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Exploration of the Effect of Blue Light on Functional Metabolite Accumulation in Longan Embryonic Calli via RNA Sequencing

机译:通过RNA测序探索蓝光对龙眼胚胎愈伤组织功能代谢产物积累的影响

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Light is an important factor that affects the synthesis of functional metabolites in longan embryogenic calli (ECs). However, analysis of the effect of light on functional metabolites in longan ECs via RNA sequencing has rarely been reported and their light regulation network is unclear. The contents of various functional metabolites as well as the enzymatic activities of superoxide dismutase and peroxidase and the level of H 2 O 2 in longan ECs were significantly higher under blue light treatment than under the other treatments (dark, white). In this study, we sequenced three mRNA libraries constructed from longan ECs subjected to different treatments. A total of 4463, 1639 and 1806 genes were differentially expressed in the dark versus blue (DB), dark versus white (DW) and white versus blue (WB) combinations, respectively. According to GO and KEGG analyses, most of the differentially expressed genes (DEGs) identified were involved in transmembrane transport, taurine and hypotaurine metabolism, calcium transport and so forth. Mapman analysis revealed that more DEGs were identified in each DB combination pathway than in DW combination pathways, indicating that blue light exerts a significantly stronger regulatory effect on longan EC metabolism than the other treatments. Based on previous research and transcriptome data mining, a blue light signaling network of genes that affect longan functional metabolites was constructed and HY5, PIF4 and MYC2 were shown to be the key regulatory genes in the network. The results of this study demonstrate that the expression levels of phase-specific genes vary with changes in longan EC functional metabolites.
机译:光是影响龙眼胚发生愈伤组织(EC)中功能性代谢产物合成的重要因素。然而,很少有报道通过RNA测序分析光对龙眼EC中功能代谢产物的影响,目前尚不清楚它们的光调节网络。龙眼ECs中各种功能性代谢产物的含量以及超氧化物歧化酶和过氧化物酶的酶活性以及H 2 O 2的水平在蓝光处理下均显着高于其他处理(深色,白色)。在这项研究中,我们对从龙眼EC进行了不同处理的构建的三个mRNA库进行了测序。总共有4463、1639和1806个基因分别在深色与蓝色(DB),深色与白色(DW)和白色与蓝色(WB)组合中差异表达。根据GO和KEGG分析,鉴定出的大多数差异表达基因(DEG)都涉及跨膜转运,牛磺酸和低牛磺酸代谢,钙转运等。 Mapman分析显示,在每个DB组合途径中鉴定出的DEG比在DW组合途径中鉴定出的DEG多,这表明蓝光对龙眼EC代谢的调控作用明显强于其他治疗方法。在先前的研究和转录组数据挖掘的基础上,构建了影响龙眼功能代谢产物的基因的蓝色信号网络,HY5,PIF4和MYC2被证明是该网络中的关键调控基因。这项研究的结果表明,阶段特异性基因的表达水平随龙眼EC功能代谢产物的变化而变化。

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