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首页> 外文期刊>Mitochondrial DNA Part B >Analysis of the complete chloroplast genomes of Scutellaria tsinyunensis and Scutellaria tuberifera (Lamiaceae)
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Analysis of the complete chloroplast genomes of Scutellaria tsinyunensis and Scutellaria tuberifera (Lamiaceae)

机译:Scutellaria Tsinyunensis和Scutellaria Tuberifera(LamiCeae)的完整叶绿体基因组分析

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Scutellaria Linn. is a perennial herb with about 300 species. This genus has high medicinal value and many are used in Traditional Chinese Medicine (TCM). In this study, we sequenced and assembled the complete chloroplast genomes of Scutellaria tsinyunensis and S. tuberifera . Subsequently, we conducted a comprehensive comparative genomics analysis with 12 other published Scutellaria species. These genomes all had a conserved quartile structure, and the gene contents, gene sequences and GC contents are highly similar. The study on the genetic characteristics and nucleotide substitution rate of different genes found that the protein-coding genes of chloroplasts have differed greatly. Most genes are under purifying selection, but the rps 12 gene may have undergone positive selection. Besides, we identified three hypervariable regions as potential markers for Scutellaria taxa, which could play an important role in species identification of Scutellaria . Phylogenetic analysis showed that the 14 Scutellaria taxa were divided into two major clades. Moreover, the variation of IR regions is closely related to the evolutionary history as was reconstructed based on SNPs. In conclusion, we provided two high-quality chloroplast reference genomes of Scutellaria , this reliable information and genomic resources are valuable for developing of efficient DNA barcodes as reconstruction of chloroplast evolutionary history of the genus.
机译:Scutellaria Linn。常年草药有大约300种。该属具有高药物价值,许多人用于中药(TCM)。在这项研究中,我们测序并组装了 Scutellaria Tsinyunensis和的完整叶绿体基因组。 Tuberifera。随后,我们进行了全面的比较基因组学分析,其中12种另外发表的 Scutellaria物种。这些基因组均具有保守的四分位结构,并且基因含量,基因序列和GC含量非常相似。对不同基因的遗传特征和核苷酸取代率的研究发现叶绿体的蛋白质编码基因有很大差异。大多数基因在纯化选择,但 RPS 12基因可能经历阳性选择。此外,我们将三个高变的地区确定为 Scutellaria分类群的潜在标志物,这可能在物种鉴定中发挥重要作用。系统发育分析表明,14克兰氏菌群分类为两个主要的碎片。此外,根据基于SNP的重建,IR区域的变化与进化历史密切相关。总之,我们提供了两种高质量的叶绿体参考基因组,即Scutellia,这种可靠的信息和基因组资源对于发展的高效DNA条形码作为属的重建是属的。

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