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定量代谢组学和转录组学分析揭示了棉花光诱导纤维颜色形成的复杂调控途径。

Quantitative metabolome and transcriptome analysis reveals complex regulatory pathway underlying photoinduced fiber color formation in cotton.

机构信息

State Key Laboratory of Crop Biology, College of Agronomy, Shandong Agricultural University, Tai'an 271018, China.

State Key Laboratory of Cotton Biology, Cotton Research Institute, Chinese Academy of Agricultural Sciences, Anyang 455000, China.

出版信息

Gene. 2021 Jan 30;767:145180. doi: 10.1016/j.gene.2020.145180. Epub 2020 Sep 28.

Abstract

As an important plant single cell model and textile application materials, poorly known about fiber color formation in cotton, which is sensitively regulated by environmental signals. Our studies underline the importance of photo signal on sensitive fiber color formation and characterize fiber color early initiation (15 DPA) and late accumulated metabolites (45 DPA) in different lighting condition. The results revealed 236 differential metabolites between control and shading, of which phenylpropanoids metabolites accounted for 20%, including uncharacterized novel metabolites and pathways. Furthermore, the early initiation specific genes respond to the absence of light are highly correlated with phenylpropanoid metabolites related to pigmentation. The current study reveals the complex pathways involving early initiation regulation and late metabolic pathways. In addition, the collection composed of uncharacterized photoinduced metabolites and early initiation signaling/regulatory genes were identified, which are important resources for understanding fiber color formation. This report provides new insight into molecular regulatory and biochemical basis underlying photoinduced fiber color formation in cotton.

摘要

作为一种重要的植物单细胞模型和纺织应用材料,棉花纤维颜色的形成机制尚不清楚,其受到环境信号的敏感调控。我们的研究强调了光信号对纤维颜色形成的重要性,并描述了不同光照条件下纤维颜色的早期起始(15 DPA)和晚期积累代谢物(45 DPA)。结果表明,在对照和遮荫处理之间存在 236 种差异代谢物,其中苯丙烷代谢物占 20%,包括未鉴定的新型代谢物和途径。此外,对光缺失有响应的早期起始特异性基因与与色素沉着相关的苯丙烷代谢物高度相关。本研究揭示了涉及早期起始调控和晚期代谢途径的复杂途径。此外,还鉴定了由未鉴定的光诱导代谢物和早期起始信号/调节基因组成的集合,这些都是理解纤维颜色形成的重要资源。本报告为阐明棉花中光诱导纤维颜色形成的分子调控和生化基础提供了新的见解。

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