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首页> 外文期刊>Frontiers in Plant Science >Integration of a Decrescent Transcriptome and Metabolomics Dataset of Peucedanum praeruptorum to Investigate the CYP450 and MDR Genes Involved in Coumarins Biosynthesis and Transport
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Integration of a Decrescent Transcriptome and Metabolomics Dataset of Peucedanum praeruptorum to Investigate the CYP450 and MDR Genes Involved in Coumarins Biosynthesis and Transport

机译:整合 Peucedanum praeruptorum 的转录组和代谢组学数据集,以研究涉及香豆素生物合成和运输的CYP450和MDR基因

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Peucedanum praeruptorum Dunn is well-known traditional Chinese medicine. However, little is known in the biosynthesis and the transport mechanisms of its coumarin compounds at the molecular level. Although transcriptomic sequence is playing an increasingly significant role in gene discovery, it is not sufficient in predicting the specific function of target gene. Furthermore, there is also a huge database to be analyzed. In this study, RNA sequencing assisted transcriptome dataset and high-performance liquid chromatography (HPLC) coupled with electrospray-ionization quadrupole time-of-flight mass spectrometry (Q-TOF MS)-based metabolomics dataset of P. praeruptorum were firstly constructed for gene discovery and compound identification. Subsequently, methyl jasmonate (MeJA)-induced gene expression analysis and metabolomics analysis were conducted to narrow-down the dataset for selecting the candidate genes and the potential marker metabolites. Finally, the genes involved in coumarins biosynthesis and transport were predicted with parallel analysis of transcript and metabolic profiles. As a result, a total of 40,952 unigenes and 19 coumarin compounds were obtained. Based on the results of gene expression and metabolomics analysis, 7 cytochrome-P450 and 8 multidrug resistance transporter unigenes were selected as candidate genes and 8 marker compounds were selected as biomarkers, respectively. The parallel analysis of gene expression and metabolites accumulation indicated that the gene labeled as 23,746, 228 , and 30,922 were related to the formation of the coumarin core compounds whereas 36,276 and 9533 participated in the prenylation, hydroxylation, cyclization or structural modification. Similarly, 1462, 20,815 , and 15,318 participated in the transport of coumarin core compounds while 124,029 and 324,293 participated in the transport of the modified compounds. This finding suggested that integration of a decrescent transcriptome and metabolomics dataset could largely narrow down the number of gene to be investigated and significantly improve the efficiency of functional gene predication. In addition, the large amount of transcriptomic data produced from P. praeruptorum and the genes discovered in this study would provide useful information in investigating the biosynthesis and transport mechanism of coumarins.
机译:白头翁(Peucedanum praeruptorum Dunn)是著名的中药。但是,在分子水平上香豆素化合物的生物合成及其转运机理知之甚少。尽管转录组序列在基因发现中起着越来越重要的作用,但不足以预测靶基因的特定功能。此外,还有一个庞大的数据库需要分析。在这项研究中,首先为基因构建了RNA测序辅助转录组数据集和高效液相色谱(HPLC)结合基于电喷雾电离四极杆飞行时间质谱(Q-TOF MS)的代谢组学数据集发现和化合物鉴定。随后,进行了茉莉酸甲酯(MeJA)诱导的基因表达分析和代谢组学分析,以缩小选择候选基因和潜在标记代谢物的数据集的范围。最后,通过平行分析转录本和代谢谱来预测涉及香豆素生物合成和运输的基因。结果,总共获得了40,952个单基因和19个香豆素化合物。根据基因表达和代谢组学分析的结果,分别选择7种细胞色素P450基因和8种多药耐药转运蛋白单基因作为候选基因,并选择8种标记化合物作为生物标记。对基因表达和代谢产物积累的平行分析表明,标记为23,746、228和30,922的基因与香豆素核心化合物的形成有关,而36,276和9533参与了烯丙基化,羟基化,环化或结构修饰。同样,1462、20,815和15,318参与了香豆素核心化合物的运输,而124,029和324,293参与了改性化合物的运输。这一发现表明,de回转录组和代谢组学数据集的整合可以大大缩小要研究的基因数量,并显着提高功能基因预测的效率。此外,从P. praeruptorum产生的大量转录组数据和本研究中发现的基因将为研究香豆素的生物合成和转运机制提供有用的信息。

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