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表皮结构蛋白质组学在豌豆蚜中的研究揭示了在触角下颚须尖端的新的植物病毒受体候选物。

Cuticular Structure Proteomics in the Pea Aphid Reveals New Plant Virus Receptor Candidates at the Tip of Maxillary Stylets.

机构信息

BGPI, University of Montpellier, INRAE, CIRAD, Montpellier SupAgro, 34000 Montpellier, France.

Plateforme BioPark d'Archamps, 74160 Archamps, France.

出版信息

J Proteome Res. 2020 Mar 6;19(3):1319-1337. doi: 10.1021/acs.jproteome.9b00851. Epub 2020 Feb 11.

Abstract

Aphids are phloem-feeding insects known as major pests in agriculture that are able to transmit hundreds of plant viruses. The majority of these viruses, classified as noncirculative, are retained and transported on the inner surface of the cuticle of the needle-like mouthparts while the aphids move from plant to plant. Identification of receptors of viruses within insect vectors is a key challenge because they are promising targets for alternative control strategies. The acrostyle, an organ discovered earlier within the common food/salivary canal at the tip of aphid maxillary stylets, displays proteins at the cuticle-fluid interface, some of which are receptors of noncirculative viruses. To assess the presence of stylet- and acrostyle-specific proteins and identify putative receptors, we have developed a comprehensive comparative analysis of the proteomes of four cuticular anatomical structures of the pea aphid, stylets, antennae, legs, and wings. In addition, we performed systematic immunolabeling detection of the cuticular proteins identified by mass spectrometry in dissected stylets. We thereby establish the first proteome of stylets of an insect and determine the minimal repertoire of the cuticular proteins composing the acrostyle. Most importantly, we propose a short list of plant virus receptor candidates, among which RR-1 proteins are remarkably predominant. The data are available via ProteomeXchange (PXD016517).

摘要

蚜虫是吸食韧皮部的昆虫,是农业中的主要害虫,能够传播数百种植物病毒。这些病毒大多数是非循环的,它们在蚜虫从一株植物转移到另一株植物时,被保留并在针状口器的内表面的角质层上运输。鉴定昆虫载体中的病毒受体是一个关键挑战,因为它们是替代控制策略的有希望的目标。早些时候在蚜虫的上颚须的共同食物/唾液管的尖端发现的纤毛,在角质层-液体界面显示出一些蛋白质,其中一些是非循环病毒的受体。为了评估刺吸式口器和纤毛特异性蛋白的存在并鉴定可能的受体,我们对豌豆蚜的四个角质层解剖结构(刺吸式口器、触角、腿和翅膀)的蛋白质组进行了全面的比较分析。此外,我们还对通过质谱法鉴定的角质层蛋白进行了系统的免疫标记检测。我们因此建立了昆虫刺吸式口器的第一个蛋白质组,并确定了组成纤毛的角质层蛋白的最小组成。最重要的是,我们提出了一份植物病毒受体候选名单,其中 RR-1 蛋白非常突出。该数据集可通过 ProteomeXchange(PXD016517)获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c57/7063574/c3347bd5c268/pr9b00851_0001.jpg

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