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Evidence of preserved collagen in an Early Jurassic sauropodomorph dinosaur revealed by synchrotron FTIR microspectroscopy

机译:同步加速器FTIR光谱显示早期侏罗纪蜥脚类恐龙中保存的胶原蛋白的证据

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摘要

Fossilized organic remains are important sources of information because they provide a unique form of biological and evolutionary information, and have the long-term potential for genomic explorations. Here we report evidence of protein preservation in a terrestrial vertebrate found inside the vascular canals of a rib of a 195-million-year-old sauropodomorph dinosaur, where blood vessels and nerves would normally have been present in the living organism. The in situ synchrotron radiation-based Fourier transform infrared (SR-FTIR) spectra exhibit the characteristic infrared absorption bands for amide A and B, amide I, II and III of collagen. Aggregated haematite particles (α-Fe2O3) about 6∼8 μm in diameter are also identified inside the vascular canals using confocal Raman microscopy, where the organic remains were preserved. We propose that these particles likely had a crucial role in the preservation of the proteins, and may be remnants partially contributed from haemoglobin and other iron-rich proteins from the original blood.
机译:僵化的有机残留物是重要的信息来源,因为它们提供了独特的生物学和进化信息形式,并且具有进行基因组勘探的长期潜力。在这里,我们报告了在一个拥有1.95亿年历史的蜥脚类恐龙的肋骨的血管通道内发现的陆生脊椎动物中蛋白质保存的证据,该血管和神经通常会存在于活生物体中。基于原位同步加速器辐射的傅立叶变换红外光谱(SR-FTIR)表现出胶原蛋白A和B,酰胺I,II和III的特征红外吸收带。使用共聚焦拉曼显微镜还可以在血管内发现直径约6-8μm的聚集的赤铁矿颗粒(α-Fe2O3),保留有机物。我们认为这些颗粒可能在蛋白质的保存中起着至关重要的作用,并且可能是血红蛋白和来自原始血液的其他富含铁的蛋白质的部分残留。

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