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首页> 外文期刊>The Journal of Experimental Biology >Identification and classification of silks using infrared spectroscopy
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Identification and classification of silks using infrared spectroscopy

机译:使用红外光谱法对丝绸进行鉴定和分类

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摘要

Lepidopteran silks number in the thousands and display a vast diversity of structures, properties and industrial potential. To map this remarkable biochemical diversity, we present an identification and screening method based on the infrared spectra of native silk feedstock and cocoons. Multivariate analysis of over 1214 infrared spectra obtained from 35 species allowed us to group silks into distinct hierarchies and a classification that agrees well with current phylogenetic data and taxonomies. This approach also provides information on the relative content of sericin, calcium oxalate, phenolic compounds, poly-alanine and poly(alanine-glycine) beta-sheets. It emerged that the domesticated mulberry silkmoth Bombyx mori represents an outlier compared with other silkmoth taxa in terms of spectral properties. Interestingly, Epiphora bauhiniae was found to contain the highest amount of beta-sheets reported to date for any wild silkmoth. We conclude that our approach provides a new route to determine cocoon chemical composition and in turn a novel, biological as well as material, classification of silks.
机译:鳞翅目真丝数以千计,显示出结构,特性和工业潜力的极大多样性。为了描绘这种非凡的生化多样性,我们提出了一种基于天然蚕丝原料和茧的红外光谱的鉴定和筛选方法。从35个物种获得的超过1214个红外光谱的多变量分析使我们能够将蚕丝分组为不同的层次结构,并且其分类与当前的系统发育数据和分类法非常吻合。这种方法还提供了有关丝胶,草酸钙,酚类化合物,聚丙氨酸和聚丙氨酸-甘氨酸β-片层的相对含量的信息。结果表明,在光谱特性方面,与其他蚕蛾类相比,驯化的桑蚕蚕Bombyx mori代表了一个离群值。有趣的是,据发现迄今报道的任何野生蚕蛾都含有最高含量的β-折叠。我们得出的结论是,我们的方法为确定茧的化学成分提供了一条新途径,进而为丝绸的生物,生物学以及材料分类提供了新的途径。

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