Elicitor-induced plant immunity relies on amino acids accumulation to delay the onset of bacterial virulence

Author:

Zhang Xiaomu1ORCID,Tubergen Philip J1ORCID,Agorsor Israel D K12ORCID,Khadka Pramod1ORCID,Tembe Connor1,Denbow Cynthia3ORCID,Collakova Eva3ORCID,Pilot Guillaume3ORCID,Danna Cristian H1ORCID

Affiliation:

1. Department of Biology, University of Virginia , Charlottesville, VA 22904 , USA

2. Department of Molecular Biology & Biotechnology, School of Biological Sciences, College of Agriculture & Natural Sciences, University of Cape Coast , Cape Coast , Ghana

3. School of Plant and Environmental Sciences, Virginia Tech , Blacksburg, VA 24060 , USA

Abstract

Abstract Plant immunity relies on the perception of microbe-associated molecular patterns (MAMPs) from invading microbes to induce defense responses that suppress attempted infections. It has been proposed that MAMP-triggered immunity (MTI) suppresses bacterial infections by suppressing the onset of bacterial virulence. However, the mechanisms by which plants exert this action are poorly understood. Here, we showed that MAMP perception in Arabidopsis (Arabidopsis thaliana) induces the accumulation of free amino acids in a salicylic acid (SA)-dependent manner. When co-infiltrated with Glutamine and Serine, two of the MAMP-induced highly accumulating amino acids, Pseudomonas syringae pv. tomato DC3000 expressed low levels of virulence genes and failed to produce robust infections in otherwise susceptible plants. When applied exogenously, Glutamine and Serine directly suppressed bacterial virulence and growth, bypassing MAMP perception and SA signaling. In addition, an increased level of endogenous Glutamine in the leaf apoplast of a gain-of-function mutant of Glutamine Dumper-1 rescued the partially compromised bacterial virulence- and growth-suppressing phenotype of the SA-induced deficient-2 (sid2) mutant. Our data suggest that MTI suppresses bacterial infections by delaying the onset of virulence with an excess of amino acids at the early stages of infection.

Funder

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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