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首页> 外文期刊>BMC Genomics >De novo transcriptome analysis of white teak (Gmelina arborea Roxb) wood reveals critical genes involved in xylem development and secondary metabolism
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De novo transcriptome analysis of white teak (Gmelina arborea Roxb) wood reveals critical genes involved in xylem development and secondary metabolism

机译:DE Novo转录组合体分析白柚木(GMELINA Arborea Roxb)木材揭示了Xylem发育和次生新陈代谢的关键基因

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Gmelina arborea Roxb is a fast-growing tree species of commercial importance for tropical countries due to multiple industrial uses of its wood. Wood is primarily composed of thick secondary cell walls of xylem cells which imparts the strength to the wood. Identification of the genes involved in the secondary cell wall biosynthesis as well as their cognate regulators is crucial to understand how the production of wood occurs and serves as a starting point for developing breeding strategies to produce varieties with improved wood quality, better paper pulping or new potential uses such as biofuel production. In order to gain knowledge on the molecular mechanisms and gene regulation related with wood development in white teak, a de novo sequencing and transcriptome assembly approach was used employing secondary cell wall synthesizing cells from young white teak trees. For generation of transcriptome, RNA-seq reads were assembled into 110,992 transcripts and 49,364 genes were functionally annotated using plant databases; 5071 GO terms and 25,460 SSR markers were identified within xylem transcripts and 10,256 unigenes were assigned to KEGG database in 130 pathways. Among transcription factor families, C2H2, C3H, bLHLH and MYB were the most represented in xylem. Differential gene expression analysis using leaves as a reference was carried out and a total of 20,954 differentially expressed genes were identified including monolignol biosynthetic pathway genes. The differential expression of selected genes (4CL, COMT, CCoAOMT, CCR and NST1) was validated using qPCR. We report the very first de novo transcriptome of xylem-related genes in this tropical timber species of commercial importance and constitutes a valuable extension of the publicly available transcriptomic resource aimed at fostering both basic and breeding studies.
机译:Gmelina Arborea Roxb是由于其木材的多种工业用途,对热带国家的一种快速增长的商业重要性。木材主要由木质细胞的厚二次电池壁组成,赋予木材的强度。鉴定涉及二次细胞壁生物合成的基因以及其同源调节剂至关重要,以了解木材的产生,作为开发育种策略的起点,以产生改善木材质量,更好的纸浆或新的纸浆生物燃料生产等潜在用途。为了获得关于白色柚木与木材发育有关的分子机制和基因调节的知识,使用了从年轻白柚木树中合成细胞的二级序列和转录组合组装方法。对于转录组的产生,将RNA-SEQ读数组装成110,992个转录物,并且使用植物数据库在功能上注释49,364个基因; 5071 GO术语和25,460个SSR标记在Xylem转录物中鉴定,10,256个未在130个途径中分配给Kegg数据库。在转录因子家族中,C 2 H 2,C 3H,BLHLH和MYB是Xylem中最代表的。进行使用叶片作为参考的差异基因表达分析,并鉴定了总共20,954个差异表达基因,包括单醇生物合成途径基因。使用QPCR验证所选基因(4Cl,COMT,CCOaOmt,CCR和NST1)的差异表达。我们在这一热带木材物种的商业重要性中报告了与Xylem相关基因的第一段新博语转录组,并构成了旨在促进基本和育种研究的公开转录组资源的宝贵延伸。

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