Biotechnology Bulletin ›› 2023, Vol. 39 ›› Issue (8): 241-250.doi: 10.13560/j.cnki.biotech.bull.1985.2022-1562

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Cloning, Subcellular Localization and Expression Analysis of CnbHLH79 Transcription Factor from Camellia nitidissima

LI Bo1,3(), LIU He-xia1, CHEN Yu-ling1, ZHOU Xing-wen2, ZHU Yu-lin1,3()   

  1. 1. College of Biology and Pharmacy, Yulin Normal University, Yulin 537000
    2. College of Architecture and Planning, Fujian University of Technology, Fuzhou 350118
    3. Key Laboratory for Conservation and Utilization of subtropical Bio-Resources in Education Department of Guangxi Zhuang Autonomous Region, Yulin Normal University, Yulin 537000
  • Received:2022-12-29 Online:2023-08-26 Published:2023-09-05
  • Contact: ZHU Yu-lin E-mail:lbshaojianbo@ylu.edu.cn;gxzyl@163.com

Abstract:

In order to explore the regulation mechanism of CnbHLH79 in the flower color formation of Camellia nitidissima, the coding sequence of CnbHLH79 was cloned and analyzed by bioinformatics, and the subcellular localization of CnbHLH79 protein was performed. Subsequently the expression pattern of CnbHLH79 was analyzed by fluorescence quantitative PCR(RT-qPCR)in different tissues and petals of different flowering stages, and the correlation between the expression of CnbHLH79 and value of chromaticity b* and the content of flavonoid compounds was analyzed. It was found that the coding sequence of CnbHLH79, with bHLH_AtBPE_like conserved domain, was 855 bp encoding 284 amino acids. CnbHLH79 had the closest relationship with bHLH79 protein of Camellia sinensis. Subcellular localization analysis showed that CnbHLH79 mainly had functions in the nucleus. CnbHLH79 highly expressed in the roots and flowers of C. nitidissima and gradually decreased at flowering stages by RT-qPCR. In addition, correlation coefficient between the expression of CnbHLH79 and the value of chromaticity b* and content of Qu7G was -0.92 and -0.70 respectively, which had negative relationship. This study lays a foundation for elucidating the mechanism of CnbHLH79 transcription factor regulating the synthesis of flavonoids in C. nitidissima and the mechanism of regulating the yellow color of petals.

Key words: Camellia nitidissima, CnbHLH79 transcription factor, flower color formation, regulation of flavonoid synthesis, subcellular localization, quantitative analysis of expression, correlation analysis