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适应淡水和波罗的海微咸水的虹鳟血浆中精氨酸加压催产素和异催产素的昼夜变化。

Diurnal changes in plasma arginine vasotocin and isotocin in rainbow trout adapted to fresh water and brackish Baltic water.

作者信息

Kulczykowska E, Stolarski J

机构信息

Marine Biology Center, Polish Academy of Sciences, Gdynia, Poland.

出版信息

Gen Comp Endocrinol. 1996 Nov;104(2):197-202. doi: 10.1006/gcen.1996.0162.

DOI:10.1006/gcen.1996.0162
PMID:8930610
Abstract

The plasma levels of arginine vasotocin (AVT) and isotocin (IT) in rainbow trout (Oncorhynchus mykiss) were studied to assess possible diurnal variations in neurohypophysial nonapeptides. Fish were kept under natural photoperiod and adapted to fresh and brackish Baltic water. Blood was sampled at 5:00, 11:00, 16:00, 22:30, and again at 5:00. Hormones were determined by gradient high-performance liquid chromatography preceded by solid-phase extraction. The marked diurnal changes of AVT were detected in plasma of fish adapted to both fresh and brackish waters. AVT levels (fmol/ml) were maximal at 16:00 and minimal at 5:00 (253.4 +/- 35.7 and 45.5 +/- 17.3, respectively). Unlike AVT, isotocin levels displayed no diurnal changes. AVT concentrations at 11:00, 16:00, and 22:30 were significantly higher than IT values measured throughout the day. Plasma AVT concentrations determined in brackish water-adapted fish at 16:00 were significantly lower than those of freshwater-adapted fish at the same time. These data suggest that synthesis and/or release of AVT and IT are controlled independently, so that these nonapeptides have different physiological roles in teleost fish. AVT might participate in circadian time-keeping system in fish.

摘要

为评估神经垂体九肽可能的昼夜变化,对虹鳟(Oncorhynchus mykiss)体内的精氨酸血管催产素(AVT)和异催产素(IT)的血浆水平进行了研究。鱼饲养在自然光照周期下,并适应淡水和波罗的海微咸水。在5:00、11:00、16:00、22:30以及次日5:00采集血液样本。激素通过固相萃取后进行梯度高效液相色谱法测定。在适应淡水和微咸水的鱼的血浆中均检测到AVT有明显的昼夜变化。AVT水平(fmol/ml)在16:00时最高,在5:00时最低(分别为253.4±35.7和45.5±17.3)。与AVT不同,异催产素水平未显示出昼夜变化。11:00、16:00和22:30时的AVT浓度显著高于全天测量的IT值。在16:00时,适应微咸水的鱼的血浆AVT浓度显著低于同时期适应淡水的鱼。这些数据表明,AVT和IT的合成和/或释放是独立控制的,因此这些九肽在硬骨鱼中具有不同的生理作用。AVT可能参与鱼类的昼夜计时系统。

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