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首页> 外文期刊>BMC Plant Biology >De novo assembly of transcriptome and genome-wide identification reveal GA 3 stress-responsive WRKY transcription factors involved in fiber formation in jute ( Corchorus capsularis )
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De novo assembly of transcriptome and genome-wide identification reveal GA 3 stress-responsive WRKY transcription factors involved in fiber formation in jute ( Corchorus capsularis )

机译:转录组和基因组识别的De Novo组装揭示了JUTE(Corchorus Capsularis)中涉及纤维形成的Ga 3应激响应性腕骨转录因子

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摘要

WRKY is a group of transcription factors (TFs) that play a vital role in plant growth, development, and stress tolerance. To date, none of jute WRKY (CcWRKY) genes have been identified, even if jute (Corchorus capsularis) is one of the most important natural fiber crops in the world. Little information about the WRKY genes in jute is far from sufficient to understand the molecular mechanism of bast fiber biosynthesis. A total of 244,489,479 clean reads were generated using Illumina paired-end sequencing. De novo assembly yielded 90,982 unigenes with an average length of 714?bp. By sequence similarity searching for known proteins, 48,896 (53.74%) unigenes were annotated. To mine the CcWRKY TFs and identify their potential function, the search for CcWRKYs against the transcriptome data of jute was performed, and a total of 43 CcWRKYs were identified in this study. The gene structure, phylogeny, conserved domain and three-dimensional structure of protein were analyzed by bioinformatics tools of GSDS2.0, MEGA7.0, DNAMAN5.0, WebLogo 3 and SWISS-MODEL respectively. Phylogenetic analysis showed that 43 CcWRKYs were divided into three groups: I, II and III, containing 9, 28, and 6 members respectively, according to the WRKY conserved domain features and the evolution analysis with Arabidopsis thaliana. Gene structure analysis indicated that the number of exons of these CcWRKYs varied from 3 to 11. Among the 43 CcWRKYs, 10, 2, 2, and 14 genes showed higher expression in leaves, stem sticks, stem barks, and roots at the vigorous vegetative growth stage, respectively. Moreover, the expression of 21 of 43 CcWRKYs was regulated significantly with secondary cell wall biosynthesis genes using FPKM and RT-qPCR by GA3 stress to a typical GA3 sensitive dwarf germplasm in comparison to an elite cultivar in jute. The Cis-element analysis showed that promoters of these 21 CcWRKYs had 1 to 4 cis-elements involved in gibberellin-responsiveness, suggesting that they might regulate the development of bast fiber in response to GA3 stress. A total of 43 CcWRKYs were identified in jute for the first time. Analysis of phylogenetic relationship and gene structure revealed that these CcWRKYs might have a functional diversity. Expression analysis showed 21 TFs as GA3 stress responsive genes. The identification of these CcWRKYs and the characterization of their expression pattern will provide a basis for future clarification of their functions in bast fiber development in jute.
机译:WRKY是一组转录因子(TFS),在植物生长,发展和压力耐受性中起着至关重要的作用。迄今为止,即使黄麻(Corchorus Capsularis)是世界上最重要的天然纤维作物之一,也没有鉴定黄麻腕骨(CCWRKY)基因。关于黄麻的腕表的少量信息远非足以理解韧皮纤维生物合成的分子机制。使用Illumina成对端测序产生共244,489,479个清洁读数。 De Novo组件产生90,982个unigenes,平均长度为714 bp。通过序列相似性搜索已知蛋白质,注释了48,896(53.74%)的unigenes。为了挖掘CCWrky TFS并识别其潜在功能,进行了针对黄麻的转录组数据的CCWRKYS的搜索,并在本研究中鉴定了43个CCWRKYS。通过GSDS2.0,MEGA7.0,DNAMAN5.0,Weblogo 3和Swiss-Model的生物信息工具分析了蛋白质的基因结构,系统发育,保守结构域和三维结构。系统发育分析表明,根据WRKY保守结构域特征和拟南芥拟南芥的演化分析,分别将43个CCWrkys分为三组:I,II和III,含有9,28和6个成员。基因结构分析表明,这些CCWRKYS的外显子数量从3-11变化。在43个CCWrkys,10,2,2和14个基因中,在剧烈植物植物中显示出更高的叶子,茎棒,茎吠和根系生长阶段分别。此外,使用FPKM和RT-QPCR对典型的GA3敏感矮化种质的二次细胞壁生物合成基因显着对43个CCWrkys的表达显着调节,与黄麻精英品种相比,通过GA3应力与典型的GA3敏感矮化种质。顺式元素分析表明,这21例CCWrkys的启动子有1至4名参与胃肠杆菌素反应性的CIS-元素,表明它们可能调节响应GA3应力的韧皮纤维的发育。第一次在黄麻中识别了43个CcWrkys。系统发育关系和基因结构的分析显示,这些CCWRKYS可能具有功能多样性。表达分析显示为GA3应激响应基因的21个TFS。这些CCWrkys的识别和其表达模式的表征将为未来澄清黄麻韧带纤维发育中的功能澄清的基础。

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