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首页> 外文期刊>Plant Physiology and Biochemistry >Influence of salicylic acid pretreatment on seeds germination and some defence mechanisms of Zea mays plants under copper stress
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Influence of salicylic acid pretreatment on seeds germination and some defence mechanisms of Zea mays plants under copper stress

机译:水杨酸预处理对种子萌发的影响及景体

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AbstractThe study was focused on the influence of salicylic acid (SA) on maize seeds germination and on some physiological and biochemical processes in maize plants growing in the hydroponic culture under copper (Cu) stress. A significant influence of SA pretreatment on the advanced induction of the maize seeds metabolic activity and the level of the endogenous SA in germinated seeds and developing roots have been stated. Although, the ability of maize seeds to uptake SA and accumulate it in the germinated roots was confirmed, the growth inhibition of Cu-stressed maize seedlings was not ameliorated by SA seeds pretreatment. Cu-stressed plants exhibited a decrease in the photosynthetic pigment concentration and the increase in non-photochemical quenching (NPQ) - an indicator of an excess energy in PSII antenna assemblies lost as a heat. The amelioration effect of SA application was found only for carotenoids content which increased in stressed plants. It was also shown that maize roots growing in stress conditions significantly differed in the chemical composition in comparison to the roots of control plants, but the SA pretreatment did not affect these differences. On the other hand, it was found that SA seed pretreatment significantly influenced the ability of stressed plants to accumulate copper in the roots. It was stated that a higher level of exogenous SA application led to a lower accumulation of Cu ions in maize roots. Cu-stressed plants exhibited higher oxidative stress in roots than in leaves which was manifested as an increase in the concentration of hydrogen peroxide due to stress factor application. We observed an increase in catalase (CAT) activity
机译:<![CDATA [ 抽象 该研究专注于水杨酸(Sa)对玉米种子萌发和一些生理和生物化学的影响铜(Cu)胁迫下水培培养中生长玉米植物的方法。已经阐述了SA预处理对玉米种子代谢活性的先进诱导的显着影响和发芽种子中的内源SA水平和显影根部。尽管证实,玉米种子在发芽根中加入Sa并将其积聚的能力,但Cu胁迫玉米幼苗的生长抑制不通过SA种子预处理来改善。 Cu胁迫植物的光合色素浓度降低和非光化学淬火(NPQ)的增加 - PSII天线组件中的过量能量的指示剂损失为热量。 SA申请的改善效果仅针对类胡萝卜素含量增加,该含量增加了压力植物。还表明,与对照植物的根部相比,化学组合物中生长的玉米根部生长显着不同,但SA预处理不影响这些差异。另一方面,发现SA种子预处理显着影响了应激植物在根中积聚铜的能力。据称,较高水平的外源SA施用导致玉米根部的Cu离子的较低积聚。 Cu型植物在根中表现出比叶片更高的氧化应激,所述叶片表现为由于应力因子施用引起的过氧化氢浓度的增加。我们观察到过氧化酶(猫)活动的增加

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