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Diverse Subcellular Locations of Cryptogein-Induced Reactive Oxygen Species Production in Tobacco Bright Yellow-2 Cells

机译:隐亮蛋白诱导的烟草亮黄2细胞产生的活性氧物种的不同亚细胞位置。

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Reactive oxygen species (ROS) play a crucial role in many cellular responses and signaling pathways, including the oxidative burst defense response to pathogens. We have examined very early events in cryptogein-induced ROS production in tobacco (Nicotiana tabacum) Bright Yellow-2 suspension cells. Using Amplex Red and Amplex Ultra Red reagents, which report real-time H2O2 accumulation in cell populations, we show that the internal signal for H2O2 develops more rapidly than the external apoplastic signal. Subcellular accumulation of H2O2 was also followed in individual cells using the 2',7'-dichlorofluorescein diacetate fluorescent probe. Major accumulation was detected in endomembrane, cytoplasmic, and nuclear compartments. When cryptogein was added, the signal developed first in the nuclear region and, after a short delay, in the cell periphery. Interestingly, isolated nuclei were capable of producing H2O2 in a calcium-dependent manner, implying that nuclei can serve as a potential active source of ROS production. These results show complex spatial compartmentalization for ROS accumulation and an unexpected temporal sequence of events that occurs after cryptogein application, suggesting novel intricacy in ROS-signaling cascades
机译:活性氧(ROS)在许多细胞反应和信号传导途径(包括对病原体的氧化爆发防御反应)中起着至关重要的作用。我们已经检查了隐叶蛋白诱导的烟草(Nicotiana tabacum)亮黄2悬浮细胞中ROS产生的早期事件。使用Amplex Red和Amplex Ultra Red试剂报告细胞群体中H2O2的实时积累,我们显示H2O2的内部信号比外部的质外体信号发展得更快。还使用2',7'-二氯荧光素二乙酸酯荧光探针在单个细胞中追踪H2O2的亚细胞积累。在膜,细胞质和核区室中检测到主要积累。当加入隐gegein时,信号首先在核区域中产生,然后在短暂的延迟后在细胞外围产生。有趣的是,分离出的原子核能够以钙依赖性方式产生H2O2,这意味着原子核可以作为ROS产生的潜在活性来源。这些结果表明,ROS积累的复杂空间划分和密码素应用后发生的事件的意外时间序列,表明ROS信号级联中存在新的复杂性

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  • 来源
    《Plant Physiology》 |2007年第4期|p.1817-1826|共10页
  • 作者单位

    Department of Plant Science, Weizmann Institute of Science, Rehovot 76100, Israel (C.A., V.K., O.D., R.F.);

    and Jacob Blaustein Institute for Desert Research, Albert Katz Department of Dryland Biotechnologies, Ben-Gurion University, Beer Sheva 84105, Israel (M.S.);

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