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Article|01 Oct 2024|OPEN
Fertility restorer gene CaRf and PepperSNP50K provide a promising breeding system for hybrid pepper 
Bingqian Tang1 ,† , Huiping Yang1 ,† , Qinbiao Yin1 , Wu Miao2 , Yuting Lei3 , Qingzhi Cui1 , Jiawen Cheng3 , Xinhao Zhang1 , Ying Chen1 , Juan Du1 , Lingling Xie4 , Shunxue Tang3 , Meiqi Wang1 , Jiayue Li1 , Mingyue Cao3 , Li Chen4 , Fangling Xie1 , Xiumin Li1 , Fan Zhu1 , Zhongyi Wang1 , Cheng Xiong1 , Xiongze Dai1 , Xuexiao Zou1 , and Feng Liu,1 ,
1Engineering Research Center of Education, Ministry for Germplasm Innovation and Breeding New Varieties of Horticultural Crops, Key Laboratory for Vegetable Biology of Hunan Province, College of Horticulture, Hunan Agricultural University, Changsha 410128, China
2Hunan Xiangyan Seed Industry Co., Ltd, Changsha 410125, China
3Higentec Co. Ltd., Changsha, Hunan, 410125, China
4Institute of Vegetable Research, Hunan Academy of Agricultural Science, Changsha 410125, China
*Corresponding author. E-mail: zou_xuexiao@163.com,jwszjx@hunau.edu.cn
Both authors contributed equally to the study.

Horticulture Research 11,
Article number: uhae223 (2024)
doi: https://doi.org/10.1093/hr/uhae223
Views: 2910

Received: 12 Apr 2024
Accepted: 28 Jul 2024
Published online: 01 Oct 2024

Abstract

Cytoplasmic male sterility (CMS) is pivotal in plant breeding and widely employed in various crop hybrids, including pepper. However, the functional validation of the restorer of fertility (Rf) gene in pepper has been lacking until now. This study identifies and characterizes CaRf, a single dominant locus crucial for restoring CMS in the pepper strong recovery inbred line Zhangshugang. The CaRf gene encodes a mitochondria-targeted pentatricopeptide repeat protein, validated through the induction of male sterility upon its silencing in hybrid F1 plants. To enhance pepper breeding efficiency, 176 important pepper breeding parent materials were resequenced, and a PepperSNP50K liquid-phase breeding chip was developed, comprising 51 172 markers. Integration of CaRf functional characterization and PepperSNP50K facilitated the development of a high-quality red pepper hybrid. These findings provide significant insights and practical strategies for advancing molecular-designed breeding in peppers.