The nuclear effector ArPEC25 from the necrotrophic fungusAscochyta rabieitargets the chickpea transcription factor CaβLIM1a and negatively modulates lignin biosynthesis, increasing host susceptibility

Author:

Singh Shreenivas Kumar12ORCID,Shree Ankita1ORCID,Verma Sandhya1ORCID,Singh Kunal1ORCID,Kumar Kamal1ORCID,Srivastava Vikas1ORCID,Singh Ritu1ORCID,Saxena Samiksha1ORCID,Singh Agam Prasad3ORCID,Pandey Ashutosh1ORCID,Verma Praveen Kumar12ORCID

Affiliation:

1. Plant Immunity Laboratory, National Institute of Plant Genome Research , Aruna Asaf Ali Marg, New Delhi 110067 , India

2. Plant Immunity Laboratory, School of Life Sciences, Jawaharlal Nehru University , New Delhi 110067 , India

3. National Institute of Immunology , Aruna Asaf Ali Marg, New Delhi 110067 , India

Abstract

AbstractFungal pathogens deploy a barrage of secreted effectors to subvert host immunity, often by evading, disrupting, or altering key components of transcription, defense signaling, and metabolic pathways. However, the underlying mechanisms of effectors and their host targets are largely unexplored in necrotrophic fungal pathogens. Here, we describe the effector protein Ascochyta rabiei PEXEL-like Effector Candidate 25 (ArPEC25), which is secreted by the necrotroph A. rabiei, the causal agent of Ascochyta blight disease in chickpea (Cicer arietinum), and is indispensable for virulence. After entering host cells, ArPEC25 localizes to the nucleus and targets the host LIM transcription factor CaβLIM1a. CaβLIM1a is a transcriptional regulator of CaPAL1, which encodes phenylalanine ammonia lyase (PAL), the regulatory, gatekeeping enzyme of the phenylpropanoid pathway. ArPEC25 inhibits the transactivation of CaβLIM1a by interfering with its DNA-binding ability, resulting in negative regulation of the phenylpropanoid pathway and decreased levels of intermediates of lignin biosynthesis, thereby suppressing lignin production. Our findings illustrate the role of fungal effectors in enhancing virulence by targeting a key defense pathway that leads to the biosynthesis of various secondary metabolites and antifungal compounds. This study provides a template for the study of less explored necrotrophic effectors and their host target functions.

Funder

Department of Biotechnology, Government of India

National Institute of Plant Genome Research

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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