Kobayashi Masaki, Sasaki Kensuke, Enomoto Masaru, Ehara Yoshio
Tohoku Institute of Technology, 35-1, Yagiyama Kasumicho, Taihaku-ku, Sendai, 982-8577 Japan.
J Exp Bot. 2007;58(3):465-72. doi: 10.1093/jxb/erl215. Epub 2006 Dec 8.
The hypersensitive response (HR) is one mechanism of the resistance of plants to pathogen infection. It involves the generation of reactive oxygen species (ROS) which have crucial roles in signal transduction or as toxic agents leading to cell death. Often, ROS generation is accompanied by an ultraweak photon emission resulting from radical reactions that are initiated by ROS through the oxidation of living materials such as lipids, proteins, and DNA. This photon emission, referred to as 'biophotons', is extremely weak, but, based on the technique of photon counting imaging, a system has been developed to analyse the spatiotemporal properties of photon emission. Using this system, the dynamics of photon emission which might be associated with the oxidative burst, which promotes the HR, have been determined. Here, the transient generation of biophotons is demonstrated during the HR process in cowpea elicited by cucumber mosaic virus. The distinctive dynamics in spatiotemporal properties of biophoton emission during the HR expression on macroscopic and microscopic levels are also described. This study reveals the involvement of ROS generation in biophoton emission in the process of HR through the determination of the inhibitory effect of an antioxidant (Tiron) on biophoton emission.
过敏反应(HR)是植物抵抗病原体感染的一种机制。它涉及活性氧(ROS)的产生,ROS在信号转导中起关键作用,或作为导致细胞死亡的有毒物质。通常,ROS的产生伴随着由ROS通过氧化脂质、蛋白质和DNA等生物材料引发的自由基反应所产生的超微弱光子发射。这种光子发射被称为“生物光子”,极其微弱,但是,基于光子计数成像技术,已经开发出一种系统来分析光子发射的时空特性。利用该系统,已经确定了可能与促进HR的氧化爆发相关的光子发射动态。在这里,展示了在黄瓜花叶病毒引发的豇豆HR过程中生物光子的瞬态产生。还描述了在宏观和微观水平上HR表达过程中生物光子发射时空特性的独特动态。这项研究通过测定抗氧化剂(钛铁试剂)对生物光子发射的抑制作用,揭示了HR过程中ROS产生与生物光子发射的关联。