...
首页> 外文期刊>The Journal of Experimental Biology >Aquaporin expression in the Japanese medaka (Oryzias latipes) in freshwater and seawater: challenging the paradigm of intestinal water transport?
【24h】

Aquaporin expression in the Japanese medaka (Oryzias latipes) in freshwater and seawater: challenging the paradigm of intestinal water transport?

机译:在淡水和海水中的日本花aka(Oryzias latipes)中水通道蛋白的表达:挑战肠道水运输的范式吗?

获取原文
获取原文并翻译 | 示例

摘要

We investigated the salinity-dependent expression dynamics of seven aquaporin paralogs (aqp1a, aqp3a, aqp7, aqp8ab, aqp10a, aqp10b and aqp11a) in several tissues of euryhaline Japanese medaka (Oryzias latipes). All paralogs except aqp7 and aqp10a had a broad tissue distribution, and several were affected by salinity in both osmoregulatory and non-osmoregulatory tissues. In the intestine, aqp1a, aqp7, aqp8ab and aqp10a decreased upon seawater (SW) acclimation in both long-term acclimated fish and during 1-3 days of the transition period. In the gill, aqp3a was lower and aqp10a higher in SW than in freshwater (FW). In the kidney no aqps were affected by salinity. In the skin, aqp1a and aqp3a were lower in SW than in FW. In the liver, aqp8ab and aqp10a were lower in SW than in FW. Furthermore, six Na+, K+-ATPase a-subunit isoform transcripts were analysed in the intestine but none showed a consistent response to salinity, suggesting that water transport is not regulated at this level. In contrast, mRNA of the Na+, K+, 2Cl(-)-cotransporter type-2 strongly increased in the intestine in SW compared with FW fish. Using custom-made antibodies, Aqp1a, Aqp8ab and Aqp10a were localized in the apical region of enterocytes of FW fish. Apical staining intensity strongly decreased, vanished or moved to subapical regions, when fish were acclimated to SW, supporting the lower mRNA expression in SW. Western blots confirmed the decrease in Aqp1a and Aqp10a in SW. The strong decrease in aquaporin expression in the intestine of SW fish is surprising, and challenges the paradigm for transepithelial intestinal water absorption in SW fishes
机译:我们调查了七种水通道蛋白旁系同源物(aqp1a,aqp3a,aqp7,aqp8ab,aqp10a,aqp10b和aqp11a)的盐度依赖性表达动力学在日本淡叶锦鸡(Oryzias latipes)的几种组织中的表达。除aqp7和aqp10a以外的所有旁系同源物均具有广泛的组织分布,并且在渗透调节性组织和非渗透调节性组织中都受盐度的影响。在肠道中,长期适应环境的鱼类和过渡期的1-3天,海水(SW)适应后,aqp1a,aqp7,aqp8ab和aqp10a均降低。在ill中,西南部的aqp3a较低,而aqp10a高于淡水(FW)。在肾脏中,无aqps受盐度影响。在皮肤中,SW中的aqp1a和aqp3a低于FW。在肝脏中,SW中的aqp8ab和aqp10a低于FW。此外,在肠中分析了六个Na +,K + -ATPaseα亚基同工型转录物,但没有一个盐度反应一致,这表明水的运输不受此水平的调节。相反,与FW鱼相比,SW中肠中Na +,K +,2Cl(-)-cotransporter 2型的mRNA大量增加。使用定制的抗体,Aqp1a,Aqp8ab和Aqp10a定位于FW鱼肠细胞的顶端区域。当鱼类适应SW时,顶端染色强度会大大降低,消失或移至顶端以下区域,从而支持SW中较低的mRNA表达。 Western印迹证实SW中Aqp1a和Aqp10a的减少。西南鱼类肠道中水通道蛋白表达的强烈下降令人惊讶,并挑战了西南鱼类中上皮肠道吸收水的范式

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号