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Effects of Cadmium on Bioaccumulation Bioabsorption and Photosynthesis in Sarcodia suiae

机译:镉对Sarcodia suiae生物积累生物吸收和光合作用的影响

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摘要

This study investigated the changes in bioaccumulation, bioabsorption, photosynthesis rate, respiration rate, and photosynthetic pigments (phycoerythrin, phycocyanin, and allophycocyanin) of following cadmium exposure within 24 h. The bioabsorption was significantly higher than the bioaccumulation at all cadmium levels ( < 0.05). The ratios of bioabsorption/bioaccumulation in light and dark bottles were 2.17 and 1.74, respectively, when was exposed to 5 Cd mg/L. The chlorophyll a (Chl-a) concentration, oxygen evolution rate (photosynthetic efficiency), and oxygen consumption rate (respiratory efficiency) decreased with increasing bioaccumulation and ambient cadmium levels. The levels of bioaccumulation and bioabsorption in light environments were significantly higher than those in dark environments ( < 0.05). In addition, the ratios of phycoerythrin (PE)/Chl-a, phycocyanin (PC)/Chl-a, and allophycocyanin (APC)/Chl-a were also higher in light bottles compared to dark bottles at all ambient cadmium levels. These results indicated that the photosynthesis of seaweed will increase bioaccumulation and bioabsorption in a cadmium environment.
机译:这项研究调查了镉暴露后24小时内生物累积,生物吸收,光合作用率,呼吸速率和光合色素(藻红蛋白,藻蓝蛋白和别甲蓝蛋白)的变化。在所有镉水平下,生物吸收均显着高于生物积累(<0.05)。当暴露于5 Cd mg / L时,浅色和深色瓶子中的生物吸收/生物累积比率分别为2.17和1.74。随着生物累积量和环境镉含量的增加,叶绿素a(Chl-a)浓度,氧气释放速率(光合效率)和耗氧速率(呼吸效率)降低。明亮环境中的生物积累和生物吸收水平显着高于黑暗环境中的生物积累和生物吸收水平(<0.05)。此外,在所有环境镉水平下,浅色瓶中的藻红蛋白(PE)/ Chl-a,藻蓝蛋白(PC)/ Chl-a和别藻蓝蛋白(APC)/ Chl-a的比率也高于深色瓶。这些结果表明,海藻的光合作用将增加镉环境中的生物积累和生物吸收。

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