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Research paper | Open Access

Precise base editing of non-allelic acetolactate synthase genes confers sulfonylurea herbicide resistance in maize

Yanmin Lia,1Jinjie Zhua,1Hao Wua,cChanglin LiuaChangling HuangaJinhao LanbYanming ZhaobChuanxiao Xiea( )
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, National Key Facility for Crop Gene Resources and Genetic Improvement, Beijing 100081, China
Qingdao Agricultural University, Qingdao 266109, Shandong, China
Anhui Agricultural University, Hefei 230036, Anhui, China

1 These authors contributed equally to this work.

Peer review under responsibility of Crop Science Society of China and Institute of Crop Science, CAAS.

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Abstract

Single-nucleotide polymorphisms contribute to phenotypic diversity in maize. Creation and functional annotation of point mutations has been limited by the low efficiency of conventional methods based on random mutation. An efficient tool for generating targeted single-base mutations is desirable for both functional genomics and precise genetic improvement. The objective of this study was to test the efficiency of targeted C-to-T base editing of two non-allelic acetolactate synthase (ALS) in generating sulfonylurea herbicide-resistant mutants. A CRISPR/Cas9 nickase-cytidine deaminase fused with uracil DNA glycosylase inhibitor (UGI) was employed to achieve targeted conversion of cytosine to thymine in ZmALS1 and ZmALS2. Both protoplasts and recovered mutant plants showed the activity of the cytosine base editor, with an in vivo efficiency of up to 13.8%. Transgene-free edited plants harboring a homozygous ZmALS1 mutation or a ZmALS1 and ZmALS2 double mutation were tested for their resistance at a dose of up to 15-fold the recommended limit of chlorsulfuron, a sulfonylurea herbicide widely used in agriculture. Targeted base editing of C-to-T per se and a phenotype verified in the generated mutants demonstrates the power of base editing in precise maize breeding.

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The Crop Journal
Pages 449-456

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Cite this article:
Li Y, Zhu J, Wu H, et al. Precise base editing of non-allelic acetolactate synthase genes confers sulfonylurea herbicide resistance in maize. The Crop Journal, 2020, 8(3): 449-456. https://doi.org/10.1016/j.cj.2019.10.001

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Received: 09 July 2019
Revised: 30 September 2019
Accepted: 10 November 2019
Published: 10 December 2019
© 2019 Crop Science Society of China and Institute of Crop Science, CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).