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石莼属植物中的金属积累与氧化应激 通过整合到一般应激指数中的响应得以证实。

Metal accumulation and oxidative stress in Ulva sp. substantiated by response integration into a general stress index.

作者信息

Pereira Patrícia, de Pablo Hilda, Rosa-Santos Frederico, Pacheco Mário, Vale Carlos

机构信息

IPIMAR and National Institute of Biological Resources, Lisbon, Portugal.

出版信息

Aquat Toxicol. 2009 Mar 9;91(4):336-45. doi: 10.1016/j.aquatox.2008.12.003. Epub 2008 Dec 13.

Abstract

In an attempt to correlate external levels of exposure, bioaccumulation markers and oxidative stress responses in the green macroalgae Ulva sp., an investigative biomonitoring study was performed in a Portuguese coastal lagoon with a complex contamination scenario (eutrophication and moderate metal levels). Ulva sp. was collected seasonally in three stations: BB (Barrosa branch) and BS (Bom-Sucesso branch) located in confined areas of the upper lagoon; LL (lower lagoon) closer to the lagoon inlet and selected as reference station. Water and sediment were both monitored for metals (Mn, Cu, Cr, Ni, Cd). Additionally, nutrients and organic matter were measured in water and sediment, respectively. Catalase (CAT), glutathione peroxidase (GPx), glutathione reductase (GR), glutathione-S-transferase (GST), total glutathione (GSH(t)) and lipid peroxidation (LPO), as well as Mn, Cu, Cr, Ni and Cd were measured in the algae. Metal levels in Ulva sp. consistently reflected their occurrence in water. Ulva sp. from BB exhibited higher CAT activity (autumn and spring) in agreement with Cu and Ni increases in water and algae and supported by significant Pearson correlations. The involvement of GPx on algal defences was considered since a positive correlation was observed with accumulated Mn. At BB, a direct implication of accumulated metals on increases of GR (autumn) and GSH(t) (summer) was also assumed. The contribution of GST to algal defences seemed to be less prominent. Despite the enzymatic antioxidant activation at BB, Ulva sp. collected in autumn and spring did not show efficient coping with ROS overproduction as LPO occurred. Globally, the adopted multi-biomarker approach coupled with environmental chemical characterization, pointed out BB as a major impacted area. The integration of oxidative stress responses into a general stress index (IBR) substantiated the data interpretation, providing a more definitive identification of the level of pollution, and therefore contributing to the understanding of cause-effect relationships.

摘要

为了关联绿藻石莼属(Ulva sp.)的外部暴露水平、生物累积标志物和氧化应激反应,在葡萄牙一个具有复杂污染情况(富营养化和中等金属含量)的沿海泻湖进行了一项调查性生物监测研究。石莼属在三个站点季节性采集:BB(巴罗萨支流)和BS(博姆 - 苏塞索支流)位于泻湖上游的受限区域;LL(下游泻湖)靠近泻湖入口,被选为参考站点。对水和沉积物中的金属(锰、铜、铬、镍、镉)进行了监测。此外,分别测量了水中和沉积物中的营养物质和有机物。在藻类中测量了过氧化氢酶(CAT)、谷胱甘肽过氧化物酶(GPx)、谷胱甘肽还原酶(GR)、谷胱甘肽 - S - 转移酶(GST)、总谷胱甘肽(GSH(t))和脂质过氧化(LPO)以及锰、铜、铬、镍和镉。石莼属中的金属水平始终反映了它们在水中的存在情况。来自BB的石莼属在秋季和春季表现出较高的CAT活性,这与水中和藻类中铜和镍的增加一致,并得到显著的皮尔逊相关性支持。考虑到与积累的锰呈正相关,认为GPx参与了藻类防御。在BB,还假定积累的金属直接导致了GR(秋季)和GSH(t)(夏季)的增加。GST对藻类防御的贡献似乎不太突出。尽管BB处酶促抗氧化剂被激活,但秋季和春季采集的石莼属在发生LPO时并未表现出有效应对ROS过量产生的能力。总体而言,采用的多生物标志物方法与环境化学特征相结合,指出BB是主要受影响区域。将氧化应激反应整合到一般应激指数(IBR)中证实了数据解释,提供了对污染水平更明确的识别,因此有助于理解因果关系。

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