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基于蛋白质组学分析揭示了蜜蜂(膜翅目:蜜蜂科)对热应激的反应机制。

Based proteomics analyses reveal response mechanisms of Apis mellifera (Hymenoptera: Apidae) against the heat stress.

机构信息

Shandong Vocational College of Light Industry, Zibo, Shandong Province, China.

School of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo, Shandong Province, China.

出版信息

J Insect Sci. 2024 Nov 1;24(6). doi: 10.1093/jisesa/iead074.

Abstract

Heat stress can significantly affect the survival, metabolism, and reproduction of honeybees. It is important to understand the proteomic changes of honeybees under heat stress to understand the molecular mechanism behind heat resistance. However, the proteomic changes of honeybees under heat stress are poorly understood. We analyzed the proteomic changes of Apis mellifera Ligustica (Hymenoptera: Apidae) under heat stress using mass spectrometry-based proteomics with TMT (Tandem mass tags) stable isotope labeling. A total of 3,799 proteins were identified, 85 of which differentially abundance between experimental groups. The most significant categories affected by heat stress were associated with transcription and translation processes, metabolism, and stress-resistant pathways. We found that heat stress altered the protein profiles in A. mellifera, with momentous resist proteins being upregulated in heat groups. These results show a proof of molecular details that A. mellifera can respond to heat stress by increasing resist proteins. Our findings add research basis for studying the molecular mechanisms of honeybees' resistance to heat stress. The differentially expressed proteins identified in this study can be used as biomarkers of heat stress in bees, and provide a foundation for future research on honeybees under heat stress. Our in-depth proteomic analysis provides new insights into how bees cope with heat stress.

摘要

热应激会显著影响蜜蜂的生存、代谢和繁殖。了解蜜蜂在热应激下的蛋白质组变化对于理解耐热的分子机制非常重要。然而,蜜蜂在热应激下的蛋白质组变化还知之甚少。我们使用基于质谱的 TMT(串联质量标签)稳定同位素标记蛋白质组学技术分析了中华蜜蜂(膜翅目:蜜蜂科)在热应激下的蛋白质组变化。共鉴定出 3799 种蛋白质,其中 85 种在实验组之间存在差异丰度。受热应激影响最显著的类别与转录和翻译过程、代谢和抗应激途径有关。我们发现热应激改变了 A. mellifera 的蛋白质谱,热组中大量的抗性蛋白被上调。这些结果表明,A. mellifera 可以通过增加抗性蛋白来应对热应激,这为研究蜜蜂耐热的分子机制提供了证据。本研究中鉴定的差异表达蛋白可以作为蜜蜂热应激的生物标志物,并为未来研究热应激下的蜜蜂提供基础。我们的深入蛋白质组学分析为蜜蜂如何应对热应激提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4c3/11599371/6d62926f9e06/iead074_fig1.jpg

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