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甘蓝型油菜白芥黄花叶病毒粒体基因组全序列的测定与分析

Assembly and comparative analysis of the complete mitochondrial genome of Brassica rapa var. Purpuraria.

机构信息

Development and Utilization and Quality and Safety Control of Characteristic Agricultural Resources in Central Hunan, College of Agriculture and Biotechnology , Hunan University of Humanities, Science and Technology, Loudi, 417000, China.

Xiangtan Agricultural Science Research Institute, Xiangtan, 411100, China.

出版信息

BMC Genomics. 2024 Jun 1;25(1):546. doi: 10.1186/s12864-024-10457-1.

Abstract

BACKGROUND

Purple flowering stalk (Brassica rapa var. purpuraria) is a widely cultivated plant with high nutritional and medicinal value and exhibiting strong adaptability during growing. Mitochondrial (mt) play important role in plant cells for energy production, developing with an independent genetic system. Therefore, it is meaningful to assemble and annotate the functions for the mt genome of plants independently. Though there have been several reports referring the mt genome of in Brassica species, the genome of mt in B. rapa var. purpuraria and its functional gene variations when compared to its closely related species has not yet been addressed.

RESULTS

The mt genome of B. rapa var. purpuraria was assembled through the Illumina and Nanopore sequencing platforms, which revealed a length of 219,775 bp with a typical circular structure. The base composition of the whole B. rapa var. purpuraria mt genome revealed A (27.45%), T (27.31%), C (22.91%), and G (22.32%). 59 functional genes, composing of 33 protein-coding genes (PCGs), 23 tRNA genes, and 3 rRNA genes, were annotated. The sequence repeats, codon usage, RNA editing, nucleotide diversity and gene transfer between the cp genome and mt genome were examined in the B. rapa var. purpuraria mt genome. Phylogenetic analysis show that B. rapa var. Purpuraria was closely related to B. rapa subsp. Oleifera and B. juncea. Ka/Ks analysis reflected that most of the PCGs in the B. rapa var. Purpuraria were negatively selected, illustrating that those mt genes were conserved during evolution.

CONCLUSIONS

The results of our findings provide valuable information on the B.rapa var. Purpuraria genome, which might facilitate molecular breeding, genetic variation and evolutionary researches for Brassica species in the future.

摘要

背景

紫花薹(Brassica rapa var. purpuraria)是一种广泛种植的植物,具有很高的营养价值和药用价值,在生长过程中适应性很强。线粒体(mt)在植物细胞中对于能量产生具有重要作用,其发育具有独立的遗传系统。因此,独立组装和注释植物 mt 基因组的功能具有重要意义。尽管已经有一些关于 Brassica 物种 mt 基因组的报道,但尚未涉及 B. rapa var. purpuraria 的 mt 基因组及其与亲缘关系密切的物种相比的功能基因变异。

结果

通过 Illumina 和 Nanopore 测序平台组装了 B. rapa var. purpuraria 的 mt 基因组,揭示了一个长 219775bp 的典型圆形结构。整个 B. rapa var. purpuraria mt 基因组的碱基组成显示 A(27.45%)、T(27.31%)、C(22.91%)和 G(22.32%)。注释了 59 个功能基因,包括 33 个蛋白质编码基因(PCGs)、23 个 tRNA 基因和 3 个 rRNA 基因。在 B. rapa var. purpuraria mt 基因组中检查了序列重复、密码子使用、RNA 编辑、核苷酸多样性和 cp 基因组与 mt 基因组之间的基因转移。系统发育分析表明,B. rapa var. Purpuraria 与 B. rapa subsp. Oleifera 和 B. juncea 密切相关。Ka/Ks 分析表明,B. rapa var. Purpuraria 中的大多数 PCGs 受到负选择,表明这些 mt 基因在进化过程中是保守的。

结论

我们的研究结果为 B.rapa var. Purpuraria 基因组提供了有价值的信息,这可能有助于未来 Brassica 物种的分子育种、遗传变异和进化研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a607/11143693/4eb70083b5d4/12864_2024_10457_Fig1_HTML.jpg

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