Graduate School of Natural Science and Technology, Okayama University, Kita-ku, Okayama 700-8530, Japan.
Plant Physiol. 2012 May;159(1):450-60. doi: 10.1104/pp.112.195578. Epub 2012 Mar 5.
Phospholipase D (PLD) is involved in responses to abiotic stress and abscisic acid (ABA) signaling. To investigate the roles of two Arabidopsis (Arabidopsis thaliana) PLDs, PLDα1 and PLDδ, in ABA signaling in guard cells, we analyzed ABA responses in guard cells using Arabidopsis wild type, pldα1 and pldδ single mutants, and a pldα1 pldδ double mutant. ABA-induced stomatal closure was suppressed in the pldα1 pldδ double mutant but not in the pld single mutants. The pldα1 and pldδ mutations reduced ABA-induced phosphatidic acid production in epidermal tissues. Expression of either PLDα1 or PLDδ complemented the double mutant stomatal phenotype. ABA-induced stomatal closure in both pldα1 and pldδ single mutants was inhibited by a PLD inhibitor (1-butanol ), suggesting that both PLDα1 and PLDδ function in ABA-induced stomatal closure. During ABA-induced stomatal closure, wild-type guard cells accumulate reactive oxygen species and nitric oxide and undergo cytosolic alkalization, but these changes are reduced in guard cells of the pldα1 pldδ double mutant. Inward-rectifying K(+) channel currents of guard cells were inhibited by ABA in the wild type but not in the pldα1 pldδ double mutant. ABA inhibited stomatal opening in the wild type and the pldδ mutant but not in the pldα1 mutant. In wild-type rosette leaves, ABA significantly increased PLDδ transcript levels but did not change PLDα1 transcript levels. Furthermore, the pldα1 and pldδ mutations mitigated ABA inhibition of seed germination. These results suggest that PLDα1 and PLDδ cooperate in ABA signaling in guard cells but that their functions do not completely overlap.
磷脂酶 D(PLD)参与非生物胁迫和脱落酸(ABA)信号转导的反应。为了研究拟南芥(Arabidopsis thaliana)PLDα1 和 PLDδ 在保卫细胞中 ABA 信号转导中的作用,我们使用拟南芥野生型、pldα1 和 pldδ 单突变体以及 pldα1 pldδ 双突变体分析了保卫细胞中的 ABA 反应。ABA 诱导的气孔关闭在 pldα1 pldδ 双突变体中受到抑制,但在 pld 单突变体中不受抑制。pldα1 和 pldδ 突变降低了表皮组织中 ABA 诱导的磷酸脂酸产生。PLDα1 或 PLDδ 的表达均能互补双突变体的气孔表型。在 pldα1 和 pldδ 单突变体中,ABA 诱导的气孔关闭均被 PLD 抑制剂(1-丁醇)抑制,这表明 PLDα1 和 PLDδ 均参与 ABA 诱导的气孔关闭。在 ABA 诱导的气孔关闭过程中,野生型保卫细胞积累活性氧和一氧化氮,并发生细胞质碱化,但这些变化在 pldα1 pldδ 双突变体的保卫细胞中减少。在野生型中,内向整流型 K+通道电流被 ABA 抑制,但在 pldα1 pldδ 双突变体中则不受抑制。ABA 抑制了野生型和 pldδ 突变体的气孔开放,但对 pldα1 突变体则没有抑制作用。在野生型的罗勒叶中,ABA 显著增加了 PLDδ 转录本的水平,但没有改变 PLDα1 转录本的水平。此外,pldα1 和 pldδ 突变减轻了 ABA 对种子萌发的抑制作用。这些结果表明,PLDα1 和 PLDδ 在保卫细胞中协同作用于 ABA 信号转导,但它们的功能并不完全重叠。