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首页> 外文期刊>Aquaculture Research >Ambient salinity and osmoregulation, energy metabolism and growth in juvenile yellowtail kingfish (Seriola lalandi Valenciennes 1833) in a recirculating aquaculture system
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Ambient salinity and osmoregulation, energy metabolism and growth in juvenile yellowtail kingfish (Seriola lalandi Valenciennes 1833) in a recirculating aquaculture system

机译:循环水产养殖系统中少年yellow鱼(Seriola lalandi Valenciennes 1833)的环境盐度和渗透压调节,能量代谢和生长

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摘要

The effects of salinity on plasma osmolality, branchial chloride cell density, feed consumption and conversion and growth performance of yellowtail kingfish (Seriola lalandi) were evaluated. Fish (11.6 +/- 0.6g) were kept for 29days at 14, 18, 22, 26 (experimental) and 30gL(-1) (control) salinity in independent, pilot-scale recirculation aquaculture systems. No differences in plasma osmolality or chloride cell numbers in gills were observed, pointing to a strong osmoregulatory capacity in the juveniles. Fish at 14, 18 and 22gL(-1) (7.61 +/- 0.19, 7.61 +/- 0.01 and 7.61 +/- 0.13% day(-1), respectively) had higher growth rates than fish at 26 and 30gL(-1) (7.10 +/- 0.05 and 6.97 +/- 0.06% day(-1) respectively). The higher growth rate at lower salinity resulted from increased feed intake; feed conversion was not different. An evaluation of the impact of salinity on growth rate of on-growing stages (till market size) seems warranted to assess whether the profitable effects of low salinity persist in later stages of this important aquaculture species.
机译:评估了盐度对tail鱼(Seriola lalandi)血浆渗透压,分支氯化物细胞密度,饲料消耗以及转化和生长性能的影响。在独立的中试规模的循环水产养殖系统中,将鱼(11.6 +/- 0.6g)的盐度分别保持在14、18、22、26(实验)和30gL(-1)(对照)的盐度下29天。没有观察到plasma的血浆渗透压或氯化物细胞数的差异,这表明幼鱼具有很强的渗透调节能力。 14、18和22gL(-1)的鱼(分别为7.61 +/- 0.19、7.61 +/- 0.01和7.61 +/- 0.13%day(-1))的生长速率高于26和30gL(- 1)(分别为7.10 +/- 0.05天和6.97 +/- 0.06%天(-1))。较低的盐度下较高的生长速率是由于采食量增加所致;饲料转化率没有变化。似乎有必要评估盐度对生长阶段(直至市场规模)的增长率的影响,以评估低盐度在这一重要水产养殖品种的后期是否能持续产生有利的影响。

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