How does PcNMRAL1 orchestrate infection-associated gene expression changes during host colonisation?
How does PcNMRAL1 orchestrate infection-associated gene expression changes during host colonisation?
批准号:
2593882
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --
中文摘要
真核生物病原体如辣椒疫霉(Phytophthora capsici)在许多植物上引起重大疾病。如果我们希望防止真核生物病原体引起的损失,我们必须阐明导致疾病的机制。我们已经发现了令人信服的新证据,证明辣椒辣椒中的一个保守转录调节因子PcNMRAL1以特定阶段的方式帮助调节病原体编码的基因补体的表达。我们假设PcNMRAL1是一个调节因子,帮助协调基因表达的变化,导致从生物营养到坏死性感染阶段的转变。为了验证这一假设,我们将破坏PcNmraL1,并评估其对病原体毒力、疾病周期和PcNmraL1应答基因表达的影响。然后,我们将鉴定细胞信号蛋白和与PcNMRAL1相互作用并帮助调节基因表达的转录调节因子。最后,我们将使用现有的基因表达数据来鉴定PcNMRAL1响应元件,然后将其部署在CasID实验中,以查明导致基因调控的分子事件。通过回答有关半生物营养物基因调控及其对毒力影响的基本问题,我们将开辟新的途径,通过新的化学控制策略,可以识别和利用特定阶段的代谢线索。学生将有机会在项目的框架内发展和应用他们自己的想法,并为他们的研究指明方向。我们将允许在研究方向上有高度的灵活性,因为可以调整方法,一旦产生初始数据,后续实验可以集中在非常具体的方向上。
英文摘要
Eukaryote pathogens such as Phytophthora capsici cause significant disease on a wide range of plants. If we aspire to prevent losses incited by Eukaryote pathogens, we must elucidate the mechanisms that enable disease. We have uncovered compelling new evidence demonstrating that a conserved transcriptional regulator in P. capsici, PcNMRAL1, helps regulate the expression of pathogen-encoded gene complements in a stage-specific manner. We hypothesise that PcNMRAL1 is a regulator that helps orchestrate changes in gene expression that lead to the transition from the biotrophic to the necrotrophic infection stage. To test this hypothesis, we will disrupt PcNmraL1 and assess the impact on pathogen virulence, the disease cycle and the expression of PcNMRAL1 responsive genes. We will then identify cellular signalling proteins and the transcriptional regulators that interact with PcNMRAL1 and help regulate gene expression. Finally, we will use existing gene expression data to identify PcNMRAL1 responsive elements and that will then be deployed in CasID experiments to pinpoint the molecular events that lead to gene regulation. By answering fundamental questions pertaining gene regulation in hemi-biotrophs and its impact upon virulence, we will open up new avenues by which stage-specific metabolic cues can be identified and exploited through novel chemical control strategies. The student will be giving the opportunity to, within the framework of the project, develop and apply their own ideas and give direction to their research. We will allow a high degree of flexibility with regards the direction of the research in that approaches can be adapted, and follow-up experiments can be focused into very specific directions once initial data is generated.
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国内基金
海外基金
衍射光学三维信息加密与隐藏的研究
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批准号:60907004
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项目类别:青年科学基金项目
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资助金额:22.0万元
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批准年份:2009
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负责人:史祎诗
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依托单位: