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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Cadmium and lead interactive effects on oxidative stress and antioxidative responses in rice seedlings
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Cadmium and lead interactive effects on oxidative stress and antioxidative responses in rice seedlings

机译:镉和铅相互作用对水​​稻幼苗氧化应激和抗氧化反应的影响

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摘要

Interactive effects of two heavy metal pollutants Cd and Pb in the growth medium were examined on their uptake, production of reactive oxygen species (ROS), induction of oxidative stress and antioxidative defence responses in Indica rice (Oryza sativa L.) seedlings. When rice seedlings in sand culture were exposed to 150 μM Cd (NO_3)_2 or 600 μM Pb (CH_3COO)_2 individually or in combination for 8–16 days, a significant reduction in root/shoot length, fresh weight, relative water content, photosynthetic pigments and increased production of ROS (O_2~(˙-) and H_2O_2) was observed. Both Cd and Pb were readily taken up by rice roots and localisation of absorbed metals was greater in roots than in shoots. When present together in the growth medium, uptake of both the metals Cd and Pb declined by 25–40 %. Scanning electron microscope (SEM) imaging of leaf stomata revealed that Pb caused more distortion in the shape of guard cells than Cd. Dithizone staining of roots showed localisation of absorbed Cd on root hairs and epidermal cells. Both Cd and Pb caused increased lipid peroxidation, protein carbonylation, decline in protein thiol and increase in non-protein thiol. The level of reduced forms of non-enzymic antioxidants glutathione (GSH) and ascorbate (AsA) and their redox ratios (GSH/AsA) declined, whereas the activities of antioxidative enzymes superoxide dismutase (SOD) and guaiacol peroxidase (GPX) increased in metal treated seedlings compared to controls. In-gel activity staining also revealed increased intensities of SOD and GPX isoforms with metal treatments. Catalase (CAT) activity increased during early days (8 days) of metal exposure and declined by 16 days. Results suggest that oxidative stress is an important component in expression of Cd and Pb toxicities in rice, though uptake of both metals gets reduced considerably when present together in the medium.
机译:研究了生长介质中两种重金属污染物Cd和Pb的相互作用,对In稻幼苗吸收,活性氧(ROS)的产生,氧化应激的诱导和抗氧化防御反应的影响。当砂培养中的水稻幼苗单独或组合暴露于150μMCd(NO_3)_2或600μMPb(CH_3COO)_2时,持续暴露8-16天,根/茎长,鲜重,相对含水量,观察到光合色素和ROS(O_2〜(˙-)和H_2O_2)的产生增加。水稻根部容易吸收镉和铅,而且根部中吸收的金属比芽中的定位更大。当一起存在于生长培养基中时,金属Cd和Pb的吸收量下降了25-40%。叶片气孔的扫描电子显微镜(SEM)图像显示,铅比Cd引起的保卫细胞形状变形更大。根的双硫i染色显示吸收的镉在根毛和表皮细胞上的定位。 Cd和Pb都引起脂质过氧化增加,蛋白质羰基化,蛋白质硫醇含量下降和非蛋白质硫醇含量增加。金属中非酶抗氧化剂谷胱甘肽(GSH)和抗坏血酸(AsA)的还原形式水平及其氧化还原比(GSH / AsA)下降,而金属中抗氧化酶超氧化物歧化酶(SOD)和愈创木酚过氧化物酶(GPX)的活性增加处理的幼苗与对照相比。凝胶内活性染色还显示,用金属处理后,SOD和GPX亚型的强度增加。过氧化氢酶(CAT)活性在金属暴露的早期(8天)增加,但下降了16天。结果表明,氧化应激是水稻中Cd和Pb毒性表达的重要组成部分,但当两种金属同时存在于介质中时,两种金属的吸收会大大降低。

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