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大戟天蛾滞育蛹对冷驯化的响应:利用蛋白质组学鉴定候选生物标志物

Response to cold acclimation in diapause pupae of Hyles euphorbiae (Lepidoptera: Sphingidae): candidate biomarker identification using proteomics.

作者信息

Stuckas H, Mende M B, Hundsdoerfer A K

机构信息

Museum of Zoology (Museum für Tierkunde), Senckenberg Natural History Collections Dresden, Königsbrücker Landstrasse 159, D-01109, Dresden, Germany.

出版信息

Insect Mol Biol. 2014 Aug;23(4):444-56. doi: 10.1111/imb.12093. Epub 2014 Mar 14.

Abstract

The distribution range of Hyles euphorbiae covers distinct climates across the Palaearctic. Previous investigations showed a correlation between mitochondrial DNA identity of populations and climatic conditions related to winter; however, the lack of biomarkers hampers investigations to test whether geographically distinct populations do show specific molecular responses to low temperatures or whether they possess specific genetic identity at loci functionally related to cold response. The present study was designed to identify candidate protein biomarkers and biological processes that are associated with cold acclimation of overwintering H. euphorbiae diapause pupae. Specimens taken from a single central European population were gradually cooled from 20 °C to -2 °C over 36 days and 12 differentially abundant proteins were identified. In addition, DeepSuperSAGE sequencing technology was applied to study differentially regulated genes. There was incongruence between differentially abundant proteins and differentially expressed genes, but functional characteristics of regulated proteins and analyses of gene ontology term enrichment among differentially regulated genes pointed to activation of the same biological processes, e.g. oxidative stress response. As proteins represent biologically active molecules, candidate biomarkers derived from proteomics are considered well suited to explore intraspecific patterns of local adaptation to different climates.

摘要

大戟天蛾的分布范围覆盖古北区不同的气候区域。先前的研究表明,种群的线粒体DNA一致性与冬季相关的气候条件之间存在关联;然而,缺乏生物标志物阻碍了对地理上不同的种群是否确实对低温表现出特定分子反应,或者它们在与冷反应功能相关的位点是否具有特定遗传特性的研究。本研究旨在鉴定与越冬大戟天蛾滞育蛹冷驯化相关的候选蛋白质生物标志物和生物学过程。从单个中欧种群采集的样本在36天内从20℃逐渐冷却至-2℃,并鉴定出12种差异丰富的蛋白质。此外,应用深度超级SAGE测序技术研究差异调控基因。差异丰富的蛋白质和差异表达的基因之间存在不一致,但调控蛋白质的功能特征以及差异调控基因间的基因本体术语富集分析表明相同生物学过程的激活,例如氧化应激反应。由于蛋白质代表生物活性分子,源自蛋白质组学的候选生物标志物被认为非常适合探索种内对不同气候的局部适应模式。

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