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首页> 外文期刊>General and comparative endocrinology >Hormonal control of salt and water balance in vertebrates.
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Hormonal control of salt and water balance in vertebrates.

机译:激素对脊椎动物中盐和水平衡的控制。

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摘要

The endocrine system mediates many of the physiological responses to the homeostatic and acclimation demands of salt and water transport. Many of the hormones involved in the control of salt and water transport are common to all vertebrates, although their precise function and target tissues have changed during evolution. Arginine vasopressin (vasotocin), angiotensin II, natriuretic peptides, vasoactive intestinal peptide, urotensin II, insulin and non-genomic actions of corticosteroids are involved in acute (minutes and hours) alterations in ion and water transport. This rapid alteration in transport is primarily the result changes in behavior, blood flow to osmoregulatory organs, and membrane insertion or activation (e.g., phosphorylation) of existing transport proteins, ion and water channels, contransporters and pumps. Corticosteroids (through genomic actions), prolactin, growth hormone, and insulin-like growth factor I primarily control long-term (several hours to days) changes in transport capacity that are the result of synthesis of new transport proteins, cell proliferation, and differentiation. In addition to the important task of establishing broad evolutionary patterns in hormones involved in ion regulation, comparative endocrinology can determine species and population level differences in signaling pathways that may be critical for adaptation to extreme or rapidly changing environments.
机译:内分泌系统介导对盐和水运输的体内平衡和适应要求的许多生理反应。尽管它们的精确功能和目标组织在进化过程中发生了变化,但许多控制盐和水传输的激素对于所有脊椎动物都是共有的。精氨酸加压素(血管紧张素),血管紧张素II,利钠肽,血管活性肠肽,尿紧张素II,胰岛素和皮质类固醇的非基因作用与离子和水传输的急性(数分钟和数小时)改变有关。转运的这种快速变化主要是行为改变,血液流向渗透调节器官以及现有转运蛋白,离子和水通道,转运蛋白和泵的膜插入或活化(例如磷酸化)的结果。皮质类固醇(通过基因组作用),催乳激素,生长激素和胰岛素样生长因子I主要控制着运输能力的长期(数小时至数天)变化,这是新转运蛋白合成,细胞增殖和分化的结果。除了在涉及离子调节的激素中建立广泛的进化模式这一重要任务之外,比较内分泌学还可以确定信号传导途径中的物种和种群水平差异,这对于适应极端或快速变化的环境可能至关重要。

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