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首页> 外文期刊>The Journal of General and Applied Microbiology >Interactive effects of UV-B and Cu on photosynthesis, uptake and metabolism of nutrients in a green alga Chlorella vulgaris under simulated ozone column
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Interactive effects of UV-B and Cu on photosynthesis, uptake and metabolism of nutrients in a green alga Chlorella vulgaris under simulated ozone column

机译:UV-B和Cu交互作用对模拟臭氧柱下绿藻小球藻光合作用,养分吸收和代谢的影响

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This study demonstrated a general reduction in photosynthesis (carbon fixation, O(2)-evolution and photochemical electron transport chain), the uptake of NH(4)(+), NO(3)(-), urea and PO(4)(3+), and activities of nitrate reductase, urease, acid phosphatase and ATPase following UV-B and copper exposure of Chlorella vulgaris in the absence or presence of 1 and 2 ppm concentrations of a 4-inch-thick ozone layer. Though the effect of stressors used in combination was very detrimental to the above processes, selected concentrations of ozone not only counteracted the UV-B-induced inhibition of the above processes, but also stimulated O(2)-evolution and the photochemical electron transport chain. Kinetics of nutrient uptake and enzyme activities demonstrated that UV-B causes structural change(s) in the enzymes/carriers responsible for the uptake of NH(4)(+), NO(3)(-), urea and PO(4)(3+) as well as their assimilatory enzymes. Except for nitrate reductase, copper was found to compete for the binding sites of all the above enzymes. Synergistic inhibition of photosynthetic activity, nutrient (except NH(4)(+)) uptake, and enzyme activities by UV-B+Cu seems to be due to increased Cu uptake as a consequence of altered membrane permeability brought about by the peroxidation of membrane lipids in UV-B-exposed cells.
机译:这项研究表明,光合作用(碳固定,O(2)-演化和光化学电子传输链),NH(4)(+),NO(3)(-),尿素和PO(4)的吸收普遍减少。 (3+),以及在不存在或存在浓度为1和2 ppm的4英寸厚臭氧层的情况下,小球藻的UV-B和铜暴露后硝酸盐还原酶,脲酶,酸性磷酸酶和ATPase的活性。尽管组合使用的压力源的作用对上述过程非常有害,但选定的臭氧浓度不仅抵消了UV-B诱导的上述过程的抑制,而且还刺激了O(2)的演化和光化学电子传输链。营养素摄取和酶活性的动力学表明,UV-B引起负责摄取NH(4)(+),NO(3)(-),尿素和PO(4)的酶/载体的结构变化。 (3+)及其同化酶。除了硝酸还原酶,发现铜竞争所有上述酶的结合位点。 UV-B + Cu对光合活性,养分(NH(4)(+)除外)的吸收和酶活性的协同抑制似乎是由于铜的吸收增加,因为铜的吸收增加是由于膜的过氧化作用引起的膜渗透性改变UV-B暴露的细胞中的脂质。

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