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Differential Regulation of Immune Signaling and Survival Response in Drosophila melanogaster Larvae upon Steinernema carpocapsae Nematode Infection

机译:果蝇car虫线虫感染后果蝇幼虫的免疫信号和存活反应的差异调节。

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摘要

Drosophila melanogaster is an excellent model to dissect the molecular components and pathways of the innate anti-pathogen immune response. The nematode parasite Steinernema carpocapsae and its mutualistic bacterium Xenorhabdus nematophila form a complex that is highly pathogenic to insects, including D. melanogaster. We have used symbiotic (carrying X. nematophila) and axenic (lacking X. nematophila) nematodes to probe the regulation of genes belonging to different immune signaling pathways in D. melanogaster larvae and assess the survival response of certain mutants to these pathogens. We found that both types of S. carpocapsae upregulate MyD88 (Toll), but not PGRP-LE (Imd); whereas axenic S. carpocapsae strongly upregulate Wengen (Jnk), Domeless (Jak/Stat), Dawdle (TGFβ, Activin), and Decapentaplegic (TGFβ, BMP). We further found that inactivation of Wengen and Decapentaplegic confers a survival advantage to larvae infected with axenic S. carpocapsae, whereas mutating PGRP-LE promotes the survival of larvae infected with symbiotic nematodes.
机译:果蝇是一个很好的模型,可以剖析先天性抗病原体免疫应答的分子成分和途径。线虫寄生虫Steinernema carpocapsae及其共生细菌Xenorhabdus nematophila形成了一种复杂的复合物,对包括黑腹果蝇在内的各种昆虫均具有高致病性。我们已经使用共生线虫(携带X. nematophila)和线虫性(缺少X. nematophila)线虫来探测黑腹果蝇D. melanogaster幼虫中属于不同免疫信号通路的基因的调控,并评估某些突变体对这些病原体的存活反应。我们发现两种类型的荚膜链球菌都上调了MyD88(Toll),但没有上调PGRP-LE(Imd);而焦虑性荚膜链霉菌则强烈上调Wengen(Jnk),Domeless(Jak / Stat),Dawdle(TGFβ,Activin)和Decapentaplegic(TGFβ,BMP)。我们还发现,灭活文根和去甲肾上腺素能可以使感染了 S的幼虫获得生存优势。 carpocapsae ,而突变 PGRP-LE 可以促进感染共生线虫的幼虫的存活。

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