The flowering time regulator FLK controls pathogen defense inArabidopsis thaliana

Author:

Fabian Matthew1ORCID,Gao Min12ORCID,Zhang Xiao-Ning2ORCID,Shi Jiangli13ORCID,Vrydagh Leah1ORCID,Kim Sung-Ha3ORCID,Patel Priyank1ORCID,Hu Anna R2ORCID,Lu Hua1ORCID

Affiliation:

1. Department of Biological Sciences, University of Maryland Baltimore County , 1000 Hilltop Circle, Baltimore, Maryland 21250 , USA

2. Biochemistry Program, Department of Biology, St Bonaventure University , St Bonaventure, New York 14778 , USA

3. Department of Biology Education, Korea National University of Education , Chungbuk 28644 , Korea

Abstract

AbstractPlant disease resistance is a complex process that is maintained in an intricate balance with development. Increasing evidence indicates the importance of posttranscriptional regulation of plant defense by RNA binding proteins. In a genetic screen for suppressors of Arabidopsis (Arabidopsis thaliana) accelerated cell death 6-1 (acd6-1), a small constitutive defense mutant whose defense level is grossly in a reverse proportion to plant size, we identified an allele of the canonical flowering regulatory gene FLOWERING LOCUS K HOMOLOGY DOMAIN (FLK) encoding a putative protein with triple K homology (KH) repeats. The KH repeat is an ancient RNA binding motif found in proteins from diverse organisms. The relevance of KH-domain proteins in pathogen resistance is largely unexplored. In addition to late flowering, the flk mutants exhibited decreased resistance to the bacterial pathogen Pseudomonas syringae and increased resistance to the necrotrophic fungal pathogen Botrytis cinerea. We further found that the flk mutations compromised basal defense and defense signaling mediated by salicylic acid (SA). Mutant analysis revealed complex genetic interactions between FLK and several major SA pathway genes. RNA-seq data showed that FLK regulates expression abundance of some major defense- and development-related genes as well as alternative splicing of a number of genes. Among the genes affected by FLK is ACD6, whose transcripts had increased intron retentions influenced by the flk mutations. Thus, this study provides mechanistic support for flk suppression of acd6-1 and establishes that FLK is a multifunctional gene involved in regulating pathogen defense and development of plants.

Funder

National Science Foundation

UMBC Technology Catalyst Fund

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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