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首页> 外文期刊>Turkish Journal of Botany >Induction of phytochelatin and responses of antioxidants under cadmium stress in safflower (Carthamus tinctorius) seedlings
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Induction of phytochelatin and responses of antioxidants under cadmium stress in safflower (Carthamus tinctorius) seedlings

机译:红花(Carthamus tinctorius)幼苗在镉胁迫下植物螯合素的诱导及抗氧化剂的响应

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摘要

We investigated the role of antioxidant compounds (e.g., a-tocopherol, phytochelatins, glutathione, and other non-protein thiols) in the cadmium (Cd) tolerance of safflower (Carthamus tinctorius L. cv. Arak2811) seedlings exposed to different concentrations of Cd (0-100 muM) for a week. A concentration- and tissue- dependent response to Cd was observed. Increasing Cd supply markedly reduced the dry weight of roots. Plants accumulated a substantial amount of Cd, especially in the roots. Levels of a-tocopherol showed a significant increase with an increase in the concentration of Cd in leaves. Upon Cd exposure, a-tocopherol levels followed a similar pattern in the root tissue with no significant change as compared to the control. Cadmium exposure caused a significant increase in non-protein thiols and phytochelatin levels in roots, whereas non-protein thiols and phytochelatin levels were not affected in leaves. The glutathione content in leaves significantly increased with increasing Cd concentrations, whereas in roots glutathione contents increased up to a concentration of 50 muM Cd and then decreased. The results indicate that the non-protein thiol and phytochelatin biosynthesis induction in roots and enhanced level of a-tocopherol and glutathionein leaves may be involved in Cd tolerance and hyperaccumulation in safflower.
机译:我们调查了暴露于不同浓度Cd的红花(Carthamus tinctorius L. cv。Arak2811)幼苗对镉(Cd)的耐受性中的抗氧化剂化合物(例如,α-生育酚,植物螯合素,谷胱甘肽和其他非蛋白质硫醇)的作用(0-100毫米)一周。观察到对Cd的浓度和组织依赖性反应。镉供应的增加显着降低了根的干重。植物积累了大量的镉,尤其是在根部。随着叶片中Cd浓度的增加,α-生育酚水平显着增加。镉暴露后,根组织中α-生育酚水平遵循类似模式,与对照相比无明显变化。镉暴露导致根部非蛋白质硫醇和植物螯合素水平显着增加,而叶片中非蛋白质硫醇和植物螯合素水平不受影响。叶片中的谷胱甘肽含量随Cd浓度的增加而显着增加,而根部中的谷胱甘肽含量则上升至50μMCd浓度,然后下降。结果表明,根中非蛋白硫醇和植物螯合素的生物合成诱导以及α-生育酚和谷胱甘肽叶水平的提高可能与红花对镉的耐受性和过度积累有关。

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