Maize Research Institute, Sichuan Agricultural University, Chengdu, Sichuan, 611130, PR China.
Medical Plant Exploitation and Utilization Engineering Research Center, Fujian Province University, Sanming University, Sanming, 365004, People's Republic of China.
Sci Rep. 2019 Dec 27;9(1):20171. doi: 10.1038/s41598-019-56821-0.
Anoectochilus roxburghii and Anoectochilus formasanus are the major species of genus Anoectochilus used in traditional Chinese medicine for their abundant content of flavonoids and some other medicinal constituents. In recent years, their wild resources are gradually exhausted due to over-collection and ecological deterioration. Artificial cultivation and tissue culture are employed to increase production. In this study, the open reading frame, promoter and genomic sequences of the chalcone synthase (CHS) gene were cloned from these two species according to their transcriptome information, and used for expression analysis in response to the induction of phenylalanine, ultraviolet light and NaCl, and its effect investigation on accumulation of flavonoids. The results showed that the expression of the CHS genes was upregulated in response to these inductions and resulted in increasing accumulation of total flavonoids. However, the increased flavonoids induced by phenylalanine and ultraviolet light were mainly allocated into the anthocyanidin branch of flavonoids biosynthesis. Not only did it improved the medicinal value, but might have inhibitory effect on plant growth because of the increased malondialdehyde accumulation. Under the induction of appropriate concentration of NaCl, the medicinal constituents of flavonoids were increased without inhibition to plant growth.
铁皮石斛和红花石斛是中药中使用的主要铁皮石斛属物种,因其富含类黄酮和其他一些药用成分而受到重视。近年来,由于过度采集和生态恶化,其野生资源逐渐枯竭。因此,人们采用人工栽培和组织培养来增加产量。本研究根据这两个物种的转录组信息,克隆了查尔酮合酶(CHS)基因的开放阅读框、启动子和基因组序列,并用于表达分析,以响应苯丙氨酸、紫外线和 NaCl 的诱导及其对类黄酮积累的影响的研究。结果表明,CHS 基因的表达在这些诱导下上调,导致总类黄酮的积累增加。然而,苯丙氨酸和紫外线诱导的类黄酮增加主要分配到类黄酮生物合成的花青素分支中。由于丙二醛积累增加,不仅提高了药用价值,而且可能对植物生长有抑制作用。在适当浓度 NaCl 的诱导下,类黄酮的药用成分增加,而不会抑制植物生长。