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首页> 外文期刊>Zoological Letters >Past seawater experience enhances seawater adaptability in medaka, Oryzias latipes
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Past seawater experience enhances seawater adaptability in medaka, Oryzias latipes

机译:过去的海水经验提高了拉美提斯稻草的海水适应性

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BackgroundDuring the course of evolution, fishes have acquired adaptability to various salinity environments, and acquirement of seawater (SW) adaptability has played important roles in fish evolution and diversity. However, little is known about how saline environments influence the acquirement of SW adaptability. The Japanese medaka Oryzias latipes is a euryhaline species that usually inhabits freshwater (FW), but is also adaptable to full-strength SW when transferred through diluted SW. In the present study, we examined how past SW experience affects hyposmoregulatory ability in Japanese medaka. ResultsFor the preparation of SW-experienced fish, FW medaka were acclimated to SW after pre-acclimation to 1/2 SW, and the SW-acclimated fish were transferred back to FW. The SW-experienced fish and control FW fish (SW-inexperienced fish) were transferred directly to SW. Whereas control FW fish did not survive direct transfer to SW, 1/4 of SW-experienced fish adapted successfully to SW. Although there were no significant differences in blood osmolality and plasma Na+ and Cl? concentrations between SW-experienced and control FW medaka in FW, increments in these parameters following SW transfer were lower in SW-experienced fish than in control FW fish. The gene expression of SW-type Na+, K+-ATPase (NKA) in the gills of SW-experienced medaka increased more quickly after direct SW transfer compared with the expression in control FW fish. Prior to SW transfer, the density of NKA-immunoreactive ionocytes in the gills was higher in SW-experienced fish than in control FW fish. Ionocytes expressing CFTR Cl? channel at the apical membrane and those forming multicellular complexes, both of which were characteristic of SW-type ionocytes, were also increased in SW-experienced fish. ConclusionThese results indicate that past SW experience enhances the capacity of Na+ and Cl? secretion in ionocytes and thus hypoosmoregulatory ability of Japanese medaka, suggesting the presence of epigenetic mechanisms involved in seawater adaptation.
机译:背景技术在进化过程中,鱼类已经获得了对各种盐度环境的适应性,海水(SW)适应性的获得在鱼类进化和多样性中发挥了重要作用。然而,关于盐环境如何影响西南适应性的了解甚少。日本(Medaka Oryzias latipes)是一种淡滨鱼种,通常栖息在淡水(FW)中,但是当通过稀释的SW转移时,也适合全强度SW。在本研究中,我们研究了过去的SW经验如何影响日本medaka的低剂量调节能力。结果为准备有SW的鱼,先将FK medaka适应于1/2 SW使其适应SW,然后将SW适应的鱼转移回FW。 SW经验丰富的鱼类和对照FW鱼(SW经验丰富的鱼类)直接转移到SW。对照FW鱼不能直接转移到SW中,而有SW经验的鱼的1/4成功地适应了SW。尽管在西南偏西地区,西南偏西偏高田鼠的血浆渗透压和血浆Na + 和Cl ?浓度没有显着差异,但SW转移后这些参数的增加是与西南偏鱼相比,西南偏鱼的鱼类要低。直接SW转移后,经历SW的花aka中SW型Na + ,K + -ATPase(NKA)的基因表达与表达相比增加更快控制FW鱼。 SW转移之前,有SW经验的鱼类的the中NKA免疫反应性离子细胞的密度高于对照FW鱼类。在有SW经验的鱼类中,在根尖膜上表达CFTR Cl α通道的离子细胞和形成多细胞复合物的离子细胞(都是SW型离子细胞的特征)也增加了。结论这些结果表明,过去的SW经验可增强离子细胞中Na + 和Cl ?分泌的能力,从而增强日本的低渗调节能力,表明海水中存在表观遗传机制适应。

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