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首页> 外文期刊>Indian Journal of Biochemistry & Biophysics >Evaluation of changes in lipid peroxidation, ROS production, surface structures, secondary metabolites and yield of linseed (Linum usitatissimum L.) under individual and combined stress of ultraviolet-B and ozone using open top chambers
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Evaluation of changes in lipid peroxidation, ROS production, surface structures, secondary metabolites and yield of linseed (Linum usitatissimum L.) under individual and combined stress of ultraviolet-B and ozone using open top chambers

机译:使用开放式顶室评估紫外线-B和臭氧的单独和联合胁迫下亚麻籽(Linum usitatissimum L.)的脂质过氧化,ROS产生,表面结构,次生代谢产物和产量的变化

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摘要

The individual and interactive effects of supplemental UV-B (sUV-B) (ambient + 7.2 kJ m~(-2) d~(-1)) and elevated O3 (ambient + 10 ppb) were evaluated under field conditions using open top chambers on two cultivars, Padmini and T-397 of linseed (Linum usitatissimum L.). Mean monthly surface level of O_3 concentrations varied from 27.7 ppb to 59.0 ppb during the experimental period. Both UV-B and O_3 induced the production of ROS (H_2O_2 and O_2 .-), resulting in significant damage of membranes due to lipid peroxidation and electrolyte leakage. Synthesis of secondary metabolites (flavonoids, anthocyanin, lignin and wax) was also enhanced in all the treatments, whereas biomass and yield were reduced. Alterations in frequency of stomata and wax distribution were also observed through scanning electron microscopy (SEM). Cultivar Padmini was found to be more sensitive because of higher damage of membrane vis-a-vis reduction in biomass and seed yield. However, concentrations of flavonoids, anthocyanin, lignin and wax were higher in T-397, suggesting its relative resistance against applied stress. Combined exposure of sUV-B and O_3 was less harmful, as compared to their individual treatment. Among the three treatments, O_3 was found to be more detrimental for overall growth and sUV-B for economic yield.
机译:在田间条件下使用敞开式顶棚评估补充UV-B(sUV-B)(环境+ 7.2 kJ m〜(-2)d〜(-1))和升高的O3(环境+ 10 ppb)的个体和交互作用两个品种,亚麻仁(Linum usitatissimum L.)的Padmini和T-397上的小室。在实验期间,O_3浓度的月平均表面水平在27.7 ppb至59.0 ppb之间。 UV-B和O_3都诱导产生ROS(H_2O_2和O_2.-),由于脂质过氧化和电解质泄漏,导致膜的显着损坏。在所有处理中,次生代谢产物(类黄酮,花青素,木质素和蜡)的合成也得到了增强,而生物量和产量却降低了。还通过扫描电子显微镜(SEM)观察到气孔频率和蜡分布的变化。人们发现品种Padmini更为敏感,因为其膜对生物量和种子产量的降低造成的破坏更大。然而,T-397中的类黄酮,花色苷,木质素和蜡的浓度较高,表明其对施加压力的相对耐受性。与单独治疗相比,sUV-B和O_3的联合暴露危害较小。在这三种处理中,发现O_3对整体生长有害,而sUV-B对经济产量有害。

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