首页> 美国卫生研究院文献>International Journal of Biological Sciences >In Search for Pheromone Receptors: Certain Members of the Odorant Receptor Family in the Desert Locust Schistocerca gregaria (Orthoptera: Acrididae) Are Co-expressed with SNMP1
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In Search for Pheromone Receptors: Certain Members of the Odorant Receptor Family in the Desert Locust Schistocerca gregaria (Orthoptera: Acrididae) Are Co-expressed with SNMP1

机译:寻找信息素受体:沙漠蝗(Sistocerca gregaria)(直翅目:Ac科)中的气味受体家族的某些成员与SNMP1共表达

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摘要

Under given environmental conditions, the desert locust (Schistocera gregaria) forms destructive migratory swarms of billions of animals, leading to enormous crop losses in invaded regions. Swarm formation requires massive reproduction as well as aggregation of the animals. Pheromones that are detected via the olfactory system have been reported to control both reproductive and aggregation behavior. However, the molecular basis of pheromone detection in the antennae of Schistocerca gregaria is unknown. As an initial step to disclose pheromone receptors, we sequenced the antennal transcriptome of the desert locust. By subsequent bioinformatical approaches, 119 distinct nucleotide sequences encoding candidate odorant receptors (ORs) were identified. Phylogenetic analyses employing the identified ORs from Schistocerca gregaria (SgreORs) and OR sequences from the related species Locusta migratoria revealed a group of locust ORs positioned close to the root, i.e. at a basal site in a phylogenetic tree. Within this particular OR group (termed basal or b-OR group), the locust OR sequences were strictly orthologous, a trait reminiscent of pheromone receptors from lepidopteran species. In situ hybridization experiments with antennal tissue demonstrated expression of b-OR types from Schistocerca gregaria in olfactory sensory neurons (OSNs) of either sensilla trichodea or sensilla basiconica, both of which have been reported to respond to pheromonal substances. More importantly, two-color fluorescent in situ hybridization experiments showed that most b-OR types were expressed in cells co-expressing the “sensory neuron membrane protein 1” (SNMP1), a marker indicative of pheromone-sensitive OSNs in insects. Analyzing the expression of a larger number of SgreOR types outside the b-OR group revealed that only a few of them were co-expressed with SNMP1.In summary, we have identified several candidate pheromone receptors from Schistocerca gregaria that could mediate responses to pheromones implicated in controlling reproduction and aggregation behavior.
机译:在给定的环境条件下,沙漠蝗虫(Schistocera gregaria)形成了数十亿只动物的破坏性迁徙群,在入侵地区造成了巨大的农作物损失。群的形成需要大量繁殖以及动物的聚集。据报道,通过嗅觉系统检测到的信息素可控制生殖和聚集行为。然而,在血吸虫中触角信息素检测的分子基础是未知的。作为揭示信息素受体的第一步,我们对沙漠蝗的触角转录组进行了测序。通过随后的生物信息学方法,鉴定了119个编码候选气味受体(OR)的不同核苷酸序列。使用鉴定的来自血吸虫的OR(SgreOR)和来自相关物种Locusta migratoria的OR序列的系统发生分析揭示了一组蝗虫OR,其靠近根,即在系统发生树的基部。在这个特定的OR组(称为基础或b-OR组)中,蝗虫OR序列严格直系同源,这使人联想起鳞翅目物种的信息素受体。用触角组织进行的原位杂交实验证明,来自Gistaria schistocerca gregaria的b-OR类型在感性毛线虫或碱性感性嗅觉神经元(OSNs)中表达,据报道这两种反应都对信息素产生响应。更重要的是,两色荧光原位杂交实验表明,大多数b-OR类型在共同表达“感觉神经元膜蛋白1”(SNMP1)的细胞中表达,SNMP1是昆虫中对信息素敏感的OSN的标志。分析b-OR组以外的大量SgreOR类型的表达表明,只有少数与SNMP1共表达。总而言之,我们鉴定了来自血吸虫的几种信息素受体受体,这些受体可以介导对涉及的信息素的反应。控制繁殖和聚集行为。

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