Oliver M. J., Ferguson D. L., Burke J. J.
United States Department of Agriculture-Agricultural Research Service, Cropping Systems Research Laboratory, Box 215, Route 3, Lubbock, Texas 79401 (M.J.O., J.J.B.).
Plant Physiol. 1995 Feb;107(2):429-434. doi: 10.1104/pp.107.2.429.
We report here an approach to metabolic engineering to alter the temperature characteristics of an enzyme pool based on the concept of thermal kinetics windows (TKWs), a useful indicator of enzyme performance. A chimeric cucumber NADH-hydroxypyruvate reductase (HPR) gene under the control of a cauliflower mosaic virus 35S promoter was constructed and introduced into the genome of tobacco (Tobacum tobacum). The root system of the R1 generation of the resultant transgenic plants expresses only the cucumber enzyme (the native tobacco HPR gene is light regulated and only found in the aerial portions of the plant). Enzyme isolated from the transgenic root tissues exhibits a TKW centered at 32.5[deg]C, characteristic of cucumber. The pool of HPR in the shoots, containing both tobacco and cucumber enzymes, exhibits a broad TKW consistent with an equal mix of the two forms. These data do not simply demonstrate that an introduced gene can be expressed in a transgenic plant but that the kinetics properties of the resultant enzyme are unaltered and when sufficient enzyme is produced the temperature characteristics of the total pool are altered. This suggests that the temperature characteristics of plant biochemical pathways can be broadened to suit changing thermal environments.
我们在此报告一种代谢工程方法,该方法基于热动力学窗口(TKWs)的概念来改变酶库的温度特性,TKWs是酶性能的一个有用指标。构建了一个受花椰菜花叶病毒35S启动子控制的嵌合黄瓜NADH - 羟基丙酮酸还原酶(HPR)基因,并将其导入烟草(烟草)基因组中。所得转基因植物R1代的根系仅表达黄瓜酶(天然烟草HPR基因受光调控,仅存在于植物地上部分)。从转基因根组织中分离出的酶表现出以32.5℃为中心的TKW,这是黄瓜酶的特征。芽中的HPR库包含烟草和黄瓜两种酶,表现出与两种形式等量混合一致的宽TKW。这些数据不仅表明导入的基因可以在转基因植物中表达,而且所得酶的动力学特性未改变,并且当产生足够的酶时,总酶库的温度特性会发生改变。这表明植物生化途径的温度特性可以拓宽以适应不断变化的热环境。