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Transcriptional and post transcriptional regulation in Arabidopsis reproductive development.

机译:拟南芥生殖发育中的转录和转录后调控。

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摘要

Sexual reproduction is important for propagation and requires a series of cell division and differentiation events. In flowering plants, it is incompletely understood how these events are genetically controlled. Because transcriptional and post transcriptional regulations are suggested to be main molecular mechanisms in these events, it is important to examine the changes of all transcripts (transcriptome) and proteins (proteome) during plant reproductive development. However, only limited studies have been done to analyze the transcriptome and proteome during plant reproductive development. Part of my thesis work is an analysis of the transcriptome in the tapetum, which is an important sporophytic tissue that contributes to microsporogenesis and pollen formation. It is known that DYSFUNCTIONAL TAPETUM1 (DYT1) and ABORTED MICROSPORES (AMS), two bHLH transcription factors, are required for the development and functions of the tapetum. However, it is poorly understood which genes are regulated by DYT1 and/or AMS. In Chapter 2, a transcriptome analysis of the dyt1-1 and ams mutants by using microarray is presented. It was found that DYT1 positively and negatively regulates approximately 600 and 300 genes, respectively, and that AMS positively and negatively regulates ∼600 and ∼900 genes, respectively. DYT1 is required to control a broad spectrum of tapetum functions in part by activating at least 32 transcription factors including AMS. However, AMS regulates not only common but also different sets of genes compared to DYT1, which suggests AMS might have distinct functions. In order to differentiate the direct and indirect regulation by DYT1, I searched the binding sites of DYT1 by in vitro (Selex and gel-shift) and in vivo (ChIP) protein-DNA interaction experiments, which is described in Chapter 3. The results indicate that DYT1 recognizes the E-box (CANNTG) in vitro and binds to its own promoter and the promoters of downstream genes in vivo. These findings not only reveal the spectrum of functions regulated by DYT1 but also suggest some mechanisms of the transcriptional controls in the tapetum. In Chapter 4, I present a systematic exploration of Arabidopsis floral proteome where I identify more than 2400 floral proteins and provide pieces of evidence for protein modifications (methylation, acetylation, and glycosylation etc.) of some proteins by using 2-Dimensional Gel Electrophoresis/mass spectrometry and Multidimensional Protein Identification Technique (MudPIT). These studies have provided new insights into transcriptional and post transcriptional regulation in plant reproductive development.
机译:有性生殖对于繁殖很重要,需要一系列细胞分裂和分化事件。在开花植物中,尚未完全了解如何通过基因控制这些事件。由于建议在这些事件中转录和转录后调控是主要的分子机制,因此在植物生殖发育过程中检查所有转录本(转录组)和蛋白质(蛋白质组)的变化非常重要。但是,仅进行了有限的研究来分析植物生殖发育过程中的转录组和蛋白质组。我的论文工作的一部分是对绒毡层中的转录组进行分析,绒毡层是一种重要的孢子体组织,有助于微孢子发生和花粉形成。众所周知,绒毛膜的发育和功能需要两个bHLH转录因子“功能障碍物PET1”(DYT1)和“终止微孢子”(AMS)。但是,很少了解哪些基因由DYT1和/或AMS调控。在第2章中,通过使用微阵列对dyt1-1和ams突变体进行了转录组分析。发现DYT1分别正向和负向调节大约600和300个基因,而AMS分别正向和负向调节大约600和〜900个基因。要求DYT1通过激活至少32个转录因子(包括AMS)来控制广泛的绒毡层功能。但是,与DYT1相比,AMS不仅调节共同的基因,而且调节不同的基因集,这表明AMS可能具有独特的功能。为了区分DYT1的直接调控和间接调控,我通过体外(Selex和gel-shift)和体内(ChIP)蛋白质-DNA相互作用实验搜索了DYT1的结合位点,在第3章中进行了描述。结果这表明DYT1在体外可识别E-box(CANNTG),并与自身的启动子和体内下游基因的启动子结合。这些发现不仅揭示了DYT1调控的功能范围,而且还暗示了绒毡层中转录控制的某些机制。在第4章中,我对拟南芥花卉蛋白质组进行了系统的探索,在其中我鉴定了2400多种花卉蛋白质,并使用二维凝胶电泳/对某些蛋白质的蛋白质修饰(甲基化,乙酰化和糖基化等)提供了证据。质谱和多维蛋白质鉴定技术(MudPIT)。这些研究为植物生殖发育中的转录和转录后调控提供了新的见识。

著录项

  • 作者

    Feng, Baomin.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Biology Molecular.;Biology Genetics.;Biology Botany.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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