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紫菜苔(变种)首个完整线粒体基因组的组装与比较分析:对其遗传结构和进化关系的见解

Assembly and comparative analysis of the first complete mitochondrial genome of zicaitai ( var. ): insights into its genetic architecture and evolutionary relationships.

作者信息

Xiao Wanyu, Wu Xian, Zhou Xianyu, Zhang Jing, Huang Jianghua, Dai Xiuchun, Ren Hailong, Xu Donglin

机构信息

Guangzhou Municipal Crop Seed Quality Inspection Center, Guangzhou Academy of Agricultural and Rural Sciences, Guangzhou, China.

Northeast Agricultural University, Harbin, China.

出版信息

Front Plant Sci. 2024 Oct 10;15:1475064. doi: 10.3389/fpls.2024.1475064. eCollection 2024.

Abstract

INTRODUCTION

Zicaitai ( var. ) is a variety renowned for its distinctive taste and rich nutritional profile. In recent years, the mitochondrial genomes of several species have been documented, but the mitogenome of Zicaitai remains unreported.

METHODS

In this study, we characterized the Zicaitai mitogenome achieved through the assembly of sequencing reads derived from both the Oxford Nanopore and Illumina platforms. A detailed comparative analysis was carried out with other species to draw comparisons and contrasts. In-depth analyses of codon usage patterns, instances of RNA editing, and the prevalence of sequence repeats within the mitogenome were also conducted to gain a more nuanced understanding of its genetic architecture. A phylogenetic analysis was performed, utilizing the coding sequences (CDS) from the mitochondrial genome of Zicaitai and that of 20 closely related species/varieties to trace evolutionary connections.

RESULTS

The Zicaitai mitogenome is characterized by a circular structure spanning 219,779 base pairs, and it encompasses a total of 59 genes. This gene set includes 33 protein-coding genes, 23 tRNA genes, and 3 rRNA genes, providing a rich foundation for further genomic study. An analysis of the Ka/Ks ratios for 30 protein-coding genes shared by the mitogenomes of Zicaitai and seven other species revealed that most of these genes had undergone purifying selection. Additionally, the study explored the migration of genes between the chloroplast and nuclear genomes and the mitogenome, offering insights into the dynamics of genetic exchange within the genus.

DISCUSSION

The collective results in this study will serve as a foundational resource, aiding future evolutionary studies focused on , and contributing to a broader understanding of the complexities of plant evolution.

摘要

引言

紫苔菜(变种)是一种以其独特口味和丰富营养成分而闻名的品种。近年来,已记录了几种苔菜属物种的线粒体基因组,但紫苔菜的线粒体基因组仍未报道。

方法

在本研究中,我们对通过组装来自牛津纳米孔和Illumina平台的测序读数获得的紫苔菜线粒体基因组进行了特征分析。与其他苔菜属物种进行了详细的比较分析以进行比较和对照。还对线粒体基因组内的密码子使用模式、RNA编辑实例和序列重复发生率进行了深入分析,以更细致地了解其遗传结构。利用紫苔菜线粒体基因组和20个密切相关物种/变种的编码序列(CDS)进行了系统发育分析,以追踪进化联系。

结果

紫苔菜线粒体基因组的特征是呈环状结构,跨度为219,779个碱基对,总共包含59个基因。这个基因集包括33个蛋白质编码基因、23个tRNA基因和3个rRNA基因,为进一步的基因组研究提供了丰富的基础。对紫苔菜和其他七个苔菜属物种线粒体基因组共有的30个蛋白质编码基因的Ka/Ks比率分析表明,这些基因中的大多数都经历了纯化选择。此外,该研究还探讨了叶绿体和核基因组与线粒体基因组之间的基因迁移,为苔菜属内的基因交换动态提供了见解。

讨论

本研究的总体结果将作为基础资源,有助于未来针对苔菜属的进化研究,并有助于更广泛地理解植物进化的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8a9/11499134/4b401afc7d74/fpls-15-1475064-g001.jpg

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