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基因组比较揭示叶绿体基因组中的突变热点和种间的系统发育关系。

Genome Comparison Reveals Mutation Hotspots in the Chloroplast Genome and Phylogenetic Relationships of Species.

机构信息

State Key Laboratory of Tree Breeding and Forest Genetics, Key Laboratory of Tree Breeding and Cultivation of State Forestry Administration, Research Institute of Forestry, Chinese Academy of Forestry, Beijing 100091, China.

Administration Bureau of Hongyashan State Owned Forest Farm of Hebei Province, Yixian 074200, China.

出版信息

Biomed Res Int. 2019 Aug 21;2019:7265030. doi: 10.1155/2019/7265030. eCollection 2019.

Abstract

The papilionoid legume genus comprises approximately 130 species, which are distributed mostly in the Neotropics, with some species in eastern Asia and northeastern Australia. The taxonomy and evolutionary history remain unclear due to the lack of a robust species-level phylogeny. Chloroplast genomes can provide important information for phylogenetic and population genetic studies. In this study, we determined the complete chloroplast genome sequences of five species by Illumina sequencing. The chloroplast genomes displayed the typical quadripartite structure of angiosperms, which consisted of a pair of inverted regions separated by a large single-copy region and a small single-copy region. The location and distribution of repeat sequences and microsatellites were determined. Comparative analyses highlighted a wide spectrum of variation, with , , , , and intron being the most variable regions. Phylogenetic analysis revealed that is in the Papilionoideae clade and is sister to the clade. Overall, this study, which provides chloroplast genomic resources and a comparative analysis of chloroplast genomes, will be beneficial for the evolutionary study and phylogenetic reconstruction of the genus and molecular barcoding in population genetics and will provide insight into the chloroplast genome evolution of legumes.

摘要

紫堇属植物约有 130 种,主要分布于新热带地区,部分种分布于东亚和澳大利亚东北部。由于缺乏强有力的种级系统发育关系,其分类学和进化历史仍不清楚。叶绿体基因组可为系统发育和种群遗传学研究提供重要信息。本研究通过 Illumina 测序,确定了 5 种紫堇属植物的完整叶绿体基因组序列。这些叶绿体基因组呈现出被子植物典型的四分体结构,由一对反向重复序列被一个大单拷贝区和一个小单拷贝区隔开。我们还确定了重复序列和微卫星的位置和分布。比较分析突出了广泛的变异,其中 intron、、、、和 是最具变异的区域。系统发育分析表明, 位于 Papilionoideae 分支中,与 分支为姐妹群。总的来说,本研究提供了紫堇属植物的叶绿体基因组资源和叶绿体基因组的比较分析,将有助于该属的进化研究和系统发育重建,以及在种群遗传学中的分子条形码,并为豆科植物叶绿体基因组的进化提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d024/6720362/85bd02bf9ffc/BMRI2019-7265030.001.jpg

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