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外寄生黄蜂——米象金小蜂的毒腺成分

Venom gland components of the ectoparasitoid wasp, Anisopteromalus calandrae.

作者信息

Perkin Lindsey C, Friesen Kenlee S, Flinn Paul W, Oppert Brenda

机构信息

US Department of Agriculture, Agricultural Research Service, Center for Grain and Animal Health Research , 1515 College Avenue, Manhattan KS 66502 , USA.

出版信息

J Venom Res. 2015 Dec 24;6:19-37. eCollection 2015.

Abstract

The wasp Anisopteromalus calandrae is a small ectoparasitoid that attacks stored product pest beetle larvae that develop inside grain kernels, and is thus a potential insect control tool. The components of A. calandrae venom have not been studied, but venom from other organisms contains proteins with potential applications, such as pest management tools and treatments for human diseases. We dissected female A. calandrae and collected venom and associated glands. Using high throughput sequencing, a venom gland transcriptome was assembled that contained 45,432 contigs, 25,726 of which had BLASTx hits. The majority of hits were to Nasonia vitripennis, an ectoparasitoid from the same taxonomic family, as well as other bees, wasps, and ants. Gene ontology grouped sequences into eleven molecular functions, among which binding and catalytic activity had the most representatives. In this study, we highlighted the most abundant sequences, including those that are likely the functional components of the venom. Specifically, we focused on genes encoding proteins potentially involved in host developmental arrest, disrupting the host immune system, host paralysis, and transcripts that support these functions. Our report is the first to characterize components of the A. calandrae venom gland that may be useful as control tools for insect pests and other applications.

摘要

黄蜂Anisopteromalus calandrae是一种小型体外寄生蜂,它攻击在谷粒内发育的仓储害虫甲虫幼虫,因此是一种潜在的害虫防治工具。尚未对A. calandrae毒液的成分进行研究,但来自其他生物的毒液含有具有潜在应用价值的蛋白质,如害虫管理工具和人类疾病治疗方法。我们解剖了雌性A. calandrae并收集了毒液及相关腺体。利用高通量测序,组装了一个毒液腺转录组,其中包含45432个重叠群,其中25726个有BLASTx比对结果。大多数比对结果是与Nasonia vitripennis(同一分类科的一种体外寄生蜂)以及其他蜜蜂、黄蜂和蚂蚁相关。基因本体将序列分为11种分子功能,其中结合和催化活性的代表序列最多。在本研究中,我们突出了最丰富的序列,包括那些可能是毒液功能成分的序列。具体而言,我们重点关注编码可能参与宿主发育停滞、破坏宿主免疫系统、使宿主麻痹的蛋白质的基因,以及支持这些功能的转录本。我们的报告首次对A. calandrae毒液腺的成分进行了表征,这些成分可能作为害虫防治工具及用于其他用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f1d/4776022/94dd925ca49a/JVR-06-19-g001.jpg

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