Transcriptome Analysis Reveals an Essential Role of Exogenous Brassinolide on the Alkaloid Biosynthesis Pathway in Pinellia Ternata

Author:

Guo Chenchen1ORCID,Chen Ying1,Wu Dengyun1,Du Yu1,Wang Mengyue1,Liu Cunqi12,Chu Jianzhou12,Yao Xiaoqin1234

Affiliation:

1. School of Life Sciences, Hebei University, Baoding 071002, China

2. Institute of Life Sciences and Green Development, Hebei University, Baoding 071002, China

3. Key Laboratory of Microbial Diversity Research and Application of Hebei Province, Baoding 071002, China

4. Hebei Key Laboratory of Wetland Ecology and Conservation, Hengshui 053000, China

Abstract

Pinellia ternata (Thunb.) Druce is a traditional medicinal plant containing a variety of alkaloids, which are important active ingredients. Brassinolide (BR) is a plant hormone that regulates plant response to environmental stress and promotes the accumulation of secondary metabolites in plants. However, the regulatory mechanism of BR-induced alkaloid accumulation in P. ternata is not clear. In this study, we investigated the effects of BR and BR biosynthesis inhibitor (propiconazole, Pcz) treatments on alkaloid biosynthesis in the bulbil of P. ternata. The results showed that total alkaloid content and bulbil yield was enhanced by 90.87% and 29.67% under BR treatment, respectively, compared to the control. We identified 818 (476 up-regulated and 342 down-regulated) and 697 (389 up-regulated and 308 down-regulated) DEGs in the BR-treated and Pcz-treated groups, respectively. Through this annotated data and the Kyoto encyclopedia of genes and genomes (KEGG), the expression patterns of unigenes involved in the ephedrine alkaloid, tropane, piperidine, pyridine alkaloid, indole alkaloid, and isoquinoline alkaloid biosynthesis were observed under BR and Pcz treatments. We identified 11, 8, 2, and 13 unigenes in the ephedrine alkaloid, tropane, piperidine, and pyridine alkaloid, indole alkaloid, and isoquinoline alkaloid biosynthesis, respectively. The expression levels of these unigenes were increased by BR treatment and were decreased by Pcz treatment, compared to the control. The results provided molecular insight into the study of the molecular mechanism of BR-promoted alkaloid biosynthesis.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Open Foundation of Hebei Key Laboratory of Wetland Ecology and Conservation

Publisher

MDPI AG

Reference39 articles.

1. The ethnobotanical, phytochemical and pharmacological profile of the genus Pinellia;Ji;Fitoterapia,2014

2. De novo sequencing and transcriptome analysis of Pinellia ternata identify the candidate genes involved in the biosynthesis of benzoic acid and ephedrine;Zhang;Front. Plant Sci.,2016

3. Xue, T., Zhang, H., Zhang, Y., Wei, S., Chao, Q., Zhu, Y., Teng, J., Zhang, A., Sheng, W., and Duan, Y. (2019). Full-length transcriptome analysis of shade-induced promotion of tuber production in Pinellia ternata. BMC Plant Biol., 19.

4. Growth inhibition of human hepatocarcinoma cell strain Bel-7402 by Pinellia total alkaloids;Fang;China Pharm.,2011

5. Isolation of l-ephedrine from “pinelliae tuber”;Oshio;Chem. Pharm. Bull.,1978

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