Sugie Atsushi, Naydenov Nayden, Mizuno Nobuyuki, Nakamura Chiharu, Takumi Shigeo
Laboratory of Plant Genetics, Faculty of Agriculture, and Graduate School of Science and Technology, Kobe University, Kobe, Japan.
Genes Genet Syst. 2006 Oct;81(5):349-54. doi: 10.1266/ggs.81.349.
Under low temperature conditions, the cytochrome pathway of respiration is repressed and reactive oxygen species (ROS) are produced in plants. Mitochondrial alternative oxidase (AOX) is the terminal oxidase responsible for the cyanide-insensitive and salicylhydroxamic acid-sensitive respiration. To study functions of wheat AOX genes under low temperature, we produced transgenic Arabidopsis by introducing Waox1a expressed under control of the cauliflower mosaic virus (CaMV) 35S promoter in Arabidopsis thaliana. The enhancement of endogenous AOX1a expression via low temperature stress was delayed in the transgenic Arabidopsis. Recovery of the total respiration activity under low temperature occurred more rapidly in the transgenic plants than in the wild-type plants due to a constitutively increased alternative pathway capacity. Levels of ROS decreased in the transgenic plants under low temperature stress. These results support the hypothesis that AOX alleviates oxidative stress when the cytochrome pathway of respiration is inhibited under abiotic stress conditions.
在低温条件下,植物呼吸作用的细胞色素途径受到抑制并产生活性氧(ROS)。线粒体交替氧化酶(AOX)是负责氰化物不敏感和水杨基羟肟酸敏感呼吸的末端氧化酶。为了研究小麦AOX基因在低温下的功能,我们通过在拟南芥中导入由花椰菜花叶病毒(CaMV)35S启动子控制表达的Waox1a来培育转基因拟南芥。在转基因拟南芥中,通过低温胁迫增强内源性AOX1a表达的过程有所延迟。由于交替途径能力的组成性增加,转基因植物在低温下总呼吸活性的恢复比野生型植物更快。在低温胁迫下,转基因植物中的ROS水平降低。这些结果支持了以下假设:当呼吸作用的细胞色素途径在非生物胁迫条件下受到抑制时,AOX可减轻氧化应激。