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首页> 外文期刊>Aquaculture >Stocking density affects the growth performance, intermediary metabolism, osmoregulation, and response to stress in Patagonian blennie Eleginops maclovinus
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Stocking density affects the growth performance, intermediary metabolism, osmoregulation, and response to stress in Patagonian blennie Eleginops maclovinus

机译:袜子密度影响了对巴塔哥尼亚州Blennie egpinops Maclovinus的生长性能,中间新陈代谢,Osmoregulation和对压力的反应

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摘要

Eleginops maclovinus is a native species with potential for Chilean aquaculture. However, its optimal stocking density and the impact on its physiology is unknown. The aim of this study is to determine the optimal stocking density range by evaluating parameters of growth, stress, intermediary metabolism, and osmoregulation. For this, 48 immature male fish (201.60 +/- 32 g; 29.05 +/- 1.45 cm) were randomly assigned to four stocking densities (3, 6, 12 and 24 kg/m(3)) and maintained for 60 days. No mortality was recorded, optimal growth was observed at a density of 3-6 kg/m(3) and decreased with a higher stocking density. In plasma, glucose and protein levels were not affected by stocking density, while triglycerides, lactate, total amino acids, cortisol, and osmolality showed a significant decrease at a higher stocking density. Enzymatic activity of branchial and renal NKA, in addition to water content in muscle, increased at a greater stocking density, while intestinal NKA showed non-significant differences. The metabolism of carbohydrates, triglycerides, and amino acids/protein in liver, gill, kidney, and muscle was significantly affected by stocking density and showed significant tissue-specific responses. Glycogen levels increased at a higher stocking density in gills, kidney, and muscle, suggesting that glucose plays an important role against chronic stress produced by stocking density. The GH/IGF-1 axis and HSP70 showed significantly lower levels of mRNA transcript at the high density of 24 kg/m(3). In conclusion, we suggest that stocking density affects the physiology of Eleginops maclovinus, activating the stress system and mobilizing energy substrates in a tissue-specific manner. Additionally, our data suggests that male E. maclovinus should be cultivated in the range of 3-12 kg/m(3), avoiding the high density of 24 kg/m(3).
机译:Eleginops Maclovinus是一种具有智利水产养殖潜力的本地物种。然而,其最佳的放养密度和对其生理学的影响是未知的。本研究的目的是通过评估生长,压力,中介代谢和OsmoreGulation的参数来确定最佳放养密度范围。为此,将48个未成熟的雄性鱼(201.60 +/- 32克; 29.05 +/- 1.45cm)随机分配到四个库存密度(3,6,12和24kg / m(3))并保持60天。记录了死亡率,以3-6kg / m(3)的密度观察到最佳生长,并且随着储存密度较高而降低。在等离子体中,葡萄糖和蛋白质水平不受储能密度的影响,而甘油三酯,乳酸盐,总氨基酸,皮质醇和渗透醇,并且在较高的放养密度下显着降低。支气管和肾NKA的酶活性,除了肌肉中的含水量,在血管含量上增加,而肠道NKA显示出非显着差异。肝脏,鳃,肾脏和肌肉中的碳水化合物,甘油三酯和氨基酸/蛋白质的代谢受到放血密度的显着影响,并且显示出显着的组织特异性反应。在鳃,肾和肌肉中的放血密度较高的糖原水平增加,这表明葡萄糖对通过放养密度产生的慢性胁迫起着重要作用。 GH / IGF-1轴和HSP70在高密度为24kg / m(3)时显示出明显较低的mRNA转录物。总之,我们建议放养密度影响秀丽乐杆子的生理学,以组织特异性方式激活应力系统并动员能量基板。此外,我们的数据表明,雄性E.甲状腺素应在3-12 kg / m(3)的范围内,避免高密度为24kg / m(3)。

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