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首页> 外文期刊>The Plant Cell >The Heat Shock Response in Moss Plants Is Regulated by Specific Calcium-Permeable Channels in the Plasma Membrane.
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The Heat Shock Response in Moss Plants Is Regulated by Specific Calcium-Permeable Channels in the Plasma Membrane.

机译:苔藓植物中的热激响应受质膜中特定的钙渗透通道调节。

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Land plants are prone to strong thermal variations and must therefore sense early moderate temperature increments to induce appropriate cellular defenses, such as molecular chaperones, in anticipation of upcoming noxious temperatures. To investigate how plants perceive mild changes in ambient temperature, we monitored in recombinant lines of the moss Physcomitrella patens the activation of a heat-inducible promoter, the integrity of a thermolabile enzyme, and the fluctuations of cytoplasmic calcium. Mild temperature increments, or isothermal treatments with membrane fluidizers or Hsp90 inhibitors, induced a heat shock response (HSR) that critically depended on a preceding Capo transient through the plasma membrane. Electrophysiological experiments revealed the presence of a Capo-permeable channel in the plasma membrane that is transiently activated by mild temperature increments or chemical perturbations of membrane fluidity. The amplitude of the Capo influx during the first minutes of a temperature stress modulated the intensity of the HSR, and Capo channel blockers prevented HSR and the onset of thermotolerance. Our data suggest that early sensing of mild temperature increments occurs at the plasma membrane of plant cells independently from cytosolic protein unfolding. The heat signal is translated into an effective HSR by way of a specific membrane-regulated Capo influx, leading to thermotolerance.
机译:陆地植物很容易发生强烈的热变化,因此,在预期即将到来的有害温度下,必须感测早期适度的温度升高以诱导适当的细胞防御,例如分子伴侣。为了调查植物如何感知环境温度的温和变化,我们在苔藓小立碗藓的重组品系中监测了热诱导型启动子的激活,不耐热酶的完整性以及细胞质钙的波动。温和的温度升高,或用膜流化剂或Hsp90抑制剂进行等温处理,都会引起热休克反应(HSR),该反应主要取决于先前穿过质膜的Capo瞬变。电生理实验表明,质膜中存在Capo渗透通道,该通道可通过温和的温度升高或膜流动性的化学扰动而短暂激活。在温度应力的最初几分钟内,Capo涌入的幅度调节了HSR的强度,而Capo通道阻滞剂阻​​止了HSR和耐热性的发生。我们的数据表明,温和的温度升高的早期感应发生在植物细胞的质膜上,与胞质蛋白的解开无关。热信号通过特定的膜调节Capo流入量转化为有效的HSR,从而导致耐热性。

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