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赫氏颗石藻(球石藻)作为颗石藻生物学的模式系统。

Gephyrocapsa huxleyi (Emiliania huxleyi) as a model system for coccolithophore biology.

机构信息

The Marine Biological Association of the United Kingdom, The Laboratory, Plymouth, UK.

School of Ocean and Earth Science, University of Southampton, Southampton, UK.

出版信息

J Phycol. 2023 Dec;59(6):1123-1129. doi: 10.1111/jpy.13404. Epub 2023 Nov 20.

Abstract

Coccolithophores are the most abundant calcifying organisms in modern oceans and are important primary producers in many marine ecosystems. Their ability to generate a cellular covering of calcium carbonate plates (coccoliths) plays a major role in marine biogeochemistry and the global carbon cycle. Coccolithophores also play an important role in sulfur cycling through the production of the climate-active gas dimethyl sulfide. The primary model organism for coccolithophore research is Emiliania huxleyi, now named Gephyrocapsa huxleyi. G. huxleyi has a cosmopolitan distribution, occupying coastal and oceanic environments across the globe, and is the most abundant coccolithophore in modern oceans. Research in G. huxleyi has identified many aspects of coccolithophore biology, from cell biology to ecological interactions. In this perspective, we summarize the key advances made using G. huxleyi and examine the emerging tools for research in this model organism. We discuss the key steps that need to be taken by the research community to advance G. huxleyi as a model organism and the suitability of other species as models for specific aspects of coccolithophore biology.

摘要

颗石藻是现代海洋中最丰富的钙化生物,也是许多海洋生态系统中重要的初级生产者。它们生成碳酸钙板(颗石)的细胞覆盖能力在海洋生物地球化学和全球碳循环中起着重要作用。颗石藻通过产生气候活性气体二甲基硫,在硫循环中也起着重要作用。颗石藻研究的主要模式生物是 Emiliania huxleyi,现在被命名为 Gephyrocapsa huxleyi。G. huxleyi 分布广泛,占据着全球沿海和海洋环境,是现代海洋中最丰富的颗石藻。对 G. huxleyi 的研究已经确定了颗石藻生物学的许多方面,从细胞生物学到生态相互作用。在这篇观点文章中,我们总结了使用 G. huxleyi 取得的关键进展,并考察了该模式生物中新兴的研究工具。我们讨论了研究界需要采取的关键步骤,以推进 G. huxleyi 作为模式生物的发展,并探讨了其他物种作为特定方面的颗石藻生物学模型的适宜性。

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