Dual roles of the MPK3 and MPK6 mitogen-activated protein kinases in regulating Arabidopsis stomatal development

Author:

Wu Mengyun1ORCID,Wang Shiyuan1ORCID,Ma Panpan1ORCID,Li Bixin1ORCID,Hu Huiqing1ORCID,Wang Ziling1ORCID,Qiu Qin1ORCID,Qiao Yujie1ORCID,Niu Dongdong1ORCID,Lukowitz Wolfgang2ORCID,Zhang Shuqun3ORCID,Zhang Mengmeng1ORCID

Affiliation:

1. College of Plant Protection, The Key Laboratory of Plant Immunity, Nanjing Agricultural University , Nanjing, Jiangsu 210095 , China

2. Department of Plant Biology, University of Georgia , Athens, Georgia 30602 , USA

3. Division of Biochemistry, University of Missouri , Columbia, Missouri 65211 , USA

Abstract

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.

Funder

Nanjing Agricultural University

Jiangsu Provincial Natural Science Foundation

Publisher

Oxford University Press (OUP)

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