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首页> 外文期刊>Fish Physiology and Biochemistry >The role of Ca2+ and Na+ membrane transport in brook trout (Salvelinus fontinalis) spermatozoa motility
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The role of Ca2+ and Na+ membrane transport in brook trout (Salvelinus fontinalis) spermatozoa motility

机译:Ca2 +和Na +膜运输在溪鳟(Salvelinus fontinalis)精子运动中的作用

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摘要

The role of environmental ion composition and osmolality in Ca2+ signaled activation was assessed in spermatozoa of brook trout Salvelinus fontinalis. Milt from ten mature males was obtained by abdominal massage. Spermatozoa motility was evaluated in 0, 100, and 300 mOsm/kg NaCl or sucrose solutions, buffered by 10 mM Tris-HCl pH 8.5. For investigation of spermatozoa reaction to external Ca2+ concentration, 2 mM ethylene glycol tetraacetic acid (EGTA) was added to the activation media as a calcium ions chelator. For investigation of the effect of external Na+ concentration in conditions of low external Ca2+, 100 A mu M amiloride was added to the EGTA-containing solutions as a Na+ transport blocker. Low motility was observed in sucrose (Na+ free) solutions containing 2 mM EGTA but not in Na+ solutions containing 2 mM EGTA. Addition of amiloride led to significantly increased motility (P < 0.05) compared with sucrose (Na+ free) solutions containing 2 mM EGTA. We conclude that Na+ transport in Ca2+-free solutions plays a regulatory role in brook trout spermatozoa activation. The influence of competitive Na+ and Ca2+ transport on the control of spermatozoa activation requires further study with respect to its application for improvement of artificial activation and storage media.
机译:在溪鳟Salvelinus fontinalis的精子中评估了环境离子组成和重量摩尔渗透压浓度在Ca2 +信号激活中的作用。通过腹部按摩从十个成熟的雄性身上获得了温和的营养。在0、100和300 mOsm / kg NaCl或蔗糖溶液中,在10 mM Tris-HCl pH 8.5缓冲液中评估精子的运动性。为了研究精子对外部Ca2 +浓度的反应,将2 mM乙二醇四乙酸(EGTA)作为钙离子螯合剂添加到活化介质中。为了研究在低外部Ca2 +条件下外部Na +浓度的影响,将100 AμM阿米洛利作为Na +转运阻滞剂添加到含EGTA的溶液中。在包含2 mM EGTA的蔗糖(不含Na +)溶液中观察到低运动性,但在包含2 mM EGTA的Na +溶液中未观察到低运动性。与含2 mM EGTA的蔗糖(不含Na +)溶液相比,添加阿米洛利导致运动性显着提高(P <0.05)。我们得出的结论是,在不含Ca2 +的溶液中Na +运输在溪鳟精子激活中起调节作用。竞争性Na +和Ca2 +转运对精子活化控制的影响,就其在改善人工活化和储存介质中的应用而言,尚需进一步研究。

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