Murata Y, Pei Z M, Mori I C, Schroeder J
Division of Biology, Cell and Developmental Biology Section, and Center for Molecular Genetics, University of California, San Diego, California 92093-0116, USA.
Plant Cell. 2001 Nov;13(11):2513-23. doi: 10.1105/tpc.010210.
The hormone abscisic acid (ABA) regulates stress responses and developmental processes in plants. Calcium-permeable channels activated by reactive oxygen species (ROS) have been shown recently to function in the ABA signaling network in Arabidopsis guard cells. Here, we report that ABA activation of these I(Ca) Ca(2)+ channels requires the presence of NAD(P)H in the cytosol. The protein phosphatase 2C (PP2C) mutant abi1-1 disrupted ABA activation of I(Ca) channels. Moreover, in abi1-1, ABA did not induce ROS production. Consistent with these findings, in abi1-1, H(2)O(2) activation of I(Ca) channels and H(2)O(2)-induced stomatal closing were not disrupted, suggesting that abi1-1 impairs ABA signaling between ABA reception and ROS production. The abi2-1 mutation, which lies in a distinct PP2C gene, also disrupted ABA activation of I(Ca). However, in contrast to abi1-1, abi2-1 impaired both H(2)O(2) activation of I(Ca) and H(2)O(2)-induced stomatal closing. Furthermore, ABA elicited ROS production in abi2-1. These data suggest a model with the following sequence of events in early ABA signal transduction: ABA, abi1-1, NAD(P)H-dependent ROS production, abi2-1, I(Ca) Ca(2)+ channel activation followed by stomatal closing.
激素脱落酸(ABA)调控植物的应激反应和发育过程。最近研究表明,活性氧(ROS)激活的钙渗透通道在拟南芥保卫细胞的ABA信号网络中发挥作用。在此,我们报道这些I(Ca) Ca(2)+通道的ABA激活需要胞质溶胶中存在NAD(P)H。蛋白磷酸酶2C(PP2C)突变体abi1-1破坏了I(Ca)通道的ABA激活。此外,在abi1-1中,ABA不会诱导ROS产生。与这些发现一致,在abi1-1中,I(Ca)通道的H(2)O(2)激活和H(2)O(2)诱导的气孔关闭未受破坏,这表明abi1-1在ABA接收和ROS产生之间损害了ABA信号传导。位于不同PP2C基因中的abi2-1突变也破坏了I(Ca)的ABA激活。然而,与abi1-1不同,abi2-1损害了I(Ca)的H(2)O(2)激活和H(2)O(2)诱导的气孔关闭。此外,ABA在abi2-1中引发ROS产生。这些数据表明了一个在早期ABA信号转导中具有以下事件序列的模型:ABA、abi1-1、NAD(P)H依赖的ROS产生、abi2-1、I(Ca) Ca(2)+通道激活,随后是气孔关闭。