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拟南芥根毛和花粉的转录谱分析确定了顶端细胞生长特征。

Transcriptional profiling of Arabidopsis root hairs and pollen defines an apical cell growth signature.

作者信息

Becker Jörg D, Takeda Seiji, Borges Filipe, Dolan Liam, Feijó José A

出版信息

BMC Plant Biol. 2014 Aug 1;14:197. doi: 10.1186/s12870-014-0197-3.

Abstract

BACKGROUND

Current views on the control of cell development are anchored on the notion that phenotypes are defined by networks of transcriptional activity. The large amounts of information brought about by transcriptomics should allow the definition of these networks through the analysis of cell-specific transcriptional signatures. Here we test this principle by applying an analogue to comparative anatomy at the cellular level, searching for conserved transcriptional signatures, or conserved small gene-regulatory networks (GRNs) on root hairs (RH) and pollen tubes (PT), two filamentous apical growing cells that are a striking example of conservation of structure and function in plants.

RESULTS

We developed a new method for isolation of growing and mature root hair cells, analysed their transcriptome by microarray analysis, and further compared it with pollen and other single cell transcriptomics data. Principal component analysis shows a statistical relation between the datasets of RHs and PTs which is suggestive of a common transcriptional profile pattern for the apical growing cells in a plant, with overlapping profiles and clear similarities at the level of small GTPases, vesicle-mediated transport and various specific metabolic responses. Furthermore, cis-regulatory element analysis of co-regulated genes between RHs and PTs revealed conserved binding sequences that are likely required for the expression of genes comprising the apical signature. This included a significant occurrence of motifs associated to a defined transcriptional response upon anaerobiosis.

CONCLUSIONS

Our results suggest that maintaining apical growth mechanisms synchronized with energy yielding might require a combinatorial network of transcriptional regulation. We propose that this study should constitute the foundation for further genetic and physiological dissection of the mechanisms underlying apical growth of plant cells.

摘要

背景

当前关于细胞发育控制的观点基于这样一种观念,即表型由转录活性网络定义。转录组学带来的大量信息应能通过分析细胞特异性转录特征来定义这些网络。在此,我们通过在细胞水平应用类似比较解剖学的方法来检验这一原则,即在根毛(RH)和花粉管(PT)上寻找保守的转录特征,或保守的小基因调控网络(GRN),这两种丝状顶端生长细胞是植物结构和功能保守性的一个显著例子。

结果

我们开发了一种分离生长中和成熟根毛细胞的新方法,通过微阵列分析对其转录组进行分析,并进一步将其与花粉和其他单细胞转录组学数据进行比较。主成分分析显示根毛和花粉管数据集之间存在统计关系,这表明植物顶端生长细胞具有共同的转录谱模式,在小GTP酶、囊泡介导的运输和各种特定代谢反应水平上具有重叠的谱和明显的相似性。此外,对根毛和花粉管之间共调控基因的顺式调控元件分析揭示了保守的结合序列,这些序列可能是构成顶端特征的基因表达所必需的。这包括大量与厌氧条件下特定转录反应相关的基序。

结论

我们的结果表明,维持顶端生长机制与能量产生同步可能需要一个转录调控的组合网络。我们提出,这项研究应构成进一步对植物细胞顶端生长潜在机制进行遗传和生理学剖析的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4bc/4236730/974bf838744e/s12870-014-0197-3-2.jpg

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