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A single-nucleotide mutation in GLUTAMATE RECEPTOR-LIKE protein gene confers resistance to Fusarium wilt in Gossypium hirsutum.

Liu, S. and Zhang, X. and Xiao, S. and Ma, J. and Shi, W. and Qin, T. and Xi, H. and Nie, X. and You, C. and Xu, Z. and Wang, T. and Wang, Y. and Zhang, Z. and Li, J. and Kong, J. and Aierxi, A. and Yu, Y. and Lindsey, K. and Klosterman, S.J. and Zhang, X. and Zhu, L. (2021) 'A single-nucleotide mutation in GLUTAMATE RECEPTOR-LIKE protein gene confers resistance to Fusarium wilt in Gossypium hirsutum.', Advanced science., 8 (7). p. 2002723.

Abstract

Fusarium wilt (FW) disease of cotton, caused by the fungus Fusarium oxysporum f. sp. vasinfectum (Fov), causes severe losses in cotton production worldwide. Though significant advancements have been made in development of FW‐resistant Upland cotton (Gossypium hirsutum) in resistance screening programs, the precise resistance genes and the corresponding molecular mechanisms for resistance to Fov remain unclear. Herein it is reported that Fov7, a gene unlike canonical plant disease‐resistance (R) genes, putatively encoding a GLUTAMATE RECEPTOR‐LIKE (GLR) protein, confers resistance to Fov race 7 in Upland cotton. A single nucleotide polymorphism (SNP) (C/A) in GhGLR4.8, resulting in an amino acid change (L/I), is associated with Fov resistance. A PCR‐based DNA marker (GhGLR4.8SNP(A/C)) is developed and shown to cosegregate with the Fov resistance. CRISPR/Cas9‐mediated knockout of Fov7 results in cotton lines extremely susceptible to Fov race 7 with a loss of the ability to induce calcium influx in response to total secreted proteins (SEPs) of Fov. Furthermore, coinfiltration of SEPs with GhGLR4.8A results in a hypersensitive response. This first report of a GLR‐encoding gene that functions as an R gene provides a new insight into plant–pathogen interactions and a new handle to develop cotton cultivars with resistance to Fov race 7.

Item Type:Article
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Full text:(VoR) Version of Record
Available under License - Creative Commons Attribution 4.0.
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(6222Kb)
Status:Peer-reviewed
Publisher Web site:https://doi.org/10.1002/advs.202002723
Publisher statement:© 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
Date accepted:No date available
Date deposited:30 March 2021
Date of first online publication:19 February 2021
Date first made open access:30 March 2021

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