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缺铁会提高甜菜根中抗坏血酸、谷胱甘肽及相关酶的水平。

Iron deficiency enhances the levels of ascorbate, glutathione, and related enzymes in sugar beet roots.

作者信息

Zaharieva Tatiana B, Abadía Javier

机构信息

Departamento de Nutrición Vegetal, Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Zaragoza, Spain.

出版信息

Protoplasma. 2003 Jun;221(3-4):269-75. doi: 10.1007/s00709-002-0051-6.

Abstract

The effects of Fe deficiency stress on the levels of ascorbate and glutathione, and on the activities of the enzymes ferric chelate reductase, glutathione reductase (EC 1.6.4.2), ascorbate free-radical reductase (EC 1.6.5.4) and ascorbate peroxidase (EC 1.11.1.11), have been investigated in sugar beet ( Beta vulgaris L.) roots. Plasma membrane vesicles and cytosolic fractions were isolated from the roots of the plants grown in nutrient solutions in the absence or presence of Fe for two weeks. Plants responded to Fe deficiency not only with a 20-fold increase in root ferric chelate reductase activity, but also with moderately increased levels of the general reductants ascorbate (2-fold) and glutathione (1.6-fold). The enzymes of the ascorbate-glutathione cycle in roots were also affected by Fe deficiency. Glutathione reductase activity was enhanced 1.4-fold with Fe deficiency, associated to an increased ratio of reduced to oxidized glutathione, from 3.1 to 5.2. The plasma membrane fraction from iron-deficient roots showed 1.7-fold higher ascorbate free-radical reductase activity, whereas in the cytosolic fraction the enzyme activity was not affected by Fe deficiency. The activity of the cytosolic hemoprotein ascorbate peroxidase decreased approximately by 50% with Fe deprivation. These results show that sugar beet responds to Fe deficiency with metabolic changes affecting components of the ascorbate-glutathione cycle in root cells. This suggests that the ascorbate-glutathione cycle would play certain roles in the general Fe deficiency stress responses in strategy I plants.

摘要

缺铁胁迫对甜菜(Beta vulgaris L.)根中抗坏血酸和谷胱甘肽水平以及铁螯合还原酶、谷胱甘肽还原酶(EC 1.6.4.2)、抗坏血酸自由基还原酶(EC 1.6.5.4)和抗坏血酸过氧化物酶(EC 1.11.1.11)活性的影响已得到研究。从在营养液中生长两周的植物根部分离出质膜囊泡和胞质部分,这些植物生长在有无铁的条件下。植物对缺铁的反应不仅表现为根中铁螯合还原酶活性增加20倍,还表现为一般还原剂抗坏血酸(2倍)和谷胱甘肽(1.6倍)水平适度增加。根中抗坏血酸 - 谷胱甘肽循环的酶也受到缺铁的影响。缺铁时谷胱甘肽还原酶活性增强1.4倍,同时还原型与氧化型谷胱甘肽的比例从3.1增加到5.2。缺铁根的质膜部分抗坏血酸自由基还原酶活性高1.7倍,而在胞质部分该酶活性不受缺铁影响。缺铁时胞质血红蛋白抗坏血酸过氧化物酶的活性大约降低50%。这些结果表明,甜菜对缺铁的反应是通过代谢变化影响根细胞中抗坏血酸 - 谷胱甘肽循环的组分。这表明抗坏血酸 - 谷胱甘肽循环在I型植物对缺铁胁迫的一般反应中可能发挥某些作用。

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