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首页> 外文期刊>Science Advances >Phylogenetic and physiological signals in metazoan fossil biomolecules
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Phylogenetic and physiological signals in metazoan fossil biomolecules

机译:甲基化石生物分子中的系统发育和生理信号

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摘要

Proteins, lipids, and sugars establish animal form and function. However, the preservation of biological signals in fossil organic matter is poorly understood. Here, we used high-resolution in situ Raman microspectroscopy to analyze the molecular compositions of 113 Phanerozoic metazoan fossils and sediments. Proteins, lipids, and sugars converge in composition during fossilization through lipoxidation and glycoxidation to form endogenous N-, O-, and S-heterocyclic polymers. Nonetheless, multivariate spectral analysis reveals molecular heterogeneities: The relative abundance of glycoxidation and lipoxidation products distinguishes different tissue types. Preserved chelating ligands are diagnostic of different modes of biomineralization. Amino acid–specific fossilization products retain phylogenetic information and capture higher-rank metazoan relationships. Molecular signals survive in deep time and provide a powerful tool for reconstructing the evolutionary history of animals.
机译:蛋白质,脂质和糖建立动物形式和功能。然而,化石有机物质中的生物学信号的保存较差。在这里,我们使用高分辨率原位拉曼微型光谱检查,分析113个PhanoRooico o聚氮化石化石和沉积物的分子组成。蛋白质,脂质和糖通过富氧化和烯氧化在溶化物期间通过富氧化和糖氧化形成内源性N-,O-和S-杂环聚合物。尽管如此,多变量光谱分析揭示了分子异质性:甘醇氧化和富氧化产物的相对丰度区分了不同的组织类型。保存的螯合配体是对不同生物矿化模式的诊断。氨基酸特异性渗透产物保留系统发育信息并捕获更高级别的美唑烷关系。分子信号在深度时间内存活,并提供了一种重建动物进化历史的强大工具。

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