The hornwort genome and early land plant evolution

Author:

Zhang Jian,Fu Xin-Xing,Li Rui-Qi,Zhao Xiang,Liu Yang,Li Ming-He,Zwaenepoel Arthur,Ma HongORCID,Goffinet BernardORCID,Guan Yan-Long,Xue Jia-Yu,Liao Yi-Ying,Wang Qing-FengORCID,Wang Qing-Hua,Wang Jie-Yu,Zhang Guo-QiangORCID,Wang Zhi-Wen,Jia Yu,Wang Mei-Zhi,Dong Shan-Shan,Yang Jian-Fen,Jiao Yuan-NianORCID,Guo Ya-LongORCID,Kong Hong-ZhiORCID,Lu An-Ming,Yang Huan-Ming,Zhang Shou-ZhouORCID,Van de Peer YvesORCID,Liu Zhong-JianORCID,Chen Zhi-DuanORCID

Abstract

AbstractHornworts, liverworts and mosses are three early diverging clades of land plants, and together comprise the bryophytes. Here, we report the draft genome sequence of the hornwort Anthoceros angustus. Phylogenomic inferences confirm the monophyly of bryophytes, with hornworts sister to liverworts and mosses. The simple morphology of hornworts correlates with low genetic redundancy in plant body plan, while the basic transcriptional regulation toolkit for plant development has already been established in this early land plant lineage. Although the Anthoceros genome is small and characterized by minimal redundancy, expansions are observed in gene families related to RNA editing, UV protection and desiccation tolerance. The genome of A. angustus bears the signatures of horizontally transferred genes from bacteria and fungi, in particular of genes operating in stress-response and metabolic pathways. Our study provides insight into the unique features of hornworts and their molecular adaptations to live on land.

Publisher

Springer Science and Business Media LLC

Subject

Plant Science

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