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A Series of Fortunate Events: Introducing Chlamydomonas as a Reference Organism

机译:一系列幸运的事件:衣原体作为参考生物的介绍

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摘要

The unicellular alga Chlamydomonas reinhardtii is a classical reference organism for studying photosynthesis, chloroplast biology, cell cycle control, and cilia structure and function. It is also an emerging model for studying sensory cilia, the production of high-value bioproducts, and in situ structural determination. Much of the early appeal of Chlamydomonas was rooted in its promise as a genetic system, but like other classic model organisms, this rise to prominence predated the discovery of the structure of DNA, whole-genome sequences, and molecular techniques for gene manipulation. The haploid genome of C. reinhardtii facilitates genetic analyses and offers many of the advantages of microbial systems applied to a photosynthetic organism. C. reinhardtii has contributed to our understanding of chloroplast-based photosynthesis and cilia biology. Despite pervasive transgene silencing, technological advances have allowed researchers to address outstanding lines of inquiry in algal research. The most thoroughly studied unicellular alga, C. reinhardtii, is the current standard for algal research, and although genome editing is still far from efficient and routine, it nevertheless serves as a template for other algae. We present a historical retrospective of the rise of C. reinhardtii to illuminate its past and present. We also present resources for current and future scientists who may wish to expand their studies to the realm of microalgae.
机译:单细胞藻类莱茵衣藻是研究光合作用,叶绿体生物学,细胞周期控制以及纤毛结构和功能的经典参考生物。它也是研究感官纤毛,高价值生物产品生产以及原位结构测定的新兴模型。衣藻的早期吸引力大部分源于其作为遗传系统的希望,但与其他经典模式生物一样,这种突出的优势早于发现DNA结构,全基因组序列和用于基因操作的分子技术。莱茵衣藻的单倍体基因组有助于遗传分析,并提供了应用于光合生物的微生物系统的许多优势。赖氏梭菌有助于我们对基于叶绿体的光合作用和纤毛生物学的理解。尽管普遍存在转基因沉默,但技术进步已使研究人员能够解决藻类研究中的突出研究领域。研究最深入的单细胞藻C. reinhardtii是目前藻类研究的标准,尽管基因组编辑仍然远非高效和常规,但它仍可作为其他藻类的模板。我们对C. reinhardtii的崛起进行历史回顾,以阐明其过去和现在。我们还为可​​能希望将其研究扩展到微藻领域的当前和未来科学家提供资源。

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