Novel Plant Immune-Priming Compounds Identified via High-Throughput Chemical Screening Target Salicylic Acid Glucosyltransferases in Arabidopsis

Author:

Noutoshi Yoshiteru1,Okazaki Masateru1,Kida Tatsuya1,Nishina Yuta1,Morishita Yoshihiko2,Ogawa Takumi2,Suzuki Hideyuki2,Shibata Daisuke2,Jikumaru Yusuke3,Hanada Atsushi3,Kamiya Yuji3,Shirasu Ken3

Affiliation:

1. Research Core for Interdisciplinary Sciences, Okayama University, Kita-ku, Okayama 700-8530, Japan

2. Kazusa DNA Research Institute, Kisarazu 292-0818, Japan

3. RIKEN Plant Science Center, Tsurumi, Yokohama 230-0045, Japan

Abstract

Abstract Plant activators are compounds, such as analogs of the defense hormone salicylic acid (SA), that protect plants from pathogens by activating the plant immune system. Although some plant activators have been widely used in agriculture, the molecular mechanisms of immune induction are largely unknown. Using a newly established high-throughput screening procedure that screens for compounds that specifically potentiate pathogen-activated cell death in Arabidopsis thaliana cultured suspension cells, we identified five compounds that prime the immune response. These compounds enhanced disease resistance against pathogenic Pseudomonas bacteria in Arabidopsis plants. Pretreatments increased the accumulation of endogenous SA, but reduced its metabolite, SA-O-β-d-glucoside. Inducing compounds inhibited two SA glucosyltransferases (SAGTs) in vitro. Double knockout plants that lack both SAGTs consistently exhibited enhanced disease resistance. Our results demonstrate that manipulation of the active free SA pool via SA-inactivating enzymes can be a useful strategy for fortifying plant disease resistance and may identify useful crop protectants.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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