Fukao Takeshi, Bailey-Serres Julia
Department of Botany and Plant Sciences, Center for Plant Cell Biology, University of California, Riverside, CA 92521, USA.
Proc Natl Acad Sci U S A. 2008 Oct 28;105(43):16814-9. doi: 10.1073/pnas.0807821105. Epub 2008 Oct 20.
Submergence-tolerant rice maintains viability during complete submergence by limiting underwater elongation until floodwaters recede. Acclimation responses to submergence are coordinated by the submergence-inducible Sub1A, which encodes an ethylene-responsive factor-type transcription factor (ERF). Sub1A is limited to tolerant genotypes and sufficient to confer submergence tolerance to intolerant accessions. Here we evaluated the role of Sub1A in the integration of ethylene, abscisic acid (ABA), and gibberellin (GA) signaling during submergence. The submergence-stimulated decrease in ABA content was Sub1A-independent, whereas GA-mediated underwater elongation was significantly restricted by Sub1A. Transgenics that ectopically express Sub1A displayed classical GA-insensitive phenotypes, leading to the hypothesis that Sub1A limits the response to GA. Notably Sub1A increased the accumulation of the GA signaling repressors Slender Rice-1 (SLR1) and SLR1 Like-1 (SLRL1) and concomitantly diminished GA-inducible gene expression under submerged conditions. In the Sub1A overexpression line, SLR1 protein levels declined under prolonged submergence but were accompanied by an increase in accumulation of SLRL1, which lacks the DELLA domain. In the presence of Sub1A, the increase in these GA signaling repressors and decrease in GA responsiveness were stimulated by ethylene, which promotes Sub1A expression. Conversely, ethylene promoted GA responsiveness and shoot elongation in submergence-intolerant lines. Together, these results demonstrate that Sub1A limits ethylene-promoted GA responsiveness during submergence by augmenting accumulation of the GA signaling repressors SLR1 and SLRL1.
耐淹水稻通过限制水下伸长,直到洪水退去,从而在完全淹没期间维持活力。对淹水的适应性反应由淹水诱导的Sub1A协调,Sub1A编码一种乙烯反应因子型转录因子(ERF)。Sub1A仅限于耐受基因型,并且足以赋予不耐受品种淹水耐受性。在这里,我们评估了Sub1A在淹水期间乙烯、脱落酸(ABA)和赤霉素(GA)信号整合中的作用。淹水刺激引起的ABA含量下降与Sub1A无关,而GA介导的水下伸长受到Sub1A的显著限制。异位表达Sub1A的转基因植株表现出典型的GA不敏感表型,从而产生了Sub1A限制对GA反应的假设。值得注意的是,Sub1A增加了GA信号抑制因子细长水稻1(SLR1)和类SLR1(SLRL1)的积累,并同时减少了淹水条件下GA诱导的基因表达。在Sub1A过表达系中,长时间淹水后SLR1蛋白水平下降,但伴随着缺乏DELLA结构域的SLRL1积累增加。在存在Sub1A的情况下,乙烯刺激了这些GA信号抑制因子的增加和GA反应性的降低,乙烯促进Sub1A表达。相反,乙烯促进了不耐淹品种的GA反应性和地上部伸长。总之,这些结果表明,Sub1A通过增加GA信号抑制因子SLR1和SLRL1的积累,限制了淹水期间乙烯促进的GA反应性。