Mutations of two FERONIA-like receptor genes enhance rice blast resistance without growth penalty

Author:

Yang Zhuhong12,Xing Junjie2,Wang Long13,Liu Yue1,Qu Jianing3,Tan Yang2,Fu Xiqin2,Lin Qinlu3,Deng Huafeng2,Yu Feng12ORCID

Affiliation:

1. College of Biology, and Hunan Key Laboratory of Plant Functional Genomics and Developmental Regulation, Hunan University, Changsha, PR China

2. State Key Laboratory of Hybrid Rice, Hunan Hybrid Rice Research Center, Hunan Academy of Agricultural Sciences, Changsha, PR China

3. National Engineering Laboratory for Rice and By-product Deep Processing, Central South University of Forestry and Technology, Changsha, PR China

Abstract

Abstract Genes that provide resistance to fungi and/or bacteria usually reduce plant growth and ultimately affect grain yield. Thus, crop breeding programs need to find genetic resources that balance disease resistance with growth. The receptor kinase FERONIA regulates cell growth and survival in Arabidopsis. Here, we investigate, in rice, the role of members of the FERONIA-like receptor (FLR) gene family in the balance between growth and the response to the fungal pathogen Magnaporthe oryzae (Pyricularia oryzae), which causes the most devastating disease in rice. We carried out genome-wide gene expression and functional screenings in rice via a gene knockout strategy, and we successfully knocked out 14 FLR genes in rice. Using these genetic resources, we found that mutations in the FLR2 and FLR11 genes provide resistance to rice blast without a profound growth penalty. Detailed analyses revealed that FLR2 mutation increased both defense-related gene expression and M. oryzae-triggered production of reactive oxygen species. Thus, our results highlight novel genetic tools for studying the underlying molecular mechanisms of enhancing disease resistance without growth penalty.

Funder

National Natural Science Foundation of China

Hunan Provincial Science & Technology

Young Elite Scientist Sponsorship Program

Science and Technology Project of Changsha

Hunan Technology Major Project

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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