首页> 外文期刊>Acta Physiologiae Plantarum >Impact of low and high fluence rates of UV-B radiation on growth and oxidative stress in Phormidium foveolarum and Nostoc muscorum under copper toxicity: differential display of antioxidants system.
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Impact of low and high fluence rates of UV-B radiation on growth and oxidative stress in Phormidium foveolarum and Nostoc muscorum under copper toxicity: differential display of antioxidants system.

机译:UV-B辐射的高和低通量率对铜毒性下黄萎病菌和Nostoc粘液菌生长和氧化应激的影响:抗氧化剂体系的差异显示。

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摘要

In the present study, impact of low (UV-BL) and high (UV-BH) fluence rates of UV-B on growth, oxidative stress and antioxidant system was studied in two cyanobacteria i.e. Phormidium foveolarum and Nostoc muscorum under Cu (2 and 5 micro M) toxicity after 24 and 72 h of experiments. UV-BH and Cu treatment decreased growth of both the cyanobacteria and Cu induced decrease in growth was accompanied by a significant increase in Cu accumulation. Levels of reactive oxygen species (ROS), i.e. superoxide radicals (SOR; O.-2) and hydrogen peroxide (H2O2) were significantly increased by Cu and UV-BH exposure which in turn accelerated lipid peroxidation (malondialdehyde: MDA) and protein oxidation (reactive carbonyl groups: RCG). Activities of enzymatic antioxidants, such as superoxide dismutase (SOD), peroxidase (POD) and glutathione-S-transferase (GST) were increased by both doses of Cu as well as UV-B. Conversely, Cu and UV-BH drastically decreased catalase (CAT) activity. After the commencement of 24 h of treatment with Cu alone and together with UV-BH, non-protein thiols (NP-SH) contents were decreased while after 72 h, a reverse trend was noticed. Unlike NP-SH, cysteine content decreased appreciably during the treatments. In contrast to this, low dose (UV-BL) of UV-B did not influence growth, SOR, H2O2, MDA and RCG contents. An improvement in CAT activity and NP-SH content was observed under Cu and UV-BL treatment; hence, UV-BL treatment resulted into certain degree of protection against Cu toxicity in both the organisms. Thus, the results showed that UV-BH and UV-BL exerted differential effects on both the organisms under Cu toxicity, and compared to N. muscorum, P. foveolarum was less affected by Cu and UV-BH.
机译:在本研究中,UV-B的低(UV-B L )和高(UV-B H )注量速率对生长,氧化应激和抗氧化系统的影响在24和72小时的实验中,在铜(2和5 micro M)的毒性下,在两个蓝细菌,即黄萎病菌和粘菌中进行了研究。 UV-B H 和Cu处理降低了蓝细菌的生长,而Cu诱导的生长降低伴随着Cu积累的显着增加。活性氧(ROS)的水平,即超氧自由基(SOR; O .- 2 )和过氧化氢(H 2 O 2 )的水平铜和UV-B H 的暴露显着增加了维生素C的含量,反过来又加速了脂质过氧化(丙二醛:MDA)和蛋白质氧化(反应性羰基:RCG)。铜和UV-B的剂量均增加了酶促抗氧化剂的活性,例如超氧化物歧化酶(SOD),过氧化物酶(POD)和谷胱甘肽-S-转移酶(GST)。相反,Cu和UV-B H 大大降低了过氧化氢酶(CAT)的活性。在单独使用Cu和与UV-B H 一起处理24小时后,非蛋白质硫醇(NP-SH)含量降低,而在72 h后,则出现了相反的趋势。与NP-SH不同,在治疗期间半胱氨酸含量明显降低。与此相反,低剂量的UV-B(UV-B L )不影响生长,SOR,H 2 O 2 , MDA和RCG内容。 Cu和UV-B L 处理后,CAT活性和NP-SH含量均有改善。因此,UV-B L 处理在两种生物中均对铜的毒性产生了一定程度的保护作用。因此,结果表明,在铜的毒性作用下,UV-B H 和UV-B L 对这两种生物均产生了不同的作用,并且与粘膜猪笼草,黄萎病菌相比。受Cu和UV-B H 的影响较小。

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