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北美人参全生育期根转录组的组装与分析。

The root transcriptome for North American ginseng assembled and profiled across seasonal development.

机构信息

Western University, 1151 Richmond St, London, ON, Canada.

出版信息

BMC Genomics. 2013 Aug 19;14:564. doi: 10.1186/1471-2164-14-564.

Abstract

BACKGROUND

Ginseng including North American ginseng (Panax quinquefolius L.) is one of the most widely used medicinal plants. Its success is thought to be due to a diverse collection of ginsenosides that serve as its major bioactive compounds. However, few genomic resources exist and the details concerning its various biosynthetic pathways remain poorly understood. As the root is the primary tissue harvested commercially for ginsenosides, next generation sequencing was applied to the characterization and assembly of the root transcriptome throughout seasonal development. Transcripts showing homology to ginsenoside biosynthesis enzymes were profiled in greater detail.

RESULTS

RNA extracts from root samples from seven development stages of North American ginseng were subjected to 454 sequencing, filtered for quality and used in the de novo assembly of a collective root reference transcriptome consisting of 41,623 transcripts. Annotation efforts using a number of public databases resulted in detailed annotation information for 34,801 (84%) transcripts. In addition, 3,955 genes were assigned to metabolic pathways using the Kyoto Encyclopedia of Genes and Genomes. Among our results, we found all of the known enzymes involved in the ginsenoside backbone biosynthesis and used co-expression analysis to identify a number of candidate sequences involved in the latter stages ginsenoside biosynthesis pathway. Transcript profiles suggest ginsenoside biosynthesis occurs at distinct stages of development.

CONCLUSIONS

The assembly generated provides a comprehensive annotated reference for future transcriptomic study of North American ginseng. A collection of putative ginsenoside biosynthesis genes were identified and candidate genes predicted from the lesser understood downstream stages of biosynthesis. Transcript expression profiles across seasonal development suggest a primary dammarane-type ginsenoside biosynthesis occurs just prior to plant senescence, with secondary ginsenoside production occurring throughout development. Data from the study provide a valuable resource for conducting future ginsenoside biosynthesis research in this important medicinal plant.

摘要

背景

人参包括西洋参(Panax quinquefolius L.)是使用最广泛的药用植物之一。其成功被认为是由于其含有多种作为主要生物活性化合物的人参皂苷。然而,目前存在的基因组资源很少,其各种生物合成途径的细节仍知之甚少。由于根是商业上用于收获人参皂苷的主要组织,因此应用下一代测序技术对北美人参根在整个季节性发育过程中的转录组进行了特征描述和组装。更详细地分析了与人参皂苷生物合成酶具有同源性的转录本。

结果

来自北美人参七个发育阶段的根样本的 RNA 提取物进行了 454 测序,经过质量过滤,用于从头组装一个由 41623 个转录本组成的集体根参考转录组。使用多个公共数据库进行注释工作,为 34801 个(84%)转录本提供了详细的注释信息。此外,使用京都基因与基因组百科全书将 3955 个基因分配到代谢途径中。在我们的研究结果中,我们发现了所有已知的参与人参皂苷骨架生物合成的酶,并使用共表达分析鉴定了一些参与人参皂苷生物合成途径后期阶段的候选序列。转录谱表明人参皂苷生物合成发生在不同的发育阶段。

结论

生成的组装提供了一个全面注释的北美人参转录组研究参考。收集了一批推定的人参皂苷生物合成基因,并从生物合成后期的未知阶段预测了候选基因。季节性发育过程中的转录表达谱表明,在植物衰老之前主要发生达玛烷型人参皂苷生物合成,次级人参皂苷的产生贯穿整个发育过程。该研究的数据为在这种重要药用植物中进行未来的人参皂苷生物合成研究提供了有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fba0/3751939/81daf536d602/1471-2164-14-564-1.jpg

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