首页> 外文期刊>Acta Zoologica >Comparative study of otolith organs between two species of upside-down swimming catfish Synodontis nigriventris showing converse swimming postures
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Comparative study of otolith organs between two species of upside-down swimming catfish Synodontis nigriventris showing converse swimming postures

机译:两种倒立游泳swimming鱼Synodontis nigriventris耳石器官相对表现出相反游泳姿势的比较研究

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To clarify whether the unique postural control of the upside-down swimming catfish (Synodontis nigriventris, family Mochokidae) is related to the histological characteristics of the otolith organs, we performed light microscopic observation of the utricle, the saccule and the lagena. The histological aspects of the otolith organs were compared between S. nigriventris and Synodontis multipunctatus, which belong to the same genus. S. multipunctatus usually shows upside-up swimming posture except for feeding behaviour near water surface. As controls, we additionally used a miniature catfish, Corydoras paleatus and goldfish, Carassius auratus, which shows upside-up swimming posture. We concluded that the structural aspects of the otolith organs did not cause the unique postural control of S. nigriventris. Light microscopic observation clarified the following aspects: (1) The utricle of S. nigriventris was located at the anterior region of the otocyst and under the semicircular canals, and the saccule and the lagena were located at the posteroventral region of the otocyst like those of S. multipunctatus and the other two fishes. (2) The hair cells of the utricle were arranged on the horizontal plane of the fishes with a variation in cell size at the ventral and ventrolateral sites in S. nigriventris, S. multipunctatus and the other two fishes. (3) The hair cells of the saccule and lagena of S. nigriventris, S. multipunctatus and C. auratus presented perpendicular to the horizontal plane of the fish. (4) Region-specific differences in the size and shape of the hair cells of S. nigriventris were observed along the three-dimensional axes of the otolith organs like those of S. multipunctatus and the other two fishes. It is unlikely that the unique postural control of upside-down catfish is related to the localization of the utricle, the saccule and the lagena and the distribution of the different types of hair cell of the otolith organs. Furthermore, the distribution of the hair cells suggests that the otolith organs in S. nigriventris can detect three-dimensional postural changes like the organs of other fishes showing generally observed upside-up swimming posture.
机译:为了弄清倒置游泳swimming鱼(Synodontis nigriventris,Mochokidae家族)的独特姿势控制是否与耳石器官的组织学特征相关,我们通过光学显微镜观察了囊,囊泡和尾突。比较了属于同一属的S. nigriventris和Synodontis multipunctatus在耳石器官的组织学方面。除了水面附近的进食行为外,多点沙门氏菌通常表现出颠倒的游泳姿势。作为对照,我们还使用了微型cat鱼Corydoras paleatus和金鱼Carassius auratus,它们具有颠倒的游泳姿势。我们得出的结论是,耳石器官的结构方面并没有引起黑穗病链球菌的独特姿势控制。光学显微镜观察明确了以下几个方面:(1)黑穗葡萄球菌的囊泡位于耳囊的前部区域和半圆形管下,而球囊和腹股沟像位于囊膜的后腹膜区一样。 S. multipunctatus和另外两条鱼。 (2)将黑麦的毛细胞排列在鱼的水平面上,黑腹链球菌,多头沙门氏菌和其他两条鱼的腹侧和腹侧部位的细胞大小发生变化。 (3)黑腹链球菌,多刺沙门氏菌和金头梭菌的球囊和尾鳍的毛细胞垂直于鱼的水平面出现。 (4)沿耳石器官的三维轴观察到黑腹链球菌毛细胞的大小和形状的区域特异性差异,如多头沙门氏菌和其他两条鱼。颠倒的cat鱼的独特姿势控制不太可能与囊,囊泡和尾突的定位以及耳石器官的不同类型毛细胞的分布有关。此外,毛细胞的分布表明,黑腹链球菌中的耳石器官可以检测三维姿势变化,就像其他鱼类的器官一样,通常表现出颠倒的游泳姿势。

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