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黄斑切叶蜂(膜翅目,切叶蜂科)茧的拓扑化学、光学各向异性和傅里叶变换红外显微光谱分析

Topochemistry, optical anisotropy and FT-IR microspectroscopy of the cocoon of Lithurgus chrysurus (Hymenoptera, Megachilidae).

作者信息

Mello Maria Luiza S, Dos Anjos Eli Heber M, Vidal Benedicto de Campos, Rozen Jerome G

机构信息

Department of Structural and Functional Biology, Institute of Biology, University of Campinas, Campinas, SP, Brazil.

Department of Structural and Functional Biology, Institute of Biology, University of Campinas, Campinas, SP, Brazil.

出版信息

Micron. 2016 Nov;90:87-96. doi: 10.1016/j.micron.2016.09.005. Epub 2016 Sep 12.

Abstract

A previous study has not revealed the participation of a mucous component in the cocoon wall of the solitary bee, Lithurgus chrysurus, differing from the cocoon structure reported for many other bee species. However, uncertainty remains, because only the median and rear zones of this cocoon type have thus far been analyzed. Here, we studied the front zone of this cocoon, searching its components and their organization, to fill this knowledge gap. Topochemical assays, polarization microscopy and Fourier transform-infrared (FT-IR) microspectroscopy were used to study cross sections from L. chrysurus cocoon. Three main layers differing in structural organization were found to compose the cocoon wall. Silk fibroins were assumed to constitute the filamentous threads of the inner and outer layers and the laminar structure of the intermediate layer. Deduced from its topochemical properties and FT-IR spectral signature, a foamy material containing mucin glycoproteins and carboxylated acid glycosaminoglycans was found in the intermediate layer. FT-IR analysis using a Savitzky-Golay 2nd-derivative and absence of linear dichroism and birefringence phenomena suggest that a random-coil secondary structure predominates in the foam component. Co-existence of α-helical and β-sheet conformations is also hypothesized for the fibroin component of this cocoon. It is thus concluded that in addition to fibroin elements, a mucous component, likely contributed by a Malpighian tubule secretion, integrates the composition of the front zone of the cocoon wall of L. chrysurus. In addition, the FT-IR analysis of the inner layer silk of this cocoon suggests significant differences in comparison to the silk fibroins of the silkworm, and some minor spectral differences in comparison to published data on the honeybee silk, with respect to protein secondary structure.

摘要

先前的一项研究并未揭示独居蜂黄斑隧蜂茧壁中存在黏液成分,这与许多其他蜜蜂物种的茧结构不同。然而,不确定性仍然存在,因为迄今为止仅分析了这种茧类型的中部和后部区域。在此,我们研究了这种茧的前部区域,探寻其组成成分及其组织结构,以填补这一知识空白。运用拓扑化学分析、偏光显微镜和傅里叶变换红外(FT-IR)显微光谱法对黄斑隧蜂茧的横截面进行了研究。结果发现茧壁由结构组织不同的三个主要层组成。推测丝素蛋白构成了内层和外层的丝状线以及中间层的层状结构。根据其拓扑化学性质和FT-IR光谱特征推断,在中间层发现了一种含有黏蛋白糖蛋白和羧化酸性糖胺聚糖的泡沫状物质。使用Savitzky-Golay二阶导数的FT-IR分析以及不存在线性二色性和双折射现象表明,泡沫成分中以无规卷曲二级结构为主。还推测这种茧的丝素蛋白成分同时存在α-螺旋和β-折叠构象。因此得出结论,除了丝素蛋白成分外,一种可能由马氏管分泌产生的黏液成分整合到了黄斑隧蜂茧壁前部区域的组成中。此外,对这种茧内层丝的FT-IR分析表明,与家蚕丝素蛋白相比存在显著差异,与已发表的蜜蜂丝数据相比在蛋白质二级结构方面存在一些细微的光谱差异。

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