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富氧气泡的形成和稳定性决定了光合垫的形态。

Formation and stability of oxygen-rich bubbles that shape photosynthetic mats.

机构信息

EAPS, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Geobiology. 2010 Jan;8(1):45-53, 53-5. doi: 10.1111/j.1472-4669.2009.00227.x.

Abstract

Gas release in photic-zone microbialites can lead to preservable morphological biosignatures. Here, we investigate the formation and stability of oxygen-rich bubbles enmeshed by filamentous cyanobacteria. Sub-millimetric and millimetric bubbles can be stable for weeks and even months. During this time, lithifying organic-rich laminae surrounding the bubbles can preserve the shape of bubbles. Cm-scale unstable bubbles support the growth of centimetric tubular towers with distinctly laminated mineralized walls. In environments that enable high photosynthetic rates, only small stable bubbles will be enclosed by a dense microbial mesh, while in deep waters extensive microbial mesh will cover even larger photosynthetic bubbles, increasing their preservation potential. Stable photosynthetic bubbles may be preserved as sub-millimeter and millimeter-diameter features with nearly circular cross-sections in the crests of some Proterozoic conical stromatolites, while centrimetric tubes formed around unstable bubbles provide a model for the formation of tubular carbonate microbialites that are not markedly depleted in (13)C.

摘要

微生物岩透光带中的气体释放可能导致可保存的形态生物特征。在这里,我们研究了富氧气泡的形成和稳定性,这些气泡被丝状蓝细菌包裹着。亚毫米级和毫米级的气泡可以稳定数周甚至数月。在此期间,围绕气泡形成的富含有机质的纹层可以保存气泡的形状。厘米级不稳定的气泡支持厘米级管状塔的生长,这些管状塔具有明显分层的矿化壁。在能够实现高光合作用率的环境中,只有小的稳定气泡会被密集的微生物网包围,而在深水中,广泛的微生物网甚至会覆盖更大的光合作用气泡,从而增加它们的保存潜力。稳定的光合作用气泡可能以近圆形的横截面被保存为亚毫米级和毫米级直径的特征,在一些前寒武纪锥形叠层石的峰顶上;而围绕不稳定气泡形成的厘米级管提供了一个模型,用于形成在 (13)C 上没有明显亏损的管状碳酸盐微生物岩。

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