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首页> 外文期刊>Planta: An International Journal of Plant Biology >Histochemical study of trans-polyisoprene accumulation by spectral confocal laser scanning microscopy and a specific dye showing fluorescence solvatochromism in the rubber-producing plant, Eucommia ulmoides Oliver
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Histochemical study of trans-polyisoprene accumulation by spectral confocal laser scanning microscopy and a specific dye showing fluorescence solvatochromism in the rubber-producing plant, Eucommia ulmoides Oliver

机译:通过光谱共聚焦激光扫描显微镜和一种特定的染料在橡胶生产厂杜仲(Eucommia ulmoides Oliver)中显示荧光溶剂变色的反式聚异戊二烯积累的组织化学研究

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摘要

A microscopic technique combining spectral confocal laser scanning microscopy with a lipophilic fluorescent dye, Nile red, which can emit trans-polyisoprene specific fluorescence, was developed, and unmixed images of synthesized trans-polyisoprene in situ in Eucommia ulmoides were successfully obtained. The images showed that trans-polyisoprene was initially synthesized as granules in non-articulated laticifers that changed shape to fibers during laticifer maturation. Non-articulated laticifers are developed from single laticiferous cells, which are differentiated from surrounding parenchyma cells in the cambium. Therefore, these observations suggested that trans-polyisoprene biosynthesis first started in laticifer cells as granules and then the granules accumulated and fused in the inner space of the laticifers over time. Finally, laticifers were filled with the synthesized trans-polyisoprene, which formed a fibrous structure fitting the laticifers shape. Both trans- and cis-polyisoprene are among the most important polymers naturally produced by plants, and this microscopic technique combined with histological study should provide useful information in the fields of plant histology, bioindustry and phytochemistry.
机译:开发了一种将光谱共聚焦激光扫描显微镜与亲脂性荧光染料尼罗红相结合的显微技术,该染料可以发射反式聚异戊二烯特定的荧光,并成功地在杜仲中获得了原位合成的反式聚异戊二烯的未混合图像。图像显示,反式聚异戊二烯最初是在非铰接胶乳胶中以颗粒形式合成的,在胶乳胶成熟过程中其形状会转变为纤维。非铰接的胶乳细胞是从单个胶乳细胞发展而来的,与在形成层中周围的薄壁组织细胞不同。因此,这些观察结果表明反式聚异戊二烯的生物合成首先在粒细胞中开始为颗粒状,然后随着时间的推移,这些颗粒在粒细胞的内部空间中积累并融合。最后,将合成的反式聚异戊二烯填充胶凝体,形成适合胶凝体形状的纤维结构。反式和顺式聚异戊二烯都是植物天然产生的最重要的聚合物,这种微观技术与组织学研究相结合,应在植物组织学,生物工业和植物化学领域提供有用的信息。

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