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首页> 外文期刊>BMC Developmental Biology >Chitosan/siRNA nanoparticle targeting demonstrates a requirement for single-minded during larval and pupal olfactory system development of the vector mosquito Aedes aegypti
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Chitosan/siRNA nanoparticle targeting demonstrates a requirement for single-minded during larval and pupal olfactory system development of the vector mosquito Aedes aegypti

机译:壳聚糖/ siRNA纳米粒子靶向表明在蚊子伊蚊的幼虫和p嗅觉系统发育过程中一心一意的要求

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Background Essentially nothing is known about the genetic regulation of olfactory system development in vector mosquitoes, which use olfactory cues to detect blood meal hosts. Studies in Drosophila melanogaster have identified a regulatory matrix of transcription factors that controls pupal/adult odorant receptor (OR) gene expression in olfactory receptor neurons (ORNs). However, it is unclear if transcription factors that function in the D. melanogaster regulatory matrix are required for OR expression in mosquitoes. Furthermore, the regulation of OR expression during development of the larval olfactory system, which is far less complex than that of pupae/adults, is not well understood in any insect, including D. melanogaster. Here, we examine the regulation of OR expression in the developing larval olfactory system of Aedes aegypti, the dengue vector mosquito. Results A. aegypti bears orthologs of eight transcription factors that regulate OR expression in D. melanogaster pupae/adults. These transcription factors are expressed in A. aegypti larval antennal sensory neurons, and consensus binding sites for these transcription factors reside in the 5’ flanking regions of A. aegypti OR genes. Consensus binding sites for Single-minded (Sim) are located adjacent to over half the A. aegypti OR genes, suggesting that this transcription factor functions as a major regulator of mosquito OR expression. To functionally test this hypothesis, chitosan/siRNA nanoparticles were used to target sim during larval olfactory development. These experiments demonstrated that Sim positively regulates expression of a large subset of OR genes, including orco, the obligate co-receptor in the assembly and function of heteromeric OR/Orco complexes. Decreased innervation of the antennal lobe was also noted in sim knockdown larvae. These OR expression and antennal lobe defects correlated with a larval odorant tracking behavioral defect. OR expression and antennal lobe defects were also observed in sim knockdown pupae. Conclusions The results of this investigation indicate that Sim has multiple functions during larval and pupal olfactory system development in A. aegypti.
机译:背景技术基本上,关于矢量蚊子嗅觉系统发育的遗传调控一无所知,矢量蚊子使用嗅觉线索检测血粉宿主。在果蝇中的研究已经确定了转录因子的调节矩阵,该矩阵控制嗅觉受体神经元(ORN)中的//成人气味受体(OR)基因表达。但是,尚不清楚在蚊子中的OR表达是否需要在D. melanogaster调节基质中起作用的转录因子。此外,在幼虫嗅觉系统发育过程中,OR表达的调控远不如p /成虫那么复杂,但在包括D. melanogaster在内的任何昆虫中都没有很好的理解。在这里,我们研究了登革热媒介蚊埃及伊蚊的幼虫嗅觉系统中OR表达的调节。结果埃及伊蚊带有八个转录因子的直系同源基因,这些转录因子调节黑腹果蝇/成虫的OR表达。这些转录因子在埃及伊蚊的幼虫触角感觉神经元中表达,并且这些转录因子的共有结合位点位于埃及伊蚊的OR基因的5'侧翼区域。一心一意(Sim)的共识结合位点位于埃及伊蚊OR基因的一半以上,表明该转录因子是蚊OR表达的主要调节因子。为了在功能上验证该假设,在幼虫嗅觉发育过程中,使用壳聚糖/ siRNA纳米粒子靶向sim。这些实验证明,Sim可以积极调节OR基因的大部分子集的表达,其中包括orco,orco异构体OR / Orco复合物的组装和功能中的专性共受体。 sim敲低幼虫还注意到触角叶神经支配的减少。这些OR表达和触角叶缺陷与幼虫气味跟踪行为缺陷相关。在模拟敲除p中也观察到OR表达和触角叶缺损。结论这项调查的结果表明Sim在埃及伊蚊的幼虫和p嗅系统发育过程中具有多种功能。

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