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Comprehensive comparative analysis of chloroplast genomes from seven Panax species and development of an authentication system based on species-unique single nucleotide polymorphism markers

机译:基于物种 - 独特的单核苷酸多态性标志物的七种Panax物种叶绿体基因组综合对比分析。

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摘要

Background: Panax species are important herbal medicinal plants in the Araliaceae family. Recently, we reported the complete chloroplast genomes and 45S nuclear ribosomal DNA sequences from seven Panax species, two (P. quinquefolius and P. trifolius) from North America and five (P. ginseng, P. notoginseng, P. japonicus, P. vietnamensis, and P. stipuleanatus) from Asia. Methods: We conducted phylogenetic analysis of these chloroplast sequences with 12 other Araliaceae species and comprehensive comparative analysis among the seven Panax whole chloroplast genomes. Results: We identified 1,128 single nucleotide polymorphisms (SNP) in coding gene sequences, distributed among 72 of the 79 protein-coding genes in the chloroplast genomes of the seven Panax species. The other seven genes (including psaJ, psbN, rpl23, psbF, psbL, rps18, and rps7) were identical among the Panax species. We also discovered that 12 large chloroplast genome fragments were transferred into the mitochondrial genome based on sharing of more than 90% sequence similarity. The total size of transferred fragments was 60,331 bp, corresponding to approximately 38.6% of chloroplast genome. We developed 18 SNP markers from the chloroplast genic coding sequence regions that were not similar to regions in the mitochondrial genome. These markers included two or three species-specific markers for each species and can be used to authenticate all the seven Panax species from the others. Conclusion: The comparative analysis of chloroplast genomes from seven Panax species elucidated their genetic diversity and evolutionary relationships, and 18 species-specific markers were able to discriminate among these species, thereby furthering efforts to protect the ginseng industry from economically motivated adulteration. Keywords: Araliaceae evolution, Chloroplast genome, dCAPS markers, Ginseng authentication, Panax species
机译:背景:人参属是五加科植物家族重要的草药植物。最近,我们报道了来自北美和五(P.人参,三七,P.刺参,P. vietnamensis 7个人参属,两(西洋参和P. trifolius)完整的叶绿体基因组和45S核糖体DNA序列和P. stipuleanatus)来自亚洲。方法:我们进行了与其他12种五加科植物和七三七整个叶绿体基因组之间的综合比较分析这些叶绿体序列的系统发育分析。结果:在编码基因序列,其中在七个人参属的基因组叶绿体79蛋白编码基因的72分布鉴定1128个单核苷酸多态性(SNP)。其它7个基因(包括psaJ,psbN,rpl23,PSBF,psbL位,rps18和RPS7)是人参属之间是相同的。我们还发现,12个大叶绿体基因组片段转移到基于共享超过90%的序列相似的线粒体基因组。转移片段的总大小是60331个碱基,对应于叶绿体基因组的约38.6%。我们开发了18个SNP标记叶绿体是不是类似于线粒体基因组区域的核不编码序列的区域。这些标记包括每个物种的两个或三个品种特异的标志物,可用于验证与其他所有的七个人参属。结论:叶绿体基因组由七个人参属的比较分析,阐明其遗传多样性和进化关系,和18种特异的标志物能够物种间进行区分,从而进一步努力保护人参产业从经济动机掺假。关键词:五加科植物进化,叶绿体基因组,dCAPS特异性标志物,人参验证,人参属

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