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植物呼吸爆发氧化酶同源物影响番茄的伤口反应性和发育。

Plant respiratory burst oxidase homologs impinge on wound responsiveness and development in Lycopersicon esculentum.

作者信息

Sagi Moshe, Davydov Olga, Orazova Saltanat, Yesbergenova Zhazira, Ophir Ron, Stratmann Johannes W, Fluhr Robert

机构信息

Institute for Applied Research, Ben-Gurion University, Beer Sheva 84105, Israel.

出版信息

Plant Cell. 2004 Mar;16(3):616-28. doi: 10.1105/tpc.019398. Epub 2004 Feb 18.

Abstract

Plant respiratory burst oxidase homologs (Rboh) are homologs of the human neutrophil pathogen-related gp91(phox). Antisense technology was employed to ascertain the biological function of Lycopersicon esculentum (tomato) Rboh. Lines with diminished Rboh activity showed a reduced level of reactive oxygen species (ROS) in the leaf, implying a role for Rboh in establishing the cellular redox milieu. Surprisingly, the antisense plants acquired a highly branched phenotype, switched from indeterminate to determinate growth habit, and had fasciated reproductive organs. Wound-induced systemic expression of proteinase inhibitor II was compromised in the antisense lines, indicating that ROS intermediates supplied by Rboh are required for this wound response. Extending these observations by transcriptome analysis revealed ectopic leaf expression of homeotic MADS box genes that are normally expressed only in reproductive organs. In addition, both Rboh-dependent and -independent wound-induced gene induction was detected as well as transcript changes related to redox maintenance. The results provide novel insights into how the steady state cellular level of ROS is controlled and portrays the role of Rboh as a signal transducer of stress and developmental responses.

摘要

植物呼吸爆发氧化酶同源物(Rboh)是人类中性粒细胞病原体相关的gp91(phox)的同源物。采用反义技术来确定番茄Rboh的生物学功能。Rboh活性降低的株系叶片中活性氧(ROS)水平降低,这意味着Rboh在建立细胞氧化还原环境中发挥作用。令人惊讶的是,反义植株呈现出高度分枝的表型,从无限生长习性转变为有限生长习性,并且生殖器官出现了扁化现象。在反义株系中,伤口诱导的蛋白酶抑制剂II的系统表达受到损害,这表明Rboh提供的ROS中间体是这种伤口反应所必需的。通过转录组分析扩展这些观察结果发现,同源异型MADS盒基因在叶片中异位表达,而这些基因通常仅在生殖器官中表达。此外,还检测到了依赖Rboh和不依赖Rboh的伤口诱导基因诱导以及与氧化还原维持相关的转录变化。这些结果为ROS的细胞稳态水平如何受到控制提供了新的见解,并描绘了Rboh作为应激和发育反应信号转导器的作用。

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