Xia En-Hua, Tong Wei, Wu Qiong, Wei Shu, Zhao Jian, Zhang Zheng-Zhu, Wei Chao-Ling, Wan Xiao-Chun
State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, Hefei, 230036 China.
Hortic Res. 2020 Jan 1;7:7. doi: 10.1038/s41438-019-0225-4. eCollection 2020.
Tea is among the world's most widely consumed non-alcoholic beverages and possesses enormous economic, health, and cultural values. It is produced from the cured leaves of tea plants, which are important evergreen crops globally cultivated in over 50 countries. Along with recent innovations and advances in biotechnologies, great progress in tea plant genomics and genetics has been achieved, which has facilitated our understanding of the molecular mechanisms of tea quality and the evolution of the tea plant genome. In this review, we briefly summarize the achievements of the past two decades, which primarily include diverse genome and transcriptome sequencing projects, gene discovery and regulation studies, investigation of the epigenetics and noncoding RNAs, origin and domestication, phylogenetics and germplasm utilization of tea plant as well as newly developed tools/platforms. We also present perspectives and possible challenges for future functional genomic studies that will contribute to the acceleration of breeding programs in tea plants.
茶是世界上消费最为广泛的非酒精饮料之一,具有巨大的经济、健康和文化价值。它由茶树的加工叶片制成,茶树是全球重要的常绿作物,在50多个国家均有种植。随着生物技术领域的创新和发展,茶树基因组学和遗传学取得了重大进展,这有助于我们了解茶叶品质的分子机制以及茶树基因组的进化。在本综述中,我们简要总结了过去二十年的成果,主要包括多样的基因组和转录组测序项目、基因发现与调控研究、表观遗传学和非编码RNA研究、茶树的起源与驯化、系统发育学和种质利用以及新开发的工具/平台。我们还提出了未来功能基因组学研究的前景和可能面临的挑战,这些研究将有助于加速茶树育种计划。