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水稻根系单细胞分辨率转录组图谱。

Transcriptional landscape of rice roots at the single-cell resolution.

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

Centre for Organismal Studies, Heidelberg University, Heidelberg 69120, Germany.

出版信息

Mol Plant. 2021 Mar 1;14(3):384-394. doi: 10.1016/j.molp.2020.12.014. Epub 2020 Dec 19.

Abstract

There are two main types of root systems in flowering plants, namely taproot systems of dicots and fibrous root systems found in monocots. Despite this fundamental split, our current knowledge of cellular and molecular mechanism driving root development is mainly based on studies of the dicot model Arabidopsis. However, the world major crops are monocots and little is known about the transcriptional programs underlying cell-type specification in this clade. Here, we report the transcriptomes of more than 20 000 single cells derived from root tips of two agronomically important rice cultivars. Using combined computational and experimental analyses we were able to robustly identify most of the major cell types and define novel cell-type-specific marker genes for both cultivars. Importantly, we found divergent cell types associated with specific regulatory programs, including phytohormone biosynthesis, signaling, and response, which were well conserved between the two rice cultivars. In addition, we detected substantial differences between the cell-type transcript profiles of Arabidopsis and rice. These species-specific features emphasize the importance of analyzing tissues across diverse model species, including rice. Taken together, our study provides insight into the transcriptomic landscape of major cell types of rice root tip at single-cell resolution and opens new avenues to study cell-type specification, function, and evolution in plants.

摘要

有两种主要类型的开花植物根系,即双子叶植物的主根系统和单子叶植物的纤维根系统。尽管存在这种根本上的分裂,但我们目前对驱动根系发育的细胞和分子机制的了解主要是基于对双子叶模式植物拟南芥的研究。然而,世界上主要的作物是单子叶植物,对于这个分支中细胞类型特化的转录程序知之甚少。在这里,我们报告了来自两个重要农业水稻品种根尖的超过 20000 个单细胞的转录组。通过结合计算和实验分析,我们能够稳健地识别大多数主要的细胞类型,并为这两个品种定义新的细胞类型特异性标记基因。重要的是,我们发现与特定调控程序相关的不同细胞类型,包括植物激素的生物合成、信号转导和响应,这些在两个水稻品种之间是很好保守的。此外,我们还检测到了拟南芥和水稻细胞类型转录谱之间的实质性差异。这些种间特有的特征强调了在包括水稻在内的不同模式物种中分析组织的重要性。总之,我们的研究提供了对水稻根尖主要细胞类型在单细胞分辨率下的转录组景观的深入了解,并为研究植物中的细胞类型特化、功能和进化开辟了新的途径。

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