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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Molecular taphonomy of animal and plant cuticles: selective preservation and diagenesis
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Molecular taphonomy of animal and plant cuticles: selective preservation and diagenesis

机译:动植物表皮的分子拓扑学:选择性保存和成岩作用

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The nature of organic material and the environment in which it is deposited exert a major influence on the extent to which biomacromolecules are preserved in the fossil record. The role of these factors is explored with a particular focus on the cuticle of arthropods and leaves. Preservation of the original chemistry of arthropod cuticles is favoured by their thickness and degree of sclerotization, and the presence of biominerals. Decay and burial in terrestrial as opposed to marine, and anoxic rather than oxygenated conditions, likewise appear to enhance preservation. The most important factor in the longterm preservation of the chemistry of both animal and plant cuticles, however, is diagenetic alteration to an aliphatic composition. This occurs even in amber, which encapsulates the fossil, eliminating almost all external factors. Some plants contain an original decay-resistant macromolecular aliphatic component but this is not the case in arthropods. It appears that the aliphatic components of many plant as well as animal fossils may be the result of diagenetic polymerization. Selective preservation as a result of decay resistance may explain the initial survival of organic materials in sediments, but in many cases longerterm preservation relies on chemical changes. Selective preservation is only a partial explanation for the origin of kerogen.
机译:有机材料的性质和沉积环境对生物大分子在化石记录中的保存程度具有重要影响。探讨了这些因素的作用,特别是节肢动物和叶子的表皮。节肢动物角质层的厚度和硬化程度以及生物矿物质的存在有利于保存节肢动物角质层的原始化学性质。与海洋相反,在缺氧而不是氧化的条件下,陆地的腐烂和埋葬似乎也增强了保存能力。然而,长期保存动植物角质层化学的最重要因素是脂肪族成分的成岩作用。即使在琥珀中也是如此,琥珀将化石包裹起来,几乎消除了所有外部因素。一些植物含有原始的抗衰变的大分子脂肪族成分,但节肢动物却并非如此。看来许多植物和动物化石中的脂肪族成分可能是成岩聚合作用的结果。耐腐性导致的选择性保存可能解释了沉积物中有机物质的初始存活,但在许多情况下,更长期的保存取决于化学变化。选择性保存只是干酪根来源的部分解释。

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