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海水和淡水胁迫对耐盐黑鲷 Gh/Igf 系统的影响。

Effects of seawater and freshwater challenges on the Gh/Igf system in the saline-tolerant blackchin tilapia .

机构信息

Institute of Anatomy, University of Zurich, Zürich, Switzerland.

Institute of Evolutionary Medicine IEM, University of Zürich, Zürich, Switzerland.

出版信息

Front Endocrinol (Lausanne). 2022 Oct 12;13:976488. doi: 10.3389/fendo.2022.976488. eCollection 2022.

Abstract

Prolactin (Prl) and growth hormone (Gh) as well as insulin-like growth factor 1 (Igf1) are involved in the physiological adaptation of fish to varying salinities. The Igfs have been also ascribed other physiological roles during development, growth, reproduction and immune regulation. However, the main emphasis in the investigation of osmoregulatory responses has been the endocrine, liver-derived Igf1 route and local regulation within the liver and osmoregulatory organs. Few studies have focused on the impact of salinity alterations on the Gh/Igf-system within the neuroendocrine and immune systems and particularly in a salinity-tolerant species, such as the blackchin tilapia . This species is tolerant to hypersalinity and saline variations, but it is confronted by severe climate changes in the Saloum inverse estuary. Here we investigated bidirectional effects of increased salinity followed by its decrease on the gene regulation of , , , , Gh receptor and the tumor-necrosis factor a. A mixed population of sexually mature 14-month old blackchin tilapia adapted to freshwater were first exposed to seawater for one week and then to fresh water for another week. Brain, pituitary, head kidney and spleen were excised at 4 h, 1, 2, 3 and 7 days after both exposures and revealed differential expression patterns. This investigation should give us a better understanding of the role of the Gh/Igf system within the neuroendocrine and immune organs and the impact of bidirectional saline challenges on fish osmoregulation in non-osmoregulatory organs, notably the complex orchestration of growth factors and cytokines.

摘要

催乳素(Prl)和生长激素(Gh)以及胰岛素样生长因子 1(Igf1)参与鱼类对不同盐度的生理适应。Igfs 在发育、生长、繁殖和免疫调节过程中也具有其他生理作用。然而,在研究渗透调节反应时,主要强调的是内分泌、肝脏来源的 Igf1 途径以及肝脏和渗透调节器官内的局部调节。很少有研究关注盐度变化对神经内分泌和免疫系统中 Gh/Igf 系统的影响,特别是在一种耐盐物种,如黑鲷。这种物种对高盐度和盐度变化具有耐受性,但在萨卢姆逆河口面临着严重的气候变化。在这里,我们研究了增加盐度随后降低盐度对基因调节的双向影响。将性成熟的 14 个月大的黑鲷混合种群适应淡水,首先暴露于海水中一周,然后再暴露于淡水中一周。在两次暴露后的 4 小时、1 天、2 天、3 天和 7 天,从大脑、垂体、头肾和脾脏中取出样本,并揭示了不同的表达模式。这项研究应该让我们更好地了解 Gh/Igf 系统在神经内分泌和免疫器官中的作用,以及双向盐水挑战对非渗透调节器官中鱼类渗透调节的影响,特别是生长因子和细胞因子的复杂协调作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ca4/9596810/cf15ab9c0d3b/fendo-13-976488-g001.jpg

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