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The effect of oil sands process-affected water and model naphthenic acids on photosynthesis and growth in Emiliania huxleyi and Chlorella vulgaris

机译:过程中受油砂影响的水和模型环烷酸对Em兰和小球藻光合作用和生长的影响

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摘要

Naphthenic acids (NAs) are among the most toxic organic pollutants present in oil sands process waters (OSPW) and enter marine and freshwater environments through natural and anthropogenic sources. We investigated the effects of the acid extractable organic (AEO) fraction of OSPW and individual surrogate NAs, on maximum photosynthetic efficiency of photosystem II (PSII) (FV/FM) and cell growth in Emiliania huxleyi and Chlorella vulgaris as representative marine and freshwater phytoplankton. Whilst FV/FM in E. huxleyi and C. vulgaris was not inhibited by AEO, exposure to two surrogate NAs: (4?-n-butylphenyl)-4-butanoic acid (n-BPBA) and (4?-tert-butylphenyl)-4-butanoic acid (tert-BPBA), caused complete inhibition of FV/FM in E. huxleyi (?10 mg L?1n-BPBA; ?50 mg L?1tert-BPBA) but not in C. vulgaris. Growth rates and cell abundances in E. huxleyi were also reduced when exposed to ?10 mg L?1n- and tert-BPBA; however, higher concentrations of n- and tert-BPBA (100 mg L?1) were required to reduce cell growth in C. vulgaris. AEO at ?10 mg L?1 stimulated E. huxleyi growth rate (p ? 0.002), yet had no apparent effect on C. vulgaris. In conclusion, E. huxleyi was generally more sensitive to NAs than C. vulgaris. This report provides a better understanding of the physiological responses of phytoplankton to NAs which will enable improved monitoring of NA pollution in aquatic ecosystems in the future.
机译:环烷酸(NAs)是油砂工艺水(OSPW)中存在的最具毒性的有机污染物之一,并通过自然和人为来源进入海洋和淡水环境。我们调查了OSPW的酸可萃取有机(AEO)馏分和单个替代NAs,对作为代表性海洋和淡水浮游植物的Emiliania huxleyi和Chlorella vulgaris的光系统II(PSII)(FV / FM)的最大光合效率和细胞生长的影响。尽管狐EO和普通梭菌的FV / FM不受AEO的抑制,但暴露于两种替代NAs:(4′-正丁基苯基)-4-丁酸(n-BPBA)和(4′-叔丁基苯基) )-4-丁酸(tert-BPBA)引起赫hu黎大肠杆菌(?10 mg L?1n-BPBA;?50 mg L?1tert-BPBA)的FV / FM完全抑制,但在寻常梭菌中却没有。当暴露于?10 mg L?1n-和tert-BPBA时,赫氏大肠杆菌的生长速率和细胞丰度也降低了。但是,需要较高浓度的n-和叔-BPBA(100 mg L?1)来减少寻常梭状芽胞杆菌的细胞生长。浓度为10 mg L?1的AEO刺激了赫氏大肠杆菌的生长速度(p = 0.002),但对寻常梭状芽胞杆菌没有明显影响。总的来说,赫x黎大肠菌对NAs的敏感性通常比寻常小球藻高。该报告提供了对浮游植物对NAs的生理反应的更好理解,这将使将来对水生生态系统中NA污染的监测得以改善。

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