Fruit host selection by the olfactory system in the agricultural pest Drosophila suzukii
Fruit host selection by the olfactory system in the agricultural pest Drosophila suzukii
批准号:
1645264
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:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --
中文摘要
本项目研究了新出现的农业害虫铃木果蝇的嗅觉系统如何编码寄主气味,目的是寻找具有吸引力的配体及其混合物,作为诱饵在诱捕器中使用。铃鹿是东亚的地方病,于2008年在西班牙首次发现,此后向北入侵欧洲,并于2012年9月到达英国。铃木是一种极端的多面手食性动物:苍蝇产卵的水果来自不同的植物家族,包括草莓、葡萄和蓝莓。多面手昆虫如何选择寄主是昆虫-植物关系中的一个中心问题。通过单感觉神经元分辨的电生理学,我们将测试嗅觉系统如何编码来自水果宿主的气味的假说。在不同宿主发出的花束中是否存在共同的关键配体,从而激活嗅觉系统中共同的感觉神经元亚群,从而调节行为吸引,或者不同的宿主花束激活相互排斥的感觉神经元群?我们对模式生物黑腹果蝇的嗅觉系统的了解将有助于我们对铃木果蝇的研究。测量对单一气味和多组分混合气味的行为吸引力的分析将提供嗅觉信息处理的定量读数,而将输出与输入联系起来的数学模型将深入了解混合识别的重要性。在实验室中很有吸引力的混合物是诱捕器的有价值的候选诱饵,用于监测和控制果园中的铃木疫霉种群。这一跨学科项目将提供昆虫行为、分析化学和天线电生理学方面的培训。在Rothamsted的轮换中,学生将获得使用Pettersson四臂嗅觉仪进行昆虫行为实验的技能,重点是开发对气味剂量的诱人反应的量化,并将接受生物化学方法的培训,包括从田间植物和水果中捕获挥发性物质,以及使用高分辨率气相色谱(GC)/耦合GC-MS进行分析。学生将参加以化学生态学为重点的实验室会议,这是Rothamsted的一个特殊专业领域。随后在加的夫的轮换将向学生介绍果蝇的生理学,学生将学习从昆虫感觉神经元进行细胞外记录的技术。在加的夫,这名学生将与四个果蝇小组组成的研究环境进行互动,这些小组密切合作。主管:Wynand Van der Goes van Naters博士,Mike Birkett博士(Harpenden,Rothamsted Research)
英文摘要
This project investigates how the olfactory system of the emerging agricultural pest Drosophila suzukii encodes host odours, and aims to identify attractive ligands and their mixtures that can be used as baits in traps. Endemic to eastern Asia, D. suzukii was first recorded in Spain in 2008 and has since invaded northwards in Europe, reaching the UK in September 2012. D. suzukii is an extreme generalist feeder: the fly lays its eggs in fruit from diverse plant families including strawberry, grape and blueberry. How a generalist insect selects its hosts is a central question in insect-plant relationships. By electrophysiology at the resolution of single sensory neurons, we will test hypotheses of how the olfactory system encodes odours from fruit hosts. Are there shared key ligands in the bouquets emitted by the different hosts, which thereby activate common subpopulations of sensory neurons in the olfactory system that mediate behavioural attraction, or do different host bouquets activate mutually exclusive groups of sensory neurons? Our knowledge of the olfactory system of the model organism Drosophila melanogaster will inform our research on D. suzukii. Assays measuring behavioural attraction to pure single odorants and to multicomponent blends will provide quantitative readouts of processing of olfactory information, and a mathematical model which relates output to input will give insight into the importance of blend recognition. Blends that are attractive in the laboratory are valuable candidate baits for traps to monitor and control D. suzukii populations in orchards. This interdisciplinary project will provide training in aspects of insect behaviour, analytical chemistry and antennal electrophysiology. In the rotation at Rothamsted, the student will acquire skills in behavioural experiments with insects using a Pettersson four-arm olfactometer, focussing on the development of quantification of attractive response to odour dose, and will be trained in biological chemistry methods, including volatile capture from plants and fruits in the field and analysis using high resolution gas chromatography (GC) / coupled GC-MS. The student will participate in lab meetings focussed on Chemical Ecology, which is an area of particular expertise in Rothamsted. The subsequent rotation in Cardiff will introduce the student to the physiology of Drosophila, and the student will learn techniques for extracellular recordings from insect sensory neurons. In Cardiff, the student will interact with a research environment formed by four Drosophila groups, which co-operate closely. Supervisors: Dr Wynand Van der Goes van Naters, Dr Mike Birkett (Harpenden, Rothamsted Research)
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