首页> 外文期刊>Journal of Archaeological Science >Diagenetic effects on pyrolysis fingerprints of extracted collagen in archaeological human bones from NW Spain, as determined by pyrolysis-GC-MS
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Diagenetic effects on pyrolysis fingerprints of extracted collagen in archaeological human bones from NW Spain, as determined by pyrolysis-GC-MS

机译:热解-GC-MS法测定西班牙西北部考古人类骨骼中提取的胶原蛋白对热解指纹的成岩作用

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Ancient collagen is used as archive for multiple pre-mortem traits. Testing the quality of the collagen extract is a common concern of those who engage in the reconstruction of ancient diets. The aim of this study is to improve our understanding of the pyrolysis fingerprints of human bone collagen especially in relation with diagenetic alteration. Pyrolysis-GC-MS was applied to 28 collagen samples extracted from archaeological human bone, corresponding to different chronological periods (Bronze Age to post Medieval period; 1900 BC-1800 AD) and different types of burial environment (acidic and alkaline) from NW Spain. Collagen was extracted following the common methodology used in paleodiet analysis, and a commercial gelatin sample was included for comparison. Data evaluation was based on 58 pyrolysis products using Principal Components Analysis (PCA). Principal component 1 (PC1, 45% of total variance) was related to the relative abundances of pyrolysis products of specific amino acids, with relatively degraded samples having larger proportions of the pyrolysis products of Pro/Hyp, Phe and Ala, while more intact samples showed larger proportions of Tyr, Trp and pyrolysis products of unspecific amino acid origin. PC1 scores were related to the period to which the samples corresponded, which reflects differences in diagenetic impact, probably controlled by a combination of age and burial deposit characteristics. PC2 (15%) probably reflects the well-known effects of disruption of the amino acid sequence (depolymerization), causing a decline in dimerization products (diketopiperazines) upon pyrolysis. This process was more intense in the collagen samples from acidic deposits than in the samples from alkaline deposits (a calcareous cave and coastal sand deposits with biogenic carbonates). The relationships between the PCA and individual pyrolysis products with known parameters of collagen quality (% C, % N, C/N ratio, % extractable collagen) were generally insignificant or weak. This might be explained by the rather narrow C/N range (3.19-3.36) of the samples, which had to meet the criteria for suitability for paleodiet analysis. Moreover, there was no significant relation between the isotopic composition of the extracted collagen (613C, 815N) and pyrolyzate composition, suggesting that diagenesis has little effect on the isotopic fingerprints used in palaeodietary studies. Finally, no substantial contamination of microbial or exogenous tissue from the deposition environment to the osteological collagen extracts was identified. It is concluded that the delta C-13 and delta N-15 as proxies of palaeodiet from these diverse necropoleis in NW Spain is sustained. (C) 2015 Elsevier Ltd. All rights reserved.
机译:古代胶原蛋白被用作多种尸体性状的档案。测试胶原蛋白提取物的质量是从事古代饮食重建工作的人们的普遍关注。这项研究的目的是增进我们对人骨胶原蛋白热解指纹的理解,特别是与成岩性改变有关的理解。热解-GC-MS应用于从考古人骨中提取的28种胶原蛋白样品,分别对应于不同的时间段(青铜时代到中世纪后期;公元前1900年至1800年)和西班牙西北部不同类型的墓葬环境(酸性和碱性) 。按照古生物学分析中常用的方法提取胶原蛋白,并加入商业明胶样品进行比较。数据评估基于使用主成分分析(PCA)的58种热解产物。主成分1(PC1,占总方差的45%)与特定氨基酸的热解产物的相对丰度有关,相对降解的样品中Pro / Hyp,Phe和Ala的热解产物的比例较大,而完整的样品表现出较大比例的非特异性氨基酸来源的Tyr,Trp和热解产物。 PC1分数与样本对应的时期有关,这反映出成岩作用的差异,这可能是由年龄和墓葬特征的组合所控制的。 PC2(15%)可能反映了众所周知的氨基酸序列破坏(解聚)作用,导致热解时二聚产物(二酮哌嗪)下降。酸性沉积物的胶原蛋白样品比碱性沉积物(钙质洞穴和沿海含生物碳酸盐的砂岩沉积物)样品的过程更强烈。 PCA和具有已知胶原蛋白质量参数(%C,%N,C / N比,%可提取胶原蛋白)的单个热解产物之间的关系通常微不足道或微弱。这可能是由于样品的C / N范围很窄(3.19-3.36)所致,该样品必须满足适用于古生物分析的标准。此外,提取的胶原蛋白(613C,815N)的同位素组成与热解产物的组成之间没有显着关系,这表明成岩作用对古饮食研究中使用的同位素指纹几乎没有影响。最后,没有发现微生物或外源组织从沉积环境到骨胶原蛋白提取物的大量污染。结论是,来自西班牙西北部这些不同的坏死动物的古生物的代代词“ C-13”和“ N-15”代代相传。 (C)2015 Elsevier Ltd.保留所有权利。

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