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豌豆蚜(半翅目:蚜科)嗅觉感受器形态及气味结合蛋白的复杂表达模式

Sensilla Morphology and Complex Expression Pattern of Odorant Binding Proteins in the Vetch Aphid (Hemiptera: Aphididae).

作者信息

Bruno Daniele, Grossi Gerarda, Salvia Rosanna, Scala Andrea, Farina Donatella, Grimaldi Annalisa, Zhou Jing-Jiang, Bufo Sabino A, Vogel Heiko, Grosse-Wilde Ewald, Hansson Bill S, Falabella Patrizia

机构信息

Department of Biotechnology and Life Sciences, University of Insubria, Varese, Italy.

Department of Sciences, University of Basilicata, Potenza, Italy.

出版信息

Front Physiol. 2018 Jun 25;9:777. doi: 10.3389/fphys.2018.00777. eCollection 2018.

Abstract

Chemoreception in insects is mediated by several components interacting at different levels and including odorant-binding proteins (OBPs). Although recent studies demonstrate that the function of OBPs cannot be restricted to an exclusively olfactory role, and that OBPs have been found also in organs generally not related to chemoreception, their feature of binding molecules remains undisputed. Studying the vetch aphid (Buckton), we used a transcriptomic approach to identify ten OBPs in the antennae and we examined the ultrastructural morphology of sensilla and their distribution on the antennae, legs, mouthparts and cauda of wingless and winged adults by scanning electron microscopy (SEM). Three types of sensilla, trichoid, coeloconic and placoid, differently localized and distributed on antennae, mouthparts, legs and cauda, were described. The expression analysis of the ten OBPs was performed by RT-qPCR in the antennae and other body parts of the wingless adults and at different developmental stages and morphs. Five of the ten OBPs (, and ), whose antibodies were already available, were selected for experiments of whole-mount immunolocalization on antennae, mouthparts, cornicles and cauda of adult aphids. Most of the ten OBPs were more expressed in antennae than in other body parts; were also immunolocalized in the sensilla on the antennae, suggesting a possible involvement of these proteins in chemoreception. were highly expressed in the heads and three of them () were immunolocalized in the sensilla on the mouthparts, supporting the hypothesis that also mouthparts may be involved in chemoreception. were highly expressed in the cornicles-cauda and two of them ( were immunolocalized in cornicles and in cauda, suggesting a possible new function not related to chemoreception. Moreover, the response of to different components of the alarm pheromone was assessed by behavioral assays on wingless adult morph; (-)-α-pinene and (+)-limonene were found to be the components mainly eliciting an alarm response. Taken together, our results represent a road map for subsequent in-depth analyses of the OBPs involved in several physiological functions in , including chemoreception.

摘要

昆虫的化学感受是由几个在不同水平相互作用的成分介导的,其中包括气味结合蛋白(OBP)。尽管最近的研究表明,OBP的功能不能局限于单纯的嗅觉作用,而且在通常与化学感受无关的器官中也发现了OBP,但它们结合分子的特性仍然无可争议。在研究巢菜蚜(Buckton)时,我们采用转录组学方法在触角中鉴定出10种OBP,并通过扫描电子显微镜(SEM)检查了无翅和有翅成虫触角、腿部、口器和尾片上感器的超微结构形态及其分布。描述了三种类型的感器,即毛形感器、腔锥形感器和板形感器,它们在触角、口器、腿部和尾片上的定位和分布各不相同。通过RT-qPCR对10种OBP在无翅成虫的触角和其他身体部位以及不同发育阶段和形态进行了表达分析。选择了10种OBP中的5种( 、 和 ,其抗体已经可用)进行成虫蚜虫触角、口器、腹管和尾片的整体免疫定位实验。10种OBP中的大多数在触角中的表达高于其他身体部位; 也在触角上的感器中进行了免疫定位,表明这些蛋白质可能参与化学感受。 在头部高度表达,其中3种( )在口器上的感器中进行了免疫定位,支持口器也可能参与化学感受的假设。 在腹管 - 尾片高度表达,其中2种( 在腹管和尾片中进行了免疫定位,表明可能存在与化学感受无关的新功能。此外,通过对无翅成虫形态的行为测定评估了 对报警信息素不同成分的反应;发现(-)-α-蒎烯和(+)-柠檬烯是主要引发报警反应的成分。综上所述,我们的结果为后续深入分析参与巢菜蚜多种生理功能(包括化学感受)的OBP提供了路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f716/6027062/13732237bf74/fphys-09-00777-g001.jpg

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