Re-Sequencing the Mitochondrial Genome Unveils a Novel Isomeric Form of NWB CMS Line in Radish and Functional Verification of Its Candidate Sterile Gene

Author:

Li Xiaomei123,Liang Le1,Ran Jianzhao4,Yang Feng23,Ran Maolin2,Yong Xiaoping2,Kong Chuibao2,Tang Yi1ORCID,Li Huanxiu1ORCID

Affiliation:

1. College of Horticulture, Sichuan Agricultural University, Chengdu 611130, China

2. Rice and Sorghum Research Institute, Sichuan Academy of Agricultural Sciences (Deyang Branch, Sichuan Academy of Agricultural Sciences), Deyang 618099, China

3. Vegetable Germplasm Innovation and Variety Improvement Key Laboratory of Sichuan Province, Sichuan Academy of Agricultural Sciences, Chengdu 610066, China

4. College of Agriculture and Ecological Engineering, Hexi University, Zhangye 734000, China

Abstract

Radish (Raphanus sativus L.) is a globally significant vegetable and relies on cytoplasmic male sterile (CMS) lines for hybrid seed production. The NWB CMS type is favored over Ogura CMS for its ease in maintainer screening. Despite its varied mitochondrial configurations and unvalidated sterile gene, we re-sequenced the mitochondrial genome of NWB CMS Tibet A and verified the function of the sterility gene via genetic transformation of Arabidopsis thaliana. The mitochondrial genomes of Tibet A could be assembled into circular DNA molecules, with a mitochondrial genome size of 239,184 bp. Our analysis indicated that the specific orf463a was the CMS-associated gene in Tibet A, sharing sequence consistency with the CMS gene in DCGMS and NWB CMS YB-A. Collinearity analysis showed that the mitochondrial genomes of NWB CMS Tibet A, DCGMS, and NWB CMS YB-A share the same mitotype, with structural variations due to recombination via a 9731 bp long repeat sequence and a 508 bp short repeat sequence. Driven by the Ap3 promoter, transgenic Arabidopsis with orf463a exhibited male sterility, confirming the gene’s potential role in CMS. In this study, we assembled a new isomeric form of NWB CMS mitochondrial genome and proved the function of the candidate sterile gene.

Funder

Key Project supported by the Joint Funds of the National Natural Science Foundation of China

1+9 Open Competition Project of Sichuan Academy of Agricultural Sciences

Natural Science Foundation of Sichuan Province

Independent Innovation of Sichuan province

14th Five-Year Plan Vegetable Breeding Project of Sichuan Province

Publisher

MDPI AG

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