The ARP2/3 complex, acting cooperatively with Class I formins, modulates penetration resistance in Arabidopsis against powdery mildew invasion

Author:

Qin Li1ORCID,Liu Lijiang12ORCID,Tu Jiangying3ORCID,Yang Guogen4ORCID,Wang Sheng5ORCID,Quilichini Teagen D.6ORCID,Gao Peng7ORCID,Wang Hong5ORCID,Peng Gary3ORCID,Blancaflor Elison B.8ORCID,Datla Raju7ORCID,Xiang Daoquan6ORCID,Wilson Kenneth E.1ORCID,Wei Yangdou1ORCID

Affiliation:

1. Department of Biology, University of Saskatchewan, Saskatoon, SK S7N 5E2, Canada

2. Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture, Oil Crops Research Institute, Chinese Academy of Agricultural Sciences, Wuhan, Hubei 430062, China

3. Saskatoon Research and Development Centre, Agriculture and Agri-Food Canada, Saskatoon, SK S7N 0X2, Canada

4. Anhui Province Key Laboratory of Integrated Pest Management on Crops, Anhui Agricultural University, Hefei 230036, China

5. Department of Biochemistry, Microbiology and Immunology, University of Saskatchewan, Saskatoon, SK, S7N 5E5, Canada

6. National Research Council Canada, Saskatoon, SK, S7N 0W9, Canada

7. Global Institute for Food Security, University of Saskatchewan, Saskatoon, SK S7N 0W9, Canada

8. Noble Research Institute LLC, Ardmore, Oklahoma 73401, USA

Abstract

Abstract The actin cytoskeleton regulates an array of diverse cellular activities that support the establishment of plant–microbe interactions and plays a critical role in the execution of plant immunity. However, molecular and cellular mechanisms regulating the assembly and rearrangement of actin filaments (AFs) at plant–pathogen interaction sites remain largely elusive. Here, using live-cell imaging, we show that one of the earliest cellular responses in Arabidopsis thaliana upon powdery mildew attack is the formation of patch-like AF structures beneath fungal invasion sites. The AFs constituting actin patches undergo rapid turnover, which is regulated by the actin-related protein (ARP)2/3 complex and its activator, the WAVE/SCAR regulatory complex (W/SRC). The focal accumulation of phosphatidylinositol-4,5-bisphosphate at fungal penetration sites appears to be a crucial upstream modulator of the W/SRC–ARP2/3 pathway-mediated actin patch formation. Knockout of W/SRC–ARP2/3 pathway subunits partially compromised penetration resistance with impaired endocytic recycling of the defense-associated t-SNARE protein PEN1 and its deposition into apoplastic papillae. Simultaneously knocking out ARP3 and knocking down the Class I formin (AtFH1) abolished actin patch formation, severely impaired the deposition of cell wall appositions, and promoted powdery mildew entry into host cells. Our results demonstrate that the ARP2/3 complex and formins, two actin-nucleating systems, act cooperatively and contribute to Arabidopsis penetration resistance to fungal invasion.

Funder

the Canadian Foundation for Innovation to Y.W., and the National Aeronautics and Space Administration

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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