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Do G-protein coupled receptors regulate pathogenesis and mycotoxin biosynthesis in filamentous phytopathogenic fungi?

Do G-protein coupled receptors regulate pathogenesis and mycotoxin biosynthesis in filamentous phytopathogenic fungi?
G 蛋白偶联受体是否调节丝状植物病原真菌的发病机制和霉菌毒素生物合成?
批准号:
BB/N011686/2
负责人:
Neil Brown
金额:
$20.01万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

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中文摘要
翻译
g蛋白偶联受体是否调节丝状植物致病真菌的发病机制和真菌毒素的生物合成?真菌病原体不断侵袭农作物并引起重大疾病。为了引起疾病,一些真菌病原体会分泌对植物和人类都有毒的化学物质。因此,真菌疾病降低了农民的作物产量和利润,同时威胁着人类的健康。当真菌病原体落在植物上时,它会感知周围环境,并决定这个位置是否适合感染。真菌如何通过外部感受器感知环境的“触觉和味道”在很大程度上是未知的。这些受体及其对环境的感知被认为控制着真菌病原体如何引起疾病以及是否产生毒素。因此,我们计划在谷物病原体和毒素生产者镰刀菌中鉴定疾病所需的真菌受体。在洛桑研究所,我们将创造一组缺失不同受体的突变真菌。在专门的控制设施中,我们将测试这些受体的丧失是否会降低F. graminearum在小麦中引起疾病和产生毒素的能力。通过比较小麦侵染过程中真菌基因的表达,可以确定受这些受体控制的是什么。荧光蛋白和尖端显微镜将用于可视化这些受体如何在检测到植物宿主时被激活,以及它们如何与真菌内的其他蛋白质相互作用以控制疾病。这些研究将提供对真菌病原体如何调节疾病和毒素产生以响应其环境的“触觉和味道”的理解。这一新知识和开发的最先进技术将可转移到植物和人类的其他真菌病原体上。大约40%的现代药物靶向类似的受体。因此,鉴定疾病所需的真菌受体将代表对抗真菌病原体的新型药物靶点,提高食品安全生产和保护人类健康。
英文摘要
DO G-PROTEIN COUPLED RECEPTORS REGULATE PATHOGENESIS AND MYCOTOXIN BIOSYNTHESIS IN FILAMENTOUS PHYTOPATHOGENIC FUNGI?Fungal pathogens constantly attack crop plants and cause major diseases. In order to cause disease, some fungal pathogens secrete chemicals that are toxic to both plants and humans. Therefore, fungal diseases reduce a farmer's crop production and profit, while threatening human health. When a fungal pathogen lands on a plant, it senses the surrounding and decides whether this location is suitable for infection. How fungi sense the "touch and taste" of their environment through external receptors is largely unknown. These receptors, and their sensing of the environment, are thought to control how a fungal pathogen causes disease and whether it produces toxins. Therefore, we plan to identify fungal receptors that are required for disease in the cereal pathogen, and toxin producer, Fusarium graminearum. At Rothamsted Research, we will create a collection of mutated fungi missing different receptors. Within specialised containment facilities, we will test if the loss of these receptors reduces the ability of F. graminearum to cause disease and produce toxins in wheat. What is controlled by these receptors will be identified by comparing the expression of fungal genes during wheat infection. Fluorescent proteins and cutting-edge microscopy will be used to visualise how these receptors are activated upon detection of the plant host and how they interact with other proteins within the fungus to control disease.These studies will provide an understanding of how fungal pathogens regulate disease and toxin production in response the "touch and taste" of their environment. This new knowledge, and the state-of-the-art techniques developed, will be transferable to other fungal pathogens of plants and humans. Approximately 40% of modern pharmaceuticals target similar receptors. Therefore, the identification of fungal receptors needed for disease would represent novel drugable targets to combat a fungal pathogen, improving safe food production and protecting human health.
期刊论文(10)
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会议论文
DOI: 10.1186/s12864-018-4612-2
发表时间: 2018-04-19
期刊: BMC genomics
影响因子: 4.4
作者: [King R, Brown NA, Urban M, Hammond-Kosack KE]
通讯作者: Hammond-Kosack KE
DOI: 10.1002/ps.4748
发表时间: 2018-04
期刊: Pest management science
影响因子: 4.1
作者: [Machado AK, Brown NA, Urban M, Kanyuka K, Hammond-Kosack KE]
通讯作者: Hammond-Kosack KE
Do G-protein coupled receptors regulate pathogenesis and mycotoxin biosynthesis in filamentous phytopathogenic fungi?
  • 批准号:
    BB/N011686/1
  • 项目类别:
    Fellowship
  • 资助金额:
    $37.95万
  • 财政年份:
    2016
  • 负责人:
    Neil Brown
  • 依托单位:
A Dynamics Response Calibration Facility
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    82371054
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