首页> 外文期刊>Acta Physiologiae Plantarum >Enhancement of superoxide dismutase activity in the leaves of white clover (Trifolium repens L.) in response to polyethylene glycol-induced water stress
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Enhancement of superoxide dismutase activity in the leaves of white clover (Trifolium repens L.) in response to polyethylene glycol-induced water stress

机译:响应聚乙二醇诱导的水分胁迫而增强白三叶草(Trifolium repens L.)叶片中超氧化物歧化酶活性

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摘要

Effects of polyethylene glycol (PEG)-induced water stress on the activities of total leaf superoxide dismutase (SOD) and chloroplast SOD (including thylakoid-bound SOD and stroma SOD) are described in white clover (Trifolium repens L.) grown in solution culture from rooted cuttings. Both leaf SOD and chloroplast SOD activities were markedly enhanced with increasing concentration of PEG stress, generating osmotic potentials around the roots 0, −0.5, −1.0, −1.5 MPa. The effects increased with time up to 72 h. Chloroplast Fe-containing SOD represented about 30% of the total leaf SOD activity in the control plants and a significant increase in chloroplast SOD activity was found during the stress period. This accounted for about 35.5–71.1% of the total leaf SOD activity. The proportion of chloroplast SOD in total leaf SOD not only increased with the decreasing of osmotic potential, but also increased with incubation time. Furthermore, the increase in thylakoid-bound SOD activity was much higher than that of stroma SOD in chloroplast of plants under water stress. The enhanced chloroplastic SOD activity, especially thylakoid-bound SOD activity, demonstrated in Trifolium repens suggests that Fe-SOD located in chloroplasts play a more important role than cytosolic Cu/Zn-containing SODs in scavenging O2 −.
机译:溶液培养中生长的白三叶草(Trifolium repens L.)中描述了聚乙二醇(PEG)引起的水分胁迫对全叶超氧化物歧化酶(SOD)和叶绿体SOD(包括类囊体结合的SOD和基质SOD)活性的影响。从扎根的插条。随着PEG胁迫浓度的增加,叶片SOD和叶绿体SOD活性均显着增强,在根0,-0.5,-1.0,-1.5 MPa周围产生渗透势。效果随着时间的增加而增加,长达72小时。在对照植物中,含叶绿体铁的SOD占叶片总SOD活性的约30%,并且在胁迫期间叶绿体SOD活性显着增加。这约占叶片总SOD活性的35.5-71.1%。叶绿体超氧化物歧化酶在总叶片超氧化物歧化酶中的比例不仅随着渗透势的降低而增加,而且随着孵育时间的增加而增加。此外,在水分胁迫下,植物类叶绿体中类囊体结合的SOD活性的增加远高于基质SOD的增加。三叶草中显示出增强的叶绿体SOD活性,尤其是类囊体结合的SOD活性,表明叶绿体中的Fe-SOD在清除O 2 <方面比起胞质含Cu / Zn的SOD发挥更重要的作用。 sup>-

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