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Shape analysis of filamentous Precambrian microfossils and modern cyanobacteria

机译:丝状前寒武纪微化石的形态分析和现代蓝细菌

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Variations in the orientation and cross-sectional shape of filamentous microfossils provide quantitative measures for characterizing them and probing their native mechanical structure. Here, we determine the tangent correlation length, which is the characteristic length scale for the variation in direction of a sinuous curve, for both a suite of Precambrian filamentous microfossils and six strains of modern filamentous cyanobacteria, all with diameters of a few microns. Among 1.92-Ga microfossils, Gunflintia grandis, Gunflintia minuta and Eomycetopsis filiformis possess, respectively, correlation lengths of 360 ± 40 m, 670 ± 40 m and 700 ± 100 m in two dimensions. Hundreds of times larger than the filament diameters, these values lie in the same range as the cyanobacteria Geitlerinema and Pseudanabaena, but are smaller than several strains of Oscillatoria. In contrast, the 2-Ga microfossil trichome Halythrix, is found to have a short correlation length of 29 ± 4 m in two dimensions. Micron-wide pyritic replacement filaments observed in 3.23-Ga volcanogenic deposits also display a modest correlation length of 100 ± 15 m in two dimensions. Sequences of species in two genera of our modern cyanobacteria possess tangent correlation lengths that rise as a power of the filament diameter DD~(3.3 ± 1) for Oscillatoria and D ~(5.1 ± 1) for Geitlerinema. These results can be compared with power-law scaling of D~3 for hollow tubes and D~4 for solid cylinders that is expected from continuum mechanics. Extrapolating the observed scaling behavior to smaller filament diameters, the measured correlation length of the pyrite filaments is consistent with modern Geitlerinema whereas that of Halythrix lies not far from modern Oscillatoria, suggesting that there may be structural similarities among these genera.
机译:丝状微化石的方向和横截面形状的变化提供了表征其特性和探测其天然机械结构的定量方法。在这里,我们确定正切相关长度,这是一套前寒武纪丝状微化石和六种现代丝状蓝细菌菌株的正弦曲线方向变化的特征长度尺度,它们的直径均为几微米。在1.92-Ga微化石中,Gunflintia grandis,Gunflintia minuta和Eomycetopsis filiformis的二维相关长度分别为360±40 m,670±40 m和700±100 m。这些值比细丝直径大数百倍,与蓝细菌芽孢杆菌和假单胞菌属在同一范围内,但小于几株颤藻。相反,发现2-Ga微化石的毛状体Halythrix在二维上具有短的相关长度29±4m。在3.23-Ga火山沉积物中观察到的微米级黄铁矿置换丝在二维中也显示出100±15 m的适度相关长度。我们现代蓝细菌的两个属中的物种序列具有切线相关长度,而切线相关长度随颤藻的细丝直径DD〜(3.3±1)和地灵藻的D〜(5.1±1)的幂而增加。这些结果可以与连续力学所期望的中空管D〜3和实心圆柱体D〜4的幂律定标进行比较。将观察到的结垢行为推断为较小的细丝直径,黄铁矿细丝的相关长度测量结果与现代盖特勒勒马瘤一致,而Halythrix的相关长度与现代Oscillatoria相距不远,这表明这些属之间可能存在结构相似性。

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