Plant Pathology and Plant-Microbe Biology Section, Cornell University, 630 N Street, Geneva, NY, 14456, USA.
Plant Pathology and Plant-Microbe Biology Section, Cornell University, 630 N Street, Geneva, NY, 14456, USA.
Curr Opin Plant Biol. 2024 Dec;82:102652. doi: 10.1016/j.pbi.2024.102652. Epub 2024 Oct 30.
Crop wild relatives of perennial fruit crops have a wealth of untapped genetic diversity that can be utilized for cultivar development. However, barriers such as linkage drag, long juvenility, and high heterozygosity have hindered their utilization. Advancements in genome sequencing technologies and assembly methods, combined with the integration of chromosome conformation capture have made it possible to construct high-quality reference genomes. These genome assemblies can be combined into pan-genomes, capturing inter- and intraspecific variations across coding and non-coding regions. Pan-genomes of perennial fruit crops are being developed to identify the genetic basis of traits. This will help overcome breeding challenges, enabling faster and more targeted development of new cultivars with novel traits through breeding and biotechnology.
多年生水果作物的野生近缘种拥有丰富的尚未开发的遗传多样性,可用于品种开发。然而,诸如连锁累赘、长幼年期和高杂合性等障碍阻碍了它们的利用。基因组测序技术和组装方法的进步,加上染色体构象捕获的整合,使得构建高质量的参考基因组成为可能。这些基因组组装可以组合成泛基因组,捕获编码和非编码区域的种间和种内变异。正在开发多年生水果作物的泛基因组,以鉴定性状的遗传基础。这将有助于克服育种挑战,通过传统育种和生物技术更快、更有针对性地开发具有新特性的新型品种。