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非侵入性长时荧光活体成像技术在赤拟谷盗胚胎中的应用。

Non-invasive long-term fluorescence live imaging of Tribolium castaneum embryos.

机构信息

Physical Biology/Physikalische Biologie (IZN, FB 15), Buchmann Institute for Molecular Life Sciences (BMLS), Cluster of Excellence Frankfurt - Macromolecular Complexes (CEF - MC), Goethe University - Frankfurt am Main (Campus Riedberg), Max-von-Laue-Straße 15, Frankfurt am Main D-60348, Germany.

Physical Biology/Physikalische Biologie (IZN, FB 15), Buchmann Institute for Molecular Life Sciences (BMLS), Cluster of Excellence Frankfurt - Macromolecular Complexes (CEF - MC), Goethe University - Frankfurt am Main (Campus Riedberg), Max-von-Laue-Straße 15, Frankfurt am Main D-60348, Germany

出版信息

Development. 2014 Jun;141(11):2331-8. doi: 10.1242/dev.108795. Epub 2014 May 6.

Abstract

Insect development has contributed significantly to our understanding of metazoan development. However, most information has been obtained by analyzing a single species, the fruit fly Drosophila melanogaster. Embryonic development of the red flour beetle Tribolium castaneum differs fundamentally from that of Drosophila in aspects such as short-germ development, embryonic leg development, extensive extra-embryonic membrane formation and non-involuted head development. Although Tribolium has become the second most important insect model organism, previous live imaging attempts have addressed only specific questions and no long-term live imaging data of Tribolium embryogenesis have been available. By combining light sheet-based fluorescence microscopy with a novel mounting method, we achieved complete, continuous and non-invasive fluorescence live imaging of Tribolium embryogenesis at high spatiotemporal resolution. The embryos survived the 2-day or longer imaging process, developed into adults and produced fertile progeny. Our data document all morphogenetic processes from the rearrangement of the uniform blastoderm to the onset of regular muscular movement in the same embryo and in four orientations, contributing significantly to the understanding of Tribolium development. Furthermore, we created a comprehensive chronological table of Tribolium embryogenesis, integrating most previous work and providing a reference for future studies. Based on our observations, we provide evidence that serosa window closure and serosa opening, although deferred by more than 1 day, are linked. All our long-term imaging datasets are available as a resource for the community. Tribolium is only the second insect species, after Drosophila, for which non-invasive long-term fluorescence live imaging has been achieved.

摘要

昆虫发育为我们理解后生动物的发育做出了重要贡献。然而,大多数信息是通过分析单一物种——黑腹果蝇 Drosophila melanogaster 获得的。红粉甲虫 Tribolium castaneum 的胚胎发育在短原肠胚发育、胚胎腿发育、广泛的额外胚膜形成和非卷入式头部发育等方面与果蝇的胚胎发育有根本的不同。尽管 Tribolium 已成为第二种最重要的昆虫模式生物,但之前的活体成像尝试仅解决了特定问题,并且没有 Tribolium 胚胎发生的长期活体成像数据。通过将基于光片的荧光显微镜与一种新的装片方法相结合,我们实现了 Tribolium 胚胎发生的完整、连续和非侵入性荧光活体成像,具有高时空分辨率。胚胎在 2 天或更长时间的成像过程中存活下来,发育成成虫并产生了有生育能力的后代。我们的数据记录了从均匀的囊胚重排到在同一胚胎和四个方向上开始有规律的肌肉运动的所有形态发生过程,对理解 Tribolium 的发育有重要贡献。此外,我们创建了一个综合性的 Tribolium 胚胎发生时间图表,整合了大多数以前的工作,并为未来的研究提供了参考。基于我们的观察,我们提供了证据表明,虽然浆膜窗关闭和浆膜打开被推迟了 1 天以上,但它们是相关联的。我们所有的长期成像数据集都可供社区使用。Tribolium 是继 Drosophila 之后第二种实现非侵入性长期荧光活体成像的昆虫。

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