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Identification and Expression Profiling of Peripheral Olfactory Genes in the Parasitoid Wasp Aphidius ervi (Hymenoptera: Braconidae) Reared on Different Aphid Hosts

机译:寄生虫WASP蚜虫(Hymenoptera:Braconidae)在不同的蚜虫宿主中鉴定和表达谱

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摘要

Generalist parasitoids of aphids, such as the wasp Aphidius ervi, display significant differences in terms of host preference and host acceptance, depending on the host on which they developed (natal host), which is preferred over a non-natal host, a trait known as host fidelity. This trait allows females to quickly find hosts in heterogeneous environments, a process mediated by chemosensory/olfactory mechanisms, as parasitoids rely on olfaction and chemical cues during host selection. Thus, it is expected that proteins participating in chemosensory recognition, such as odorant-binding proteins (OBPs) and odorant receptors (ORs) would play a key role in host preference. In this study, we addressed the effect of parasitoid reciprocal host switching between two aphid hosts (Sitobion avenae and Acyrthosiphon pisum) on the expression patterns of chemosensory genes in the wasp A. ervi. First, by using a transcriptomic approach based on RNAseq of A. ervi females reared on S. avenae and A. pisum, we were able to annotate a total of 91 transcripts related to chemoperception. We also performed an in-silico expression analysis and found three OBPs and five ORs displaying different expression levels. Then, by using qRT-PCR amplification, we found significant differences in the expression levels of these eight genes when the parasitoids were reciprocally transplanted from S. avenae onto A. pisum and vice versa. This suggests that the expression levels of genes coding for odorant receptors and odorant-binding proteins would be regulated by the specific plant−aphid host complex where the parasitoids develop (maternal previous experience) and that chemosensory genes coding for olfactory mechanisms would play a crucial role on host preference and host acceptance, ultimately leading to the establishment of host fidelity in A. ervi parasitoids.
机译:蚜虫通才寄生,如蜂烟蚜ervi,显示在宿主偏好和主机接受方面显著差异,这取决于它们开发的主机(产后主机),这是优选通过非产后主机,已知的性状上作为东道主的保真度。这个特点使女性迅速找到在异构环境中的主机,通过化学感应/嗅觉机制介导的过程,如寄生蜂寄主选择过程中靠嗅觉和化学线索。因此,预计参与的化学感应识别蛋白,如气味结合蛋白(OBPs)和气味受体(ORS)将在宿主发挥喜好了关键作用。在这项研究中,我们讨论了关于在蜂A. ervi化学感应的基因的表达模式的两个蚜主机(麦长管蚜和豌豆蚜)之间的寄生倒数主机切换的效果。首先,通过使用基于饲养麦长管蚜和A.豌豆A. ervi女性的RNA测序一个转录的方式,我们可以注解共有91份相关chemoperception成绩单。我们还进行了在计算机芯片表达分析,发现3个OBPs和五个OR值显示不同的表达水平。然后,通过使用qRT-PCR扩增,我们发现当寄生被往复从麦长管蚜移植到A.豌豆,反之亦然在这些8个基因的表达水平的差异显著。这表明,基因编码气味受体和气味结合蛋白的表达水平将由特定的植物蚜虫主机复杂,其中蜂开发(产妇以往的经验)和化学感受基因编码的嗅觉机制来调节会起到至关重要的作用主机偏好和主机验收,最终导致A. ervi寄生建立主机的保真度。

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