1. Dual roles of the MPK3 and MPK6 mitogen-activated protein kinases in regulating Arabidopsis stomatal development.
- Author
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Wu, Mengyun, Wang, Shiyuan, Ma, Panpan, Li, Bixin, Hu, Huiqing, Wang, Ziling, Qiu, Qin, Qiao, Yujie, Niu, Dongdong, Lukowitz, Wolfgang, Zhang, Shuqun, and Zhang, Mengmeng
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PLANT epidermis , *MITOGEN-activated protein kinases , *MESOPHYLL tissue , *LEAF development , *PEPTIDES - Abstract
An Arabidopsis (Arabidopsis thaliana) mitogen-activated protein kinase (MAPK) cascade composed of YODA (YDA)-MKK4/MKK5-MPK3/MPK6 plays an essential role downstream of the ERECTA (ER)/ER-LIKE (ERL) receptor complex in regulating stomatal development in the leaf epidermis. STOMAGEN (STO), a peptide ligand produced in mesophyll cells, competes with EPIDERMAL PATTERNING FACTOR2 (EPF2) for binding ER/ERL receptors to promote stomatal formation. In this study, we found that activation of MPK3/MPK6 suppresses STO expression. Using MUTE and STO promoters that confer epidermis- and mesophyll-specific expression, respectively, we generated lines with cell-specific activation and suppression of MPK3/MPK6. The activation or suppression of MPK3/MPK6 in either epidermis or mesophyll cells is sufficient to alter stomatal differentiation. Epistatic analyses demonstrated that STO overexpression can rescue the suppression of stomatal formation conferred by the mesophyll-specific expression of the constitutively active MKK4DD or MKK5DD, but not by the epidermis-specific expression of these constitutively active MKKs. These data suggest that STO is downstream of MPK3/MPK6 in mesophyll cells, but upstream of MPK3/MPK6 in epidermal cells in stomatal development signaling. This function of the MPK3/MPK6 cascade allows it to coordinate plant epidermis development based on its activity in mesophyll cells during leaf development. MPK3/MPK6 cascade functions downstream of ERECTA family receptors in the epidermis and upstream of the STOMAGEN peptide in the mesophyll tissue to control stomatal development. [ABSTRACT FROM AUTHOR]
- Published
- 2024
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