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基于 RNA 测序的远红光对参与 遮荫回避反应的 microRNAs 的影响的探索。

RNA sequencing-based exploration of the effects of far-red light on microRNAs involved in the shade-avoidance response of .

机构信息

College of Architectural Engineering, Sanming University, Sanming, China.

Xiamen Institute of Technology, Xiamen, China.

出版信息

PeerJ. 2023 Mar 20;11:e15001. doi: 10.7717/peerj.15001. eCollection 2023.

Abstract

() has remarkable medicinal functions and high economic value. The shade-avoidance response to far-red light importantly affects the productivity. However, the regulatory mechanism of miRNAs involved in the far-red light-avoidance response is unknown. Previous studies have found that, in , 730 nm (far-red) light can promote the accumulation of plant metabolites, increase leaf area, and accelerate stem elongation. Here, the effects of far-red light on were analysed RNA-seq. KEGG analysis of miRNA target genes revealed various far-red light response pathways, among which the following played central roles: the one-carbon pool by folate; ascorbate and aldarate; cutin, suberine and wax biosynthesis; and sulfur metabolism. Cytoscape analysis of DE miRNA targets showed that novel_miR_484 and novel_miR_36 were most likely involved in the effects of far-red light on the shade avoidance. Content verification revealed that far-red light promotes the accumulation of one-carbon compounds and ascorbic acid. Combined with qPCR validation results, the results showed that miR395b, novel_miR_36, novel_miR_159, novel_miR_178, novel_miR_405, and novel_miR_435 may participate in the far-red light signalling network through target genes, regulating the shade avoidance. These findings provide new ideas for the efficient production of .

摘要

() 具有显著的药用功能和较高的经济价值。远红光的避荫反应对其生产力有重要影响。然而,miRNA 参与远红光避荫反应的调控机制尚不清楚。先前的研究发现,在 730nm(远红光)光下可以促进植物代谢物的积累,增加叶面积,并加速茎伸长。在这里,分析了远红光对 的影响 RNA-seq。miRNA 靶基因的 KEGG 分析显示了各种远红光反应途径,其中以下途径发挥了核心作用:叶酸的一碳池;抗坏血酸和醛酸;角质、栓质和蜡生物合成;和硫代谢。DE miRNA 靶标的 Cytoscape 分析表明,novel_miR_484 和 novel_miR_36 可能最有可能参与远红光对 避荫的影响。含量验证表明,远红光促进一碳化合物和抗坏血酸的积累。结合 qPCR 验证结果,结果表明 miR395b、novel_miR_36、novel_miR_159、novel_miR_178、novel_miR_405 和 novel_miR_435 可能通过靶基因参与远红光信号网络,调节 避荫。这些发现为 的高效生产提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ec8/10035421/330f58d4ace0/peerj-11-15001-g001.jpg

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