Molecular tools have revolutionized the field of plant breeding, enabling rapid and precise improvement in crop genetics. This review highlights the key advancements in molecular breeding techniques including molecular markers, next-generation sequencing (NGS), genome-wide association studies (GWAS), CRISPR-Cas systems, marker-assisted selection (MAS), and genomic selection (GS). The paper explores how these technologies have enhanced the efficiency of crop improvement programs, reduced breeding cycles, and enabled the development of climate-resilient, high-yielding, and disease-resistant varieties. We also discuss the integration of omics platforms—genomics, transcriptomics, proteomics, and metabolomics—for comprehensive trait analysis. Challenges such as data interpretation, regulatory bottlenecks, and limited access to technology in developing regions are addressed. The paper concludes with future prospects, including AI-based breeding models, pan-genomics, and molecular phenotyping. This review aims to provide a consolidated reference for plant scientists, breeders, and policymakers working to address global food security through advanced molecular breeding strategies.
Satyam Verma (Fri,) studied this question.