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在……中,除miR163外,微小RNA的RNA诱导沉默复合体装载在光形态建成过程中起次要调节作用。

In , RNA-Induced Silencing Complex-Loading of MicroRNAs Plays a Minor Regulatory Role During Photomorphogenesis Except for miR163.

作者信息

Lakatos Lóránt, Groma Gergely, Silhavy Daniel, Nagy Ferenc

机构信息

Laboratory of Photo and Chronobiology, Biological Research Centre, Institute of Plant Biology, Eötvös Loránd Research Network, Szeged, Hungary.

Dermatological Research Group, University of Szeged, Szeged, Hungary.

出版信息

Front Plant Sci. 2022 Jul 13;13:854869. doi: 10.3389/fpls.2022.854869. eCollection 2022.

Abstract

The shift of dark-grown seedlings to the light leads to substantial reprogramming of gene expression, which results in dramatic developmental changes (referred to as de-etiolation or photomorphogenesis). MicroRNAs (miRNAs) regulate most steps of plant development, thus miRNAs might play important role in transcriptional reprogramming during de-etiolation. Indeed, miRNA biogenesis mutants show aberrant de-etiolation. Previous works showed that the total miRNA expression pattern (total miRNAome) is only moderately altered during photomorphogenesis. However, a recent study has shown that plant miRNAs are present in two pools, biologically active miRNAs loaded to RISC (RNA-induced silencing complex-loaded) form while inactive miRNAs accumulate in duplex form upon organ formation. To test if RISC-loading efficiency is changed during photomorphogenesis. we compared the total miRNAome and the RISC-loaded miRNAome of dark-grown and de-etiolated seedlings. miRNA sequencing has revealed that although regulated RISC-loading is involved in the control of active miRNAome formation during de-etiolation, this effect is moderate. The total miRNAomes and the RISC-loaded miRNAomes of dark-grown and de-etiolated plants are similar indicating that most miRNAs are loaded onto RISC with similar efficiency in dark and light. Few miRNAs were loaded onto RISC with different efficiency and one miRNA, miR163, was RISC-loaded much more effectively in light than in dark. Thus, our results suggest that although RISC-loading contributes significantly to the control of the formation of organ-specific active miRNA pools, it plays a limited role in the regulation of active miRNA pool formation during de-etiolation. Regulated RISC-loading strongly modifies the expression of miRNA163, could play a role in the fine-tuning of a few other miRNAs, and do not modify the expression of most miRNAs.

摘要

黑暗中生长的幼苗转移到光照下会导致基因表达的大量重新编程,从而引发显著的发育变化(称为去黄化或光形态建成)。微小RNA(miRNA)调控植物发育的大多数步骤,因此miRNA可能在去黄化过程中的转录重编程中发挥重要作用。事实上,miRNA生物合成突变体表现出去黄化异常。先前的研究表明,在光形态建成过程中,总的miRNA表达模式(总的miRNA组)仅发生适度改变。然而,最近的一项研究表明,植物miRNA存在于两个库中,生物活性miRNA以加载到RNA诱导沉默复合体(RISC)的形式存在,而无活性的miRNA在器官形成时以双链体形式积累。为了测试在光形态建成过程中RISC加载效率是否发生变化,我们比较了黑暗中生长和去黄化幼苗的总miRNA组和加载到RISC的miRNA组。miRNA测序显示,尽管在去黄化过程中受调控的RISC加载参与了活性miRNA组形成的控制,但这种作用是适度的。黑暗中生长和去黄化植物的总miRNA组和加载到RISC的miRNA组相似,这表明大多数miRNA在黑暗和光照下以相似的效率加载到RISC上。少数miRNA加载到RISC的效率不同,其中一个miRNA,miR163,在光照下比在黑暗中更有效地加载到RISC上。因此,我们的结果表明,尽管RISC加载对器官特异性活性miRNA库的形成控制有显著贡献,但它在去黄化过程中活性miRNA库形成的调控中作用有限。受调控的RISC加载强烈改变miRNA163的表达,可能在其他一些miRNA的微调中起作用,而不会改变大多数miRNA的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2000/9326452/8c542c47260f/fpls-13-854869-g001.jpg

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