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Complete Chloroplast Genomes of Three Medicinal Alpinia Species: Genome Organization Comparative Analyses and Phylogenetic Relationships in Family Zingiberaceae

机译:三种药用高良种植物的完整叶绿体基因组:姜科植物的基因组组织比较分析和系统发育关系

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摘要

( ), ( ) and ( ), which belong to the family Zingiberaceae, exhibit multiple medicinal properties. The chloroplast genome of a non-model plant provides valuable information for species identification and phylogenetic analysis. Here, we sequenced three complete chloroplast genomes of , sampled from Guangdong and , and analyzed the published chloroplast genomes of ( ) and sampled from Hainan to retrieve useful chloroplast molecular resources for . The five chloroplast genomes possessed typical quadripartite structures comprising of a large single copy (LSC, 87,248–87,667 bp), a small single copy (SSC, 15,306–18,295 bp) and a pair of inverted repeats (IR, 26,917–29,707 bp). They had similar gene contents, gene orders and GC contents, but were slightly different in the numbers of small sequence repeats (SSRs) and long repeats. Interestingly, fifteen highly divergent regions ( , , , , , , , , , , , , , , and ), which could be suitable for species identification and phylogenetic studies, were detected in the chloroplast genomes. Comparative analyses among the five chloroplast genomes indicated that 1891 mutational events, including 304 single nucleotide polymorphisms (SNPs) and 118 insertion/deletions (indels) between and , 367 SNPs and 122 indels between and sampled from Guangdong, 331 SNPs and 115 indels between and , 371 SNPs and 120 indels between and sampled from Hainan, and 20 SNPs and 23 indels between the two accessions of , were accurately located. Additionally, phylogenetic relationships based on SNP matrix among 28 whole chloroplast genomes showed that was a sister branch to in the family Zingiberaceae, and that the five accessions were divided into three groups, one including , another including and , and the other including two accessions of . In conclusion, the complete chloroplast genomes of the three medicinal species in this study provided valuable genomic resources for further phylogeny and species identification in the family Zingiberaceae.
机译:(),()和(),属于姜科,具有多种药用特性。非模型植物的叶绿体基因组为物种鉴定和系统发育分析提供了有价值的信息。在这里,我们对三个完整的叶绿体基因组进行了测序,分别从广东和广东采样,并分析了已公布的()和从海南采样的叶绿体基因组,以检索有用的叶绿体分子资源。五个叶绿体基因组具有典型的四方结构,包括一个大的单拷贝(LSC,87,248–87,667 bp),一个小的单拷贝(SSC,15,306–18,295 bp)和一对反向重复(IR,26,917-29,707 bp)。它们具有相似的基因含量,基因顺序和GC含量,但在小序列重复(SSR)和长重复的数量上略有不同。有趣的是,在叶绿体基因组中检测到15个高度不同的区域(,,,,,,,,,,,,,和),这些区域可能适用于物种识别和系统发育研究。五个叶绿体基因组之间的比较分析表明,有1891个突变事件,包括和之间有304个单核苷酸多态性(SNP)和118个插入/缺失(indels),广东之间有367个SNP和122个插入/缺失,从广东到有331个SNP和115个插入/缺失。准确定位了海南之间的371个SNP和120个indel,并从海南的两个样本之间准确定位了20个SNP和23个indel。此外,基于SNP矩阵的28个完整叶绿体基因组之间的系统发育关系表明,它是姜科的一个姊妹分支,并且五个种被分为三类,一个包括,另一种包括和,另一种包括两个种。 。总之,本研究中三种药用植物的完整叶绿体基因组为姜科的进一步系统发育和物种鉴定提供了宝贵的基因组资源。

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