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小麦基因组学在基因发现和育种应用中的评估:特别强调亚洲的进展。

Appraisal of wheat genomics for gene discovery and breeding applications: a special emphasis on advances in Asia.

机构信息

Institute of Crop Science, National Wheat Improvement Center, Chinese Academy of Agricultural Sciences (CAAS), 12 Zhongguancun South Street, Beijing, 100081, China.

International Maize and Wheat Improvement Center (CIMMYT), CAAS, 12 Zhongguancun South Street, Beijing, 100081, China.

出版信息

Theor Appl Genet. 2020 May;133(5):1503-1520. doi: 10.1007/s00122-019-03523-w. Epub 2020 Jan 2.

DOI:10.1007/s00122-019-03523-w
PMID:31897516
Abstract

We discussed the most recent efforts in wheat functional genomics to discover new genes and their deployment in breeding with special emphasis on advances in Asian countries. Wheat research community is making significant progress to bridge genotype-to-phenotype gap and then applying this knowledge in genetic improvement. The advances in genomics and phenomics have intrigued wheat researchers in Asia to make best use of this knowledge in gene and trait discovery. These advancements include, but not limited to, map-based gene cloning, translational genomics, gene mapping, association genetics, gene editing and genomic selection. We reviewed more than 57 homeologous genes discovered underpinning important traits and multiple strategies used for their discovery. Further, the complementary advancements in wheat phenomics and analytical approaches to understand the genetics of wheat adaptability, resilience to climate extremes and resistance to pest and diseases were discussed. The challenge to build a gold standard reference genome sequence of bread wheat is now achieved and several de novo reference sequences from the cultivars representing different gene pools will be available soon. New pan-genome sequencing resources of wheat will strengthen the foundation required for accelerated gene discovery and provide more opportunities to practice the knowledge-based breeding.

摘要

我们讨论了小麦功能基因组学最近的努力,以发现新的基因,并将其特别强调在亚洲国家的应用于育种。小麦研究界正在取得重大进展,以弥合基因型与表型之间的差距,然后将这些知识应用于遗传改良。基因组学和表型组学的进展激发了亚洲小麦研究人员充分利用基因和性状发现方面的知识。这些进展包括但不限于基于图谱的基因克隆、转化基因组学、基因定位、关联遗传学、基因编辑和基因组选择。我们回顾了 57 个以上的同源基因的发现,这些基因对重要性状有基础作用,并且讨论了多种发现它们的策略。此外,还讨论了小麦表型组学和分析方法的互补进展,以了解小麦适应性、对极端气候的恢复力以及对病虫害的抗性的遗传学。现在已经实现了构建普通小麦黄金标准参考基因组序列的挑战,并且很快将有来自代表不同基因库的品种的几个从头参考序列。小麦的新泛基因组测序资源将为加速基因发现提供坚实的基础,并为实践基于知识的育种提供更多机会。

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