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Chara buckellii a Euryhaline Charophyte from an Unusual Saline Environment

机译:Chara buckellii一种来自异常盐渍环境的Euryhaline Charophyte

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摘要

The time course of turgor regulation of the euryhaline giant-celled alga, Chara buckellii, is presented. Isolated intermodal cells were challenged by increasing or decreasing the external osmotic pressure by 150 milliosmoles per kilogram with all ions in the media or by dilution, respectively. Regulation following hypotonic stress was complete within 48 hours whereas regulation following hypertonic stress required between 96 and 144 hours. The change in internal osmotic pressure could be entirely accounted for by changes in vacuolar KCl in response to hypotonic stress, but this ion pair only accounted for 45% of the change in response to hypertonic stress. The membrane potential of C. buckellii is normally hyperpolarized with respect to the equilibrium potential for K+ (EK). The membrane depolarized to a level close to EK in response to hypotonic treatment and this was accompanied by a transient increase in membrane conductance. In response to hypertonic stress, the membrane hyperpolarized transiently, then repolarized to a level close to the control. This was accompanied by a temporary decrease in membrane conductance. The data are discussed with respect to the ecological significance of the time course and ion transport mechanisms during turgor regulation.
机译:提出了胆碱巨细胞藻Chara buckellii的膨大调节的时程。通过将所有离子都在培养基中或通过稀释分别增加或降低外部渗透压每千克150毫摩尔,来挑战分离的联运细胞。低渗应激后的调节在48小时内完成,而高渗应激后的调节则需要在96至144小时之间。内部渗透压的变化可以完全由液泡中的KCl对低渗应激的响应来解释,但该离子对仅占高渗应激的45%。相对于K + (EK)的平衡电势,巴氏梭菌的膜电势通常是超极化的。响应低渗处理,膜去极化至接近EK的水平,并伴随着膜电导的短暂增加。响应于高渗应激,膜瞬时超极化,然后再极化至接近对照的水平。这伴随着膜电导的暂时降低。讨论了有关时间过程的生态学意义以及在膨胀调节过程中离子迁移机制的数据。

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