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An improved method for nematode infection assays in Drosophila larvae.

机译:果蝇幼虫中线虫感染测定的一种改进方法。

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The infective juveniles (IJs) of entomopathogenic nematodes (EPNs) seek out host insects and release their symbiotic bacteria into their body cavity causing septicaemia, which eventually leads to host death. The interaction between EPNs and their hosts are only partially understood, in particular the host immune responses appears to involve pathways other than phagocytosis and the canonical transcriptional induction pathways. These pathways are genetically tractable and include for example clotting factors and lipid mediators. The aim of this study was to optimize the nematode infections in Drosophila melanogaster larvae, a well-studied and genetically tractable model organism. Here we show that two nematode species namely Steinernema feltiae and Heterorhabditis bacteriophora display different infectivity toward Drosophila larvae with the latter being less pathogenic. The effects of supporting media and IJ dosage on the mortality of the hosts were assessed and optimized. Using optimum conditions, a faster and efficient setup for nematode infections was developed. This newly established infection model in Drosophila larvae will be applicable in large scale screens aimed at identifying novel genes/pathways involved in innate immune responses.Digital Object Identifier http://dx.doi.org/10.4161/fly.19553
机译:昆虫病原线虫(EPN)的感染性幼虫(IJs)会发现宿主昆虫,并将其共生细菌释放到体腔中,导致败血病,最终导致宿主死亡。 EPNs与它们的宿主之间的相互作用仅得到部分了解,尤其是宿主的免疫反应似乎涉及吞噬作用和规范转录诱导途径以外的其他途径。这些途径在遗传上是易处理的,并且包括例如凝血因子和脂质介体。这项研究的目的是优化果蝇(Drosophila melanogaster)幼虫中的线虫感染,这是一种经过充分研究且具有遗传易处理性的模型生物。在这里,我们显示了两个线虫物种,即 Steinernema feeliae 和 Heroorhabditis bacteriophora 对果蝇幼虫表现出不同的感染力,而后者的致病性较小。评估和优化了支持培养基和IJ剂量对宿主死亡率的影响。在最佳条件下,开发了一种更快,更有效的线虫感染设置。这种新建立的果蝇幼虫感染模型将适用于大规模筛选,旨在鉴定与先天免疫反应有关的新基因/途径。数字对象标识符http://dx.doi.org/10.4161/fly.19553

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