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烟粉虱 Q 细胞蛋白组和乙酰化组图谱的新发现及其对共生菌感染的响应。

Novel proteome and acetylome of Bemisia tabaci Q in response to Cardinium infection.

机构信息

Key Laboratory of Integrated Crop Pest Management of Shandong Province, College of Plant Health and Medicine, Qingdao Agricultural University, Qingdao, 266109, Shandong, China.

出版信息

BMC Genomics. 2018 Jul 5;19(1):523. doi: 10.1186/s12864-018-4907-3.

Abstract

BACKGROUND

It has become increasingly clear that symbionts have crucial evolutionary and ecological ramifications for their host arthropods. However, little is known whether these symbiont infections influence the proteome and lysine acetylome of their host arthropods. Here we performed experiments to investigate the proteomes and acetylomes of Cardinium-infected (C) and -uninfected (C) Bemisia tabaci Q with identical backgrounds, through the combination of affinity enrichment and high-resolution LC-MS/MS analysis.

RESULTS

Of the 3353 proteins whose levels were quantitated in proteome, a total of 146 proteins dividing into 77 up-regulated and 69 down-regulated proteins were discovered to be differentially expressed as having at least a 1.2-fold change when C strain was compared with C strain. Furthermore, a total of 528 lysine acetylation sites in 283 protein groups were identified, among which 356 sites in 202 proteins were quantified. The comparison of acetylomes revealed 30 sites in 26 lysine acetylation proteins (Kac) were quantified as up-regulated targets and 35 sites in 29 Kac proteins were quantified as down-regulated targets. Functional analysis showed that these differentially expressed proteins and Kac proteins were mainly involved in diverse physiological processes related to development, immune responses and energy metabolism, such as retinol metabolism, methane metabolism and fatty acid degradation. Notably, protein interaction network analyses demonstrated widespread interactions modulated by protein acetylation.

CONCLUSION

Here we show the proteome and acetylom of B. tabaci Q in response to the symbiont Cardinium infection. This is the first study to utilize the tool of acetylome analysis for revealing physiological responses of arthropods to its symbiont infection, which will provide an important resource for exploring the arthropod-symbiont interaction.

摘要

背景

共生体对其宿主节肢动物的进化和生态具有至关重要的影响,这一点已经越来越明显。然而,目前尚不清楚这些共生体感染是否会影响宿主节肢动物的蛋白质组和赖氨酸乙酰组。在这里,我们通过亲和富集和高分辨率 LC-MS/MS 分析相结合的方法,对具有相同背景的感染(C)和未感染(C)烟粉虱的蛋白质组和乙酰组进行了实验研究。

结果

在定量蛋白质组学中,共定量了 3353 种蛋白质,其中发现了 146 种蛋白质,分为 77 种上调蛋白和 69 种下调蛋白,当 C 株与 C 株相比时,这些蛋白的表达水平至少有 1.2 倍的变化。此外,共鉴定到 283 个蛋白组中的 528 个赖氨酸乙酰化位点,其中 202 个蛋白中的 356 个位点被定量。乙酰组学比较显示,26 个赖氨酸乙酰化蛋白(Kac)中的 30 个位点被定量为上调靶标,29 个 Kac 蛋白中的 35 个位点被定量为下调靶标。功能分析表明,这些差异表达蛋白和 Kac 蛋白主要参与与发育、免疫反应和能量代谢等相关的多种生理过程,如视黄醇代谢、甲烷代谢和脂肪酸降解。值得注意的是,蛋白质相互作用网络分析表明,蛋白质乙酰化广泛调节相互作用。

结论

在这里,我们展示了烟粉虱 Q 对共生体 Cardinium 感染的蛋白质组和乙酰组。这是首次利用乙酰组学分析工具揭示节肢动物对其共生体感染的生理反应的研究,这将为探索节肢动物-共生体相互作用提供重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89e5/6034306/dc68ee3f4d33/12864_2018_4907_Fig1_HTML.jpg

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