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PYRITIZED CRYOGENIAN CYANOBACTERIAL FOSSILS FROM ARCTIC ALASKA

机译:来自北极阿拉斯加的蠕动低温y樱桃化石化石

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摘要

The Cryogenian was a time of climatic extremes, with two extended and severe global glaciations bracketing hothouse conditions. The effect of these extreme climate conditions on ocean chemistry and the marine biosphere remain poorly understood. Most of the previous studies of the fossil record from this interval focus on benthic organisms, with few examples of organisms with an inferred planktonic lifestyle and no firm evidence for photosynthetic organisms. Here, we present helically coiled, straight, and curved fossils composed of fine crystalline or framboidal pyrite in limestone samples from the Ikiakpuk formation of Arctic Alaska. These structures are morphologically identical to fossils of Obruchevella, a cyanobacterial form genus reported in pre-Sturtian and post-Marinoan strata, but not in deposits from the Cryogenian non-glacial interlude. We interpret fossils of the Ikiakpuk formation as planktonic cyanobacteria based on their morphology, which is identical to that of some modern planktonic cyanobacteria. Further evidence for a planktonic lifestyle comes from the preservation of these pyritized fossils in deep-water facies that lack evidence of microbial lamination. They provide the first direct evidence for bacterial primary productivity in the pelagic realm during the Cryogenian non-glacial interlude.
机译:低温源是气候极端的时期,具有两个延长和严重的全球冰川般的冰川般的冰川条件。这些极端气候条件对海洋化学和海洋生物圈的影响仍然明白。从这种间隔的前一种研究中的大部分研究都关注底栖生物,少数有生物体的例子,具有推断的浮游生植物的生活方式,没有坚定的光合生物证据。在这里,我们呈螺旋盘绕,直的和弯曲的化石,由石灰石样品中的细晶或Framidal硫铁矿组成,来自北极阿拉斯加的Ikiakpuk形成。这些结构与Obruchevella的化石形态相同,在斯特里亚前和玛基菌后的岩石中报道的蓝细菌形式属,但不含来自低温的非冰川间隔的沉积物。根据其形态,我们将Ikiakpuk形成的化石解释为浮游生物的藻酸酯,这与一些现代浮游菌的肌菌相同。浮游生物生活方式的进一步证据来自在缺乏微生物层压证据的深水相中保存这些蒸馏化石。它们在低温原始非冰川间隔期间提供了在Pelagic Realm中的细菌初级生产率的第一种直接证据。

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