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成年雄蜂、工蜂和蜂王(Apis mellifera L.)触角差异蛋白质组比较。

Differential antennal proteome comparison of adult honeybee drone, worker and queen (Apis mellifera L.).

机构信息

Key Laboratory of Pollinating Insect Biology, Ministry of Agriculture/Institute of Apicultural Research, Chinese Academy of Agricultural Science, Beijing, China.

出版信息

J Proteomics. 2012 Jan 4;75(3):756-73. doi: 10.1016/j.jprot.2011.09.012. Epub 2011 Sep 29.

Abstract

To understand the olfactory mechanism of honeybee antennae in detecting specific volatile compounds in the atmosphere, antennal proteome differences of drone, worker and queen were compared using 2-DE, mass spectrometry and bioinformatics. Therefore, 107 proteins were altered their expressions in the antennae of drone, worker and queen bees. There were 54, 21 and 32 up-regulated proteins in the antennae of drone, worker and queen, respectively. Proteins upregulated in the drone antennae were involved in fatty acid metabolism, antioxidation, carbohydrate metabolism and energy production, protein folding and cytoskeleton. Proteins upregulated in the antennae of worker and queen bees were related to carbohydrate metabolism and energy production while molecular transporters were upregulated in the queen antennae. Our results explain the role played by the antennae of drone is to aid in perceiving the queen sexual pheromones, in the worker antennae to assist for food search and social communication and in the queen antennae to help pheromone communication with the worker and the drone during the mating flight. This first proteomic study significantly extends our understanding of honeybee olfactory activities and the possible mechanisms played by the antennae in response to various environmental, social, biological and biochemical signals.

摘要

为了了解蜜蜂触角探测大气中特定挥发性化合物的嗅觉机制,我们使用 2-DE、质谱和生物信息学比较了雄蜂、工蜂和蜂王触角的触角蛋白质组差异。因此,在雄蜂、工蜂和蜂王的触角中,有 107 种蛋白质的表达发生了改变。雄蜂、工蜂和蜂王触角中分别有 54、21 和 32 种上调蛋白。在雄蜂触角中上调的蛋白参与脂肪酸代谢、抗氧化、碳水化合物代谢和能量产生、蛋白质折叠和细胞骨架。在工蜂和蜂王触角中上调的蛋白与碳水化合物代谢和能量产生有关,而在蜂王触角中上调的是分子转运蛋白。我们的研究结果表明,雄蜂触角的作用是帮助感知蜂王性信息素,工蜂触角的作用是帮助寻找食物和进行社会交流,而蜂王触角的作用是在交配飞行中帮助与工蜂和雄蜂进行信息素交流。这项首次进行的蛋白质组学研究显著扩展了我们对蜜蜂嗅觉活动的理解,以及触角对各种环境、社会、生物和生化信号的可能反应机制。

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