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首页> 外文期刊>Russian Journal of Plant Physiology >Investigation of biochemical function of selenium and its influence on the content of protein fractions and peroxidase activity in maize seedlings
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Investigation of biochemical function of selenium and its influence on the content of protein fractions and peroxidase activity in maize seedlings

机译:硒的生化功能及其对玉米幼苗蛋白质组分含量和过氧化物酶活性的影响

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The release of elemental selenium on the root surface of maize (Zea mays L., variety Krasnodarskii 29/AMV) seedlings observed in response to the addition of selenium-organic preparation DAFS-25 (diacetophenonyl selenide) to the nutrient Knop solution and accompanied by inhibition of growth of the roots was investigated. This process was completely suppressed after the addition of cysteine to the above solution containing 10(-2) g/L DAFS-25, with the inhibiting effect was attenuated as well. In addition, DAFS-25 exerted impact on nitrogen exchange in the plants as judged by elevating the protein fraction of albumins in the roots almost by a factor of two due to at the expense of decreasing the content of glutelin, prolamine, and globulin fractions by 43, 25, and 26%, respectively. In the case of the action of DAFS-25 in combination with cysteine the quantitative composition of the above proteins very closely resembled that of the control plants indicating that cysteine behaves as antidote. It was found that DAFS-25 exerted a similar action on the content of albumins in the above-ground part of maize seedlings where this value drastically increased (by a factor of 4.5) on the background of total protein content elevation. In addition, this preparation at the highest concentration tested stimulated the activity of peroxidase in both the roots (by 63%) and the above-ground part of seedlings (by 112%). However, this effect of DAFS-25 was strongly inhibited after addition of cysteine to the nutrient solution. Evaluation of selenium content in the same parts of the control seedlings showed that they contain only a little amount of this element. The highest content of selenium in the above plant tissues was found after addition of DAFS-25 to the nutrient solution that provides evidence for its decomposition directly on the surface of the roots. Such an action of DAFS-25, like its impact on the peroxidase activity, was markedly attenuated in the presence of cysteine.
机译:在向营养性诺普氏溶液中添加硒有机制剂DAFS-25(二苯乙酮硒化)后,观察到玉米(Zea mays L.,Krasnodarskii 29 / AMV变种)幼苗根部元素硒的释放。研究了抑制根的生长。将半胱氨酸加入上述含有10(-2)g / L DAFS-25的溶液中后,该过程被完全抑制,抑制作用也减弱了。此外,DAFS-25对植物中的氮交换产生了影响,这可以通过将根中白蛋白的蛋白质含量几乎提高两倍来判断,原因是降低了谷蛋白,谷氨酰胺和球蛋白含量的降低。分别为43%,25%和26%。在DAFS-25与半胱氨酸联合作用的情况下,上述蛋白质的定量组成非常类似于对照植物,表明半胱氨酸起解毒剂的作用。发现DAFS-25对玉米地上部分中白蛋白的含量具有类似作用,该值在总蛋白质含量升高的背景下急剧增加(增加了4.5倍)。此外,这种最高测试浓度的制剂刺激了根部(63%)和幼苗地上部分(112%)的过氧化物酶活性。但是,将半胱氨酸添加到营养液中后,DAFS-25的这种作用被强烈抑制。对照幼苗的相同部位中硒含量的评估表明,它们仅含有少量的这种元素。在将DAFS-25添加到营养液中后,发现上述植物组织中硒含量最高,这为直接在根表面分解提供了证据。在半胱氨酸存在的情况下,DAFS-25的这种作用(如其对过氧化物酶活性的影响)显着减弱。

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