Shigita Gentaro, Tanaka Katsunori, Kato Kenji
Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
Department of Life Science Systems, TUM School of Life Sciences, Technical University of Munich, Emil-Ramann-Strasse 2, 85354 Freising, Germany.
Breed Sci. 2025 Mar;75(1):34-50. doi: 10.1270/jsbbs.24048. Epub 2025 Feb 26.
Pangenomics is the exploration and characterization of the full spectrum of genetic variation within a species or a given taxonomic clade. Driven by the accelerating decline in sequencing costs and the widespread adoption of long-read sequencing technologies, the "wave" of pangenomics is now hitting various major crops, uncovering substantial intraspecific diversity previously underestimated and neglected. This includes crops belonging to the gourd family (Cucurbitaceae), such as cucumber (), melon (), watermelon (), wax gourd (), and bottle gourd (), all of which are important on a global or regional scale. In this review, we consolidate the findings from all nine pangenomic studies reported as of June 2024, on the five cucurbit crops listed above. This summarizes the current state of pangenomics in the family. We then highlight remaining knowledge gaps for each crop, and propose further research to fill these gaps. Finally, we discuss how pangenomics will shape the future of crop breeding and expand the framework of crop genetic resources in synergy with other technological advances. These insights would apply not only to cucurbits but also to crops across diverse families.
泛基因组学是对一个物种或给定分类进化枝内的全谱遗传变异进行探索和表征。受测序成本加速下降以及长读长测序技术广泛应用的推动,泛基因组学的“浪潮”如今正冲击着各种主要作物,揭示出此前被低估和忽视的大量种内多样性。这包括葫芦科作物,如黄瓜、甜瓜、西瓜、冬瓜和瓠瓜,所有这些作物在全球或区域范围内都很重要。在本综述中,我们整合了截至2024年6月报道的关于上述五种葫芦科作物的所有九项泛基因组学研究的结果。这总结了该科泛基因组学的当前状态。然后,我们突出了每种作物仍然存在的知识空白,并提出了进一步的研究以填补这些空白。最后,我们讨论泛基因组学将如何塑造作物育种的未来,并与其他技术进步协同扩展作物遗传资源框架。这些见解不仅适用于葫芦科作物,也适用于不同科的作物。