首页> 外文期刊>The Journal of biological chemistry >H2O2-triggered Retrograde Signaling from Chloroplasts to Nucleus Plays Specific Role in Response to Stress
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H2O2-triggered Retrograde Signaling from Chloroplasts to Nucleus Plays Specific Role in Response to Stress

机译:H2O2-触发从叶绿体到核的逆行信号传导在响应应力时起着具体作用

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Recent findings have suggested that reactive oxygen species (ROS) are important signaling molecules for regulating plant responses to abiotic and biotic stress and that there exist source- and kind-specific pathways for ROS signaling. In plant cells, a major source of ROS is chloroplasts, in which thylakoid membrane-bound ascorbate peroxidase (tAPX) plays a role in the regulation of H2O2 levels. Here, to clarify the signaling function of H2O2 derived from the chloroplast, we created a conditional system for producing H2O2 in the organelle by chemical-dependent tAPX silencing using estrogen-inducible RNAi. When the expression of tAPX was silenced in leaves, levels of oxidized protein in chloroplasts increased in the absence of stress. Microarray analysis revealed that tAPX silencing affects the expression of a large set of genes, some of which are involved in the response to chilling and pathogens. In response to tAPX silencing, the transcript levels of C-repeat/DRE binding factor (CBF1), a central regulator for cold acclimation, was suppressed, resulting in a high sensitivity of tAPX-silenced plants to cold. Furthermore, tAPX silencing enhanced the levels of salicylic acid (SA) and the response to SA. Interestingly, we found that tAPX silencing-responsive genes were up- or down-regulated by high light (HL) and that tAPX silencing had a negative effect on expression of ROS-responsive genes under HL, suggesting synergistic and antagonistic roles of chloroplastic H2O2 in HL response. These findings provide a new insight into the role of H2O2-triggered retrograde signaling from chloroplasts in the response to stress in planta.
机译:最近的发现表明,活性氧物质(ROS)是用于调节对非生物和生物应激的植物反应的重要信号分子,并且存在用于ROS信号的源性和种类特异性途径。在植物细胞中,ROS的主要来源是叶绿体,其中囊体膜结合的抗坏血酸过氧化物酶(TapX)在H 2 O 2水平的调节中起作用。这里,为了阐明衍生自叶绿体的H2O2的信号功能,我们通过使用雌激素诱导的RNAi通过化学依赖的Tapx沉默产生了用于在细胞器中生产H2O2的条件系统。当Tapx的表达在叶片中沉默时,在没有应激的情况下,叶绿体中氧化蛋白的水平增加。微阵列分析显示,Tapx沉默影响大量基因的表达,其中一些基因涉及对冷却和病原体的反应。响应于Tapx沉默,抑制了C-重复/ DRE结合因子(CBF1),中央调节器的转录水平,用于冷适应的中央调节器,导致Tapx沉默的植物冷却的高灵敏度。此外,TapX沉默增强了水杨酸(SA)的水平和对SA的响应。有趣的是,我们发现Tapx沉默响应基因由高光(HL)上调,并且Tapx沉默对HL下的ROS响应基因的表达具有负面影响,表明叶片塑料H2O2的协同和拮抗作用HL回应。这些调查结果提供了新的洞察力对H2O2-触发的逆行信号从叶绿体中的作用中的作用,在植物植物中的应力响应中。

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