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盐度和温度变化对淡水鱼类幼体细胞 PCNA、IGF-I 和 II 表达、身体生长和肌肉细胞密度的影响。

Salinity and temperature variations reflecting on cellular PCNA, IGF-I and II expressions, body growth and muscle cellularity of a freshwater fish larvae.

机构信息

Departamento de Morfologia, Instituo de Ciências Biológicas, Universidade Federal de Minas Gerais, P.O. Box 486, Antônio Carlos 6627, Belo Horizonte, MG 30161-970, Brazil.

Hidrobiology and Hatchery Station of Três Marias CODEVASF, P.O. Box 11, Três Marias, MG 39205-000, Brazil.

出版信息

Gen Comp Endocrinol. 2014 Jun 1;202:50-8. doi: 10.1016/j.ygcen.2014.03.047. Epub 2014 Apr 18.

Abstract

The present study assessed the influence of salinity and temperature on body growth and on muscle cellularity of Lophiosilurus alexaxdri vitelinic larvae. Slightly salted environments negatively influenced body growth of freshwater fish larvae and we observed that those conditions notably act as an environmental influencer on muscle growth and on local expression of hypertrophia and hypeplasia markers (IGFs and PCNA). Furthermore, we could see that salinity tolerance for NaCl 4gl(-)(1) diminishes with increasing temperature, evidenced by variation in body and muscle growth, and by irregular morphology of the lateral skeletal muscle of larvae. We saw that an increase of both PCNA and autocrine IGF-II are correlated to an increase in fibre numbers and fibre diameter as the temperature increases and salinity diminishes. On the other hand, autocrine IGF-I follows the opposite way to the other biological parameters assessed, increasing as salinity increases and temperature diminishes, showing that this protein did not participate in muscle cellularity, but participating in molecular/cellular repair. Therefore, slightly salted environments may provide adverse conditions that cause some obstacles to somatic growth of this species, suggesting some osmotic expenditure with a salinity increment.

摘要

本研究评估了盐度和温度对亚历山大鳜稚鱼体生长和肌肉细胞密度的影响。微咸水环境对淡水鱼类幼鱼的体生长有负面影响,我们观察到这些条件显著影响肌肉生长和肥大、增生标志物(IGF 和 PCNA)的局部表达。此外,我们还发现,随着温度的升高,耐受 4gl(-)(1)NaCl 的能力下降,这表现在体生长和肌肉生长的变化,以及幼鱼侧骨骼肌形态不规则。我们发现,随着温度升高和盐度降低,PCNA 和自分泌 IGF-II 的增加与纤维数量和纤维直径的增加相关。另一方面,自分泌 IGF-I 的变化与评估的其他生物学参数相反,随着盐度的增加和温度的降低而增加,表明这种蛋白质不参与肌肉细胞密度,而是参与分子/细胞修复。因此,微咸水环境可能会给该物种的体生长带来不利条件,这表明在盐度增加时会产生一些渗透压力。

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