首页> 美国卫生研究院文献>BioMed Research International >Cadmium-Induced Upregulation of Lipid Peroxidation and Reactive Oxygen Species Caused Physiological, Biochemical, and Ultrastructural Changes in Upland Cotton Seedlings
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Cadmium-Induced Upregulation of Lipid Peroxidation and Reactive Oxygen Species Caused Physiological, Biochemical, and Ultrastructural Changes in Upland Cotton Seedlings

机译:镉引起的脂质过氧化和活性氧的上调引起陆地棉幼苗的生理,生化和超微结构变化

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摘要

Cadmium (Cd) toxicity was investigated in cotton cultivar (ZMS-49) using physiological, ultrastructural, and biochemical parameters. Biomass-based tolerance index decreased, and water contents increased at 500 μM Cd. Photosynthetic efficiency determined by chlorophyll fluorescence and photosynthetic pigments declined under Cd stress. Cd contents were more in roots than shoots. A significant decrease in nutrient levels was found in roots and stem. A significant decrease in nutrient levels was found in roots and stems. In response to Cd stress, more MDA and ROS contents were produced in leaves than in other parts of the seedlings. Total soluble proteins were reduced in all parts except in roots at 500 μM Cd. Oxidative metabolism was higher in leaves than aerial parts of the plant. There were insignificant alterations in roots and leaves ultrastructures such as a little increase in nucleoli, vacuoles, starch granules, and plastoglobuli in Cd-imposed stressful conditions. Scanning micrographs at 500 μM Cd showed a reduced number of stomata as well as near absence of closed stomata. Cd depositions were located in cell wall, vacuoles, and intracellular spaces using TEM-EDX technology. Upregulation of oxidative metabolism, less ultrastructural modification, and Cd deposition in dead parts of cells show that ZMS-49 has genetic potential to resist Cd stress, which need to be explored.
机译:使用生理,超微结构和生化参数研究了棉花品种(ZMS-49)中的镉(Cd)毒性。在500μMCd下,基于生物质的耐受指数下降,水分含量增加。在镉胁迫下,通过叶绿素荧光测定的光合作用效率和光合色素下降。镉的根比芽多。在根和茎中发现营养水平显着下降。在根和茎中发现营养水平显着下降。响应镉胁迫,叶片中产生的MDA和ROS含量高于幼苗的其他部位。除根部浓度为500μMCd外,所有部位的总可溶性蛋白质均降低。叶片的氧化代谢高于植物的地上部分。在镉胁迫下,根和叶的超微结构无明显变化,如核仁,液泡,淀粉颗粒和质体球略有增加。在500μmCd下的扫描显微照片显示气孔数量减少以及几乎没有闭合气孔。使用TEM-EDX技术将Cd沉积物置于细胞壁,液泡和细胞内空间中。氧化代谢的上调,超微结构修饰的减少以及细胞死亡部分中的Cd沉积表明ZMS-49具有抵抗Cd胁迫的遗传潜力,有待探索。

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