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首页> 外文期刊>The FEBS journal >Comprehensive analysis of differential genes and miRNA profiles for discovery of topping-responsive genes in flue-cured tobacco roots.
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Comprehensive analysis of differential genes and miRNA profiles for discovery of topping-responsive genes in flue-cured tobacco roots.

机译:对差异基因和miRNA谱进行综合分析,以发现烤烟根中的打顶响应基因。

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Decapitation/topping is an important cultivating measure for flue-cured tobacco, and diverse biology processes are changed to respond to the topping, such as hormonal balance, root development, source-sink relationship, ability of nicotine synthesis and stress tolerance. The purpose of this study was to clarify the molecular mechanism involved in the response of flue-cured tobacco to topping. The differentially expressed genes and micro RNAs (miRNAs) before and after topping were screened with a combination of suppression subtractive hybridization (SSH) and miRNA deep sequencing. In all, 560 differently expressed clones were sequenced by SSH, and then 129 high quality expressed sequence tags were acquired. These expressed sequence tags were mainly involved in secondary metabolism (13.5%), hormone metabolism (4%), signaling/transcription (17.5%), stress/defense (20%), protein metabolism (13%), carbon metabolism (7%), other metabolism (12%) and unknown function (13%). The results contribute new data to the list of possible candidate genes involved in the response of flue-cured tobacco to topping. NAC transcription factor, a differential gene identified by SSH, had been proved to have a role in the regulation of nicotine biosynthesis. High-throughput sequencing of two small RNA libraries in combination with SSH screening revealed 15 differential miRNAs whose target genes were identical to some differential genes identified in SSH, suggesting that miRNAs play a critical role in post-transcriptional gene regulation in the response of flue-cured tobacco to decapitation. Based on the role of these miRNAs and differential genes identified from SSH in response to topping, an miRNA mediated model for flue-cured tobacco in response to topping is proposed.
机译:断头/打顶是烤烟的重要栽培措施,并且改变了多种生物学过程以响应打顶,例如激素平衡,根系发育,源库关系,尼古丁合成能力和胁迫耐受性。这项研究的目的是阐明涉及烤烟对打顶反应的分子机制。结合抑制消减杂交(SSH)和miRNA深度测序,筛选打顶前后差异表达的基因和微小RNA(miRNA)。通过SSH对560个不同表达的克隆进行了测序,获得了129个高质量表达的序列标签。这些表达的序列标签主要涉及次级代谢(13.5%),激素代谢(4%),信号/转录(17.5%),压力/防御(20%),蛋白质代谢(13%),碳代谢(7%) ),其他新陈代谢(12%)和未知功能(13%)。结果为涉及烤烟对打顶反应的可能候选基因清单提供了新的数据。已经证明通过SSH鉴定的差异基因 NAC转录因子在调节尼古丁的生物合成中具有作用。对两个小型RNA文库的高通量测序结合SSH筛选,发现了15个差异miRNA,其靶基因与SSH中鉴定的某些差异基因相同,这表明miRNA在转录后基因调控中对烟道反应起着关键作用。熏制的烟草要斩首。基于这些miRNA和从SSH识别出的对打顶响应的差异基因的作用,提出了miRNA介导的烤烟响应打顶模型。

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