首页> 外文期刊>Chinese Medicine >Metabolome and transcriptome analyses reveal quality change in the orange-rooted Salvia miltiorrhiza (Danshen) from cultivated field
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Metabolome and transcriptome analyses reveal quality change in the orange-rooted Salvia miltiorrhiza (Danshen) from cultivated field

机译:代谢组和转录组分析揭示了耕地橙根丹参(丹参)的质量变化

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The dry root and rhizome?of Salvia miltiorrhiza Bunge, or Danshen, is a well-known, traditional Chinese medicine. Tanshinones are active compounds that accumulate in the periderm, resulting in red-colored roots. However, lines with orange roots have been observed in cultivated fields. Here, we performed metabolome and transcriptome analyses to investigate the changes of orange-rooted Danshen. Metabolome analysis was performed by ultra-high-performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UPLC/Q-Tof–MS) to investigate the metabolites variation between orange Danshen and normal Danshen. RNA sequencing and KEGG enrichment analysis were performed to analyzing the differentially expressed genes between orange-rooted and normal Danshen. In total, 40 lipophilic components were detected in metabolome analysis, and seven compounds were significantly decreased in the orange Danshen, including the most abundant active compounds, tanshinone IIA and tanshinone I in normal Danshen. Systematic analysis of transcriptome profiles revealed that the down-regulated genes related to catalytic dehydrogenation was not detected. However, two genes related to stress resistance, and four genes related to endoplasmic reticulum (ER)-associated degradation of proteins were up-regulated in orange Danshen. Decreases in the content of dehydrogenated furan ring tanshinones such as tanshinone IIA resulted in phenotypic changes and quality degradation of Danshen.?Transcriptome analysis indicated that incorrect folding and ER-associated degradation of corresponding enzymes, which could catalyze C15-C16 dehydrogenase, might be contributed to the decrease in dehydrogenated furan ring tanshinones, rather than lower expression of the relative genes. This limited dehydrogenation of cryptotanshinone and dihydrotanshinone I into tanshinones IIA and I products, respectively, led to a reduced quality of Danshen in cultivated fields.
机译:丹参(Salvia miltiorrhiza Bunge)或丹参的干根和根茎是一种著名的传统中药。丹参酮是活性物质,会在皮层中积聚,形成红色的根。然而,在耕地中已观察到带有橙根的品系。在这里,我们进行了代谢组和转录组分析,以研究橙根丹参的变化。通过超高效液相色谱-四极杆飞行时间质谱(UPLC / Q-Tof–MS)进行代谢组分析,以研究橙色丹参和普通丹参之间的代谢物变异。进行RNA测序和KEGG富集分析,以分析橙根丹参和正常丹参之间差异表达的基因。在代谢组学分析中总共检测到40种亲脂性成分,橙色丹参中有7种化合物显着减少,包括正常丹参中最丰富的活性化合物丹参酮IIA和丹参酮I。转录组图谱的系统分析表明,未检测到与催化脱氢有关的下调基因。但是,橙色丹参中与抗逆性有关的两个基因和与内质网(ER)相关的蛋白质降解有关的四个基因被上调。丹参酮IIA等脱氢呋喃环丹参酮的含量降低会导致丹参的表型变化和质量降解。导致脱氢呋喃环丹参酮减少,而不是相关基因的表达降低。隐丹参酮和二氢丹参酮I分别有限地脱氢成丹参酮IIA和I产品,导致耕地中丹参的质量下降。

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