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小型颗石藻在亚热带和热带东北大西洋的显著 CO2 固定作用。

Significant CO2 fixation by small prymnesiophytes in the subtropical and tropical northeast Atlantic Ocean.

机构信息

Department of Biological Sciences, University of Warwick, Coventry, UK.

出版信息

ISME J. 2010 Sep;4(9):1180-92. doi: 10.1038/ismej.2010.36. Epub 2010 Apr 15.

Abstract

Global estimates indicate the oceans are responsible for approximately half of the carbon dioxide fixed on Earth. Organisms < or =5 microm in size dominate open ocean phytoplankton communities in terms of abundance and CO(2) fixation, with the cyanobacterial genera Prochlorococcus and Synechococcus numerically the most abundant and more extensively studied compared with small eukaryotes. However, the contribution of specific taxonomic groups to marine CO(2) fixation is still poorly known. In this study, we show that among the phytoplankton, small eukaryotes contribute significantly to CO(2) fixation (44%) because of their larger cell volume and thereby higher cell-specific CO(2) fixation rates. Within the eukaryotes, two groups, herein called Euk-A and Euk-B, were distinguished based on their flow cytometric signature. Euk-A, the most abundant group, contained cells 1.8+/-0.1 microm in size while Euk-B was the least abundant but cells were larger (2.8+/-0.2 microm). The Euk-B group comprising prymnesiophytes (73+/-13%) belonging largely to lineages with no close cultured counterparts accounted for up to 38% of the total primary production in the subtropical and tropical northeast Atlantic Ocean, suggesting a key role of this group in oceanic CO(2) fixation.

摘要

全球估计表明,海洋约占地球上固定二氧化碳的一半。在丰度和 CO2固定方面,大小为<或=5 微米的生物主导着开阔海洋浮游植物群落,与小型真核生物相比,蓝细菌属聚球藻和聚球藻在数量上更为丰富,研究也更为广泛。然而,特定分类群对海洋 CO2固定的贡献仍然知之甚少。在这项研究中,我们表明,在浮游植物中,由于其较大的细胞体积,从而具有更高的细胞特异性 CO2固定率,小型真核生物对 CO2固定的贡献显著(44%)。在真核生物中,根据其流式细胞术特征将两个组,称为 Euk-A 和 Euk-B,区分开来。Euk-A 是最丰富的组,包含大小为 1.8+/-0.1 微米的细胞,而 Euk-B 是最不丰富的,但细胞更大(2.8+/-0.2 微米)。Euk-B 组包括甲藻(73+/-13%),主要属于没有密切培养对应物的谱系,在亚热带和热带北大西洋占总初级生产力的 38%,表明该组在海洋 CO2固定中发挥关键作用。

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