首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on the Biology of Transpiration: Ca2+-Dependent and -Independent Abscisic Acid Activation of Plasma Membrane Anion Channels in Guard Cells of Nicotiana tabacum
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Focus Issue on the Biology of Transpiration: Ca2+-Dependent and -Independent Abscisic Acid Activation of Plasma Membrane Anion Channels in Guard Cells of Nicotiana tabacum

机译:蒸腾生物学的重点问题:烟草保卫细胞中质膜阴离子通道的Ca2 +依赖性和非依赖性脱落酸活化

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摘要

Drought induces stomatal closure, a response that is associated with the activation of plasma membrane anion channels in guard cells, by the phytohormone abscisic acid (ABA). In several species, this response is associated with changes in the cytoplasmic free Ca2+ concentration. In Vicia faba, however, guard cell anion channels activate in a Ca2+-independent manner. Because of potential differences between species, Nicotiana tabacum guard cells were studied in intact plants, with simultaneous recordings of the plasma membrane conductance and the cytoplasmic free Ca2+ concentration. ABA triggered transient rises in cytoplasmic Ca2+ in the majority of the guard cells (14 out of 19). In seven out of 14 guard cells, the change in cytoplasmic free Ca2+ closely matched the activation of anion channels, while the Ca2+ rise was delayed in seven other cells. In the remaining five cells, ABA stimulated anion channels without a change in the cytoplasmic Ca2+ level. Even though ABA could activate anion channels in N. tabacum guard cells independent of a rise in the cytoplasmic Ca2+ concentration, patch clamp experiments showed that anion channels in these cells are stimulated by elevated Ca2+ in an ATP-dependent manner. Guard cells thus seem to have evolved both Ca2+-independent and -dependent ABA signaling pathways. Guard cells of N. tabacum apparently utilize both pathways, while ABA signaling in V. faba seems to be restricted to the Ca2+-independent pathway.
机译:干旱诱导植物气孔脱落酸(ABA)引起的气孔关闭,这种反应与保卫细胞中质膜阴离子通道的激活有关。在一些物种中,这种反应与细胞质中游离Ca 2 + 浓度的变化有关。然而,在蚕豆中,保卫细胞的阴离子通道以Ca 2 + 独立的方式激活。由于物种之间的潜在差异,在完整植物中研究了烟草的保卫细胞,同时记录了质膜电导和细胞质中游离Ca 2 + 的浓度。 ABA触发了大多数保卫细胞中胞质Ca 2 + 的瞬时升高(19个中的14个)。在14个保卫细胞中的7个中,胞浆游离Ca 2 + 的变化与阴离子通道的激活紧密匹配,而Ca 2 + 的升高在其他7个细胞中被延迟。在剩下的五个细胞中,ABA刺激了阴离子通道,而细胞质Ca 2 + 水平没有变化。尽管ABA可以独立于细胞质Ca 2 + 浓度的升高而激活烟草烟草保卫细胞中的阴离子通道,但膜片钳实验表明,Ca 升高可刺激这些细胞中的阴离子通道。 2 + 依赖于ATP。因此,保卫细胞似乎已经进化出Ca 2 + 独立和依赖的ABA信号通路。烟草的保卫细胞显然利用了这两种途径,而蚕豆中的ABA信号似乎仅限于Ca 2 + 依赖性途径。

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