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红麴象甲 3D 标准脑:研究变态发育和成年可塑性的工具。

3D Standard Brain of the Red Flour Beetle Tribolium Castaneum: A Tool to Study Metamorphic Development and Adult Plasticity.

机构信息

Department of Biology, Animal Physiology, Philipps-University Marburg Marburg, Germany.

出版信息

Front Syst Neurosci. 2010 Mar 3;4:3. doi: 10.3389/neuro.06.003.2010. eCollection 2010.

Abstract

The red flour beetle Tribolium castaneum is emerging as a further standard insect model beside Drosophila. Its genome is fully sequenced and it is susceptible for genetic manipulations including RNA-interference. We use this beetle to study adult brain development and plasticity primarily with respect to the olfactory system. In the current study, we provide 3D standard brain atlases of freshly eclosed adult female and male beetles (A0). The atlases include eight paired and three unpaired neuropils including antennal lobes (ALs), optic lobe neuropils, mushroom body calyces and pedunculi, and central complex. For each of the two standard brains, we averaged brain areas of 20 individual brains. Additionally, we characterized eight selected olfactory glomeruli from 10 A0 female and male beetles respectively, which we could unequivocally recognize from individual to individual owing to their size and typical position in the ALs. In summary, comparison of the averaged neuropil volumes revealed no sexual dimorphism in any of the reconstructed neuropils in A0 Tribolium brains. Both, the female and male 3D standard brain are also used for interspecies comparisons, and, importantly, will serve as future volumetric references after genetical manipulation especially regarding metamorphic development and adult plasticity.

摘要

红粉甲虫赤拟谷盗正在成为继果蝇之后的另一种标准昆虫模型。它的基因组已经完全测序,并且易于进行遗传操作,包括 RNA 干扰。我们使用这种甲虫来研究成年大脑的发育和可塑性,主要是针对嗅觉系统。在当前的研究中,我们提供了刚羽化的成年雌性和雄性甲虫(A0)的 3D 标准大脑图谱。图谱包括 8 对和 3 个不成对的神经节,包括触角叶(AL)、视叶神经节、蕈形体卷须和柄,以及中央复合体。对于两个标准大脑中的每一个,我们平均了 20 个个体大脑的脑区。此外,我们分别对 10 只 A0 雌性和雄性甲虫的 8 个选定的嗅觉小球进行了特征描述,由于它们的大小和在 ALs 中的典型位置,我们可以将其从个体到个体进行明确识别。总的来说,对平均神经节体积的比较表明,在 A0 赤拟谷盗大脑的任何重建神经节中都没有性别二态性。雌性和雄性的 3D 标准大脑也可用于种间比较,并且重要的是,在进行遗传操作后,特别是在变态发育和成年可塑性方面,它们将作为未来的体积参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2704/2845059/62319a00be91/fnsys-04-003-g001.jpg

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