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化石化实验揭示了化石黑素的真实分子信号,并证实了褐黑素在化石中的保存。

Taphonomic experiments reveal authentic molecular signals for fossil melanins and verify preservation of phaeomelanin in fossils.

机构信息

School of Biological, Earth and Environmental Sciences, University College Cork, Cork, Ireland.

Environmental Research Institute, University College Cork, Cork, Ireland.

出版信息

Nat Commun. 2023 Oct 6;14(1):5651. doi: 10.1038/s41467-023-40570-w.

Abstract

Melanin pigments play a critical role in physiological processes and shaping animal behaviour. Fossil melanin is a unique resource for understanding the functional evolution of melanin but the impact of fossilisation on molecular signatures for eumelanin and, especially, phaeomelanin is not fully understood. Here we present a model for the chemical taphonomy of fossil eumelanin and phaeomelanin based on thermal maturation experiments using feathers from extant birds. Our results reveal which molecular signatures are authentic signals for thermally matured eumelanin and phaeomelanin, which signatures are artefacts derived from the maturation of non-melanin molecules, and how these chemical data are impacted by sample preparation. Our model correctly predicts the molecular composition of eumelanins in diverse vertebrate fossils from the Miocene and Cretaceous and, critically, identifies direct molecular evidence for phaeomelanin in these fossils. This taphonomic framework adds to the geochemical toolbox that underpins reconstructions of melanin evolution and of melanin-based coloration in fossil vertebrates.

摘要

黑色素在生理过程和动物行为塑造中起着关键作用。化石黑色素是理解黑色素功能进化的独特资源,但化石化对真黑色素,特别是褐黑色素的分子特征的影响还不完全清楚。在这里,我们根据现生鸟类羽毛的热成熟实验,提出了一个化石真黑色素和褐黑色素的化学埋藏模型。我们的结果揭示了哪些分子特征是热成熟真黑色素和褐黑色素的真实信号,哪些特征是源自非黑色素分子成熟的人为产物,以及这些化学数据如何受到样品制备的影响。我们的模型正确预测了来自中新世和白垩纪的不同脊椎动物化石中的真黑色素的分子组成,而且关键是,在这些化石中鉴定了褐黑色素的直接分子证据。这个埋藏学框架增加了支持黑色素进化和化石脊椎动物中基于黑色素的颜色重建的地球化学工具包。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3072/10558522/806774830638/41467_2023_40570_Fig1_HTML.jpg

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