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颗石藻细胞生物学:不断取得进展。

Coccolithophore Cell Biology: Chalking Up Progress.

机构信息

Department of Biology and Marine Biology, University of North Carolina Wilmington, Wilmington, North Carolina 28403; email:

Marine Biological Association, Plymouth PL1 2PB, United Kingdom; email:

出版信息

Ann Rev Mar Sci. 2017 Jan 3;9:283-310. doi: 10.1146/annurev-marine-122414-034032. Epub 2016 Oct 28.

Abstract

Coccolithophores occupy a special position within the marine phytoplankton because of their production of intricate calcite scales, or coccoliths. Coccolithophores are major contributors to global ocean calcification and long-term carbon fluxes. The intracellular production of coccoliths requires modifications to cellular ultrastructure and metabolism that are surveyed here. In addition to calcification, which appears to have evolved with a diverse range of functions, several other remarkable features that likely underpin the ecological and evolutionary success of coccolithophores have recently been uncovered. These include complex and varied life cycle strategies related to abiotic and biotic interactions as well as a range of novel metabolic pathways and nutritional strategies. Together with knowledge of coccolithophore genetic and physiological variability, these findings are beginning to shed new light on species diversity, distribution, and ecological adaptation. Further advances in genetics and functional characterization at the cellular level will likely to lead to a rapid increase in this understanding.

摘要

颗石藻在海洋浮游植物中占据特殊地位,因为它们能够产生复杂的方解石鳞片,即颗石。颗石藻是全球海洋钙化和长期碳通量的主要贡献者。细胞内颗石的产生需要对细胞超微结构和代谢进行改造,这里对此进行了综述。除了钙化作用(似乎具有多种功能)之外,最近还发现了其他几个显著特征,这些特征可能是颗石藻在生态和进化上取得成功的基础。这些特征包括与非生物和生物相互作用相关的复杂多样的生命周期策略,以及一系列新的代谢途径和营养策略。结合对颗石藻遗传和生理变异性的了解,这些发现开始揭示物种多样性、分布和生态适应性的新情况。在细胞水平上,遗传学和功能特征的进一步进展可能会迅速提高我们对这些情况的理解。

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