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杨属(杨柳科)中的叶绿体基因组:来自一个密集采样属的比较揭示了进化的动态模式。

Chloroplast genomes in Populus (Salicaceae): comparisons from an intensively sampled genus reveal dynamic patterns of evolution.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.

Shenzhen Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Genome Analysis Laboratory of the Ministry of Agriculture, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518120, China.

出版信息

Sci Rep. 2021 May 4;11(1):9471. doi: 10.1038/s41598-021-88160-4.

Abstract

The chloroplast is one of two organelles containing a separate genome that codes for essential and distinct cellular functions such as photosynthesis. Given the importance of chloroplasts in plant metabolism, the genomic architecture and gene content have been strongly conserved through long periods of time and as such are useful molecular tools for evolutionary inferences. At present, complete chloroplast genomes from over 4000 species have been deposited into publicly accessible databases. Despite the large number of complete chloroplast genomes, comprehensive analyses regarding genome architecture and gene content have not been conducted for many lineages with complete species sampling. In this study, we employed the genus Populus to assess how more comprehensively sampled chloroplast genome analyses can be used in understanding chloroplast evolution in a broadly studied lineage of angiosperms. We conducted comparative analyses across Populus in order to elucidate variation in key genome features such as genome size, gene number, gene content, repeat type and number, SSR (Simple Sequence Repeat) abundance, and boundary positioning between the four main units of the genome. We found that some genome annotations were variable across the genus owing in part from errors in assembly or data checking and from this provided corrected annotations. We also employed complete chloroplast genomes for phylogenetic analyses including the dating of divergence times throughout the genus. Lastly, we utilized re-sequencing data to describe the variations of pan-chloroplast genomes at the population level for P. euphratica. The analyses used in this paper provide a blueprint for the types of analyses that can be conducted with publicly available chloroplast genomes as well as methods for building upon existing datasets to improve evolutionary inference.

摘要

叶绿体是两个含有独立基因组的细胞器之一,这些基因组编码着光合作用等重要而独特的细胞功能。鉴于叶绿体在植物代谢中的重要性,基因组结构和基因内容在很长一段时间内都得到了强烈的保守,因此它们是用于进化推断的有用分子工具。目前,已有超过 4000 种植物的完整叶绿体基因组被存入公共数据库。尽管有大量完整的叶绿体基因组,但对于许多具有完整物种采样的谱系,尚未对其基因组结构和基因内容进行全面分析。在这项研究中,我们以杨属(Populus)为研究对象,评估了在被子植物中广泛研究的谱系中,更全面采样的叶绿体基因组分析如何用于理解叶绿体进化。我们对杨属进行了比较分析,以阐明关键基因组特征的变化,如基因组大小、基因数量、基因内容、重复类型和数量、SSR(简单重复序列)丰度以及基因组四个主要单元之间的边界定位。我们发现,由于组装或数据检查错误以及由此提供的更正注释,部分基因组注释在属内是可变的。我们还利用完整的叶绿体基因组进行了包括属内分化时间的系统发育分析。最后,我们利用重测序数据描述了在 population 水平上的泛叶绿体基因组的变异情况。本文中的分析为使用公共叶绿体基因组进行的各种分析以及利用现有数据集进行改进进化推断的方法提供了蓝图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f82/8096831/e30f61467676/41598_2021_88160_Fig1_HTML.jpg

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