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Disruption of Aedes aegypti Olfactory System Development through Chitosan/siRNA Nanoparticle Targeting of semaphorin-1a

机译:通过壳聚糖/ siRNA纳米粒子靶向semaphorin-1a来破坏埃及伊蚊的嗅觉系统发育。

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摘要

Despite the devastating impact of mosquito-borne illnesses on human health, surprisingly little is known about mosquito developmental biology, including development of the olfactory system, a tissue of vector importance. Analysis of mosquito olfactory developmental genetics has been hindered by a lack of means to target specific genes during the development of this sensory system. In this investigation, chitosan/siRNA nanoparticles were used to target semaphorin-1a (sema1a) during olfactory system development in the dengue and yellow fever vector mosquito Aedes aegypti. Immunohistochemical analyses and anterograde tracing of antennal sensory neurons, which were used to track the progression of olfactory development in this species, revealed antennal lobe defects in sema1a knockdown fourth instar larvae. These findings, which correlated with a larval odorant tracking behavioral phenotype, identified previously unreported roles for Sema1a in the developing insect larval olfactory system. Analysis of sema1a knockdown pupae also revealed a number of olfactory phenotypes, including olfactory receptor neuron targeting and projection neuron defects coincident with a collapse in the structure and shape of the antennal lobe and individual glomeruli. This study, which is to our knowledge the first functional genetic analysis of insect olfactory development outside of D. melanogaster, identified critical roles for Sema1a during Ae. aegypti larval and pupal olfactory development and advocates the use of chitosan/siRNA nanoparticles as an effective means of targeting genes during post-embryonic Ae. aegypti development. Use of siRNA nanoparticle methodology to understand sensory developmental genetics in mosquitoes will provide insight into the evolutionary conservation and divergence of key developmental genes which could be exploited in the development of both common and species-specific means for intervention.
机译:尽管蚊媒疾病对人类健康具有毁灭性影响,但令人惊讶的是,人们对蚊子发育生物学知之甚少,包括嗅觉系统的发展,嗅觉系统是一种重要的媒介。蚊香嗅觉发育遗传学的分析已被缺乏这种感觉系统的发展过程中针对特定基因的手段的阻碍。在这项研究中,壳聚糖/ siRNA纳米粒子用于登革热和黄热病蚊埃及伊蚊的嗅觉系统发育过程中的目标信号量1a(sema1a)。免疫组化分析和触觉感觉神经元的顺行性追踪,用于跟踪该物种的嗅觉发育的进程,揭示了sema1a击倒的四龄幼虫的触角叶缺损。这些发现与幼虫气味跟踪行为表型有关,确定了Sema1a在昆虫幼虫嗅觉系统发育过程中未曾报道过的作用。对sema1a击倒p的分析还显示了许多嗅觉表型,包括嗅觉受体神经元靶向和投射神经元缺陷,与触角叶和单个肾小球的结构和形状崩溃相吻合。这项研究据我们所知,是对黑腹果蝇以外的昆虫嗅觉发育的第一个功能遗传分析,确定了Ae期间Sema1a的关键作用。 aegypti幼虫和p的嗅觉发育,并提倡使用壳聚糖/ siRNA纳米颗粒作为胚胎后Ae靶向基因的有效手段。埃及发展。使用siRNA纳米粒子方法学来了解蚊子的感官发育遗传学将提供对关键发育基因的进化保守性和发散性的洞察力,这些关键发展基因可用于开发常见的和特定于物种的干预手段。

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