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四角花 Tanaecium tetragonolobum 的完整叶绿体基因组:紫葳科首个质体基因组。

Complete Chloroplast Genome of Tanaecium tetragonolobum: The First Bignoniaceae Plastome.

作者信息

Nazareno Alison Gonçalves, Carlsen Monica, Lohmann Lúcia Garcez

机构信息

Universidade de São Paulo, Instituto de Biociências, Departamento de Botânica, São Paulo, São Paulo, Brazil.

University of Missouri-St. Louis, Biology Department, St. Louis, Missouri, United States of America.

出版信息

PLoS One. 2015 Jun 23;10(6):e0129930. doi: 10.1371/journal.pone.0129930. eCollection 2015.

Abstract

Bignoniaceae is a Pantropical plant family that is especially abundant in the Neotropics. Members of the Bignoniaceae are diverse in many ecosystems and represent key components of the Tropical flora. Despite the ecological importance of the Bignoniaceae and all the efforts to reconstruct the phylogeny of this group, whole chloroplast genome information has not yet been reported for any members of the family. Here, we report the complete chloroplast genome sequence of Tanaecium tetragonolobum (Jacq.) L.G. Lohmann, which was reconstructed using de novo and referenced-based assembly of single-end reads generated by shotgun sequencing of total genomic DNA in an Illumina platform. The gene order and organization of the chloroplast genome of T. tetragonolobum exhibits the general structure of flowering plants, and is similar to other Lamiales chloroplast genomes. The chloroplast genome of T. tetragonolobum is a circular molecule of 153,776 base pairs (bp) with a quadripartite structure containing two single copy regions, a large single copy region (LSC, 84,612 bp) and a small single copy region (SSC, 17,586 bp) separated by inverted repeat regions (IRs, 25,789 bp). In addition, the chloroplast genome of T. tetragonolobum has 38.3% GC content and includes 121 genes, of which 86 are protein-coding, 31 are transfer RNA, and four are ribosomal RNA. The chloroplast genome of T. tetragonolobum presents a total of 47 tandem repeats and 347 simple sequence repeats (SSRs) with mononucleotides being the most common and di-, tri-, tetra-, and hexanucleotides occurring with less frequency. The results obtained here were compared to other chloroplast genomes of Lamiales available to date, providing new insight into the evolution of chloroplast genomes within Lamiales. Overall, the evolutionary rates of genes in Lamiales are lineage-, locus-, and region-specific, indicating that the evolutionary pattern of nucleotide substitution in chloroplast genomes of flowering plants is complex. The discovery of tandem repeats within T. tetragonolobum and the presence of divergent regions between chloroplast genomes of Lamiales provides the basis for the development of markers at various taxonomic levels. The newly developed markers have the potential to greatly improve the resolution of molecular phylogenies.

摘要

紫葳科是一个泛热带植物科,在新热带地区尤为丰富。紫葳科的成员在许多生态系统中具有多样性,是热带植物区系的关键组成部分。尽管紫葳科具有重要的生态意义,且人们为重建该类群的系统发育做出了诸多努力,但该科任何成员的完整叶绿体基因组信息尚未见报道。在此,我们报道了四角花(Tanaecium tetragonolobum (Jacq.) L.G. Lohmann)的完整叶绿体基因组序列,该序列是通过对Illumina平台上全基因组DNA进行鸟枪法测序产生的单端读段进行从头组装和基于参考的组装而重建的。四角花叶绿体基因组的基因顺序和组织呈现出开花植物的一般结构,与其他唇形目叶绿体基因组相似。四角花的叶绿体基因组是一个153,776碱基对(bp)的环状分子,具有四分体结构,包含两个单拷贝区域,一个大单拷贝区域(LSC,84,612 bp)和一个小单拷贝区域(SSC,17,586 bp),由反向重复区域(IRs,25,789 bp)隔开。此外,四角花的叶绿体基因组GC含量为38.3%,包含121个基因,其中86个是蛋白质编码基因,31个是转运RNA,4个是核糖体RNA。四角花的叶绿体基因组共有47个串联重复序列和347个简单序列重复(SSRs),其中单核苷酸最为常见,二核苷酸、三核苷酸、四核苷酸和六核苷酸出现频率较低。将此处获得的结果与迄今为止可用的其他唇形目叶绿体基因组进行比较,为唇形目叶绿体基因组的进化提供了新的见解。总体而言,唇形目基因的进化速率具有谱系、位点和区域特异性,表明开花植物叶绿体基因组中核苷酸替代的进化模式是复杂的。四角花中串联重复序列的发现以及唇形目叶绿体基因组之间不同区域的存在为开发不同分类水平的标记提供了基础。新开发的标记有可能极大地提高分子系统发育的分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53cd/4478014/a34f241524f4/pone.0129930.g001.jpg

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