可视化昆虫体内的脂肪储备:普通黄蜂(Vespula vulgaris)的x射线微电脑断层扫描方法

IF 1.6 3区 生物学 Q2 ZOOLOGY Zoology Pub Date : 2023-06-01 DOI:10.1016/j.zool.2023.126092
G.D. Bell , N. Corps , D. Mortimer , S. Gretton , N.R. Bury
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引用次数: 1

摘要

普通Wasp,Vespula vulgaris(膜翅目:胡蜂科),每年都有一个巢穴周期,由越冬的蜂后发起新的群落。成年蜂王在冬季休眠期的生存是通过脂肪体内大量甘油三酯的沉积实现的。工蜂(和雄蜂)缺乏这些脂肪储备。通过比较工人、冬眠前皇后和冬眠后皇后的显微CT扫描,我们证明了使用任意X射线衰减范围半定量测量脂肪储备是可能的。蜂后毒液腺中的毒液,其X射线衰减值明显低于富含甘油三酯的脂肪体。这可能是由于其除其他已知成分外还含有低分子量挥发性信息素。我们还展示了微型CT在可视化昆虫的一系列生理和解剖特征方面的实用性。这种非破坏性的脂肪储备测量方法可以用于适当保存或新收集的昆虫标本。
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Visualising fat reserves in an insect: A method using X-ray micro-computerised tomography of the Common Wasp (Vespula vulgaris)

The Common Wasp, Vespula vulgaris (Hymenoptera: Vespidae), has an annual nest cycle with new colonies initiated by over-wintered queens. Survival of adult queen wasps through winter dormancy is enabled through the deposition of substantial quantities of triglycerides in fat bodies. Worker (and male) wasps lack these fat reserves. By comparing micro-CT scans of workers, pre-hibernation queens and post-hibernation queens, we demonstrate that it is possible to semi-quantitatively measure fat reserves using arbitrary X-ray attenuation ranges. Venom in the venom gland of the queen wasps, has a significantly lower X-ray attenuation value than the triglyceride-rich fat bodies. This may be due to its content of low molecular weight volatile pheromones in addition to its other known constituents. We also demonstrate the utility of micro-CT for visualising a range of physiological and anatomical features of insects. This non-destructive method for measuring fat reserves can be used on appropriately preserved or freshly collected insect specimens.

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来源期刊
Zoology
Zoology 生物-动物学
CiteScore
3.90
自引率
0.00%
发文量
37
审稿时长
70 days
期刊介绍: Zoology is a journal devoted to experimental and comparative animal science. It presents a common forum for all scientists who take an explicitly organism oriented and integrative approach to the study of animal form, function, development and evolution. The journal invites papers that take a comparative or experimental approach to behavior and neurobiology, functional morphology, evolution and development, ecological physiology, and cell biology. Due to the increasing realization that animals exist only within a partnership with symbionts, Zoology encourages submissions of papers focused on the analysis of holobionts or metaorganisms as associations of the macroscopic host in synergistic interdependence with numerous microbial and eukaryotic species. The editors and the editorial board are committed to presenting science at its best. The editorial team is regularly adjusting editorial practice to the ever changing field of animal biology.
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