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Effects of salinity acclimation on the growth performance, osmoregulation and energy metabolism of the oriental river prawn, Macrobrachium nipponense (De Haan)

机译:盐度适应对东方河虾的生长性能,Osmoregulation和能量代谢的影响,Macrobrachium Nipponense(de Haan)

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摘要

In this study, we evaluated the growth, osmoregulation and energy metabolism of the oriental river prawn, Macrobrachium nipponense, reared during 6 weeks with different salinities (0, 8, 14 and 22 g/L). The results showed that the haemolymph osmolality of M. nipponense increased with an increase in ambient osmotic pressure; the isosmotic point was 490 mOs/kg H2O. The prawns showed a higher survival rate, weight gain rate and hepatopancreas index in salinity 14 g/L. Digestive enzymes were all affected by salinity, and the highest activities were observed in the salinity 14 g/L. The mRNA expression of Na+-K+-ATPase in gills and p53 in hepatopancreas were the highest in salinity 22 g/L. The expressions of heat shock protein 90 and glutathione S-transferase genes in hepatopancreas were significantly higher in the salinity 8 g/L. Lipid metabolism-related genes in hepatopancreas were significantly expressed in the salinity 14 g/L. The glucose-6-phosphatase gene in hepatopancreas was highly expressed in the salinity 8 and 22 g/L, and the expression of the ecdysone receptor gene in hepatopancreas was significantly higher in the salinity 14 g/L. The results showed that salinity 14 g/L could promote the growth of M. nipponense. However, higher salinity conditions may cause physiological damage, which provides a theoretical basis for brackish water culture of M. nipponense.
机译:在这项研究中,我们评估了东方河虾的生长,Osmoregulatuly和能量代谢,在6周内饲养了不同的盐水(0,8,14和22克/升)。结果表明,N. nippoonense的毒性氧解渗透压率随着环境渗透压的增加而增加; Isosmotic点为490 mos / kg H2O。虾在盐度14g / L中显示出较高的存活率,体重增加率和肝癌指数。消化酶全部受盐度的影响,并且在盐度14g / L中观察到最高的活性。肝脏和P53中Na + -k-atpase的mRNA表达是肝炎中的最高盐度22g / l。在盐度8g / L的盐度下,肝酸酐中的热休克蛋白90和谷胱甘肽S转移酶基因的表达显着高。在肝炎中,肝脏中的脂质代谢相关基因在盐度14g / l中显着表达。肝病中的葡萄糖-6-磷酸酶基因在盐度8和22g / L中高度表达,并且在肝炎中的雌晶酮受体基因的表达在盐度14g / l中显着高。结果表明,盐度14克/升可以促进M. nippoonense的生长。然而,较高的盐度条件可能导致生理损伤,这为M. nipponense的咸水培养提供了理论依据。

著录项

  • 来源
    《Aquaculture Research》 |2019年第2期|共9页
  • 作者单位

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

    East China Normal Univ Sch Life Sci Lab Crustacean Dev Biol &

    Macrobenth Ecol Shanghai Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    energy metabolism; growth; Macrobrachium nipponense; osmotic pressure; salinity;

    机译:能量新陈代谢;生长;长发性的nippoonense;渗透压;盐度;

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