选定硬骨鱼的第一个脑神经瘤的径向极性。

IF 1.5 4区 医学 Q2 ANATOMY & MORPHOLOGY Journal of Morphology Pub Date : 2023-10-19 DOI:10.1002/jmor.21654
Machiko Otsuka, Shoei Sugita, Daisuke Shimizu, Masato Aoyama, Masaru Matsuda
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引用次数: 0

摘要

神经基质是水生脊椎动物侧线系统的一种感觉结构,由毛细胞和支持细胞组成。毛细胞是机械感觉细胞,通常以双向极性排列。在这里,我们描述了四种硬骨鱼物种的第一个颅骨神经干细胞中毛细胞呈放射状而非双向排列的神经干细胞:红鲷(Pagrus major)、斑点大比目鱼(Verasper variegatus)、棕色比目鱼(Pseudopleuronectes herzensteini)和大理石纹比目鱼(Psudoleuronectes yokohamae)。在这四个物种中,这种极性仅在第一个脑神经瘤中发现,在孵化前,它出现在耳囊泡的吻端边缘。我们使用扫描电子显微镜研究了这种独特的神经基质的最初外观和命运。我们还使用一种重要的荧光标记物和免疫组织化学方法评估了与形态发生、发育和神经支配有关的桡神经基质的特征。kinocilium最初出现在每个毛细胞的中心,然后在受精后7天左右移动到其外周形成放射状极性。然而,放射状排列的毛细胞在孵化后约15天消失。随后出现双向排列的毛细胞,表明发生了从径向到双向的极性置换。在P.herzensteini中,通过透射电子显微镜观察到神经纤维和毛细胞之间的传入突触和传出突触,表明桡神经基质是功能性的。我们的发现表明,具有径向极性的神经模型可以使幼鱼在这个生命阶段吸收多轴刺激,有可能帮助它们检测微小的水振动或水压变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Radial polarity in the first cranial neuromast of selected teleost fishes

The neuromast is a sensory structure of the lateral line system in aquatic vertebrates, which consists of hair cells and supporting cells. Hair cells are mechanosensory cells, generally arranged with bidirectional polarity. Here, we describe a neuromast with hair cells arranged radially instead of bidirectionally in the first cranial neuromast of four teleost species: red seabream (Pagrus major), spotted halibut (Verasper variegatus), brown sole (Pseudopleuronectes herzensteini), and marbled sole (Pseudopleuronectes yokohamae). In these four species, this polarity was identified only in the first cranial neuromast, where it appeared at the rostral edge of the otic vesicle before hatching. We investigated the initial appearance and fate of this unique neuromast using scanning electron microscopy. We also assessed characteristics of radial neuromast pertaining to morphogenesis, development, and innervation using a vital fluorescent marker and immunohistochemistry in V. variegatus. The kinocilium initially appears at the center of each hair cell, then moves to its outer perimeter to form radial polarity by around 7 days postfertilization. However, hair cells arranged radially disappear about 15 days after hatching. This is followed by the appearance of bidirectionally arranged hair cells, indicating that polarity replacement from radial to bidirectional has occurred. In P. herzensteini, both afferent and efferent synapses between the nerve fibers and hair cells were observed by transmission electron microscopy, suggesting that radial neuromast is functional. Our discovery suggests that neuromasts with radial polarity could enable larval fish to assimilate multiaxial stimuli during this life stage, potentially assisting them in detecting small water vibrations or water pressure changes.

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来源期刊
Journal of Morphology
Journal of Morphology 医学-解剖学与形态学
CiteScore
2.80
自引率
6.70%
发文量
119
审稿时长
1 months
期刊介绍: The Journal of Morphology welcomes articles of original research in cytology, protozoology, embryology, and general morphology. Articles generally should not exceed 35 printed pages. Preliminary notices or articles of a purely descriptive morphological or taxonomic nature are not included. No paper which has already been published will be accepted, nor will simultaneous publications elsewhere be allowed. The Journal of Morphology publishes research in functional, comparative, evolutionary and developmental morphology from vertebrates and invertebrates. Human and veterinary anatomy or paleontology are considered when an explicit connection to neontological animal morphology is presented, and the paper contains relevant information for the community of animal morphologists. Based on our long tradition, we continue to seek publishing the best papers in animal morphology.
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