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February 28, 2026Plants2 citationsOpen Access

BnaMYB73, a Brassica napus L. R2R3-MYB Transcription Factor, Enhances Plant Salt and Osmotic Stress Tolerance

LWLimin WangYZYan ZhangXZXiaoyan Zhou

Key Points

  • The aim is to characterize BnaMYB73 and its role in promoting tolerance to abiotic stress in rapeseed.
  • Identified and characterized BnaMYB73 in Brassica napus.
  • Created transgenic Arabidopsis thaliana expressing BnaMYB73.
  • Measured physiological responses under salt and osmotic stress conditions.
  • Analyzed transcription levels of key stress-responsive genes.
  • BnaMYB73 expression significantly increased under salt and osmotic stress.
  • Transgenic plants showed enhanced tolerance without growth differences in normal conditions.
  • Higher proline levels, increased SOD and POD activity, and lower MDA content were observed.
  • Key stress-responsive genes were significantly upregulated in BnaMYB73-expressing plants.

Abstract

MYB transcription factors (TFs) are crucial for plant growth, development, and response to abiotic stress. However, their exact functions in abiotic stress responses in rapeseed remain largely unexplored. In this study, we identified and characterized BnaMYB73, a member of the R2R3-MYB subfamily, and investigated its role in abiotic stress tolerance. The transcription level of BnaMYB73 was significantly upregulated in response to salt and osmotic stress. Transgenic Arabidopsis thaliana lines expressing BnaMYB73 displayed significantly enhanced tolerance to salt and osmotic stress, while showing no phenotypic differences in growth compared with wild-type (WT) plants under normal conditions. Physiological analyses revealed that the BnaMYB73-expressing plants accumulated higher proline levels, exhibited elevated superoxide dismutase (SOD) and peroxidase (POD) activities, and reduced malondialdehyde (MDA) content under stress conditions. Moreover, the BnaMYB73-expressing plants significantly upregulated key stress-responsive genes, including AtRD29B, AtDREB2A, AtRAB18, AtP5CS1, AtSOS1 and AtCAT1. Collectively, these findings establish BnaMYB73 functions as a stress-responsive transcription factor that enhances abiotic stress tolerance and provide a promising target for breeding stress-resilient rapeseed cultivars.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02d24https://doi.org/10.3390/plants15050694
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