan University,School of Medicine
[4] National Yang-Ming University,Institute of Biomedical Informatics
[5] University of Georgia,Plant Biology Department
来源
Nature Plants | 2019年 / 5卷
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摘要
We present reference-quality genome assembly and annotation for the stout camphor tree (Cinnamomum kanehirae (Laurales, Lauraceae)), the first sequenced member of the Magnoliidae comprising four orders (Laurales, Magnoliales, Canellales and Piperales) and over 9,000 species. Phylogenomic analysis of 13 representative seed plant genomes indicates that magnoliid and eudicot lineages share more recent common ancestry than monocots. Two whole-genome duplication events were inferred within the magnoliid lineage: one before divergence of Laurales and Magnoliales and the other within the Lauraceae. Small-scale segmental duplications and tandem duplications also contributed to innovation in the evolutionary history of Cinnamomum. For example, expansion of the terpenoid synthase gene subfamilies within the Laurales spawned the diversity of Cinnamomum monoterpenes and sesquiterpenes.
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页码:63 / 73
页数:10
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