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Comparative Study on Plant Latex Particles and Latex Coagulation in Ficus benjamina Campanula glomerata and Three Euphorbia species

机译:榕树风铃草和三种大戟属植物胶乳颗粒和胶凝物的比较研究

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摘要

Among latex-producing plants, mainly the latex of Hevea brasiliensis has been studied in detail so far, while comprehensive comparative studies of latex coagulation mechanisms among the more than 20,000 latex-bearing plant species are lacking. In order to give new insights into the potential variety of coagulation mechanisms, the untreated natural latices of five latex-bearing plants from the families Euphorbiaceae, Moraceae and Campanulaceae were visualised using Cryo-SEM and their particle size compared using the laser diffraction method. Additionally, the laticifers of these plants species were examined in planta via Cryo-SEM. Similar latex particle sizes and shape were found in Ficus benjamina and Hevea brasiliensis. Hence, and due to other similarities, we hypothesize comparable, mainly chemical, coagulation mechanisms in these two species, whereas a physical coagulation mechanism is proposed for the latex of Euphorbia spp. The latter mechanism is based on the huge amount of densely packed particles that after evaporation of water build a large surface area, which accelerates the coagulation procedure.
机译:迄今为止,在生产胶乳的植物中,主要对巴西橡胶树的胶乳进行了详细的研究,而在20000多种含乳胶植物中,胶乳的凝结机理尚缺乏全面的比较研究。为了对混凝机制的潜在变化提供新的见解,使用冷冻SEM观察了大戟科,桑科和桔梗科的五株含乳胶植物的未经处理的天然胶乳,并使用激光衍射法比较了它们的粒径。另外,通过Cryo-SEM在植物体内检查了这些植物物种的乳胶虫。在榕树和巴西橡胶树中发现了相似的乳胶颗粒大小和形状。因此,由于其他相似性,我们假设这两个物种具有可比较的,主要是化学的凝结机制,而对于大戟属的乳胶则提出了物理凝结机制。后一种机理是基于大量的紧密堆积的颗粒,这些颗粒在水蒸发后会形成较大的表面积,从而加速了凝聚过程。

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