Chetverikov Philipp E, Desnitskiy Alexey G, Navia Denise
Zoological Institute, Russian Academy of Sciences, Universitetskaya Embankment 1, 199034 St. Petersburg, Russia Saint-Petersburg State University, Universitetskaya nab., 7/9, 199034, St. Petersburg, Russia; Email:
Saint-Petersburg State University, Universitetskaya nab., 7/9, 199034, St. Petersburg, Russia; Email: unknown.
Zootaxa. 2015 Feb 16;3919(1):179-91. doi: 10.11646/zootaxa.3919.1.8.
Due to the higher resolution, confocal microscopy (CLSM) can be applied to refine the origin of tiny structures of the autofluorescent exoskeletons of microarthropods (mites in particular) which are hard to visualize using traditional differential interference contract light microscopy (DIC LM) and phase contrast light microscopy (PC LM). Three-dimensional (3D) reconstructions of the prodorsal shield topography of eriophyoid mites using Neoprothrix hibiscus Reis and Navia as a model, suggest that the structures originally treated as paired setae vi are two internal rod-like apodemes. Based on this, the genus Neoprothrix is excluded from the subfamily Prothricinae Amrine and transferred to the subfamily Sierraphytoptinae Keifer. Observations on partially cleared specimens of N. hibiscus showed that remnants of the central nervous system, paired glands and developing oocytes can be visualized using DIC LM and CLSM methods. New high quality microscope images are provided of recently described "flower-shaped" structures and two main components of yolk inclusions of the mature eggs inside the oviduct.
由于具有更高的分辨率,共聚焦显微镜(CLSM)可用于细化微节肢动物(特别是螨类)自发荧光外骨骼微小结构的起源,而这些结构使用传统的微分干涉相差光学显微镜(DIC LM)和相差光学显微镜(PC LM)很难可视化。以芙蓉新原瘿螨(Neoprothrix hibiscus Reis and Navia)为模型,对瘿螨前背板地形进行三维(3D)重建,结果表明最初被视为成对刚毛vi的结构是两个内部棒状内突。基于此,新原瘿螨属被排除在原瘿螨亚科(Prothricinae Amrine)之外,并转移到希拉瘿螨亚科(Sierraphytoptinae Keifer)。对部分透明处理的芙蓉新原瘿螨标本的观察表明,使用DIC LM和CLSM方法可以观察到中枢神经系统、成对腺体和发育中卵母细胞的残余物。提供了新的高质量显微镜图像,展示了最近描述的“花形”结构以及输卵管内成熟卵黄质包涵体的两个主要成分。