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碳同位素证据表明,前寒武纪蓝藻具有全球生理学特性。

Carbon isotope evidence for the global physiology of Proterozoic cyanobacteria.

机构信息

Department of Geological Sciences, University of Colorado Boulder, Boulder, CO 80302, USA.

Renewable and Sustainable Energy Institute, University of Colorado, Boulder, CO 80309, USA.

出版信息

Sci Adv. 2021 Jan 6;7(2). doi: 10.1126/sciadv.abc8998. Print 2021 Jan.

Abstract

Ancestral cyanobacteria are assumed to be prominent primary producers after the Great Oxidation Event [≈2.4 to 2.0 billion years (Ga) ago], but carbon isotope fractionation by extant marine cyanobacteria (α-cyanobacteria) is inconsistent with isotopic records of carbon fixation by primary producers in the mid-Proterozoic eon (1.8 to 1.0 Ga ago). To resolve this disagreement, we quantified carbon isotope fractionation by a wild-type planktic β-cyanobacterium ( sp. PCC 7002), an engineered Proterozoic analog lacking a CO-concentrating mechanism, and cyanobacterial mats. At mid-Proterozoic pH and CO values, carbon isotope fractionation by the wild-type β-cyanobacterium is fully consistent with the Proterozoic carbon isotope record, suggesting that cyanobacteria with CO-concentrating mechanisms were apparently the major primary producers in the pelagic Proterozoic ocean, despite atmospheric CO levels up to 100 times modern. The selectively permeable microcompartments central to cyanobacterial CO-concentrating mechanisms ("carboxysomes") likely emerged to shield rubisco from O during the Great Oxidation Event.

摘要

祖先蓝细菌被认为是大氧化事件[约 24 亿至 20 亿年前]后主要的初级生产者,但现存海洋蓝细菌(α-蓝细菌)的碳同位素分馏与中元古代(18 亿至 10 亿年前)初级生产者固碳的同位素记录不一致。为了解决这一分歧,我们量化了野生型浮游β-蓝细菌( sp. PCC 7002)、缺乏 CO 浓缩机制的工程化元古代类似物和蓝细菌垫的碳同位素分馏。在中元古代 pH 值和 CO 值下,野生型β-蓝细菌的碳同位素分馏与元古代的碳同位素记录完全一致,这表明尽管大气 CO 水平高达现代水平的 100 倍,但具有 CO 浓缩机制的蓝细菌显然是元古代海洋浮游生物的主要初级生产者。蓝细菌 CO 浓缩机制的选择性渗透微区(“羧化体”)的中心可能是为了在大氧化事件期间保护 Rubisco 免受 O 的侵害而出现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51fb/7787495/6ec57d4a1112/abc8998-F1.jpg

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