Signaling by the EPFL-ERECTA family coordinates female germline specification through the BZR1 family in Arabidopsis

Author:

Cai Hanyang1ORCID,Huang Youmei1ORCID,Liu Liping2ORCID,Zhang Man13ORCID,Chai Mengnan1ORCID,Xi Xinpeng1ORCID,Aslam Mohammad1ORCID,Wang Lulu4ORCID,Ma Suzhuo1ORCID,Su Han1ORCID,Liu Kaichuang1ORCID,Tian Yaru1ORCID,Zhu Wenhui1ORCID,Qi Jingang1ORCID,Dresselhaus Thomas2ORCID,Qin Yuan14ORCID

Affiliation:

1. College of Life Sciences, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Fujian Agriculture and Forestry University , Fuzhou 350002 , China

2. Cell Biology and Plant Biochemistry, University of Regensburg , 93053 Regensburg , Germany

3. Tea Research Institute, Guangdong Academy of Agricultural Sciences & Guangdong Provincial Key Laboratory of Tea Plant Resources Innovation and Utilization , Dafeng Road 6, Tianhe District, Guangzhou 510640 , China

4. State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi Key Lab of Sugarcane Biology, College of Agriculture, Guangxi University , Nanning 530004 , China

Abstract

Abstract In most flowering plants, the female germline is initiated in the subepidermal L2 layer of ovule primordia forming a single megaspore mother cell (MMC). How signaling from the L1 (epidermal) layer could contribute to the gene regulatory network (GRN) restricting MMC formation to a single cell is unclear. We show that EPIDERMAL PATTERNING FACTOR-like (EPFL) peptide ligands are expressed in the L1 layer, together with their ERECTA family (ERf) receptor kinases, to control female germline specification in Arabidopsis thaliana. EPFL-ERf dependent signaling restricts multiple subepidermal cells from acquiring MMC-like cell identity by activating the expression of the major brassinosteroid (BR) receptor kinase BRASSINOSTEROID INSENSITIVE 1 and the BR-responsive transcription factor BRASSINOZOLE RESISTANT 1 (BZR1). Additionally, BZR1 coordinates female germline specification by directly activating the expression of a nucleolar GTP-binding protein, NUCLEOSTEMIN-LIKE 1 (NSN1), which is expressed in early-stage ovules excluding the MMC. Mutants defective in this GRN form multiple MMCs resulting in a strong reduction of seed set. In conclusion, we uncovered a ligand/receptor-like kinase-mediated signaling pathway acting upstream and coordinating BR signaling via NSN1 to restrict MMC differentiation to a single subepidermal cell.

Funder

German Research Foundation

National Natural Science Foundation of China

Science and Technology Program of Fujian Province

Science and Technology Major Project of Guangxi

Excellent Youth Foundation of Fujian Agriculture and Forestry University

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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