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Cell Type-Specific Transcriptome of Brassicaceae Stigmatic Papilla Cells From a Combination of Laser Microdissection and RNA Sequencing

机译:结合激光显微切割技术和RNA测序技术,对十字花科植物的乳头状乳头细胞进行细胞类型特异性转录组分析

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摘要

Pollination is an early and critical step in plant reproduction, leading to successful fertilization. It consists of many sequential processes, including adhesion of pollen grains onto the surface of stigmatic papilla cells, foot formation to strengthen pollen-stigma interaction, pollen hydration and germination, and pollen tube elongation and penetration. We have focused on an examination of the expressed genes in papilla cells, to increase understanding of the molecular systems of pollination. From three representative species of Brassicaceae (Arabidopsis thaliana, A. halleri and Brassica rapa), stigmatic papilla cells were isolated precisely by laser microdissection, and cell type-specific gene expression in papilla cells was determined by RNA sequencing. As a result, 17,240, 19,260 and 21,026 unigenes were defined in papilla cells of A. thaliana, A. halleri and B. rapa, respectively, and, among these, 12,311 genes were common to all three species. Among the17,240 genes predicted in A. thaliana, one-third were papilla specific while approximately half of the genes were detected in all tissues examined. Bioinformatics analysis revealed that genes related to a wide range of reproduction and development functions are expressed in papilla cells, particularly metabolism, transcription and membrane-mediated information exchange. These results reflect the conserved features of general cellular function and also the specific reproductive role of papilla cells, highlighting a complex cellular system regulated by a diverse range of molecules in these cells. This study provides fundamental biological knowledge to dissect the molecular mechanisms of pollination in papilla cells and will shed light on our understanding of plant reproduction mechanisms
机译:授粉是植物繁殖的早期关键步骤,可导致成功施肥。它包括许多顺序的过程,包括将花粉颗粒粘附到带斑点的乳头细胞的表面,增强花粉-柱头相互作用的脚形成,花粉的水合作用和发芽以及花粉管的伸长和渗透。我们专注于检查乳头细胞中表达的基因,以增进对授粉分子系统的了解。从三个代表性的十字花科植物(拟南芥,A。halleri和小白菜)中,通过激光显微切割精确地分离出有斑点的乳头细胞,并通过RNA测序确定乳头细胞中细胞类型特异性基因的表达。结果,分别在拟南芥,哈里氏酵母和R. rapa的乳头细胞中定义了17,240、19,260和21,026个单基因,其中,所有三个物种共有12311个基因。在拟南芥中预测的17,240个基因中,三分之一是乳头特异性的,而在所有检查的组织中都检测到了大约一半的基因。生物信息学分析表明,与广泛的生殖和发育功能有关的基因在乳头细胞中表达,特别是在代谢,转录和膜介导的信息交换中。这些结果反映了一般细胞功能的保守特征以及乳头细胞的特定生殖作用,突出了受这些细胞中各种分子调控的复杂细胞系统。这项研究提供了基础生物学知识来剖析乳头细胞中授粉的分子机制,并将为我们对植物繁殖机制的理解提供启示。

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