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BREVIPEDICELLUS and ERECTA mediate expression of AtPRX17 in preventing Arabidopsis callus retardation and browning

Xie, J.; Qi, B.; Mou, C.; Wu, Y.; Wang, L.; Jiao, Y.; Dou, Y.; Zheng, H.

2021-02-19 plant biology
10.1101/2021.02.18.431912 bioRxiv
Show abstract

Efficient in vitro callus generation is fundamental to tissue culture propagation, a process required for plant regeneration and transgenic breeding for desired phenotypes. Identifying genes and regulatory elements that prevent callus retardation and browning is essential to facilitate the development of vitro callus systems. Here we show that BREVIPEDICELLUS (BP) and ERECTA (ER) pathways in Arabidopsis callus are converged to prevent callus browning and positively regulate an isoperoxidase gene AtPRX17 expression in the rapid growth callus. Loss of functions in both BP and ER resulted in markedly increasing callus browning. Transgenic lines with pro35S::AtPRX17 in the bp-5 er105 double mutant background fully rescued this phenotypic abnormality. Using plant in vitro DNA-binding assays, we observed that BP protein bound directly to the upstream sequence of AtPRX17 to promote its transcription during callus growth. ER is a universally presenting factor required for cell proliferation and growth, we show that ER positively regulates expression of a transcription factor WRKY6, which also directly binds to an additional site of the AtPRX17 promoter for its high expression. Our data reveals an important molecular mechanism in regulating expression of peroxidase isozyme to reduce Arabidopsis callus browning. HighlightBREVIPEDICELLUS and ERECTA are involved in regulating Arabidopsis callus browning by controlling expression of AtPRX17.

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