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Differential responses between mature and young leaves of sunflower plants to oxidative stress caused by water deficit

机译:向日葵植物成熟叶片与幼叶对水分亏缺引起的氧化胁迫的差异响应

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摘要

The effects of water stress and rehydration on leaf gas exchange characteristics along with changes in lipid peroxidation and pirogalol peroxidase (PG-POD) were studied in mature and in young leaves of sunflower (Helianthus annuus L.), which were grown in a greenhouse. Water stress reduced photosynthesis (Pn), stomatal conductance (g s), and transpiration (E) in both young and mature leaves. However, the amplitude of the reduction was dependent on leaf age. The intercellular CO2 concentration (Ci) was increased in mature leaves but it was not altered in young leaves. Instantaneous water use efficiency (WUE) in mature stressed leaves was reduced when compared to control leaves while in young stressed leaves it was maintained to the same level as the control. After 24h of rehydration, most of the parameters related to gas exchange recovered to the same level as the unstressed plants except gs and E in mature leaves. Water stress did not activated PG-POD independently of leaf age. However, after rehydration the enzyme activity was increased in mature leaves and remained to the same as the control in young leaves. Malondialdehyde (MDA) content was increased by water stress in both mature and young leaves. The results suggest that young leaves are more susceptible to water stress in terms of gas exchange characteristics than mature leaves although both went through oxidative estresse.
机译:研究了在温室中生长的向日葵(Helianthus annuus L.)的成熟和幼叶中水分胁迫和补液对叶片气体交换特性的影响以及脂质过氧化和螺丙二醇过氧化物酶(PG-POD)的变化。水分胁迫会降低幼嫩叶片和成熟叶片的光合作用(Pn),气孔导度(g s)和蒸腾作用(E)。但是,减少幅度取决于叶龄。成熟叶片中的细胞间CO2浓度(Ci)增加,而幼嫩叶片中的细胞间CO2浓度却没有改变。与对照叶片相比,成熟胁迫叶片的瞬时水分利用效率(WUE)降低,而在年轻胁迫叶片中,其瞬时水分利用效率维持在与对照相同的水平。补液24小时后,与气体交换有关的大多数参数恢复到与未胁迫植物相同的水平,除了成熟叶片中的gs和E。水分胁迫并未独立于叶龄而激活了PG-POD。然而,复水后,酶活性在成熟叶片中增加,并保持与年轻叶片中的对照相同。成熟和幼叶的水分胁迫都增加了丙二醛(MDA)含量。结果表明,与成熟叶片相比,年轻叶片更易受水分胁迫的气体交换特性影响,尽管它们都经历了氧化胁迫。

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