Skip to Content
Merck
CN
  • Unconventionally secreted effectors of two filamentous pathogens target plant salicylate biosynthesis.

Unconventionally secreted effectors of two filamentous pathogens target plant salicylate biosynthesis.

Nature communications (2014-08-27)
Tingli Liu, Tianqiao Song, Xiong Zhang, Hongbo Yuan, Liming Su, Wanlin Li, Jing Xu, Shiheng Liu, Linlin Chen, Tianzi Chen, Meixiang Zhang, Lichuan Gu, Baolong Zhang, Daolong Dou
ABSTRACT

Plant diseases caused by fungi and oomycetes pose an increasing threat to food security and ecosystem health worldwide. These filamentous pathogens, while taxonomically distinct, modulate host defense responses by secreting effectors, which are typically identified based on the presence of signal peptides. Here we show that Phytophthora sojae and Verticillium dahliae secrete isochorismatases (PsIsc1 and VdIsc1, respectively) that are required for full pathogenesis. PsIsc1 and VdIsc1 can suppress salicylate-mediated innate immunity in planta and hydrolyse isochorismate in vitro. A conserved triad of catalytic residues is essential for both functions. Thus, the two proteins are isochorismatase effectors that disrupt the plant salicylate metabolism pathway by suppressing its precursor. Furthermore, these proteins lack signal peptides, but exhibit characteristics that lead to unconventional secretion. Therefore, this secretion pathway is a novel mechanism for delivering effectors and might play an important role in host-pathogen interactions.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-HA antibody, Mouse monoclonal, clone HA-7, purified from hybridoma cell culture
Sigma-Aldrich
Anti-Actin antibody, Mouse monoclonal, clone AC-40, purified from hybridoma cell culture