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首页> 外文期刊>BMC Plant Biology >De novo assembly and Transcriptome characterization of an endemic species of Vietnam, Panax vietnamensis Ha et Grushv., including the development of EST-SSR markers for population genetics
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De novo assembly and Transcriptome characterization of an endemic species of Vietnam, Panax vietnamensis Ha et Grushv., including the development of EST-SSR markers for population genetics

机译:De Novo组装和转录组特征越南,Panax越南哈伊特格尔夫,包括群体遗传学的EST-SSR标志物的开发

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Understanding the genetic diversity in endangered species that occur inforest remnants is necessary to establish efficient strategies for the species conservation, restoration and management. Panax vietnamensis Ha et Grushv. is medicinally important, endemic and endangered species of Vietnam. However, genetic diversity and structure of population are unknown due to lack of efficient molecular markers. In this study, we employed Illumina HiSeq? 4000 sequencing to analyze the transcriptomes of P. vietnamensis (roots, leaves and stems). Raw reads total of 23,741,783 was obtained and then assembled, from which the generated unigenes were 89,271 (average length?=?598.3191?nt). The 31,686 unigenes were annotated in different databases i.e. Gene Ontology, Kyoto Encyclopedia of Genes and Genomes, Nucleotide Collection (NR/NT) and Swiss-Prot for functional annotation. Further, 11,343 EST-SSRs were detected. From 7774 primer pairs, 101 were selected for polymorphism validation, in which; 20 primer pairs were successfully amplified to DNA fragments and significant amounts of polymorphism was observed within population. The nine polymorphic microsatellite loci were used for population structure and diversity analyses. The obtained results revealed high levels of genetic diversity in populations, the average observed and expected heterozygosity were HO?=?0.422 and HE?=?0.479, respectively. During the Bottleneck analysis using TPM and SMM models (p??0.01) shows that targeted population is significantly heterozygote deficient. This suggests sign of the bottleneck in all populations. Genetic differentiation between populations was moderate (FST?=?0.133) and indicating slightly high level of gene flow (Nm?=?1.63). Analysis of molecular variance (AMOVA) showed 63.17% of variation within individuals and 12.45% among populations. Our results shows two genetic clusters related to geographical distances. Our study will assist conservators in future conservation management, breeding, production and habitats restoration of the species.
机译:了解发生濒危物种的遗传多样性,以为物种保护,恢复和管理建立有效的策略。 Panax越南盾Ha et Grushv。是越南的药用,流行和濒危物种。然而,由于缺乏有效的分子标记,遗传多样性和人口结构是未知的。在这项研究中,我们雇用了Illumina Hiseq? 4000测序以分析P.越南盾(根,叶和茎)的转录组。获得的原始读取总共23,741,783,然后组装,生成的unigenes为89,271(平均长度θ=Δ= 598.3191〜nt)。 31,686 unigenes在不同的数据库中注释,即基因本体,基因和基因组的京都百科全书,核苷酸收集(NR / NT)和瑞士 - 功能注释。此外,检测到11,343个EST-SSR。从7774引物对,选择101,用于多态性验证,其中;成功扩增20个引物对与DNA片段,并且在群体内观察到大量多态性。九种多态性微卫星基因座用于人口结构和多样性分析。所获得的结果揭示了群体中高水平的遗传多样性,观察到的平均值和预期的杂合子是HO?= 0.422和他?=?0.479。在使用TPM和SMM模型的瓶颈分析期间(P?<0.01)显示靶向群是显着的杂合子缺陷。这表明所有人口的瓶颈迹象。群体之间的遗传分化适中(FST?= 0.133),并表明略微高水平的基因流量(nm?=Δ1.63)。分子方差(Amova)分析(Amova)显示出群体内的63.17%和12.45%。我们的结果表明,两个与地理距离有关的遗传集群。我们的研究将在未来的保护管理,繁殖,生产和栖息地恢复物种中提供节约工。

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