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通过RNA测序揭示的果蝇抗线虫和抗菌免疫调节因子

Drosophila anti-nematode and antibacterial immune regulators revealed by RNA-Seq.

作者信息

Castillo Julio C, Creasy Todd, Kumari Priti, Shetty Amol, Shokal Upasana, Tallon Luke J, Eleftherianos Ioannis

机构信息

Insect Infection and Immunity Lab, Department of Biological Sciences, Institute for Biomedical Sciences, The George Washington University, Washington DC, 20052, USA.

Laboratory of Malaria and Vector Research, National Institutes of Health, Rockville, MD, 20852, USA.

出版信息

BMC Genomics. 2015 Jul 11;16(1):519. doi: 10.1186/s12864-015-1690-2.

Abstract

BACKGROUND

Drosophila melanogaster activates a variety of immune responses against microbial infections. However, information on the Drosophila immune response to entomopathogenic nematode infections is currently limited. The nematode Heterorhabditis bacteriophora is an insect parasite that forms a mutualistic relationship with the gram-negative bacteria Photorhabdus luminescens. Following infection, the nematodes release the bacteria that quickly multiply within the insect and produce several toxins that eventually kill the host. Although we currently know that the insect immune system interacts with Photorhabdus, information on interaction with the nematode vector is scarce.

RESULTS

Here we have used next generation RNA-sequencing to analyze the transcriptional profile of wild-type adult flies infected by axenic Heterorhabditis nematodes (lacking Photorhabdus bacteria), symbiotic Heterorhabditis nematodes (carrying Photorhabdus bacteria), and Photorhabdus bacteria alone. We have obtained approximately 54 million reads from the different infection treatments. Bioinformatic analysis shows that infection with Photorhabdus alters the transcription of a large number of Drosophila genes involved in translational repression as well in response to stress. However, Heterorhabditis infection alters the transcription of several genes that participate in lipidhomeostasis and metabolism, stress responses, DNA/protein synthesis and neuronal functions. We have also identified genes in the fly with potential roles in nematode recognition, anti-nematode activity and nociception.

CONCLUSIONS

These findings provide fundamental information on the molecular events that take place in Drosophila upon infection with the two pathogens, either separately or together. Such large-scale transcriptomic analyses set the stage for future functional studies aimed at identifying the exact role of key factors in the Drosophila immune response against nematode-bacteria complexes.

摘要

背景

黑腹果蝇会针对微生物感染激活多种免疫反应。然而,目前关于果蝇对昆虫病原线虫感染的免疫反应的信息有限。线虫嗜菌异小杆线虫是一种昆虫寄生虫,它与革兰氏阴性菌发光光杆状菌形成共生关系。感染后,线虫释放出细菌,这些细菌在昆虫体内迅速繁殖并产生几种毒素,最终杀死宿主。虽然我们目前知道昆虫免疫系统与发光光杆状菌相互作用,但关于与线虫载体相互作用的信息却很少。

结果

在这里,我们使用下一代RNA测序来分析无菌嗜菌异小杆线虫(不含发光光杆状菌)、共生嗜菌异小杆线虫(携带发光光杆状菌)和单独的发光光杆状菌感染的野生型成年果蝇的转录谱。我们从不同的感染处理中获得了大约5400万个读数。生物信息学分析表明,发光光杆状菌感染会改变大量参与翻译抑制以及应激反应的果蝇基因的转录。然而,嗜菌异小杆线虫感染会改变参与脂质稳态和代谢、应激反应、DNA/蛋白质合成和神经元功能的几个基因的转录。我们还在果蝇中鉴定出了在识别线虫、抗线虫活性和伤害感受中可能起作用的基因。

结论

这些发现提供了关于果蝇在分别或同时感染这两种病原体时发生的分子事件的基本信息。这种大规模的转录组分析为未来的功能研究奠定了基础,这些研究旨在确定关键因素在果蝇对线虫-细菌复合体免疫反应中的具体作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b40e/4499211/1abe4504fbe3/12864_2015_1690_Fig1_HTML.jpg

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