首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Hemolymph osmolality and cation concentrations in Litopenaeus vannamei during exposure to artificial sea salt or a mixed-ion solution: Relationship to potassium flux
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Hemolymph osmolality and cation concentrations in Litopenaeus vannamei during exposure to artificial sea salt or a mixed-ion solution: Relationship to potassium flux

机译:暴露于人造海盐或混合离子溶液中的凡纳滨对虾的血淋巴渗透压和阳离子浓度:与钾通量的关系

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Interest in culturing the Pacific white shrimp Litopenaeus vannamei in low-salinity and brackish-well waters has led to questions about the ability of this species to osmo- and ionoregulate in environments containing low concentrations of ions and in environments with ionic ratios that differ from those found in sea water. After seven days, hemolymph osmolality and potassium, sodium and calcium values were all significantly affected by salinity (as artificial sea salt) with values decreasing with decreasing salinity. These decreases were small, however, relative to decreases in salinity, indicating iono- and osmoregulation with adjustment for gradients. The hemolymph osmolality and sodium and calcium concentrations in shrimp exposed to either 2 g/L artificial sea salt or 2 g/L mixed-ion solution (a mixture of sodium, potassium, calcium, and magnesium chlorides that approximate the concentrations and ratios of these cations found in 2 g/L dilute seawater) did not differ significantly. However, hemolymph potassium levels were significantly lower in shrimp held in the mixed-ion environment. Potassium influx rates were similar in shrimp held in either artificial sea salt or mixed ions. The results of this study indicate that salinity affects hemolymph-cation concentrations and osmolality. Further, differential potassium-influx rates do not appear to be the basis for low hemolymph potassium levels observed in shrimp held in mixed-ion environments. (c) 2006 Elsevier Inc. All rights reserved.
机译:对在低盐度和微咸水域中养殖太平洋白对虾凡纳滨对虾的兴趣引起了人们对该物种在低离子浓度的环境中和离子比与那些不同的环境中渗透和电离的能力的质疑。在海水中发现。 7天后,盐度(如人造海盐)对血淋巴渗透压,钾,钠和钙的值均具有显着影响,且随着盐度的降低而降低。但是,相对于盐度的降低,这些降低很小,表明离子电和渗透压调节了梯度。暴露于2 g / L人造海盐或2 g / L混合离子溶液(钠,钾,钙和镁的氯化物混合物,近似于这些盐的浓度和比例)下的虾的血淋巴渗透压,钠和钙浓度在2 g / L的稀海水中发现的阳离子没有显着差异。然而,在混合离子环境中,虾的血淋巴钾水平显着降低。人工海盐或混合离子中对虾的钾流入速率相似。这项研究的结果表明盐度会影响血淋巴阳离子浓度和重量克分子渗透压浓度。此外,差异钾的流入速率似乎并不是在混合离子环境中对虾中观察到的低血淋巴钾水平的基础。 (c)2006 Elsevier Inc.保留所有权利。

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