首页> 美国卫生研究院文献>Insects >Identification and Expression Profiling of Peripheral Olfactory Genes in the Parasitoid Wasp Aphidius ervi (Hymenoptera: Braconidae) Reared on Different Aphid Hosts
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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:寄生在不同蚜虫宿主上的拟寄生蜂黄蜂蚜(嗅翅目:Braconidae)的外周嗅觉基因的鉴定和表达谱

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摘要

Generalist parasitoids of aphids, such as the wasp , 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 ( and ) on the expression patterns of chemosensory genes in the wasp First, by using a transcriptomic approach based on RNAseq of females reared on and , 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 onto 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 parasitoids.
机译:蚜虫的全寄生寄生虫,例如黄蜂,在寄主的偏好和寄主的接受方面表现出显着差异,具体取决于寄主的寄主(出生寄主),这比非出生寄主更受欢迎,这种特征被称为寄主保真。这种特性使雌性能够在异质环境中快速找到宿主,这一过程是由化学感官/嗅觉机制介导的,因为拟寄生物在宿主选择过程中依赖嗅觉和化学线索。因此,期望参与化学感觉识别的蛋白质,例如气味结合蛋白(OBP)和气味受体(OR),将在宿主偏好中起关键作用。在这项研究中,我们研究了寄生虫互惠宿主在两个蚜虫宿主(和)之间切换对黄蜂中化学感受基因表达模式的影响。首先,通过基于在和上饲养的雌性RNAseq的转录组方法,我们能够总共注释与化学感受相关的91个转录本。我们还进行了计算机内表达分析,发现了三个OBP和五个OR表现出不同的表达水平。然后,通过qRT-PCR扩增,我们发现,当将拟寄生虫相互移植时,这八个基因的表达水平存在显着差异,反之亦然。这表明编码气味受体和气味结合蛋白的基因的表达水平将受到特定的植物-蚜虫宿主复合体的调节,在该复合体中会产生寄生虫(母体先前的经验),编码嗅觉机制的化学感应基因将起关键作用。关于寄主的偏爱和寄主的接受,最终导致寄生动物建立寄主保真度。

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