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Point Mutation of a Plastidic Invertase Inhibits Development of the Photosynthetic Apparatus and Enhances Nitrate Assimilation in Sugar-treated Arabidopsis Seedlings*

机译:点状转化酶的点突变抑制了光处理设备的发育并增强了糖处理的拟南芥幼苗中的硝酸盐同化作用*

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摘要

Because the photosynthetic apparatus contains a massive amount of nitrogen in plants, the regulation of its development by sugar signals is important to the maintenance of the carbon-nitrogen balance. In this study we isolated an Arabidopsis mutant (sicy-192) whose cotyledon greening was inhibited by treatments with sugars such as sucrose, glucose, and fructose. In the mutant, the gene encoding plastidic alkaline/neutral invertase (INV-E) was point-mutated at codon 294, with Tyr substituted for Cys (C294Y). Interestingly, the greening of cotyledons in the knock-out INV-E lines was not inhibited by treatment with the sugars. In addition, the knock-out INV-E lines expressing an INV-E:C294Y or INV-E:C294A gene had the same phenotype as sicy-192 mutants, whereas the lines expressing a wild-type INV-E gene had the same phenotype as wild-type plants. A recombinant INV-E:C294Y protein had the same enzymatic activity as a recombinant INV-E protein, suggesting that the Cys-294 residue of INV-E is important for its functions in the chloroplasts. On treatment with sucrose, the expression of photosynthesis-related genes was weaker in seedlings of mutant plants than wild-type seedlings, whereas the activity of nitrate reductase was stronger in the mutant plants than wild-type plants. These findings suggest that Cys-294 of INV-E is associated with the development of the photosynthetic apparatus and the assimilation of nitrogen in Arabidopsis seedlings to control the ratio of sucrose content to hexose content.
机译:由于光合作用装置在植物中含有大量的氮,因此通过糖信号调节其发展对维持碳氮平衡非常重要。在这项研究中,我们分离了一个拟南芥突变体(sicy-192),其子叶绿化受到蔗糖,葡萄糖和果糖等糖类处理的抑制。在该突变体中,编码质体碱性/中性转化酶(INV-E)的基因在294位密码子处点突变,用Tyr取代Cys(C294Y)。有趣的是,用糖处理并不能抑制敲除的INV-E系中子叶的绿化。另外,表达INV-E:C294Y或INV-E:C294A基因的敲除INV-E系与sicy-192突变体具有相同的表型,而表达野生型INV-E基因的系具有相同的表型。表型为野生型植物。重组INV-E:C294Y蛋白具有与重组INV-E蛋白相同的酶活性,这表明INV-E的Cys-294残基对其在叶绿体中的功能很重要。蔗糖处理后,突变植物幼苗的光合作用相关基因的表达要弱于野生型幼苗,而硝酸盐还原酶的活性要强于野生植物。这些发现表明,INV-E的Cys-294与光合作用的发展以及拟南芥幼苗中氮的同化有关,以控制蔗糖含量与己糖含量的比率。

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