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首页> 外文期刊>The European Zoological Journal >Embryonic development of the saccular sensory epithelium in relation to otolith growth in the inner ear of the silver carp, Hypophthalmichthys molitrix (Valenciennes, 1844) (Teleostei: Cyprinidae): light and electron microscopic study
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Embryonic development of the saccular sensory epithelium in relation to otolith growth in the inner ear of the silver carp, Hypophthalmichthys molitrix (Valenciennes, 1844) (Teleostei: Cyprinidae): light and electron microscopic study

机译:与the鱼内耳耳石生长有关的囊状感觉上皮的胚胎发育(Valenciennes,1844年,Teleostei:Cyprinidae):光和电子显微镜研究

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The development of the saccular sensory epithelium in the inner ear of the silver carp, Hypophthalmichthys molitrix , was studied from an early stage (2 days after fertilization), when the otic vesicle or otocyst first formed, to the post-larval stage (7 days after hatching), when the development of the inner ear approximates that of the juvenile stage. Light microscopy revealed: (1) the otic vesicle, the primordia of the saccular otolith and the stato-acoustic ganglion were observed by 2 days after fertilization; (2) the saccular macula overlain by a small round otolith is established at 3 days after fertilization, while the utricular macula with its otolith is first observed at 4 days after fertilization; (3) the saccular macula began to differentiate at 3 days after hatching and became well differentiated at 7 days after hatching. At 7 days after hatching, transmission electron microscopy (TEM) revealed: (1) the apical surface of each hair cell is covered with a ciliary bundle formed of a long kinocilium and a short bundle of stereocilia. The supporting cells are provided with microridges on their apical surface and seemed to be covered with small and large vesicles, suggesting that they have a secretory function beside the supporting one; (2) secretory materials such as multivesicular bodies, electron dense granules, empty vesicles and cytoplasmic extrusions are observed scattering over the saccular sensory epithelium, which probably contribute to the formation of the otolith and/or otolithic membrane. Using scanning electron microscopy (SEM), two types of hair bundles are distinguished: the first type consisted of numerous short stereocilia and a kinocilium; the second type has a small number of short stereocilia with a very long kinocilium. Most of these results are discussed with special regard to the environmental factors affecting the early development of the inner ear in teleost fishes.
机译:从早期阶段(受精后2天)开始,即the囊或耳囊第一次形成,到幼虫后阶段,研究了the鱼内耳囊状感觉上皮的发育。 (孵化后7天),即内耳的发育接近少年阶段的发育。光学显微镜显示:(1)受精2天后观察到囊泡,囊耳石原基和滑行听觉神经节。 (2)受精后3天建立囊状黄斑,上面覆盖着小圆耳石,而受精后第4天首次观察到有耳石的眼眶黄斑。 (3)囊状黄斑在孵化后3天开始分化,在孵化后7天开始分化良好。孵化后第7天,透射电镜(TEM)显示:(1)每个毛细胞的顶端表面覆盖有由长毛囊毛和短束状纤毛形成的睫毛束。支撑细胞的顶端表面有微脊,似乎被大小囊覆盖,这表明它们在支撑细胞的旁边具有分泌功能。 (2)观察到散布在囊状感觉上皮上的分泌物质,例如多囊泡体,电子致密颗粒,空囊泡和胞质挤压物,可能有助于耳石和/或耳石膜的形成。使用扫描电子显微镜(SEM),可以区分出两种类型的发束:第一类包括许多短的立体睫毛和运动蛋白。第二类具有少量的短立体纤毛和很长的运动毛。在讨论这些结果中的大多数时,都特别考虑了影响硬骨鱼内耳早期发育的环境因素。

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