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De Novo Assembly of Expressed Transcripts and Global Transcriptomic Analysis from Seedlings of the Paper Mulberry (Broussonetia kazinoki x Broussonetia papyifera)

机译:从头到尾表达桑Assembly和从纸桑苗的全球转录组学分析(Broussonetia kazinoki x Broussonetia papyifera)

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摘要

The paper mulberry is one of the multifunctional tree species in agroforestry systems and is also commonly utilized in traditional medicine in China and other Asian countries. However, little is known about its molecular genetics, which hinders research on and exploitation of this valuable resource. To discern the correlation between gene expression and the essential properties of the paper mulberry, we performed a transcriptomics analysis, assembling a total of 37,725 unigenes from 54,638,676 reads generated by RNA-seq. Among these, 22,692 unigenes showed greater than 60% similarity with genes from other species. The lengths of 13,566 annotated unigenes were longer than 1,000 bp. Functional clustering analysis with COG (Cluster of Orthologous Groups) revealed that 17,184 unigenes are primarily involved in transcription, translation, signal transduction, carbohydrate metabolism, secondary metabolism, and energy metabolism. GO (Gene Ontology) annotation suggests enrichment of genes encoding antioxidant activity, transporter activity, biosynthesis, metabolism and stress response, with a total of 30,659 unigenes falling in these categories. KEGG (Kyoto Encyclopedia of Genes and Genomes) metabolic pathway analysis showed that 7,199 unigenes are associated with 119 metabolic pathways. In addition to the basic metabolism, these genes are enriched for plant pathogen interaction, flavonoid metabolism and other secondary metabolic processes. Furthermore, differences in the transcriptomes of leaf, stem and root tissues were analyzed and 7,233 specifically expressed unigenes were identified. This global expression analysis provided novel insights about the molecular mechanisms of the biosynthesis of flavonoid, lignin and cellulose, as well as on the response to biotic and abiotic stresses including the remediation of contaminated soil by the paper mulberry.
机译:桑皮纸是农林业系统中的多功能树种之一,在中国和其他亚洲国家也广泛用于传统医学中。但是,对其分子遗传学知之甚少,这阻碍了对这种宝贵资源的研究和开发。为了辨别基因表达和桑树基本特性之间的相关性,我们进行了转录组学分析,从RNA-seq产生的54,638,676个读数中组装了37,725个单基因。其中,22,692个单基因与其他物种的基因有超过60%的相似性。 13566个带注释的单基因的长度超过1000 bp。使用COG(直系同源群)进行功能聚类分析表明,有17,184个单基因主要参与转录,翻译,信号转导,碳水化合物代谢,次级代谢和能量代谢。 GO(基因本体论)注释表明编码抗氧化活性,转运蛋白活性,生物合成,代谢和应激反应的基因丰富,共有30659个单基因属于这些类别。 KEGG(《基因与基因组京都百科全书》)代谢途径分析表明,有7199个单基因与119个代谢途径相关。除了基本代谢外,这些基因还丰富了植物病原体的相互作用,类黄酮代谢和其他次级代谢过程。此外,分析了叶,茎和根组织的转录组的差异,并鉴定了7,233种特异性表达的单基因。这项全球表达分析提供了有关黄酮,木质素和纤维素生物合成的分子机制,以及对生物和非生物胁迫的响应(包括纸桑对污染土壤的修复)的新颖见解。

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