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首页> 外文期刊>Journal of food quality >Influence of Selenium on Growth, Physiology, and Antioxidant Responses in Maize Varies in a Dose-Dependent Manner
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Influence of Selenium on Growth, Physiology, and Antioxidant Responses in Maize Varies in a Dose-Dependent Manner

机译:硒对玉米生长,生理学和抗氧化反应的影响以剂量依赖性方式变化

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There is a very narrow margin in selenium deficiency and toxicity although it is an important element for humans, animals, and plants. Effects of selenium (Se) on the growth and physiomorphological parameters in maize were studied grown in soil spiked with sodium selenate (Na 2 SeO 4 ) in 5 different concentrations (i.e., 0. 2.5, 5.0, 10.0, and 20.0?mg?kg ?1 ). The growth of plants was affected by high Se concentration. However, maximum increases in plant height and root length were observed at low Se (2.5?mg?kg ?1 ) which were 17.89 and 23.17%, respectively. At higher Se concentrations (20?mg?kg ?1 ), a considerable reduction was observed in dry matter, root length, antioxidant enzymes, and other physiological parameters. The dry matter of plants was also analyzed for nutrient (Fe and Zn) concentrations. Results indicated that Se stress inhibits plant growth. Gas exchange parameters were also found to be decreased under stress conditions, but at a lower Se level (2.5?mg?kg ?1 ), improvement in transpiration rate (63.46%), photosynthetic rate (47.47%), and stomatal conductance (54.55%) was observed. The reduction in growth attributes may be due to the high accumulation of Se in roots and the disturbance in gas exchange parameters. However, the principal component analysis revealed that higher Se levels were more hazardous for maize growth and physiological responses as compared to low Se levels.
机译:硒缺乏和毒性存在非常窄的余量,尽管它是人类,动物和植物的重要因素。硒的影响对玉米生长和生理形态参数的生长,在5种不同浓度下(即,0. 2.5,5.0,10.0和20.0?Mg?kg ?1)。植物的生长受高浓度的影响。然而,在低Se(2.5×mg?kg'1)下观察到植物高度和根长度的最大增加,分别为17.89和23.17%。在较高的SE浓度(20μm≤kg≤1),在干物质,根部长度,抗氧化酶和其他生理参数中观察到相当大的还原。还分析了植物的干物质以用于营养素(Fe和Zn)浓度。结果表明,SE应激抑制植物生长。还发现煤气交换参数在应力条件下降低,但在下培养水平(2.5?Mg?kg?1),改善蒸腾率(63.46%),光合速率(47.47%)和气孔电导(54.55 %) 被观测到。生长属性的降低可能是由于硒的高积聚和气体交换参数中的干扰。然而,与低SE水平相比,主要成分分析显示,对于玉米生长和生理反应,较高的SE水平更有危害。

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