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首页> 外文期刊>Molecular and Cellular Endocrinology >Seawater and freshwater challenges affect the insulin-like growth factors IGF-I and IGF-II in liver and osmoregulatory organs of the tilapia.
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Seawater and freshwater challenges affect the insulin-like growth factors IGF-I and IGF-II in liver and osmoregulatory organs of the tilapia.

机译:海水和淡水挑战会影响罗非鱼肝脏和渗透调节器官中的胰岛素样生长因子IGF-I和IGF-II。

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Contradictory studies suggest IGF-I in fish liver and gills is involved in osmoregulation, but nothing is known about the kidney and intestine's role nor about IGF-II's role in any organ. Tilapia were transferred from freshwater (FW) to seawater (SW) for 1week (wk) and retransferred to FW for another week. At 4h, 1d, 2d, 3d and 1wk after SW-transfer and FW-retransfer IGF-I, IGF-II and growth hormone receptor (GHR1) mRNA were measured by real-time PCR. Hepatic IGF-I, IGF-II and GHR1 mRNA were downregulated in parallel after SW-transfer, recovered and were again downregulated after FW-retransfer. In gills, IGF-I, IGF-II and GHR1 were upregulated synchronously after SW-transfer and, partially also after FW-retransfer. The renal genes were downregulated after SW-transfer and partially upregulated after FW-retransfer. Persisting upregulation in intestinal IGF-I mRNA occurred after FW-retransfer. Thus, endocrine and auto/paracrine IGF-I and IGF-II seem to be involved in fish osmoregulation in an organ-specific manner.
机译:矛盾的研究表明,鱼肝和g中的IGF-I与渗透调节有关,但对肾脏和肠的作用以及任何器官中IGF-II的作用一无所知。罗非鱼从淡水(FW)转移到海水(SW)持续1周(wk),然后再转移到FW持续一周。在SW转移和FW转移后的4h,1d,2d,3d和1wk,通过实时PCR测量IGF-I,IGF-II和生长激素受体(GHR1)mRNA。肝IGF-I,IGF-II和GHR1 mRNA在SW转移后平行下调,恢复,并在FW再次转移后再次下调。在SW中,IGF-I,IGF-II和GHR1在SW转移后以及FW再转移后同步上调。肾基因在SW转移后下调,在FW再转移后部分上调。 FW重新转移后,肠道IGF-I mRNA持续存在上调。因此,内分泌和自身/旁分泌的IGF-I和IGF-II似乎以器官特异性方式参与鱼渗透调节。

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