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Rhodnius prolixus: Identification of missing components of the IMD immune signaling pathway and functional characterization of its role in eliminating bacteria

机译:Rhodnius prolixus:鉴定IMD免疫信号通路中缺失的成分及其功能,以消除细菌

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摘要

The innate immune system in insects is regulated by specific signalling pathways. Most immune related pathways were identified and characterized in holometabolous insects such as Drosophila melanogaster, and it was assumed they would be highly conserved in all insects. The hemimetabolous insect, Rhodnius prolixus, has served as a model to study basic insect physiology, but also is a major vector of the human parasite, Trypanosoma cruzi, that causes 10,000 deaths annually. The publication of the R. prolixus genome revealed that one of the main immune pathways, the Immune-deficiency pathway (IMD), was incomplete and probably non-functional, an observation shared with other hemimetabolous insects including the pea aphid (Acyrthosiphon pisum) and the bedbug (Cimex lectularius). It was proposed that the IMD pathway is inactive in R. prolixus as an adaptation to prevent eliminating beneficial symbiont gut bacteria. We used bioinformatic analyses based on reciprocal BLAST and HMM-profile searches to find orthologs for most of the “missing” elements of the IMD pathway and provide data that these are regulated in response to infection with Gram-negative bacteria. We used RNAi strategies to demonstrate the role of the IMD pathway in regulating the expression of specific antimicrobial peptides (AMPs) in the fat body of R. prolixus. The data indicate that the IMD pathway is present and active in R. prolixus, which opens up new avenues of research on R. prolixus-T. cruzi interactions.
机译:昆虫的先天免疫系统由特定的信号通路调节。大多数免疫相关的途径已在类代谢昆虫(如果蝇(Drosophila melanogaster))中被鉴定和鉴定,并假定它们在所有昆虫中都是高度保守的。半代谢昆虫Rhodnius prolixus曾作为研究昆虫基本昆虫生理学的模型,但它还是人类寄生虫Crupanosoma cruzi的主要媒介,每年导致10,000人死亡。 R. prolixus基因组的公布表明,主要的免疫途径之一是免疫缺陷途径(IMD),是不完全的,可能是无功能的,这一现象与包括豌豆蚜虫(Acyrthosiphon pisum)和豌豆蚜虫在内的其他半代谢昆虫共有。臭虫(Cimex lectularius)。有人提出,IMD途径在螺旋藻中是无活性的,可作为一种适应措施,以防止消除有益的共生肠道细菌。我们使用了基于相互的BLAST和HMM谱图搜索的生物信息学分析,以找到IMD途径中大多数“缺失”元素的直系同源物,并提供了针对革兰氏阴性细菌感染而受到调节的直向同源物。我们使用RNAi策略来证明IMD途径在调节螺旋藻脂肪体中特定抗微生物肽(AMPs)的表达中的作用。数据表明IMD途径存在于Pro.prolixus中并活跃,这为R.prolixus-T的研究开辟了新途径。克鲁兹互动。

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