Manoj Balenahalli Parameshwaraiah, Madhavi Reddy Kambham, Lakshmana Reddy Dhoranapalli ChinnappaReddy, Sai Timmarao Koka, Smaranika Mishra, Karishma Pasupula, Mahebub Shaik, Naresh Ponnam
The cytoplasmic-genic male sterility (CGMS) system enhances the economic efficiency of F1 hybrid seed production by exploiting the interaction between sterile cytoplasm and nuclear restorer-of-fertility (Rf) genes. Molecular markers linked to the Rf gene facilitate the development of stable CMS lines by enabling fixation of the recessive rf allele in male-sterile (A) and maintainer (B) lines, identification of restorer lines, and assessment of genetic purity. In the present study, phenotyping of an F2 population derived from IIHR4392A (rfrf) × IIHR4597R (RfRf) showed a 3:1 segregation ratio, confirming monogenic dominant inheritance of fertility restoration. Genotyping-by-sequencing (GBS) of this segregating F2 population yielded 10,443 single-nucleotide polymorphisms (SNPs) with 481 to 1,074 SNPs per chromosome. Bulk segregant analysis identified three SNPs co-segregating with the Rf gene on chromosome 6. One candidate SNP, mapped at 2,343,509 bp on chromosome 6, was converted into a derived cleaved amplified polymorphic sequence (dCAPS) marker and validated in the F2 population. Three putative candidate genes, i.e., two fertility restorer-like proteins (CA06g01070, CA06g01090) and a pentatricopeptide repeat protein (CA06g01100), were predicted as potential Rf candidates. The developed dCAPS marker associated with the Rf gene for fertility restoration provides a valuable tool for marker-assisted breeding in chilli.