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Accumulated Expression Level of Cytosolic Glutamine Synthetase 1 Gene (OsGS1;1 or OsGS1;2) Alter Plant Development and the Carbon-Nitrogen Metabolic Status in Rice

机译:水稻胞质谷氨酰胺合成酶1基因(OsGS1; 1或OsGS1; 2)的表达水平改变改变水稻的植株发育和碳氮代谢状况

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摘要

Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice growth and yield. Glutamine synthetase is a key enzyme for ammonium assimilation. In this study, we systematically analyzed the growth phenotype, carbon-nitrogen metabolic status and gene expression profiles in GS1;1-, GS1;2-overexpressing rice and wildtype plants. Our results revealed that the GS1;1-, GS1;2-overexpressing plants exhibited a poor plant growth phenotype and yield and decreased carbonitrogen ratio in the stem caused by the accumulation of nitrogen in the stem. In addition, the leaf SPAD value and photosynthetic parameters, soluble proteins and carbohydrates varied greatly in the GS1;1-, GS1;2-overexpressing plants. Furthermore, metabolite profile and gene expression analysis demonstrated significant changes in individual sugars, organic acids and free amino acids, and gene expression patterns in GS1;1-, GS1;2-overexpressing plants, which also indicated the distinct roles that these two GS1 genes played in rice nitrogen metabolism, particularly when sufficient nitrogen was applied in the environment. Thus, the unbalanced carbon-nitrogen metabolic status and poor ability of nitrogen transportation from stem to leaf in GS1;1-, GS1;2-overexpressing plants may explain the poor growth and yield.
机译:维持碳与氮代谢的适当平衡对于水稻的生长和产量至关重要。谷氨酰胺合成酶是氨同化的关键酶。在这项研究中,我们系统地分析了过表达GS1; 1-,GS1; 2的水稻和野生型植物的生长表型,碳氮代谢状况和基因表达谱。我们的结果表明,GS1; 1-,GS1; 2-过表达植物表现出较差的植物生长表型和产量,并且由于茎中氮的积累而导致茎中碳氮比降低。此外,GS1; 1-,GS1; 2-过表达植物的叶片SPAD值和光合参数,可溶性蛋白和碳水化合物变化很大。此外,代谢物谱和基因表达分析表明,过表达GS1; 1-,GS1; 2-过表达植物中单个糖,有机酸和游离氨基酸以及基因表达模式发生了显着变化,这也表明了这两个GS1基因的独特作用尤其是在环境中施用足够的氮时,对水稻的氮代谢起着重要作用。因此,GS1; 1-,GS1; 2-过表达植物中碳氮代谢状态不平衡以及氮从茎到叶的运输能力差可能解释了生长和产量低的原因。

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