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作茧条件对蚕丝结构、碳氮同位素比率的影响

Effect of cocooning conditions on the structure, carbon and nitrogen isotope ratios of silks.

作者信息

Li Hao, He Yujie, Jia Liling, Liu Yong, Yang Dan, Shao Shuai, Lv Gang, Yang Hailiang, Zheng Hailing, Cui Xuhong, Zhou Yang, Peng Zhiqin

机构信息

School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, China.

Institute of Textile Conservation, Zhejiang Sci-Tech University, Hangzhou, China.

出版信息

PLoS One. 2023 Sep 21;18(9):e0291769. doi: 10.1371/journal.pone.0291769. eCollection 2023.

Abstract

The stable isotope technique provides the possibility to trace ancient textiles because the technique is associated with advantages such as trace indication, fast detection, and accurate results. Since different cocooning conditions may impact cocoons even under identical habitats, it is important to investigate the effects of different cocooning temperatures and humidity on the isotope incorporation values in the cocoons. In this study, silk fibers were reeled under different conditions of temperature and humidity, followed by analysis of the secondary structure of cocoon proteins and isotope incorporation patterns. We found that the deviations in carbon isotope values of silk under different cocooning conditions could reach up to 0.76‰, while the deviation in carbon isotope values at different locations of a single silk was 2.75‰. Further, during the cocooning process, depletion of the 13C-isotope at different locations of the silk fibers was observed, reducing the δ13C values. We proposed that the changes in carbon isotopes in silk were related to the content of sericin and silk fibroin in silk. Finally, we did not observe a significant difference in isotope ratios in degummed cocoons. In summary, the 13C isotope was enriched in sericin, whereas 15N was enriched in fibroin, and these findings provide basic information for tracing the provenance of silks.

摘要

稳定同位素技术为追溯古代纺织品提供了可能性,因为该技术具有痕量指示、检测快速和结果准确等优点。由于即使在相同的栖息地,不同的结茧条件也可能影响蚕茧,因此研究不同的结茧温度和湿度对蚕茧中同位素掺入值的影响很重要。在本研究中,在不同的温度和湿度条件下缫丝,随后分析蚕茧蛋白质的二级结构和同位素掺入模式。我们发现,不同结茧条件下蚕丝碳同位素值的偏差可达0.76‰,而单根蚕丝不同位置的碳同位素值偏差为2.75‰。此外,在结茧过程中,观察到蚕丝纤维不同位置的13C同位素出现贫化,δ13C值降低。我们认为,蚕丝中碳同位素的变化与蚕丝中丝胶蛋白和丝素蛋白的含量有关。最后,我们没有观察到脱胶蚕茧同位素比率的显著差异。总之,13C同位素在丝胶蛋白中富集,而15N在丝素蛋白中富集,这些发现为追溯丝绸产地提供了基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d11/10513321/fab13ba099ce/pone.0291769.g001.jpg

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