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利用红外光谱对火炬松花粉外壁孢粉素进行详细表征。

Detailed characterization of Pinus ponderosa sporopollenin by infrared spectroscopy.

机构信息

Department of Chemical & Biological Engineering, Colorado State University, Fort Collins, CO, 80521, USA.

Department of Biology, Colorado State University, Fort Collins, CO, 80523, USA.

出版信息

Phytochemistry. 2020 Feb;170:112195. doi: 10.1016/j.phytochem.2019.112195. Epub 2019 Nov 16.

Abstract

In plant spores and pollen, sporopollenin occurs as a structural polymer with remarkable resistance to chemical degradation. This recalcitrant polymer is well-suited to analysis by non-destructive infrared spectroscopy. However, existing infrared characterization of sporopollenin has been limited in scope and occasionally contradictory. This study provides a comprehensive structural analysis of sporopollenin in the Pinus ponderosa pollen exine using infrared spectroscopy, including detailed band assignments, descriptions of chemical reactivity, and comparison to multiple reference substances. We observe that the infrared spectral characteristics of sporopollenin prepared by enzymatic digestion of the polysaccharide-based intine are largely consistent with a copolymer of aliphatic lipids and trans-4-hydroxycinnamic acid, without distinct contributions from α-pyrone or carotenoid substructures.

摘要

在植物孢子和花粉中,孢粉素作为一种结构聚合物存在,具有显著的抗化学降解能力。这种难以降解的聚合物非常适合采用非破坏性的红外光谱技术进行分析。然而,现有的孢粉素红外特征分析在范围上受到限制,并且有时相互矛盾。本研究采用红外光谱技术对白皮松花粉外壁中的孢粉素进行了全面的结构分析,包括详细的谱带归属、化学反应性描述以及与多种参比物质的比较。我们观察到,通过酶解多糖基内壁制备的孢粉素的红外光谱特征在很大程度上与脂肪族脂质和反式-4-羟基肉桂酸的共聚物一致,而没有明显的α-吡喃酮或类胡萝卜素亚结构的贡献。

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