工蜂幼虫发育过程中的血淋巴蛋白质组变化与西方蜜蜂(意大利蜜蜂)和东方蜜蜂(中华蜜蜂)之间的生物学差异相匹配。

Hemolymph proteome changes during worker brood development match the biological divergences between western honey bees (Apis mellifera) and eastern honey bees (Apis cerana).

作者信息

Feng Mao, Ramadan Haitham, Han Bin, Fang Yu, Li Jianke

机构信息

Institute of Apicultural Research/Key Laboratory of Pollinating Insect Biology, Ministry of Agriculture, Chinese Academy of Agricultural Science, Beijing 100093, China.

出版信息

BMC Genomics. 2014 Jul 5;15(1):563. doi: 10.1186/1471-2164-15-563.

Abstract

BACKGROUND

Hemolymph plays key roles in honey bee molecule transport, immune defense, and in monitoring the physiological condition. There is a lack of knowledge regarding how the proteome achieves these biological missions for both the western and eastern honey bees (Apis mellifera and Apis cerana). A time-resolved proteome was compared using two-dimensional electrophoresis-based proteomics to reveal the mechanistic differences by analysis of hemolymph proteome changes between the worker bees of two bee species during the larval to pupal stages.

RESULTS

The brood body weight of Apis mellifera was significantly heavier than that of Apis cerana at each developmental stage. Significantly, different protein expression patterns and metabolic pathways were observed in 74 proteins (166 spots) that were differentially abundant between the two bee species. The function of hemolymph in energy storage, odor communication, and antioxidation is of equal importance for the western and eastern bees, indicated by the enhanced expression of different protein species. However, stronger expression of protein folding, cytoskeletal and developmental proteins, and more highly activated energy producing pathways in western bees suggests that the different bee species have developed unique strategies to match their specific physiology using hemolymph to deliver nutrients and in immune defense.

CONCLUSIONS

Our disparate findings constitute a proof-of-concept of molecular details that the ecologically shaped different physiological conditions of different bee species match with the hemolymph proteome during the brood stage. This also provides a starting point for future research on the specific hemolymph proteins or pathways related to the differential phenotypes or physiology.

摘要

背景

血淋巴在蜜蜂的分子运输、免疫防御以及生理状态监测中发挥着关键作用。对于西方蜜蜂和东方蜜蜂(意大利蜜蜂和中华蜜蜂)的蛋白质组如何完成这些生物学任务,我们了解甚少。利用基于二维电泳的蛋白质组学比较了时间分辨蛋白质组,通过分析两种蜜蜂幼虫到蛹阶段血淋巴蛋白质组的变化来揭示其机制差异。

结果

在每个发育阶段,意大利蜜蜂的幼虫体重均显著高于中华蜜蜂。值得注意的是,在两种蜜蜂之间差异丰富的74种蛋白质(166个斑点)中观察到了不同的蛋白质表达模式和代谢途径。不同蛋白质种类表达的增强表明,血淋巴在能量储存、气味通讯和抗氧化方面的功能对西方蜜蜂和东方蜜蜂同样重要。然而,西方蜜蜂中蛋白质折叠、细胞骨架和发育蛋白的更强表达以及更高度激活的能量产生途径表明,不同的蜜蜂物种已经发展出独特的策略,利用血淋巴输送营养物质和进行免疫防御来匹配其特定的生理状态。

结论

我们不同的研究结果构成了一个概念验证,即不同蜜蜂物种受生态塑造的不同生理条件在幼虫阶段与血淋巴蛋白质组相匹配。这也为未来研究与差异表型或生理相关的特定血淋巴蛋白质或途径提供了一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4953/4111844/f03a6808e06a/12864_2014_6273_Fig1_HTML.jpg

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