首页> 美国卫生研究院文献>The EMBO Journal >Expression of a yeast-derived invertase in the cell wall of tobacco and Arabidopsis plants leads to accumulation of carbohydrate and inhibition of photosynthesis and strongly influences growth and phenotype of transgenic tobacco plants.
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Expression of a yeast-derived invertase in the cell wall of tobacco and Arabidopsis plants leads to accumulation of carbohydrate and inhibition of photosynthesis and strongly influences growth and phenotype of transgenic tobacco plants.

机译:酵母和蔗糖在烟草和拟南芥植物细胞壁中的表达导致碳水化合物的积累和光合作用的抑制并强烈影响转基因烟草植物的生长和表型。

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摘要

Chimeric genes consisting of the coding sequence of the yeast invertase gene suc 2 and different N-terminal portions of the potato-derived vacuolar protein proteinase inhibitor II fused to the 35S CaMV promoter and the poly-A site of the octopine synthase gene were transferred into tobacco and Arabidopsis thaliana plants using Agrobacterium based systems. Regenerated transgenic plants display a 50- to 500-fold higher invertase activity compared to non-transformed control plants. This invertase is N-glycosylated and efficiently secreted from the plant cell leading to its apoplastic location. Whereas expression of the invertase does not lead to drastic changes in transgenic Arabidopsis thaliana plants, transgenic tobacco plants show dramatic changes with respect to development and phenotype. Expression of the invertase leads to stunted growth due to reduction of internodal distances, to development of bleached and/or necrotic regions in older leaves and to suppressed root formation. In mature leaves, high levels of soluble sugars and starch accumulate. These carbohydrates do not show a diurnal turnover. The accumulation of carbohydrate is accompanied by an inhibition of photosynthesis, and in tobacco, by an increase in the rate of respiration. Measurements in bleached versus green areas of the same leaf show that the bleached section contains high levels of carbohydrates and has lower photosynthesis and higher respiration than green sections. It is concluded that expression of invertase in the cell wall interrupts export and leads to an accumulation of carbohydrates and inhibition of photosynthesis.
机译:将由酵母转化酶基因suc 2的编码序列以及与35S CaMV启动子融合的马铃薯衍生的液泡蛋白蛋白酶抑制剂II的不同N端部分和章鱼碱合酶基因的poly-A位点组成的嵌合基因转移到烟草和拟南芥植物使用基于农杆菌的系统。与未转化的对照植物相比,再生的转基因植物显示出高50至500倍的转化酶活性。该转化酶被N-糖基化并从植物细胞中有效分泌,导致其质外体定位。转化酶的表达不会导致转基因拟南芥植物的急剧变化,而转基因烟草植物在发育和表型方面显示出巨大的变化。由于节间距离的减少,转化酶的表达导致发育迟缓的生长,导致老叶中漂白和/或坏死区域的发展以及根的形成受到抑制。在成熟的叶子中,高含量的可溶性糖和淀粉积累。这些碳水化合物没有表现出昼夜转换。碳水化合物的积累伴随着光合作用的抑制,而在烟草中则伴随着呼吸速率的增加。在同一张叶子的漂白区和绿色区进行的测量表明,与绿色区相比,漂白区含有较高水平的碳水化合物,并且光合作用较低,呼吸作用较高。结论是,转化酶在细胞壁中的表达中断了输出并导致碳水化合物的积累和光合作用的抑制。

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