DNA- and Selectable-Marker-Free Genome-Editing System Using Zygotes from Recalcitrant Maize Inbred B73

Author:

Yamada Hajime12ORCID,Kato Norio234,Ichikawa Masako12,Mannen Keiko3,Kiba Takatoshi35ORCID,Osakabe Yuriko36ORCID,Sakakibara Hitoshi35ORCID,Matsui Minami37ORCID,Okamoto Takashi34

Affiliation:

1. Agri-Bio Research Center, KANEKA CORPORATION , Higashibara 700, Iwata, Shizuoka, 438-0802 Japan

2. Plant Innovation Center, Japan Tobacco, Inc. , Higashibara 700, Iwata, Shizuoka, 438-0802 Japan

3. Plant Breeding Innovation Laboratory, RIKEN Cluster for Science, Technology and Innovation Hub , Tsurumi, Yokohama, 230-0045 Japan

4. Department of Biological Sciences, Tokyo Metropolitan University , Minami-osawa 1-1, Hachioji, Tokyo, 192-0392 Japan

5. Graduate School of Bioagricultural Sciences, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8601 Japan

6. Department of Life Science and Technology, Tokyo Institute of Technology , Yokohama, 226-8501 Japan

7. RIKEN Center for Sustainable Resource Science , 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa, 230-0045 Japan

Abstract

Abstract Genome-editing tools such as the clustered regularly interspaced short palindromic repeats/Cas9 (CRISPR/Cas9) system have become essential tools for increasing the efficiency and accuracy of plant breeding. Using such genome-editing tools on maize, one of the most important cereal crops of the world, will greatly benefit the agriculture and the mankind. Conventional genome-editing methods typically used for maize involve insertion of a Cas9-guide RNA expression cassette and a selectable marker in the genome DNA; however, using such methods, it is essential to eliminate the inserted DNA cassettes to avoid legislative concerns on gene-modified organisms. Another major hurdle for establishing an efficient and broadly applicable DNA-free genome-editing system for maize is presented by recalcitrant genotypes/cultivars, since cell/tissue culture and its subsequent regeneration into plantlets are crucial for producing transgenic and/or genome-edited maize. In this study, to establish a DNA-free genome-editing system for recalcitrant maize genotypes/cultivars, Cas9-gRNA ribonucleoproteins were directly delivered into zygotes isolated from the pollinated flowers of the maize-B73 cultivar. The zygotes successfully developed and were regenerated into genome-edited plantlets by co-culture with phytosulfokine, a peptide phytohormone. The method developed herein made it possible to obtain DNA- and selectable-marker-free genome-edited recalcitrant maize genotypes/cultivars with high efficiency. This method can advance the molecular breeding of maize and other important cereals, regardless of their recalcitrant characteristics.

Funder

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

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