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Drosophila immunity research on the move.

机译:果蝇免疫研究不断发展。

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Drosophila has been established as useful model for infectious diseases because it allows large numbers of whole animals to be studied and provides powerful genetic tools and conservation with signaling and pathogenesis mechanisms in vertebrates. During the past twenty years, significant progress has been made on the characterization of innate immune responses against various pathogenic organisms in flies (Fig. 1). In this year's Drosophila Research Conference, which was held in San Diego (March 30-April 3) and sponsored by the Genetics Society of America, the immunity and pathogenesis session comprised seven platform presentations and 34 posters that highlighted the latest advances in Drosophila infection and immunity field. The presented work covered a wide range of studies from immune signaling pathways and the molecular basis of humoral and cellular immune mechanisms to the role of endosymbionts in fly immune function and effects of immune priming. Here, we give an overview of the presented work and we explain how these findings will open new avenues in Drosophila immunity research.
机译:果蝇已经被确立为传染病的有用模型,因为它可以研究大量的完整动物,并提供强大的遗传工具以及脊椎动物的信号传导和致病机制的保护。在过去的二十年中,果蝇针对各种病原体的先天免疫应答的表征已取得了重大进展(图1)。在今年3月30日至4月3日在圣地亚哥举行的果蝇研究会议上,由美国遗传学会赞助。免疫和发病机制会议包括七个平台演讲和34幅海报,重点介绍了果蝇感染和感染的最新进展。免疫力领域。提出的工作涵盖了广泛的研究范围,从免疫信号通路和体液和细胞免疫机制的分子基础到内共生体在果蝇免疫功能中的作用以及免疫引发的作用。在这里,我们概述了所提出的工作,并解释了这些发现将如何为果蝇免疫研究开辟新的途径。

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