Joint Analysis of Small RNA and mRNA Sequencing Unveils miRNA-Mediated Regulatory Network in Response to Methyl Jasmonate in Apocynum venetum L.

Author:

Tan Jinhua1,Han Xiaowei23,Liu Qi1ORCID,Dorjee Tashi1ORCID,Zhou Yijun1,Sun Huigai23,Gao Fei1ORCID

Affiliation:

1. College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China

2. School of Pharmacy, Hebei University of Chinese Medicine, Shijiazhuang 050200, China

3. Traditional Chinese Medicine Processing Technology Inheritance Base of the State Administration of Traditional Chinese Medicine (Hebei), Shijiazhuang 050200, China

Abstract

Apocynum venetum L. is a natural fiber and medicinal plant species with significant economic value. Jasmonic acid is an endogenous growth regulatory substance present in higher plants that participate in plant growth, development, and defense. As important endogenous single-stranded RNA molecules, microRNA (miRNA) plays an important role in the post-transcriptional regulation of plant genes. A combination of miRNA and mRNA sequencing techniques was used to systematically identify the methyl jasmonate miRNAs and mRNAs in A. venetum. Up to 135 conserved and 26 species-specific miRNAs have been identified in A. venetum. These miRNAs mainly target genes that encode transcription factors and enzymes. The expression levels of 23 miRNAs, including miR398 and miR482, significantly changed after MeJA treatment. A total of 1778 genes were differentially expressed under MeJA treatment, of which 825 were upregulated and 953 were downregulated. The main biological processes enriched in these differentially expressed genes were redox balance, secondary metabolism, photosynthesis, and plant hormone signal transduction. Joint analysis of the miRNAs and mRNA revealed that MeJA-responsive miRNAs function by forming regulatory modules, including miR398-CSD, miR482-NBS-LRR, miR156-SPL10, and miR164-NAC056, which further regulate multiple biological processes, including redox balance, disease resistance, and morphogenesis in A. venetum. This study provides important information to understand the biological roles of miRNAs in A. venetum.

Funder

Scientific and Technological Research Projects of Colleges and Universities of Hebei Province

S&T Program of Hebei

Hebei Provincial Administration of Traditional Chinese Medicine

National Natural Science Foundation of China

Industrial Innovation Team Program of Traditional Chinese Medicine of Modern Agricultural Industry Technology System of Hebei Province

Publisher

MDPI AG

Reference72 articles.

1. Botany, traditional uses, phytochemistry and pharmacology of Apocynum venetum L. (Luobuma): A review;Xie;J. Ethnopharmacol.,2012

2. Development of randomly amplified polymorphic DNA-Sequence characterized amplified region marker for identification of Apocynum venetum LINN. from A. pictum SCHRENK;Lu;Biol. Pharm. Bull.,2010

3. Apocynum venetum L. and Apocynum pictum Schrenk (Apocynaceae) as multi-functional and multi-service plant species in central asia: A review on biology, ecology, andutilization;Thevs;J. Appl. Bot. Food Qual.,2012

4. The roles of methyl jasmonate to stress in plants;Yu;Funct. Plant Biol.,2018

5. The oxylipin pathways: Biochemistry and function;Wasternack;Annu. Rev. Plant Biol.,2018

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