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弹涂鱼角膜表面的结构与功能

Structure and function of corneal surface of mudskipper fishes.

作者信息

Hu Wenxian, Zhang Jie, Kang Bin

机构信息

School of Life Sciences, Yunnan University, Kunming, People's Republic of China.

Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

Fish Physiol Biochem. 2016 Oct;42(5):1481-9. doi: 10.1007/s10695-016-0234-2. Epub 2016 May 13.

Abstract

Vertebrate corneal epithelium cell plays an important role for imaging, and the cell density, together with the appearance or type of affiliated microstructures, is considered as a result of evolution adapting to alternate terrestrial or aquatic environment. In this paper, we investigated the corneal cells of both larvae and adult amphibious mudskippers Boleophthalmus pectinirostris and Periophthalmus magnuspinnatus, to testify the relationship between morphology and function. The cell density values of the two species were 31,137 and 31,974 cells per mm(2) in larvae and then significantly decreased to 15,826 and 25,954 cells per mm(2) in adult (p < 0.001), respectively, which could be explained as the habitat change from aquatic to different degrees of terrestrial environment. The corneal epithelium cells were ridge type in larvae and differentiated into ridge type and reticular type in adult P. magnuspinnatus and ridge type, reticular type and ridge-reticular type in adult B. pectinirostris. Four kinds of microstructures as microridge, microvilli, microplicae and microhole appeared in both species. The difference of microridge width and its separation indicated that a dense cell connection was requested in a saltier and more terrestrial environment.

摘要

脊椎动物角膜上皮细胞在成像中起着重要作用,细胞密度以及附属微结构的外观或类型被认为是适应陆地或水生交替环境的进化结果。在本文中,我们研究了幼年和成年弹涂鱼(大弹涂鱼和大鳍弹涂鱼)的角膜细胞,以验证形态与功能之间的关系。这两个物种幼体的细胞密度值分别为每平方毫米31,137个和31,974个细胞,而成体显著降低至每平方毫米15,826个和25,954个细胞(p < 0.001),这可以解释为栖息地从水生环境转变为不同程度的陆地环境。幼体的角膜上皮细胞为嵴型,成年大鳍弹涂鱼分化为嵴型和网状型,成年大弹涂鱼分化为嵴型、网状型和嵴 - 网状型。两个物种都出现了微嵴、微绒毛、微褶和微孔四种微结构。微嵴宽度及其间距的差异表明,在盐度更高和陆地化程度更高的环境中需要紧密的细胞连接。

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