首页> 美国卫生研究院文献>other >Next Generation Sequencing and Transcriptome Analysis Predicts Biosynthetic Pathway of Sennosides from Senna (Cassia angustifolia Vahl.) a Non-Model Plant with Potent Laxative Properties
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Next Generation Sequencing and Transcriptome Analysis Predicts Biosynthetic Pathway of Sennosides from Senna (Cassia angustifolia Vahl.) a Non-Model Plant with Potent Laxative Properties

机译:下一代测序和转录组分析预测了番泻叶番泻叶中番石榴苷的生物合成途径番泻叶是具有强泻性特性的非模型植物。

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摘要

Senna (Cassia angustifolia Vahl.) is a world’s natural laxative medicinal plant. Laxative properties are due to sennosides (anthraquinone glycosides) natural products. However, little genetic information is available for this species, especially concerning the biosynthetic pathways of sennosides. We present here the transcriptome sequencing of young and mature leaf tissue of Cassia angustifolia using Illumina MiSeq platform that resulted in a total of 6.34 Gb of raw nucleotide sequence. The sequence assembly resulted in 42230 and 37174 transcripts with an average length of 1119 bp and 1467 bp for young and mature leaf, respectively. The transcripts were annotated using NCBI BLAST with ‘green plant database (txid 33090)’, Swiss Prot, Kyoto Encylcopedia of Genes & Genomes (KEGG), Cluster of Orthologous Gene (COG) and Gene Ontology (GO). Out of the total transcripts, 40138 (95.0%) and 36349 (97.7%) from young and mature leaf, respectively, were annotated by BLASTX against green plant database of NCBI. We used InterProscan to see protein similarity at domain level, a total of 34031 (young leaf) and 32077 (mature leaf) transcripts were annotated against the Pfam domains. All transcripts from young and mature leaf were assigned to 191 KEGG pathways. There were 166 and 159 CDS, respectively, from young and mature leaf involved in metabolism of terpenoids and polyketides. Many CDS encoding enzymes leading to biosynthesis of sennosides were identified. A total of 10,763 CDS differentially expressing in both young and mature leaf libraries of which 2,343 (21.7%) CDS were up-regulated in young compared to mature leaf. Several differentially expressed genes found functionally associated with sennoside biosynthesis. CDS encoding for many CYPs and TF families were identified having probable roles in metabolism of primary as well as secondary metabolites. We developed SSR markers for molecular breeding of senna. We have identified a set of putative genes involved in various secondary metabolite pathways, especially those related to the synthesis of sennosides which will serve as an important platform for public information about gene expression, genomics, and functional genomics in senna.
机译:番泻叶(Cassia angustifolia Vahl。)是世界上天然的泻药。泻药性质归因于番泻苷(蒽醌糖苷)天然产物。但是,该物种的遗传信息很少,特别是有关仙奴酚苷的生物合成途径的信息。我们在此介绍了使用Illumina MiSeq平台对决明子的年轻和成熟叶片组织进行的转录组测序,该序列总共产生了6.34 Gb的原始核苷酸序列。序列组装产生了42230和37174个转录本,分别为幼叶和成熟叶的平均长度分别为1119 bp和1467 bp。使用NCBI BLAST和“绿色植物数据库(txid 33090)”,Swiss Prot,《京都议定书》,基因与基因组百科全书(KEGG),直系同源基因簇(COG)和基因本体论(GO)对成绩单进行注释。在总的转录本中,BLASTX针对NCBI的绿色植物数据库注释了分别来自幼叶和成熟叶的40138(95.0%)和36349(97.7%)。我们使用InterProscan查看结构域水平上的蛋白质相似性,针对Pfam结构域注释了总共34031(幼叶)和32077(成熟叶)转录本。来自幼叶和成熟叶的所有转录本均被分配到191条KEGG途径。来自年轻和成熟叶片的166和159 CDS参与了萜类化合物和聚酮化合物的代谢。已鉴定出许多导致千仙皂甙生物合成的编码CDS的酶。与成熟叶片相比,在幼叶和成熟叶片库中总共表达10,763个CDS,其中2,343(21.7%)个CDS在幼叶中被上调。发现几个功能上与番石榴苷生物合成相关的差异表达基因。已确定许多CYP和TF家族的CDS编码可能在一级和二级代谢产物的代谢中起作用。我们开发了番泻叶分子育种的SSR标记。我们已经鉴定出一组推定的基因,涉及各种次级代谢产物途径,特别是与山参皂苷合成有关的那些,它将作为有关番泻叶基因表达,基因组学和功能基因组学的公共信息的重要平台。

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