Multiplex gene editing reveals cucumber MILDEW RESISTANCE LOCUS O family roles in powdery mildew resistance

Author:

Ma Mingru1ORCID,Yang Li1ORCID,Hu Zhenzhu1ORCID,Mo Changjuan1ORCID,Geng Shouyu1ORCID,Zhao Xin1ORCID,He Qiuyu1ORCID,Xiao Li1ORCID,Lu Liurong1ORCID,Wang Dan1ORCID,Li Shanggui1ORCID,Kong Qiusheng1ORCID,Li Dawei2ORCID,Bie Zhilong13ORCID

Affiliation:

1. National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University , Wuhan 430070 , China

2. College of Horticulture, Northwest A&F University , Yangling 712100 , China

3. Hubei Hongshan Laboratory , Department of Science and Technology of Hubei Province, Wuhan 430070 , China

Abstract

Abstract Powdery mildew (PM) is one of the most widespread and prevalent diseases that affects a wide range of crops. In cucumber (Cucumis sativus L.), previous forward genetic studies have identified MILDEW RESISTANCE LOCUS O 8 (CsMLO8) as necessary but alone insufficient for cucumber PM resistance (PMR) and suggested the involvement of other members of the CsMLO family. However, the function of other CsMLO family members in cucumber remains largely unknown. Here, we developed a highly efficient multiplex gene editing system in cucumber to generate a series of Csmlo mutants from all the 13 family members. Systematic analysis of these mutants revealed growth effects of these CsMLO family members on development and PMR. Importantly, we obtained the Csmlo1/8/11 triple mutant with complete resistance to PM. Transcriptome and proteome analysis of PM-resistant Csmlo mutants suggested that the kinesin-like calmodulin-binding protein (KCBP)-interacting Ca2+-binding protein (CsKIC), calmodulin-like protein 28 (CsCML28), and Ca2+-dependent protein kinase 11 (CsCPK11)-mediated calcium signaling pathway is involved in PMR. CsMLO8 interacted directly with CsKIC, and the simultaneous silencing of both genes resulted in a phenotype that resembled the silencing of CsKIC alone. Silencing CsCML28 and CsCPK11 increased susceptibility to PM, whereas overexpressing CsCPK11 through genetic transformation enhanced cucumber's PMR, demonstrating their positive regulatory roles in PMR. Given the importance of PMR for cucurbit crops, this research provides unprecedented insights into the function of the proteins encoded by the CsMLO gene family as well as the plant defense response to PM pathogen.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Hubei province

Hubei Key Research Project of CRISPR Gene-Editing Technology in Fruit Vegetable Crops

Fundamental Research Funds for the Central Universities

Publisher

Oxford University Press (OUP)

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