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Bisnorgammacerane traces predatory pressure and the persistent rise of algal ecosystems after Snowball Earth

机译:Bisnorgammacerane追踪雪球地球后掠夺性压力和藻类生态系统的持续上升

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摘要

Eukaryotic algae rose to ecological relevance after the Neoproterozoic Snowball Earth glaciations, but the causes for this consequential evolutionary transition remain enigmatic. Cap carbonates were globally deposited directly after these glaciations, but they are usually organic barren or thermally overprinted. Here we show that uniquely-preserved cap dolostones of the Araras Group contain exceptional abundances of a newly identified biomarker: 25,28-bisnorgammacerane. Its secular occurrence, carbon isotope systematics and co-occurrence with other demethylated terpenoids suggest a mechanistic connection to extensive microbial degradation of ciliate-derived biomass in bacterially dominated ecosystems. Declining 25,28-bisnorgammacerane concentrations, and a parallel rise of steranes over hopanes, indicate the transition from a bacterial to eukaryotic dominated ecosystem after the Marinoan deglaciation. Nutrient levels already increased during the Cryogenian and were a prerequisite, but not the ultimate driver for the algal rise. Intense predatory pressure by bacterivorous protists may have irrevocably cleared self-sustaining cyanobacterial ecosystems, thereby creating the ecological opportunity that allowed for the persistent rise of eukaryotic algae to global importance.
机译:在新元古代雪球地球冰川化之后,真核藻类上升到了生态相关性,但是这种随后的进化过渡的原因仍然是个谜。在发生这些冰川之后,碳酸盐碳酸盐直接沉积在全球范围内,但它们通常是有机贫瘠或热套印的。在这里,我们显示Araras集团唯一保存完好的帽白云岩含有大量新近鉴定的生物标志物:25,28-bisnorgammacerane。其长期发生,碳同位素系统化以及与其他去甲基萜类化合物的共存表明与细菌主导的生态系统中纤毛虫来源的生物质的广泛微生物降解有机械联系。 25,28-bisnorgammacercerane浓度的下降,以及甾烷类比hop烷类的平行上升,表明在Marinoan冰川消融之后,从细菌向真核生物为主的生态系统过渡。在低温期间营养水平已经增加,这是前提,但不是藻类上升的最终驱动力。细菌原生生物的强烈掠食压力可能已经清除了无法维持的自我维持的蓝细菌生态系统,从而创造了生态机会,使真核藻类持续增长至全球重要性。

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