首页> 外文期刊>Acta Agriculturae Slovenica >Effects of exogenous proline on the physiological characteristics of Triticum aestivum L. and Lens culinaris Medik. under drought stress
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Effects of exogenous proline on the physiological characteristics of Triticum aestivum L. and Lens culinaris Medik. under drought stress

机译:外源脯氨酸对普通小麦和扁豆生理特性的影响。在干旱胁迫下

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Proline, which is an indicator of stress, is often considered as a good parameter for the testing of plants with good drought tolerance capacity. Thus, exogenous application of proline is a possible technique to avoid the deleterious effects of the drought on plant growth. The objectives of this study are to investigate the impact exogenous proline on the physiological behavior of two plant species, bread wheat, a monocot, and lentil, a dicot, under drought stress conditions. After several preliminary tests, optimal concentrations of exogenous proline were determined (6 mM for bread wheat and 2 mM for lentil) and both species were treated in normal and drought conditions. The results showed that water deficit affected both species leading to a reduction in growth, chlorophyll content and relative water content. Likewise, 15?% PEG-6000, which is equivalent to osmotic potential of -0.31MPa, caused a high accumulation of proline. In almost of cases we also noted a remarkable decrease in catalase (Cat), ascorbate peroxidase (APX) and gaiacol peroxidase (GPX) activities which was probably due to the oxidative stress caused by drought stress. The application of proline in stressful conditions reduced the deleterious effects caused by the stress on both species, due, particularly, to the accumulation of free endogenous proline and the increase of Cat, APX and GPX activities.
机译:脯氨酸是胁迫的指标,通常被认为是测试具有良好抗旱能力的植物的良好参数。因此,外源施用脯氨酸是避免干旱对植物生长的有害影响的可能技术。这项研究的目的是研究干旱胁迫条件下外源脯氨酸对两种植物的生理行为的影响,面包小麦为单子叶植物,小扁豆为双子叶植物。经过几次初步测试,确定了最佳外源脯氨酸浓度(面包小麦为6 mM,小扁豆为2 mM),并在正常和干旱条件下对这两种物种进行了处理。结果表明,缺水会影响这两个物种,从而导致生长,叶绿素含量和相对水分含量降低。同样,15%的PEG-6000(相当于-0.31MPa的渗透势)引起脯氨酸的大量积累。在大多数情况下,我们还注意到过氧化氢酶(Cat),抗坏血酸过氧化物酶(APX)和盖亚醇过氧化物酶(GPX)活性显着下降,这可能是由于干旱胁迫引起的氧化胁迫。脯氨酸在胁迫条件下的施用减少了由于胁迫对两种物种造成的有害影响,特别是由于游离内源性脯氨酸的积累以及Cat,APX和GPX活性的增加。

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