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Archaeal imaging: leading the hunt for new discoveries

机译:archaeal成像:引导追捕新发现

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Since the identification of the archaeal domain in the mid-1970s, we have collected a great deal of metagenomic, biochemical, and structural information from archaeal species. However, there is still little known about how archaeal cells organize their internal cellular components in space and time. In contrast, live-cell imaging has allowed bacterial and eukaryotic cell biologists to learn a lot about biological processes by observing the motions of cells, the dynamics of their internal organelles, and even the motions of single molecules. The explosion of knowledge gained via live-cell imaging in prokaryotes and eukaryotes has motivated an ever-improving set of imaging technologies that could allow analogous explorations into archaeal biology. Furthermore, previous studies of essential biological processes in prokaryotic and eukaryotic organisms give methodological roadmaps for the investigation of similar processes in archaea. In this perspective, we highlight a few fundamental cellular processes in archaea, reviewing our current state of understanding about each, and compare how imaging approaches helped to advance the study of similar processes in bacteria and eukaryotes.
机译:自20世纪70年代中期识别古代域,我们从古代物种中收集了大量的偏见,生化和结构信息。然而,古老的细胞如何在空间和时间内组织内部细胞组分的情况毫无疑问。相比之下,活细胞成像使细菌和真核细胞生物学家通过观察细胞的运动,其内部细胞器的动力学,甚至是单分子的运动来了解生物过程的许多关于生物学过程。通过原核生物和真核生物中的活细胞成像获得的知识爆炸具有促进了一套可生活的成像技术,可以允许探索古代生物学。此外,先前的原核和真核生物中的基本生物学过程的研究提供了用于调查古痤疮类似过程的方法论路线图。在这种观点中,我们突出了亚基的一些基本的细胞过程,审查了我们目前的对各自的理解状态,并比较了成像方法有助于推进细菌和真核生物中类似过程的研究。

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