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Exploration of the effect of blue light on microRNAs involved in the accumulation of functional metabolites of longan embryonic calli through RNA-sequencing

机译:通过RNA测序探讨龙眼胚胎愈伤症功能代谢产物积累的微大疱疹探讨

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BACKGROUND The regulation of functional metabolites under light by structural genes and regulatory genes is understood but the roles of microRNAs in this pathway have rarely been reported and their regulation network is not yet clear. RESULTS Blue light was most conducive to promoting the synthesis of some functional metabolites in longan embryonic callus (ECs). In this study, we sequenced three small RNA libraries of constructed longan ECs under different light qualities (dark, blue, and white). A total of 29 and 22 miRNAs were differentially expressed in the dark versus blue (DB) and dark versus white (DW) combinations, respectively. According to Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis, most of the differentially expressed miRNA target genes were involved in plant hormone signal transduction, mitogen-activated protein kinase (MAPK) signaling, biosynthesis of unsaturated fatty acids, and so on. Cytoscape analysis of the target genes of miRNAs indicated that miR396b-5p and miR5139 had the most target genes in DB. Moreover, this study also found that miR171f_3 targeted DELLA, miR390e targeted BRI1, miR396b-5p targeted EBF1/2 and EIN3; these miRNAs participated in the blue light signaling network through their target genes and regulated the accumulation of longan functional metabolites. CONCLUSIONS The results of the study revealed that the expressions of phase-specific miRNAs vary with the change of functional metabolites in longan ECs. This study provides new insights into the molecular mechanisms that allow light to influence plant metabolism. (c) 2018 Society of Chemical Industry
机译:背景技术明确通过结构基因和调节基因在轻微下的功能性代谢物的调节,但是微小RORNA在该途径中的作用很少报道,其调节网络尚不清楚。结果蓝光最有利于促进龙眼胚胎愈伤组织(ECS)的一些功能性代谢物的合成。在这项研究中,我们在不同的轻质品质下测序了构建的龙眼ECS的三个小RNA文库(深色,蓝色和白色)。总共29和22 miRNA分别在暗与蓝色(dB)和暗与白色(DW)组合中差异表达。根据基因和基因组(KEGG)分析的京都百科全书,大多数差异表达的miRNA靶基因涉及植物激素信号转导,丝裂剂活化蛋白激酶(MAPK)信号传导,不饱和脂肪酸的生物合成等。 miRNA靶基因的细胞照片分析表明MiR396B-5P和MiR5139具有DB中最靶基因。此外,该研究还发现MiR171F_3靶向Della,MiR390e靶向BRI1,MIR396B-5P靶向EBF1 / 2和EIN3;这些miRNA通过其靶基因参与了蓝光信号网络,并调节了龙眼功能性代谢物的积累。结论该研究的结果表明,相对于龙眼ECS的功能性代谢物的变化,相对特异性miRNA的表达变化。本研究为允许光影响植物代谢的分子机制提供了新的见解。 (c)2018化学工业协会

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