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A phylogenomics approach to characterizing sensory neuron membrane proteins (SNMPs) in Lepidoptera

机译:表征鳞翅目表征感觉神经元膜蛋白(SNMPS)的系统核糖学方法

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Sensory neuron membrane proteins (SNMPs) play a critical role in the insect olfactory system but there is a deficit of functional studies beyond Drosophila. Here, we use a combination of available genome sequences, manual curation, genome and transcriptome data, phylogenetics, expression profiling and gene knockdown to investigate SNMP superfamily in various insect species with a focus on Lepidoptera. We curated 81 genes from 36 insect species and identified a novel lepidopteran SNMP gene family, SNMP3. Phylogenetic analysis shows that lepidopteran SNMP3, but not the previously annotated lepidopteran SNMP2, is the true homologue of the dipteran SNMP2. Digital expression, microarray and qPCR analyses show that the lepidopteran SNMP1 is specifically expressed in adult antennae. SNMP2 is widely expressed in multiple tissues while SNMP3 is specifically expressed in the larval midgut. Microarray analysis suggest SNMP3 may be involved in the silkworm immunity response to virus and bacterial infections. We functionally characterized SNMP1 in the silkworm using RNA interference (RNAi) and behavioral assays. Our results suggested that Bombyx mori SNMP1 is a functional orthologue of the Drosophila melanogaster SNMP1 and plays a critical role in pheromone detection. Split-ubiquitin yeast hybridization study shows that BmorSNMP1 has a protein-protein interaction with the pheromone receptor (BmorOR1), and the co-receptor (BmorOrco). Concluding, we propose a novel molecular model in which BmorOrco, BmorSNMP1 and BmorOR1 form a heteromer in the detection of the silkworm sex pheromone bombykol.
机译:感觉神经元膜蛋白(SNMPS)在昆虫嗅觉系统中发挥着关键作用,但果蝇超出了功能研究的缺陷。在这里,我们使用可用的基因组序列,手工策序,基因组和转录组数据,系统发育,表达分析和基因敲低的组合,以在各种昆虫物种中调查SNMP超家族,重点是鳞翅目。我们从36个昆虫物种中策划了81个基因,并确定了一种新型鳞翅目SNMP基因家族,SNMP3。系统发育分析表明,鳞翅目SNMP3,但不是先前注释的鳞翅目SNMP2,是Dipteran SNMP2的真正同源物。数字表达,微阵列和QPCR分析表明,Lepidopteran SNMP1在成人天线中特异性地表达。 SNMP2在多种组织中广泛表达,同时SNMP3在幼虫中肠特异性表达。微阵列分析表明SNMP3可能参与蚕免疫反应对病毒和细菌感染。我们使用RNA干扰(RNAi)和行为测定在家蚕中在功能上表现出SNMP1。我们的结果表明,Bombyx Mori SNMP1是果蝇黑素转酯SNMP1的功能性外翻,在信息素检测中起着关键作用。分裂泛素酵母杂交研究表明,Bmorsnmp1具有与信息素受体(Bmoror1)和共受体(Bmororco)的蛋白质 - 蛋白质相互作用。结论,我们提出了一种新的分子模型,其中Bmororco,Bmorsnmp1和Bmoror1在检测蚕单素Bombykol中形成异常。

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