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首页> 外文期刊>Plant physiology >Uncovering Small RNA-Mediated Responses to Phosphate Deficiency in Arabidopsis by Deep Sequencing1[W][OA]
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Uncovering Small RNA-Mediated Responses to Phosphate Deficiency in Arabidopsis by Deep Sequencing1[W][OA]

机译:通过深度测序发现小RNA介导的拟南芥对磷酸盐缺乏的反应[W] [OA]

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Recent studies have demonstrated the important role of plant microRNAs (miRNAs) under nutrient deficiencies. In this study, deep sequencing of Arabidopsis (Arabidopsis thaliana) small RNAs was conducted to reveal miRNAs and other small RNAs that were differentially expressed in response to phosphate (Pi) deficiency. About 3.5 million sequence reads corresponding to 0.6 to 1.2 million unique sequence tags from each Pi-sufficient or Pi-deficient root or shoot sample were mapped to the Arabidopsis genome. We showed that upon Pi deprivation, the expression of miR156, miR399, miR778, miR827, and miR2111 was induced, whereas the expression of miR169, miR395, and miR398 was repressed. We found cross talk coordinated by these miRNAs under different nutrient deficiencies. In addition to miRNAs, we identified one Pi starvation-induced DICER-LIKE1- dependent small RNA derived from the long terminal repeat of a retrotransposon and a group of 19-nucleotide small RNAs corresponding to the 5# end of tRNA and expressed at a high level in Pi-starved roots. Importantly, we observed an increased abundance of TAS4-derived trans-acting small interfering RNAs (ta-siRNAs) in Pi-deficient shoots and uncovered an autoregulatory mechanism of PAP1/MYB75 via miR828 and TAS4-siR81(2) that regulates the biosynthesis of anthocyanin. This finding sheds light on the regulatory network between miRNA/ta-siRNA and its target gene. Of note, a substantial amount of miR399* accumulated under Pi deficiency. Like miR399, miR399* can move across the graft junction, implying a potential biological role for miR399*. This study represents a comprehensive expression profiling of Pi-responsive small RNAs and advances our understanding of the regulation of Pi homeostasis mediated by small RNAs.
机译:最近的研究表明,在营养缺乏的情况下,植物microRNA(miRNA)的重要作用。在这项研究中,对拟南芥(Arabidopsis thaliana)小RNA进行了深度测序,以揭示响应磷酸盐(Pi)缺乏而差异表达的miRNA和其他小RNA。将来自每个Pi充足或Pi缺乏的根或芽样品的对应于0.6至120万个独特序列标签的约350万个序列读数映射到拟南芥基因组。我们显示,剥夺Pi后,miR156,miR399,miR778,miR827和miR2111的表达被诱导,而miR169,miR395和miR398的表达被抑制。我们发现在营养缺乏的情况下,由这些miRNA协调的串扰。除miRNA外,我们还鉴定了一个Pi饥饿诱导的DICER-LIKE1依赖性小RNA,该小RNA源自反转录转座子的长末端重复序列,以及一组对应于tRNA 5#末端并以高表达表达的19个核苷酸的小RNA。饥饿的根的水平。重要的是,我们在缺乏Pi的芽中观察到了TAS4衍生的反式小干扰RNA(ta-siRNA)的丰度增加,并通过miR828和TAS4-siR81(2)揭示了PAP1 / MYB75的自调节机制,该机制调节了BAP的生物合成。花青素。这一发现揭示了miRNA / ta-siRNA及其靶基因之间的调控网络。值得注意的是,Pi缺乏会累积大量miR399 *。就像miR399一样,miR399 *可以跨移植物连接处移动,这暗示了miR399 *的潜在生物学作用。这项研究代表了Pi反应性小RNA的全面表达谱,并增进了我们对由小RNA介导的Pi稳态调节的理解。

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