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Re-modeling Chara action potential: II. The action potential form under salinity stress

机译:重新塑造 Chara 动作电位:II。盐度胁迫下的动作电位形式

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In part I we established Thiel-Beilby model of the Chara action potential (AP). In part II the AP is investigated in detail at the time of saline stress. Even very short exposure of salt-sensitive Chara cells to artificial pond water with 50 mM NaCl (Saline APW) modified the AP threshold and drastically altered the AP form. Detailed modeling of 14 saline APs from 3 cells established that both the Ca2+ pump and the Ca2+ channels on internal stores seem to be affected, with the changes sometimes cancelling and sometimes re-enforcing each other, leading to APs with long durations and very complex forms. The exposure to salinity offers further insights into AP mechanism and suggests future experiments. The prolonged APs lead to greater loss of chloride and potassium ions, compounding the effects of saline stress.
机译:在第一部分中,我们建立了Chara动作电位(AP)的Thiel-Beilby模型。在第二部分中,在盐胁迫时详细研究了AP。即使将盐敏感的Chara细胞非常短暂地暴露于含有50 mM NaCl(盐水APW)的人工池塘水中,也会改变AP阈值并彻底改变AP的形式。对来自3个细胞的14个生理盐水AP的详细建模表明,内部存储上的Ca 2 + 泵和Ca 2 + 通道似乎都受到了影响,这些变化有时会抵消有时彼此重新执行,导致AP的持续时间长且形式非常复杂。盐度的暴露提供了对AP机制的进一步了解,并提出了未来的实验建议。延长的AP导致氯离子和钾离子的损失更大,加剧了盐胁迫的影响。

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