Improvement of Flowering Stage in Japonica Rice Variety Jiahe212 by Using CRISPR/Cas9 System

Author:

He Dengmei12,Zhou Ran2ORCID,Huang Chenbo2,Li Yanhui2,Peng Zequn2,Li Dian2,Duan Wenjing2,Huang Nuan2,Cao Liyong23,Cheng Shihua2,Zhan Xiaodeng2,Sun Lianping24ORCID,Wang Shiqiang15

Affiliation:

1. College of Agronomy, Heilongjiang Bayi Agricultural University, Daqing 163711, China

2. Chinese National Center for Rice Improvement and National Key Laboratory of Rice Biology and Breeding, China National Rice Research Institute, Hangzhou 311402, China

3. Baoqing Northern Rice Research Center, Northern Rice Research Center of China National Rice Research Institute, Baoqing 155600, China

4. Fuyuan Collaborative Breeding Innovation Center of China National Rice Research Institute, Jiamusi 156500, China

5. College of Chemical and Biological Engineering, Hechi University, Hechi 546300, China

Abstract

The flowering period of rice significantly impacts variety adaptability and yield formation. Properly shortening the reproductive period of rice varieties can expand their ecological range without significant yield reduction. Targeted genome editing, like CRISPR/Cas9, is an ideal tool to fine-tune rice growth stages and boost yield synergistically. In this study, we developed a CRISPR/Cas9-mediated multiplex genome-editing vector containing five genes related to three traits, Hd2, Ghd7, and DTH8 (flowering-stage genes), along with the recessive rice blast resistance gene Pi21 and the aromatic gene BADH2. This vector was introduced into the high-quality japonica rice variety in Zhejiang province, Jiahe212 (JH212), resulting in 34 T0 plants with various effective mutations. Among the 17 mutant T1 lines, several displayed diverse flowering dates, but most exhibited undesirable agronomic traits. Notably, three homozygous mutant lines (JH-C15, JH-C18, and JH-C31) showed slightly earlier flowering dates without significant differences in yield-related traits compared to JH212. Through special Hyg and Cas marker selection of T2 plants, we identified seven, six, and two fragrant glutinous plants devoid of transgenic components. These single plants will serve as sib lines of JH212 and potential resources for breeding applications, including maintenance lines for indica–japonica interspecific three-line hybrid rice. In summary, our research lays the foundation for the creation of short-growth-period CMS (cytoplasmic male sterility, CMS) lines, and also provides materials and a theoretical basis for indica–japonica interspecific hybrid rice breeding with wider adaptability.

Funder

fund of Guangxi Science and Technology Major Project

Zhejiang Provincial Key Special Projects

China Agriculture Research System

Start-up Project for Studying 2023 High-level Talents of Hechi University

National Natural Science Foundation of China

Chinese Academy of Agricultural Sciences Innovation Project

Publisher

MDPI AG

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