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Trematode embryology: a new method for whole-egg analysis by confocal microscopy

机译:吸虫的胚胎学:一种通过共聚焦显微镜进行全蛋分析的新方法

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Trematode worms have the neoophoran mode of development in which several specialized vitelline cells surround the zygote. This vitelline cell mass appears just before the zygote passes through the ootype, a thickening of the oviduct, where the egg shell is formed. The great amount of vitelline material blurs the visualization of embryo development in whole egg seen by brightfield microscopy. The eggshell is difficult to cut into thin or ultrathin sections and acts as a barrier to fixation and infiltration with embedding media. The egg shell is also brightly fluorescent when analyzed by fluorescence microscopy. To overcome these technical disadvantages a simple staining protocol widely used in adult helminth morphological analysis was adapted for the study of the embryonic development of two different trematode species. The effects of potassium hydroxide as bleach and ethylene glycol as mounting medium were also evaluated. Confocal microscopy allowed virtual sectioning of whole-mounted eggs and made possible internal morphological detailed analysis of different embryonic stages. This method could contribute to the study of helminth egg embryology.
机译:吸虫线虫具有新ophoran的发展模式,其中几个专门的卵黄细胞围绕合子。卵黄质细胞团出现在合子刚通过卵型之前,即卵管的增厚,在卵型中形成卵壳。大量的卵黄质材料使通过明视野显微镜观察到的整个卵中胚胎发育的可视化变得模糊。蛋壳很难切成薄片或超薄部分,并成为包埋介质固定和渗透的障碍。当通过荧光显微镜分析时,蛋壳也具有明亮的荧光。为了克服这些技术缺点,将一种广泛用于成虫蠕虫形态分析的简单染色方案用于研究两种不同吸虫物种的胚胎发育。还评估了氢氧化钾作为漂白剂和乙二醇作为封固剂的效果。共聚焦显微镜可以对整个安装的卵进行虚拟切片,并可以对不同胚胎阶段进行内部形态学详细分析。该方法可能有助于蠕虫卵的胚胎学研究。

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