Genome-wide identification of bZIP transcription factor family in , its transcriptional profiling and regulatory role in phenylpropanoid metabolism under different light conditions.

Physiol Mol Biol Plants

Laboratory of Morphogenesis, Centre of Advance Study in Botany, Department of Botany, Institute of Science, Banaras Hindu University, Varanasi, Uttar Pradesh 221005 India.

Published: July 2023

Unlabelled: The basic leucine zipper (bZIP) protein transcription factors are known to modulate development, plant growth, metabolic response, and resistance to several biotic and abiotic stressors and have been widely studied in the model plant . However, no comprehensive information about the bZIP transcription factor family in has been explored to date. In this genome-wide study, we identified 61 bZIP TFs after removing false positives and incomplete sequences from . Seven highly expressed homolog AabZIP TF genes under UV-B and differential light conditions in different tissues were identified from the publicly available microarray dataset as having their -regulatory elements involved in, flavonoids biosynthesis, seed-specific gene regulation, stress responses, and metabolic regulation. analysis and electrophoretic mobility shift assay (EMSA) confirmed the interaction of AabZIP19 TF over the AaPAL1 promoter in order to regulate the phenolics and flavonoid biosynthesis via the phenylpropanoid pathway. Further, RT-PCR analysis has been carried out to validate the transcript levels of selected AabZIP genes under white light, red light, blue light (45 min), and UV-B exposure (12 and 24 h). These genes have their highest expression levels under UV-B and blue light exposure, in contrast with white light. Therefore, the detection of ROS through staining confirms the accumulation of superoxide radicals and HO, and in addition to reducing ROS accumulation under UV-B and blue light irradiation, total phenols and flavonoids are significantly enhanced. This study laid the groundwork for deciphering the possible role of AabZIP TFs under different light stress-responsive conditions and in the regulation of secondary metabolism.

Supplementary Information: The online version contains supplementary material available at 10.1007/s12298-023-01338-0.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10462603PMC
http://dx.doi.org/10.1007/s12298-023-01338-0DOI Listing

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