Related type 2C protein phosphatases Pic3 and Pic12 negatively regulate immunity in tomato to Pseudomonas syringae

Author:

Xia Fan12ORCID,Zhang Ning12ORCID,Smith Renee E1ORCID,Chakraborty Joydeep3ORCID,Sobol Guy3ORCID,Tang Xuemei1ORCID,Fei Zhangjun124ORCID,Sessa Guido3ORCID,Martin Gregory B12ORCID

Affiliation:

1. Boyce Thompson Institute for Plant Research , Ithaca, NY 14853 , USA

2. Plant Pathology and Plant-Microbe Biology Section, School of Integrative Plant Science, Cornell University , Ithaca, NY 14853 , USA

3. The George S. Wise Faculty of Life Sciences, School of Plant Sciences and Food Security, Tel-Aviv University , Tel-Aviv 69978 , Israel

4. USDA-ARS Robert W. Holley Center for Agriculture and Health , Ithaca, NY 14853 , USA

Abstract

Abstract Type 2C protein phosphatases (PP2Cs) constitute a large family in most plant species, but relatively few of them have been implicated in immunity. To identify and characterize PP2C phosphatases that affect tomato (Solanum lycopersicum) immunity, we generated loss-of-function mutations in 11 PP2C-encoding genes whose expression is altered in response to immune elicitors or pathogens. We report that 2 closely related PP2C phosphatases, PP2C immunity-associated candidate 3 (Pic3) and Pic12, are involved in regulating resistance to the bacterial pathogen Pseudomonas syringae pv. tomato (Pst). Loss-of-function mutations in Pic3 led to enhanced resistance to Pst in older but not younger leaves, whereas such mutations in Pic12 resulted in enhanced resistance in both older and younger leaves. Overexpression of Pic3 and Pic12 proteins in leaves of Nicotiana benthamiana inhibited resistance to Pst, and this effect was dependent on Pic3/12 phosphatase activity and an N-terminal palmitoylation motif associated with localization to the cell periphery. Pic3, but not Pic12, had a slight negative effect on flagellin-associated reactive oxygen species generation, although their involvement in the response to Pst appeared independent of flagellin. RNA-sequencing analysis of Rio Grande (RG)-PtoR wild-type plants and 2 independent RG-pic3 mutants revealed that the enhanced disease resistance in RG-pic3 older leaves is associated with increased transcript abundance of multiple defense-related genes. RG-pic3/RG-pic12 double-mutant plants exhibited stronger disease resistance than RG-pic3 or RG-pic12 single mutants. Together, our results reveal that Pic3 and Pic12 negatively regulate tomato immunity in an additive manner through flagellin-independent pathways.

Funder

NSF Research for Undergraduates

United States-Israel Binational Agricultural Research and Development Fund

Publisher

Oxford University Press (OUP)

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