Xin Zeyu, Zhao Yihong, Zheng Zhi-Liang
Department of Biological Sciences, Lehman College, City University of New York, Bronx, NY 10468, USA.
Plant Physiol. 2005 Nov;139(3):1350-65. doi: 10.1104/pp.105.068064. Epub 2005 Oct 28.
Abscisic acid (ABA) is a hormone that modulates a variety of agronomically important growth and developmental processes and various stresses responses, but its signal transduction pathways remain poorly understood. ROP10, a member of ROP small GTPases in Arabidopsis (Arabidopsis thaliana), is a plasma membrane-associated protein specifically involved in negative regulation of ABA responses. To dissect the ROP10-mediated ABA signaling, we carried out transcriptome analysis using the Arabidopsis full-genome chip. Our analysis revealed a total of 262 and 125 genes that were, respectively, up- and down-regulated (> or =2-fold cutoff) by 1 mum ABA in wild type (Wassilewskija [Ws]); 42 up-regulated and 38 down-regulated genes have not been identified in other studies. Consistent with the nonpleiotropic phenotypes of rop10-1, only three genes were altered in rop10-1 in the absence of ABA treatment. In response to 1 microm ABA, 341 and 127 genes were, respectively, activated and repressed in rop10-1. Interestingly, a particular subset of 21 genes that were not altered by 1 microm ABA in Ws but only activated in rop10-1 was identified. Reverse transcription-polymerase chain reaction analysis revealed the existence of three distinct categories of ABA dose-response patterns. One novel category is characterized by their ABA unresponsiveness in Ws and activation in rop10-1 at 1 microm but not 10 and 100 microm of ABA. This indicates that ROP10 gates the expression of genes that are specific to low concentrations of ABA. Furthermore, almost all of these 21 genes are known to be highly induced by various biotic and abiotic stresses. Consequently, we found that rop10-1 enhanced the sensitivity of seed germination inhibition to mannitol and sodium chloride. Our results suggest that ROP10 negatively regulates ABA responses by specifically and differentially modulating the ABA sensitivity of a subset of genes including protein kinases and zinc-finger family proteins.
脱落酸(ABA)是一种调节多种在农学上重要的生长发育过程以及各种胁迫反应的激素,但其信号转导途径仍知之甚少。ROP10是拟南芥中ROP小GTP酶家族的成员,是一种与质膜相关的蛋白质,专门参与ABA反应的负调控。为了剖析ROP10介导的ABA信号转导,我们使用拟南芥全基因组芯片进行了转录组分析。我们的分析揭示,在野生型(Wassilewskija [Ws])中,共有262个和125个基因分别被1 μM ABA上调和下调(阈值为≥2倍);42个上调基因和38个下调基因在其他研究中尚未被鉴定。与rop10 - 1的非多效性表型一致,在未进行ABA处理时,rop10 - 1中只有三个基因发生了改变。在1 μM ABA处理下,rop10 - 1中有341个基因被激活,127个基因被抑制。有趣的是,我们鉴定出了一个由21个基因组成的特定子集,这些基因在Ws中未被1 μM ABA改变,但仅在rop10 - 1中被激活。逆转录 - 聚合酶链反应分析揭示了三种不同类型的ABA剂量反应模式。一种新的类型的特征是它们在Ws中对ABA无反应,但在1 μM而非10 μM和100 μM ABA处理下在rop10 - 1中被激活。这表明ROP10控制着对低浓度ABA特异的基因的表达。此外,已知这21个基因中的几乎所有基因都受到各种生物和非生物胁迫的高度诱导。因此,我们发现rop10 - 1增强了种子萌发对甘露醇和氯化钠抑制的敏感性。我们的结果表明,ROP10通过特异性且差异地调节包括蛋白激酶和锌指家族蛋白在内的一部分基因的ABA敏感性,对ABA反应进行负调控。