Sterols regulate endocytic pathways during flg22-induced defense responses in Arabidopsis

Author:

Cui Yaning12,Li Xiaojuan12,Yu Meng12,Li Ruili12,Fan Lusheng3,Zhu Yingfang45,Lin Jinxing12ORCID

Affiliation:

1. Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing 100083, China

2. College of Biological Sciences & Biotechnology, Beijing Forestry University, Beijing 100083, China

3. Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California, Riverside, CA 92521, USA

4. Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907, USA

5. Institute of Plant Stress Biology, State Key Laboratory of Cotton Biology, Department of Biology, Henan University, Jinming Street, Kaifeng 475001, China

Abstract

The plant transmembrane receptor kinase FLAGELLIN SENSING 2 (FLS2) is critical for innate immunity. Although previous studies have reported FLS2-mediated signal transduction and endocytosis via the clathrin-mediated pathway, whether additional endocytic pathways affect FLS2-mediated defense responses remains unclear. Here, we showed that the Arabidopsis thaliana sterol-deficient mutant steroid methyltransferase 1 displays defects in immune responses induced by the flagellin-derived peptide flg22. Variable-angle total internal reflection fluorescence microscopy (VA-TIRFM) coupled with single-particle tracking showed that the spatiotemporal dynamics of FLS2-GFP changed on the millisecond time scale and the FLS2-GFP dwell time at the plasma membrane increased in cells treated with a sterol-extracting reagent, compared with untreated counterparts. We further demonstrated that flg22-induced FLS2 clustering and endocytosis involves the sterol-associated endocytic pathway, which is distinct from the clathrin-mediated pathway. Moreover, flg22 enhanced the co-localization of FLS2-GFP with the membrane microdomain marker Flot 1-mCherry and FLS2 endocytosis via the sterol-associated pathway. This indicates that plants may respond to pathogen attacks by regulating two different endocytic pathways. Taken together, our results suggest the key role of sterol homeostasis in flg22-induced plant defense responses.

Funder

the National Natural Science Foundation of China

the Programme of Introducing Talents of Discipline to Universities

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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