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组学时代的猕猴桃:基因组学、育种及其他领域的进展

Kiwifruit in the Omics Age: Advances in Genomics, Breeding, and Beyond.

作者信息

Nazir Mian Faisal, Lou Jinpeng, Wang Yu, Zou Shuaiyu, Huang Hongwen

机构信息

Key Laboratory of Ex Situ Plant Conservation and Utilization of Jiangxi Province, Lushan Botanical Garden, Chinese Academy of Sciences, Jiujiang 330022, China.

South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.

出版信息

Plants (Basel). 2024 Aug 3;13(15):2156. doi: 10.3390/plants13152156.

Abstract

The kiwifruit, genus, has emerged as a nutritionally rich and economically significant crop with a history rooted in China. This review paper examines the global journey of the kiwifruit, its genetic diversity, and the role of advanced breeding techniques in its cultivation and improvement. The expansion of kiwifruit cultivation from China to New Zealand, Italy, Chile and beyond, driven by the development of new cultivars and improved agricultural practices, is discussed, highlighting the fruit's high content of vitamins C, E, and K. The genetic resources within the genus are reviewed, with emphasis on the potential of this diversity in breeding programs. The review provides extensive coverage to the application of modern omics technologies, including genomics, transcriptomics, proteomics, and metabolomics, which have revolutionized the understanding of the biology of kiwifruit and facilitated targeted breeding efforts. It examines both conventional breeding methods and modern approaches, like marker-assisted selection, genomic selection, mutation breeding, and the potential of CRISPR-Cas9 technology for precise trait enhancement. Special attention is paid to interspecific hybridization and cisgenesis as strategies for incorporating beneficial traits and developing superior kiwifruit varieties. This comprehensive synthesis not only sheds light on the current state of kiwifruit research and breeding, but also outlines the future directions and challenges in the field, underscoring the importance of integrating traditional and omics-based approaches to meet the demands of a changing global climate and market preferences.

摘要

猕猴桃属植物已成为一种营养丰富且具有重要经济意义的作物,其历史可追溯到中国。这篇综述文章探讨了猕猴桃在全球的发展历程、遗传多样性以及先进育种技术在其种植和改良中的作用。文中讨论了在新的品种培育和改进的农业实践推动下,猕猴桃种植从中国扩展到新西兰、意大利、智利及其他地区的情况,强调了这种水果富含维生素C、E和K。文章对猕猴桃属内的遗传资源进行了综述,重点阐述了这种多样性在育种计划中的潜力。该综述广泛涵盖了现代组学技术的应用,包括基因组学、转录组学、蛋白质组学和代谢组学,这些技术彻底改变了人们对猕猴桃生物学的理解,并推动了有针对性的育种工作。文章考察了传统育种方法和现代方法,如标记辅助选择、基因组选择、诱变育种以及CRISPR-Cas9技术在精准性状改良方面的潜力。特别关注种间杂交和顺式基因导入作为整合有益性状和培育优良猕猴桃品种的策略。这种全面的综述不仅揭示了猕猴桃研究和育种的现状,还概述了该领域未来的发展方向和挑战,强调了整合传统方法和基于组学的方法以满足不断变化的全球气候和市场偏好需求的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48a9/11313697/e81b9efba535/plants-13-02156-g001.jpg

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