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不同渗透条件下幼年金鳟(Oncorhynchus mykiss)生长的影响:对组织学、生化指标以及参与 GH/IGF 系统的基因转录的影响。

Growth influence of juvenile golden trout (Oncorhynchus mykiss) in different osmotic conditions: implications for tissue histology, biochemical indicators, and genes transcription involved in GH/IGF system.

机构信息

Faculty of Animal Science and Technology, Plateau Aquacultural College, Yunnan Agricultural University, Yunnan, 650201, China.

College of Veterinary Medicine, Yunnan Agricultural University, Yunnan, 650201, China.

出版信息

Fish Physiol Biochem. 2021 Apr;47(2):583-597. doi: 10.1007/s10695-021-00933-w. Epub 2021 Feb 9.

Abstract

The objectives of this study were to evaluate the effects of different salinity levels on tissue histology, blood biochemistry, and genes transcription of the GH/IGF system in juvenile golden trout (Oncorhynchus mykiss). Five experimental salinity levels (0, 8, 16, 24, and 32‰) were selected to domesticate juvenile O. mykiss for 7 days. Histological characteristics changed with salinity, including higher ionocites area and epithelium thickness in gills, narrow lumen of collecting tubules in kidneys, and high numbers of goblet cells in the intestines. Similarly, increments in slits, degenerate hepatocytes, and individualization of hepatocytes have been shown in fish reared in the 32‰ salinity group. The lowest triglyceride (TG) and the highest level of total protein (TP) were detected in fish reared at the 32‰ group. The genes transcription of the GH/IGF system altered in response to the increase of salinity. The present results add to the understanding of the physiological responses of O. mykiss on salinity stress and would be helpful in formulating strategies to optimize the aquaculture of this species in environments with fluctuating patterns of salinity.

摘要

本研究旨在评估不同盐度水平对幼年金鳟(Oncorhynchus mykiss)组织学、血液生化和 GH/IGF 系统基因转录的影响。选择了 5 个实验盐度水平(0、8、16、24 和 32‰)来驯化幼年金鳟 7 天。组织学特征随盐度而变化,包括鳃中更高的离子细胞面积和上皮细胞厚度、肾脏中收集管腔狭窄、肠道中杯状细胞数量增加。同样,在 32‰盐度组中饲养的鱼类中观察到裂缝增加、变性肝细胞和肝细胞个体化。在 32‰组中饲养的鱼类中检测到最低的甘油三酯 (TG) 和最高的总蛋白 (TP) 水平。GH/IGF 系统的基因转录也因盐度的增加而发生改变。本研究结果增加了对金鳟在盐度胁迫下生理反应的理解,有助于制定在盐度波动环境中优化该物种养殖的策略。

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