ICAR Research Complex for NEH Region, Tripura Centre, Lembucherra, Agartala, 799210, Tripura, India.
ICAR-National Research Centre for Orchids, Pakyong, Sikkim, India.
Biol Res. 2024 Nov 7;57(1):80. doi: 10.1186/s40659-024-00562-6.
Conventional pre-genomics breeding methodologies have significantly improved crop yields since the mid-twentieth century. Genomics provides breeders with advanced tools for whole-genome study, enabling a direct genotype-phenotype analysis. This shift has led to precise and efficient crop development through genomics-based approaches, including molecular markers, genomic selection, and genome editing. Molecular markers, such as SNPs, are crucial for identifying genomic regions linked to important traits, enhancing breeding accuracy and efficiency. Genomic resources viz. genetic markers, reference genomes, sequence and protein databases, transcriptomes, and gene expression profiles, are vital in plant breeding and aid in the identification of key traits, understanding genetic diversity, assist in genomic mapping, support marker-assisted selection and speeding up breeding programs. Advanced techniques like CRISPR/Cas9 allow precise gene modification, accelerating breeding processes. Key techniques like Genome-Wide Association study (GWAS), Marker-Assisted Selection (MAS), and Genomic Selection (GS) enable precise trait selection and prediction of breeding outcomes, improving crop yield, disease resistance, and stress tolerance. These tools are handy for complex traits influenced by multiple genes and environmental factors. This paper explores new genomic technologies like molecular markers, genomic selection, and genome editing for plant breeding showcasing their impact on developing new plant varieties.
传统的基因组学前育种方法自 20 世纪中叶以来极大地提高了作物产量。基因组学为育种者提供了全基因组研究的先进工具,实现了直接的基因型-表型分析。这种转变通过基于基因组学的方法(包括分子标记、基因组选择和基因组编辑)实现了精确和高效的作物开发。分子标记(如 SNPs)对于鉴定与重要性状相关的基因组区域至关重要,提高了育种的准确性和效率。基因组资源(如遗传标记、参考基因组、序列和蛋白质数据库、转录组和基因表达谱)在植物育种中至关重要,有助于鉴定关键性状、了解遗传多样性、辅助基因组图谱构建、支持标记辅助选择并加速育种计划。先进的技术如 CRISPR/Cas9 允许精确的基因修饰,加速了育种过程。关键技术如全基因组关联研究(GWAS)、标记辅助选择(MAS)和基因组选择(GS)能够实现精确的性状选择和预测育种结果,提高作物产量、抗病性和抗逆性。这些工具对于受多个基因和环境因素影响的复杂性状非常有用。本文探讨了用于植物育种的新型基因组学技术,如分子标记、基因组选择和基因组编辑,展示了它们在开发新植物品种方面的影响。