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利用gwINTACT技术解析番茄中精确的基因转录表达

Deciphering Precise Gene Transcriptional Expression Using gwINTACT in Tomato.

作者信息

Chu Yiyang, Gong Jiachen, Wu Peiwen, Liu Ye, Du Yinglin, Ma Lili, Fu Daqi, Zhu Hongliang, Qu Guiqin, Zhu Benzhong

机构信息

College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.

出版信息

Front Plant Sci. 2022 Apr 14;13:852206. doi: 10.3389/fpls.2022.852206. eCollection 2022.

Abstract

Functional gene transcription mainly occurs in the nucleus and has a significant role in plant physiology. The isolation of nuclei tagged in specific cell type (INTACT) technique provides an efficient and stable nucleus purification method to investigate the dynamic changes of nuclear gene transcriptional expression. However, the application of traditional INTACT in plants is still limited to seedlings or root cells because of severe chloroplast pollution. In this study, we proposed a newly designed and simplified INTACT based on mas-enhanced GFP (eGFP)-WIP2 (gwINTACT) for nuclear purification in tomato () leaves, flowers, and fruits for the first time. The yield of the nucleus purified using gwINTACT from transgenic tomato leaves was doubled compared with using a traditional INTACT procedure, accompanied by more than 95% removal of chloroplasts. Relative gene expression of ethylene-related genes with ethylene treatment was reevaluated in gwINTACT leaves to reveal more different results from the traditional gene expression assay based on total RNA. Therefore, establishing the gwINTACT system in this study facilitates the precise deciphering of the transcriptional status in various tomato tissues, which lays the foundation for the further experimental study of nucleus-related molecular regulation on fruit ripening, such as ChIP-seq and ATAC-seq.

摘要

功能基因转录主要发生在细胞核中,在植物生理学中具有重要作用。特定细胞类型标记的细胞核分离(INTACT)技术提供了一种高效且稳定的细胞核纯化方法,用于研究核基因转录表达的动态变化。然而,由于严重的叶绿体污染,传统INTACT在植物中的应用仍局限于幼苗或根细胞。在本研究中,我们首次提出了一种基于mas增强型绿色荧光蛋白(eGFP)-WIP2设计并简化的INTACT(gwINTACT),用于番茄叶片、花朵和果实的细胞核纯化。与传统INTACT方法相比,使用gwINTACT从转基因番茄叶片中纯化得到的细胞核产量提高了一倍,同时叶绿体去除率超过95%。在gwINTACT叶片中重新评估了乙烯处理下乙烯相关基因的相对基因表达,以揭示与基于总RNA的传统基因表达分析更多不同的结果。因此,本研究中建立的gwINTACT系统有助于精确解读番茄各种组织中的转录状态,为进一步开展与果实成熟相关的细胞核分子调控实验研究(如ChIP-seq和ATAC-seq)奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fc5/9048029/95fefdd61fdb/fpls-13-852206-g001.jpg

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