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首页> 外文期刊>Nature Communications >Fibres and cellular structures preserved in 75-million-year-old dinosaur specimens (vol 6, 7352, 2015)
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Fibres and cellular structures preserved in 75-million-year-old dinosaur specimens (vol 6, 7352, 2015)

机译:保存在7500万年前的恐龙标本中的纤维和细胞结构(第6卷,7352年,2015年)

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摘要

Exceptionally preserved organic remains are known throughout the vertebrate fossil record, and recently, evidence has emerged that such soft tissue might contain original components. We examined samples from eight Cretaceous dinosaur bones using nano-analytical techniques; the bones are not exceptionally preserved and show no external indication of soft tissue. In one sample, we observe structures consistent with endogenous collagen fibre remains displaying similar to 67nm banding, indicating the possible preservation of the original quaternary structure. Using ToF-SIMS, we identify amino-acid fragments typical of collagen fibrils. Furthermore, we observe structures consistent with putative erythrocyte remains that exhibit mass spectra similar to emu whole blood. Using advanced material characterization approaches, we find that these putative biological structures can be well preserved over geological timescales, and their preservation is more common than previously thought. The preservation of protein over geological timescales offers the opportunity to investigate relationships, physiology and behaviour of long extinct animals.
机译:整个脊椎动物化石记录中都知道保存得非常完好的有机残留物,最近,有证据表明这种软组织可能含有原始成分。我们使用纳米分析技术检查了八只白垩纪恐龙骨骼的样品。骨头没有被特别保存,也没有外部迹象表明软组织。在一个样品中,我们观察到与内源性胶原纤维残留物相一致的结构显示出类似于67nm的条带,表明可能保留了原始四元结构。使用ToF-SIMS,我们可以识别出胶原纤维的典型氨基酸片段。此外,我们观察到与推定的红细胞残基一致的结构,这些残基显示出与e全血相似的质谱。使用先进的材料表征方法,我们发现这些推定的生物学结构可以在地质时间尺度上得到很好的保存,并且其保存比以前认为的更为普遍。在地质时间尺度上保存蛋白质为研究长期灭绝动物的关系,生理和行为提供了机会。

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