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小麦基因组学:基因组、泛基因组及其他。

Wheat genomics: genomes, pangenomes, and beyond.

机构信息

Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD 20742, USA.

Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD 20742, USA; Department of Plant and Environmental Sciences, Pee Dee Research and Education Center, Clemson University, Florence, SC 29506, USA.

出版信息

Trends Genet. 2024 Nov;40(11):982-992. doi: 10.1016/j.tig.2024.07.004. Epub 2024 Aug 26.

Abstract

There is an urgent need to improve wheat for upcoming challenges, including biotic and abiotic stresses. Sustainable wheat improvement requires the introduction of new genes and alleles in high-yielding wheat cultivars. Using new approaches, tools, and technologies to identify and introduce new genes in wheat cultivars is critical. High-quality genomes, transcriptomes, and pangenomes provide essential resources and tools to examine wheat closely to identify and manipulate new and targeted genes and alleles. Wheat genomics has improved excellently in the past 5 years, generating multiple genomes, pangenomes, and transcriptomes. Leveraging these resources allows us to accelerate our crop improvement pipelines. This review summarizes the progress made in wheat genomics and trait discovery in the past 5 years.

摘要

提高小麦应对未来挑战的能力迫在眉睫,这些挑战包括生物和非生物胁迫。可持续提高小麦需要在高产小麦品种中引入新的基因和等位基因。利用新方法、工具和技术来鉴定和引入小麦品种中的新基因至关重要。高质量的基因组、转录组和泛基因组为深入研究小麦、鉴定和操纵新的和有针对性的基因和等位基因提供了必要的资源和工具。过去 5 年来,小麦基因组学取得了卓越的进展,产生了多个基因组、泛基因组和转录组。利用这些资源可以加速我们的作物改良进程。本文综述了过去 5 年小麦基因组学和性状发现方面的进展。

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