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Osmotic And Ionic Regulation In Response To Salinity Variations And Cold Resistance In The Arctic Under-ice Amphipod Apherusa Glacialis

机译:渗透和离子调节响应盐度变化和北极冰底两栖动物Apherusa Glacialis的抗寒性。

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Amphipods living at the underside of Arctic sea ice are exposed to varying salinities due to freezing and melting, and have to cope with the resulting osmotic stress. Extracellular osmotic and ionic regulation at different salinities, thermal hysteresis, and supercooling points (SCPs) were studied in the under-ice amphipod Apherusa glacialis. The species is euryhaline, capable to regulate hyperosmoti-cally at salinities S_R < 30 g/kg, and osmoconforms at salinities S_R ≥30 g/kg. Hyperosmotic regulation is an adaptation to thrive in low-salinity meltwater below the ice. Conforming to the ambient salinity during freezing reduces the risk of internal ice formation. Thermal hysteresis was not observed in the haemolymph of A. glacialis. The SCP of the species was -7.8 ± 1.9℃. Several ions were specifically downregulated ([Mg~(2+)], [SO_4~(2-)]), or upregulated ([K~+], [Ca~(2+)]) in comparison to the medium. Strong down-regulation of [Mg~(2+)], is probably necessary to avoid an anaesthetic effect at low temperatures.
机译:生活在北极海冰下侧的两栖类动物由于冻结和融化而暴露于不同的盐度下,必须应付由此产生的渗透胁迫。在冰底两栖动物Apherusa glacialis中研究了不同盐度,热滞和过冷点(SCP)的细胞外渗透和离子调节。该物种为欧亚盐碱,能够在盐度S_R <30 g / kg时调节高渗,在盐度S_R≥30 g / kg时呈渗透形。高渗调节是在冰以下低盐度融化水中water壮成长的一种适应。冷冻期间符合环境盐度可减少内部结冰的风险。在冰河曲霉的血淋巴中未观察到热滞后。该物种的SCP为-7.8±1.9℃。与培养基相比,几种离子被特异性下调([Mg〜(2 +)],[SO_4〜(2-)])或上调([K〜+],[Ca〜(2+)])。为了避免在低温下产生麻醉作用,可能强烈需要[Mg〜(2+)]下调。

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