Department of Cell and Molecular Biology, University of Rhode Island, Kingston, RI, USA.
Methods Mol Biol. 2022;2364:251-295. doi: 10.1007/978-1-0716-1661-1_13.
The cytoskeletons of eukaryotic, cilioprotist microorganisms are complex, highly patterned, and diverse, reflecting the varied and elaborate swimming, feeding, reproductive, and sensory behaviors of the multitude of cilioprotist species that inhabit the aquatic environment. In the past 10-20 years, many new discoveries and technologies have helped to advance our understanding of how cytoskeletal organelles are assembled in many different eukaryotic model systems, in relation to the construction and modification of overall cellular architecture and function. Microtubule organizing centers, particularly basal bodies and centrioles, have continued to reveal their central roles in architectural engineering of the eukaryotic cell, including in the cilioprotists. This review calls attention to (1) published resources that illuminate what is known of the cilioprotist cytoskeleton; (2) recent studies on cilioprotists and other model organisms that raise specific questions regarding whether basal body- and centriole-associated nucleic acids, both DNA and RNA, should continue to be considered when seeking to employ cilioprotists as model systems for cytoskeletal research; and (3) new, mainly imaging, technologies that have already proven useful for, but also promise to enhance, future cytoskeletal research on cilioprotists.
真核生物、纤毛生物的细胞骨架复杂、高度模式化且多样,反映了水生环境中众多纤毛生物物种多样化和精巧的游动、摄食、繁殖和感觉行为。在过去的 10-20 年中,许多新的发现和技术帮助我们更好地理解了细胞骨架细胞器在许多不同的真核模型系统中是如何组装的,与整体细胞结构和功能的构建和修饰有关。微管组织中心,特别是基体和中心粒,继续揭示它们在真核细胞结构工程中的核心作用,包括在纤毛生物中。这篇综述提请注意:(1)阐明纤毛生物细胞骨架的现有资源;(2)关于纤毛生物和其他模式生物的最新研究,这些研究提出了一些具体问题,即当试图将基体和中心粒相关的核酸(包括 DNA 和 RNA)作为细胞骨架研究的模型系统时,是否应该继续考虑它们;(3)新的、主要是成像技术,已经证明对未来纤毛生物的细胞骨架研究有用,并有望进一步增强。