GbPP2C80 Interacts with GbWAKL14 to Negatively Co‐Regulate Resistance to Fusarium and Verticillium wilt via MPK3 and ROS Signaling in Sea Island Cotton

Author:

Zhao Nan1,Guo Anhui1,Wang Weiran2,Li Bin1,Wang Meng2,Zhou Zixin2,Jiang Kaiyun1,Aierxi Alifu2,Wang Baoliang1,Adjibolosoo Daniel1,Xia Zhanghao1,Li Huijing1,Cui Yanan1,Kong Jie2,Hua Jinping1ORCID

Affiliation:

1. Joint Laboratory for International Cooperation in Crop Molecular Breeding Ministry of Education College of Agronomy and Biotechnology China Agricultural University Beijing 100193 China

2. Institute of Economic Crops Xinjiang Academy of Agricultural Sciences Urumqi Xinjiang 830091 China

Abstract

AbstractFusarium wilt (FW) is widespread in global cotton production, but the mechanism underlying FW resistance in superior‐fiber‐quality Sea Island cotton is unclear. This study reveals that FW resistance has been the target of genetic improvement of Sea Island cotton in China since the 2010s. The key nonsynonymous single nucleotide polymorphism (SNP, T/C) of gene Gbar_D03G001670 encoding protein phosphatase 2C 80 (PP2C80) results in an amino acid shift (L/S), which is significantly associated with FW resistance of Sea Island cotton. Silencing GbPP2C80 increases FW resistance in Sea Island cotton, whereas overexpressing GbPP2C80 reduces FW resistance in Arabidopsis. GbPP2C80 and GbWAKL14 exist synergistically in Sea Island cotton accessions with haplotype forms “susceptible–susceptible” (TA) and “resistant–resistant” (CC), and interact with each other. CRISPR/Cas9‐mediated knockout of GbWAKL14 enhances FW and Verticillium wilt (VW) resistance in upland cotton and overexpression of GbWAKL14 and GbPP2C80 weakens FW and VW resistance in Arabidopsis. GbPP2C80 and GbWAKL14 respond to FW and VW by modulating reactive oxygen species (ROS) content via affecting MPK3 expression. In summary, two tandem genes on chromosome D03, GbPP2C80, and GbWAKL14, functions as cooperative negative regulators in cotton wilt disease defense, providing novel genetic resources and molecular markers for the development of resistant cotton cultivars.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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