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全基因组测序揭示主要红树林分支(红树科)的起源、多样化及适应性

The origin, diversification and adaptation of a major mangrove clade (Rhizophoreae) revealed by whole-genome sequencing.

作者信息

Xu Shaohua, He Ziwen, Zhang Zhang, Guo Zixiao, Guo Wuxia, Lyu Haomin, Li Jianfang, Yang Ming, Du Zhenglin, Huang Yelin, Zhou Renchao, Zhong Cairong, Boufford David E, Lerdau Manuel, Wu Chung-I, Duke Norman C, Shi Suhua

机构信息

State Key Laboratory of Biocontrol, Guangdong Provincial Key Laboratory of Plant Resources, Key Laboratory of Biodiversity Dynamics and Conservation of Guangdong Higher Education Institutes, School of Life Sciences, Sun Yat-Sen University, Guangzhou 510275, China.

Core Genomic Facility, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Natl Sci Rev. 2017 Sep;4(5):721-734. doi: 10.1093/nsr/nwx065. Epub 2017 Jun 5.

Abstract

Mangroves invade some very marginal habitats for woody plants-at the interface between land and sea. Since mangroves anchor tropical coastal communities globally, their origin, diversification and adaptation are of scientific significance, particularly at a time of global climate change. In this study, a combination of single-molecule long reads and the more conventional short reads are generated from for the assembly of its genome to a near chromosome level. The longest scaffold, N50 and N90 for the genome, are 13.3 Mb, 5.4 Mb and 1.0 Mb, respectively. Short reads for the genomes and transcriptomes of eight related species are also generated. We find that the ancestor of Rhizophoreae experienced a whole-genome duplication ~70 Myrs ago, which is followed rather quickly by colonization and species diversification. Mangroves exhibit pan-exome modifications of amino acid (AA) usage as well as unusual AA substitutions among closely related species. The usage and substitution of AAs, unique among plants surveyed, is correlated with the rapid evolution of proteins in mangroves. A small subset of these substitutions is associated with mangroves' highly specialized traits (vivipary and red bark) thought to be adaptive in the intertidal habitats. Despite the many adaptive features, mangroves are among the least genetically diverse plants, likely the result of continual habitat turnovers caused by repeated rises and falls of sea level in the geologically recent past. Mangrove genomes thus inform about their past evolutionary success as well as portend a possibly difficult future.

摘要

红树林侵入了一些对木本植物而言非常边缘的栖息地——位于陆地与海洋的交界处。由于红树林支撑着全球热带沿海群落,它们的起源、多样化和适应性具有科学意义,尤其是在全球气候变化的时代。在本研究中,从[具体内容未给出]生成了单分子长读段和更传统的短读段的组合,用于将其基因组组装到接近染色体水平。[具体物种未给出]基因组的最长支架、N50和N90分别为13.3 Mb、5.4 Mb和1.0 Mb。还生成了八个相关物种的基因组和转录组的短读段。我们发现,红树科的祖先在约7000万年前经历了一次全基因组复制,随后很快就出现了定殖和物种多样化。红树林在氨基酸(AA)使用方面表现出泛外显子修饰,并且在亲缘关系密切的物种之间存在不寻常的氨基酸替换。在所调查的植物中独一无二的氨基酸使用和替换与红树林中蛋白质的快速进化相关。这些替换中的一小部分与红树林被认为适应潮间带栖息地的高度特化性状(胎生和红色树皮)有关。尽管有许多适应性特征,但红树林是遗传多样性最低的植物之一,这可能是由于地质历史时期近期海平面反复涨落导致栖息地不断更替的结果。因此,红树林基因组揭示了它们过去的进化成功,也预示着可能艰难的未来。

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