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SPIN1 a K Homology Domain Protein Negatively Regulated and Ubiquitinated by the E3 Ubiquitin Ligase SPL11 Is Involved in Flowering Time Control in Rice

机译:SPIN1是由E3泛素连接酶SPL11负调控和泛素化的K同源结构域蛋白参与水稻的开花时间控制。

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摘要

The rice (Oryza sativa) E3 ligase SPOTTED LEAF11 (SPL11) negatively regulates programmed cell death and disease resistance. We demonstrate here that SPL11 also regulates flowering via interaction with SPIN1 (for SPL11-interacting protein1), a Signal Transduction and Activation of RNA family member. SPIN1 binds RNA and DNA in vitro and interacts with SPL11 in the nucleus. Spl11 mutants have delayed flowering under long-day conditions. Spin1 overexpression causes late flowering independently of daylength; expression analyses of flowering marker genes in these lines suggested that SPIN1 represses flowering by downregulating the flowering promoter gene Heading date3a (Hd3a) via Hd1-dependent mechanisms in short days and by targeting Hd1-independent factors in long days. Both Spin1 and Spl11 are regulated diurnally in opposing phases. SPL11 negatively regulates Spin1 transcript levels, while SPIN1 also affects Spl11 expression. Moreover, we show that coincidence of high accumulation of Spin1 mRNA with the light in the morning and early evening is needed to repress flowering. SPIN1 is monoubiquitinated by SPL11, suggesting that it is not targeted for degradation. Our data are consistent with a model in which SPIN1 acts as a negative regulator of flowering that itself is negatively regulated by SPL11, possibly via ubiquitination.
机译:水稻(Oryza sativa)E3连接酶SPOTTED LEAF11(SPL11)负调节程序性细胞死亡和疾病抗性。我们在这里证明,SPL11还通过与SPIN1(对于SPL11相互作用蛋白1)相互作用,信号转导和RNA家族激活激活来调节开花。 SPIN1在体外结合RNA和DNA,并与细胞核中的SPL11相互作用。 Spl11突变体在长日照条件下延迟了开花。 Spin1过表达导致晚开花,而与白天无关;在这些系中开花标记基因的表达分析表明,SPIN1通过短时通过Hd1依赖性机制下调开花启动子基因Heading date3a(Hd3a)并在长日中靶向Hd1独立因子来抑制开花。 Spin1和Spl11都在相反的相位上被昼夜调节。 SPL11负调控Spin1转录水平,而SPIN1也影响Spl11表达。此外,我们表明,Spin1 mRNA高积累与早晨和傍晚的灯光相吻合是抑制开花的必要条件。 SPIN1被SPL11单泛素化,表明它不是降解的目标。我们的数据与一个模型一致,在该模型中,SPIN1充当开花的负调节剂,其本身可能受泛素化作用而被SPL11负调节。

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