首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Sensitivity to abscisic acid of guard-cell K+ channels is suppressed by abi1-1 a mutant Arabidopsis gene encoding a putative protein phosphatase.
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Sensitivity to abscisic acid of guard-cell K+ channels is suppressed by abi1-1 a mutant Arabidopsis gene encoding a putative protein phosphatase.

机译:保卫细胞K +通道对脱落酸的敏感性被abi1-1抑制abi1-1是编码推定蛋白磷酸酶的突变拟南芥基因。

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摘要

Abscisic acid (ABA) modulates the activities of three major classes of ion channels--inward- and outward-rectifying K+ channels (IK,in and IK,out, respectively) and anion channels--at the guard-cell plasma membrane to achieve a net efflux of osmotica and stomatal closure. Disruption of ABA sensitivity in wilty abi1-1 mutants of Arabidopsis and evidence that this gene encodes a protein phosphatase suggest that protein (de)-phosphorylation contributes to guard-cell transport control by ABA. To pinpoint the role of ABI1, the abi1-1 dominant mutant allele was stably transformed into Nicotiana benthamiana and its influence on IK,in, IK,out, and the anion channels was monitored in guard cells under voltage clamp. Compared with guard cells from wild-type and vector-transformed control plants, expression of the abi1-1 gene was associated with 2- to 6-fold reductions in IK,out and an insensitivity of both IK,in and IK,out to 20 microM ABA. In contrast, no differences between control and abi1-1 transgenic plants were observed in the anion current or its response to ABA. Parallel measurements of intracellular pH (pHi) using the fluorescent dye 2',7'-bis(2-carboxyethyl)-5-(and -6)-carboxyfluorescein (BCECF) in every case showed a 0.15- to 0.2-pH-unit alkalinization in ABA, demonstrating that the transgene was without effect on the pHi signal that mediates in ABA-evoked K+ channel control. In guard cells from the abi1-1 transformants, normal sensitivity of both K+ channels to and stomatal closure in ABA was recovered in the presence of 100 microM H7 and 0.5 microM staurosporine, both broad-range protein kinase antagonists. These results demonstrate an aberrant K+ channel behavior--including channel insensitivity to ABA-dependent alkalinization of pHi--as a major consequence of abi1-1 action and implicate AB11 as part of a phosphatase/kinase pathway that modulates the sensitivity of guard-cell K+ channels to ABA-evoked signal cascades.
机译:脱落酸(ABA)在保卫细胞质膜上调节三大类离子通道的活动-内向和外向整流K +通道(分别为IK,in和IK,out)和阴离子通道渗透压和气孔闭合的净流出。拟南芥的野生abi1-1突变体中ABA敏感性的破坏,以及该基因编码蛋白磷酸酶的证据表明,蛋白(去磷酸化)有助于ABA控制保卫细胞的运输。为了确定ABI1的作用,将abi1-1显性突变等位基因稳定地转化为本氏烟草,并对其对IK in,IK和out的影响进行了监测,并在电压钳下监控了保卫细胞中的阴离子通道。与野生型和载体转化的对照植物的保卫细胞相比,abi1-1基因的表达与IK,out降低2至6倍以及IK,in和IK降低20无关microM ABA。相反,在对照电流和abi1-1转基因植物之间,在阴离子电流或其对ABA的反应中未观察到差异。在每种情况下使用荧光染料2',7'-双(2-羧乙基)-5-(和-6)-羧基荧光素(BCECF)并行测量细胞内pH(pHi)显示0.15-0.2-pH单位ABA中的碱化,表明转基因对介导ABA诱发的K +通道控制的pHi信号没有影响。在来自abi1-1转化子的保卫细胞中,在两种广谱蛋白激酶拮抗剂100 microM H7和0.5 microM星形孢菌素的存在下,恢复了K +通道对ABA和气孔关闭的正常敏感性。这些结果表明异常的K +通道行为-包括通道对ABA依赖的pHi碱化不敏感-是abi1-1作用的主要结果,并暗示AB11是磷酸酶/激酶途径的一部分,从而调节了保卫细胞的敏感性K +通道可引发ABA诱发的信号级联。

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