首页> 外文OA文献 >Salinity tolerance, osmoregulation, and immunolocalization of Na+/K+-ATPase in larval and early juvenile stages of the Chinese mitten crab, Eriocheir sinensis (Decapod, Grapsoidea)
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Salinity tolerance, osmoregulation, and immunolocalization of Na+/K+-ATPase in larval and early juvenile stages of the Chinese mitten crab, Eriocheir sinensis (Decapod, Grapsoidea)

机译:中华绒螯蟹(Eriocheir sinensis,Decapod,Grapsoidea)幼虫和幼龄期Na + / K + -aTpase的耐盐性,渗透调节和免疫定位

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摘要

The ontogeny of osmoregulation was studied in laboratory-reared early developmental stages of the Chinese mitten crab, Eriocheir sinensis, from the Elbe estuary (North Sea, Germany). At salinities ranging from 0.1644.3 , survival rate was quantified, hemolymph osmolality was measured, and osmoregulatory capacity was calculated as difference between osmolality of the hemolymph and the external medium. Zoea larvae hyper-regulated in dilute media, but osmoconformed in seawater and at higher salinities (≥32.2 ). Megalopae and stage I-II juveniles hyper-regulated at low salinities and hypo-regulated at ≥32.2 , with an ontogenetic increase in osmoregulatory capacity. Survival at ca. 10-32 was generally high (90100 %), while complete mortality occurred in all zoeal stages (except for zoea I) at 0.165.3 . By contrast, nearly 50 % of the megalopae and all juvenile crabs survived at such low salinities. The expression of Na+/K+-ATPase and the development of transporting epithelia were studied by means of immunofluorescence light microscopy (ILM) and transmission electron microscopy (TEM). In early (stage I-II) zoeae, fluorescence staining was observed along the inner epithelium of the branchiostegites, and epithelial cells showed typical features of ionocytes. In the megalopa and first juvenile crab, ionocytes and immunolabeled Na+/K+-ATPase were located in the filaments of the most posterior gills, while no immunodetection occurred in the anterior gills. Comparison of histological and physiological results shows a close relationship between the ontogeny of osmoregulation and the expression of Na+/K+-ATPase within the transporting epithelia of the branchial chamber. In conclusion, the adult pattern of osmoregulation develops in E. sinensis through two molts, (1) from a moderately hyper-iso-regulating zoeal phase to the moderately hyper-/hypo-regulating megalopa, (2) from the megalopa to a strongly euryhaline, hyper-/hypo-regulating first juvenile crab stage. The results of this study are consistent with an export strategy in this holo-euryhaline crab species.
机译:在实验室饲养的易北河口中华绒螯蟹(中华绒螯蟹)的早期发育阶段研究了渗透调节的存在,该动物来自德国北海易北河。在0.1644.3的盐度下,定量存活率,测量血淋巴渗透压浓度,并计算渗透压调节能力,作为血淋巴与外部培养基的摩尔渗透压浓度之差。佐伊幼虫在稀释培养基中上调,但在海水中和较高盐度(≥32.2)下渗透渗透。在低盐度下,上颚类和I-II期幼虫过度上调,在≥32.2下则下调,其自体调节渗透性增加。在约生存。 10-32通常很高(90100%),而在所有黄道阶段(除zoea I之外)的完全死亡率为0.165.3。相比之下,近50%的巨蟹和所有幼蟹都在如此低的盐度下存活。利用免疫荧光显微镜(ILM)和透射电子显微镜(TEM)研究了Na + / K + -ATPase的表达和转运上皮的发育。在早期(I-II期)zoeae中,沿分支骨的内部上皮观察到荧光染色,并且上皮细胞显示出离子细胞的典型特征。在半生蟹和第一只幼蟹中,离子细胞和免疫标记的Na + / K + -ATPase位于最后g的细丝中,而在前no中未进行免疫检测。组织学和生理学结果的比较表明,渗透调节的发生与and小室转运上皮内Na + / K + -ATPase的表达之间存在密切的关系。总之,渗透调节的成年模式在中华绒螯蟹中通过两个蜕变发展,(1)从中等高度等量调节的黄斑期到中等高度/低调节的美加洛巴,(2)从美加洛巴到强烈euryhaline,高/低调节的第一个幼蟹期。这项研究的结果与这种全淡水蟹种的出口策略是一致的。

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