首页> 外文期刊>Acta Botanica Gallica: Bulletin de la Societe Botanique de France >Role of glutamate availability on cadmium induced changes of nitrogen and glutamate in tomato plants (Solanum lycopersicon)
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Role of glutamate availability on cadmium induced changes of nitrogen and glutamate in tomato plants (Solanum lycopersicon)

机译:谷氨酸有效性对镉诱导的番茄植株氮和谷氨酸变化的影响(茄属番茄)

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摘要

Maximal glutamine synthetase (GS, EC 6.3.1.2) activity and free aminoacid accumulation occur together in the leaves and roots. GS and specific GS activities although declining in the stressed leaves. In the other hand, the decrease of GS activity in the roots is contrarily accompanied by an increase in specific GS activity in roots in treated plants. Maximal GS activity is correlated with the peak degradation of the free aminoacid and protein in the two organs. Western blots analysis from Cd treated plants shows a decrease in chloroplastic GS (GS2) and an increase in cytosolic GS (GS1) proteins. In the roots, free aminoacids accumulated as NADHdependent glutamate synthase (NADHGOGAT, EC 2.6.1.5.3) and specific activities increase. Maximal leaf NADHGOGAT activity occurs simultaneously with maximal leaf aminating glutamate dehydrogenase (NADHGDH, EC 1.4.1.2) activity.
机译:最大的谷氨酰胺合成酶(GS,EC 6.3.1.2)活性和游离氨基酸积累在叶和根中同时发生。 GS和特定的GS活性虽然在压力叶片中下降。另一方面,相反地,在处理过的植物中,根中GS活性的降低伴随着根中比GS活性的增加。 GS的最大活性与两个器官中游离氨基酸和蛋白质的峰值降解有关。镉处理过的植物的蛋白质印迹分析显示,叶绿体GS(GS2)减少,胞质GS(GS1)蛋白增加。在根部,作为NADH依赖的谷氨酸合酶(NADHGOGAT,EC 2.6.1.5.3)积累的游离氨基酸和比活性增加。最大的叶片NADHGOGAT活性与最大的叶片胺化谷氨酸脱氢酶(NADHGDH,EC 1.4.1.2)活性同时发生。

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