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首页> 外文期刊>The Journal of Experimental Biology >Urea-based osmoregulation in the developing embryo of oviparous cartilaginous fish (Callorhinchus milii): contribution of the extraembryonic yolk sac during the early developmental period
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Urea-based osmoregulation in the developing embryo of oviparous cartilaginous fish (Callorhinchus milii): contribution of the extraembryonic yolk sac during the early developmental period

机译:卵生软骨鱼(Callorhinchus milii)发育中的尿素渗透调节作用:胚胎卵黄囊在发育早期的贡献

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摘要

Marine cartilaginous fish retain a high concentration of urea to maintain the plasma slightly hyperosmotic to the surrounding seawater. In adult fish, urea is produced by hepatic and extrahepatic ornithine urea cycles (OUCs). However, little is known about the urea retention mechanism in developing cartilaginous fish embryos. In order to address the question as to the mechanism of urea-based osmoregulation in developing embryos, the present study examined the gene expression profiles of OUC enzymes in oviparous holocephalan elephant fish (Callorhinchus milii) embryos. We found that the yolk sac membrane (YSM) makes an important contribution to the ureosmotic strategy of the early embryonic period. The expression of OUC enzyme genes was detectable in the embryonic body from at least stage 28, and increased markedly during development to hatching, which is most probably due to growth of the liver. During the early developmental period, however, the expression of OUC enzyme genes was not prominent in the embryonic body. Meanwhile, we found that the mRNA expression of OUC enzymes was detected in the extra-embryonic YSM; the mRNA expression of cmcpsIII in the YSM was much higher than that in the embryonic body during stages 28-31. Significant levels of enzyme activity and the existence of mitochondrial-type cmgs1 transcripts in the YSM supported the mRNA findings. We also found that the cmcpsIII transcript is localized in the vascularized inner layer of the YSM. Taken together, our findings demonstrate for the first time that the YSM is involved in urea-based osmoregulation during the early to mid phase of development in oviparous cartilaginous fish.
机译:海洋软骨鱼类保留了高浓度的尿素,以维持血浆对周围海水的微渗透压。在成年鱼中,尿素是通过肝脏和肝外鸟氨酸尿素循环(OUC)产生的。然而,关于软骨鱼胚胎发育中尿素保留机制的了解甚少。为了解决有关在发育中的胚胎中基于尿素的渗透调节机制的问题,本研究检查了卵生全头象鱼(Callorhinchus milii)胚胎中OUC酶的基因表达谱。我们发现卵黄囊膜(YSM)对胚胎早期的渗透压策略做出了重要贡献。至少在第28阶段,在胚胎体内可检测到OUC酶基因的表达,并且在发育到孵化期间显着增加,这很可能是由于肝脏的生长。然而,在发育早期,OUC酶基因的表达在胚胎体内并不突出。同时,我们发现在胚外YSM中检测到了OUC酶的mRNA表达。在28-31期,YSM中cmcpsIII的mRNA表达远高于胚胎体内。 YSM中显着水平的酶活性和线粒体型cmgs1转录本的存在支持了mRNA的发现。我们还发现,cmcpsIII转录本位于YSM的血管化内层中。综上所述,我们的发现首次证明YSM在卵生软骨鱼的发育的早期至中期参与了基于尿素的渗透调节作用。

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