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鉴定动态调控茶树发育和次生代谢的保守功能基因模块。

Identifying Conserved Functional Gene Modules Underlying the Dynamic Regulation of Tea Plant Development and Secondary Metabolism.

机构信息

Key Laboratory of Tea Biology and Resources Utilization, Ministry of Agriculture and Rural Affairs, Tea Research Institute of the Chinese Academy of Agricultural Sciences, Hangzhou 310008, China.

FAFU-UCR Joint Center for Horticultural Biology and Metabolomics, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

J Agric Food Chem. 2020 Sep 30;68(39):11026-11037. doi: 10.1021/acs.jafc.0c04744. Epub 2020 Sep 21.

Abstract

Tea plants adjust development and metabolism by integrating environmental and endogenous signals in complex but poorly defined gene networks. Here, we present an integrative analysis framework for the identification of conserved modules controlling important agronomic traits using a comprehensive collection of RNA-seq datasets in plants including 189 samples. In total, 212 secondary metabolism-, 182 stress response-, and 182 tissue development-related coexpressed modules were revealed. Functional modules (e.g., drought response, theobromine biosynthesis, and new shoot development-related modules) and potential regulators that were highly conserved across diverse genetic backgrounds and/or environmental conditions were then identified by cross-experiment comparisons and consensus clustering. Moreover, we investigate the preservation of gene networks between and other species. This revealed that the coexpression patterns of several recently evolved modules related to secondary metabolism and environmental adaptation were rewired and showed higher connectivity in tea plants. These conserved modules are excellent candidates for modeling the core mechanism of tea plant development and secondary metabolism and should serve as a great resource for hypothesis generation and tea quality improvement.

摘要

茶树通过整合环境和内源性信号在复杂但定义不明确的基因网络中调节发育和代谢。在这里,我们使用包括 189 个样本的植物的综合 RNA-seq 数据集,提出了一个整合分析框架,用于鉴定控制重要农艺性状的保守模块。总共揭示了 212 个与次生代谢、182 个与应激反应和 182 个与组织发育相关的共表达模块。通过跨实验比较和共识聚类,然后鉴定了功能模块(例如,干旱反应、可可碱生物合成和新梢发育相关模块)和潜在的调节器,它们在不同的遗传背景和/或环境条件下高度保守。此外,我们研究了 和其他 物种之间基因网络的保存情况。这表明与次生代谢和环境适应相关的几个最近进化的模块的共表达模式在茶树中被重新布线,并显示出更高的连接性。这些保守模块是模拟茶树发育和次生代谢核心机制的优秀候选者,应该作为生成假设和提高茶叶质量的重要资源。

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