Author:
Li Yuping,Qiu Yuan,Xu Xin,Luo Ming
Abstract
AbstractStevia rebaudiana Bertoni is a valuable medicinal plant and an essential source of natural sweetener, steviol glycosides (SGs), with rebaudioside A (RA) being one of the main components of SGs. bHLH transcription factors play a crucial role in plant development and secondary metabolism. In this study, 159 SrbHLH genes were identified from the S. rebaudiana genome, and each gene was named based on its chromosome location. The SrbHLH proteins were then clustered into 18 subfamilies through phylogenetic analysis. The analysis of conserved motifs and gene structure further supported the classification of the SrbHLH family. Chromosomal location and gene duplication events of SrbHLH genes were also studied. Moreover, based on the RNA-Seq data of different tissues of S. rebaudiana, 28 SrbHLHs were co-expressed with structural genes involved in RA biosynthesis. The expression pattern of candidate SrbHLH genes were confirmed by qPCR. Finally, dual luciferase reporter assays (DLAs) and subcellular localization analysis verified SrbHLH22, SrbHLH111, SrbHLH126, SrbHLH142, and SrbHLH152 are critical regulators of RA biosynthesis. This study provides new insights into the function of SrbHLHs in regulating SGs biosynthesis and lays the foundation for future applications of SrbHLH genes in molecular breeding of S. rebaudiana.
Funder
Natural Science Foundation of Guangdong Province
Basic and Applied Research Foundation of Guangzhou City
Key Laboratory of Molecular Analysis and Genetic Improvement of South China Agricultural Plants Foundation of South China Botanical Garden, Chinese Academy of Sciences
South China Botanical Garden, Chinese Academy of Sciences
National Natural Science Foundation of China
Guangdong Natural Science Funds for Distinguished Young Scholars
Innovation Training Programs for Undergraduates, CAS
Youth Innovation Promotion Association of the Chinese Academy of Sciences
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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