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Molecular Paleohydrology: Interpreting the Hydrogen-Isotopic Composition of Lipid Biomarkers from Photosynthesizing Organisms

机译:分子古水文:从光合作用生物解释脂质生物标志物的氢同位素组成。

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摘要

Hydrogen-isotopic abundances of lipid biomarkers are emerging as impor tant proxies in the study of ancient environments and ecosystems. A decade ago, pioneering studies made use of new analytical methods and demonstrated that the hydrogen-isotopic composition of individual lipids from aquatic and terrestrial organisms can be related to the composition of their growth (i.e., environmental) water. Subsequently, compound-specific deuterium/hydrogen (D/H) ratios of sedimentary biomarkers have been increasingly used as paleohydrological proxies over a range of geological timescales. Isotopic fractionation observed between hydrogen in environmental water and hydrogen in lipids, however, is sensitive to biochemical, physiological, and environmental influences on the composition of hydrogen available for biosynthesis in cells. Here we review the factors and processes that are known to influence the hydrogen-isotopic compositions of lipids—especially n-alkanes—from photosynthesizing organisms, and we provide a framework for interpreting their D/H ratios from ancient sediments and identify futur research opportunities.
机译:脂质生物标志物的氢同位素丰度正在作为古代环境和生态系统研究中的重要代表而出现。十年前,开拓性研究使用了新的分析方法,并证明了水生和陆生生物中单个脂质的氢同位素组成可能与其生长(即环境)水的组成有关。随后,沉积生物标志物的化合物特异性氘/氢(D / H)比在一定的地质时标范围内已越来越多地用作古水文代理。然而,在环境水中的氢和脂质中的氢之间观察到的同位素分馏对生物化学,生理学和环境影响对可用于细胞内生物合成的氢组成敏感。在这里,我们回顾了已知影响光合作用生物脂类的氢同位素组成(尤其是正构烷烃)的因素和过程,并提供了一个解释古沉积物中D / H比率的框架,并确定了未来的研究机会。

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