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The chromosome-level reference genome assembly for Dendrobium officinale and its utility of functional genomics research and molecular breeding study

机译:染色体级参考基因组组装用于树皮型Officinale及其功能基因组学研究与分子育种研究的效用

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摘要

Dendrobium officinale, an important medicinal plant of the genus Dendrobium in Orchidaceae family, has been used as traditional Chinese medicine (TCM) for nearly thousands of years. Here, we report the first chromosome-level reference genome of D. officinale, based on PacBio long-reads, Illumina short-reads and Hi-C data. The high-quality assembled genome is 1.23 Gb long, with contig N50 of 1.44 Mb. A total of 93.53% genome sequences were assembled into 19 pseudochromosomes with a super scaffold N50 of 63.07 Mb. Through comparative genomic analysis, we explored the expanded gene families of D. officinale, and also their impact on environmental adaptation and biosynthesis of secondary metabolites. We further performed detailed transcriptional analysis of D. officinale, and identified the candidate genes involved in the biosynthesis of three main active ingredients, including polysaccharides, alkaloids and flavonoids. In addition, the MODIFYING WALL LIGNIN-1 (MWL1) gene, which inferred from Genome-Wide Association Studies (GWAS) based on the resequencing date from D. officinale and five related species and their morphologic features, may contribute to the plant production (yield of stems) of D. officinale. Therefore, the high-quality reference genome reported in this study could benefits functional genomics research and molecular breeding of D. officinale.
机译:Dendrobium Officinale是兰科菊属植物属的重要药用植物,已被用作中医(TCM)近千年。在这里,我们报告了D. Officinale的第一种染色体级参考基因组,基于PACBIO长读,Illumina短读和Hi-C数据。高质量的组装基因组长为1.23 gb,具有1.44 MB的CONTIG N50。将总基因组序列组装成19个假致瘤,具有63.07mb的超支架N50。通过比较基因组分析,我们探讨了D. Officinale的扩展基因系列,以及它们对次生代谢物的环境适应和生物合成的影响。我们进一步对D. Officinale进行了详细的转录分析,并鉴定了参与三种主要活性成分的生物合成的候选基因,包括多糖,生物碱和黄酮类化合物。此外,根据从D. Officinale和五种相关物种的重组日期,从基因组 - 宽协会研究(GWAs)推断出改性壁Lignin-1(MWL1)基因可能有助于植物生产( D. Officinale茎的产量。因此,本研究报告的高质量参考基因组可以利用D. Officinale的功能基因组学研究和分子育种。

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