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Zinc Affects Differently Growth Photosynthesis Antioxidant Enzyme Activities and Phytochelatin Synthase Expression of Four Marine Diatoms

机译:锌对四种海洋硅藻的生长光合作用抗氧化酶活性和植物螯合素表达的影响不同

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摘要

Zinc-supplementation (20 μM) effects on growth, photosynthesis, antioxidant enzyme activities (superoxide dismutase, ascorbate peroxidase, catalase), and the expression of phytochelatin synthase gene were investigated in four marine diatoms (Amphora acutiuscula, Nitzschia palea, Amphora coffeaeformis and Entomoneis paludosa). Zn-supplementation reduced the maximum cell density. A linear relationship was found between the evolution of gross photosynthesis and total chlorophyll content. The Zn treatment decreased the electron transport rate except in A. coffeaeformis and in E. paludosa at high irradiance. A linear relationship was found between the efficiency of light to evolve oxygen and the size of the light-harvesting antenna. The external carbonic anhydrase activity was stimulated in Zn-supplemented E. paludosa but was not correlated with an increase of photosynthesis. The total activity of the antioxidant enzymes did not display any clear increase except in ascorbate peroxidase activity in N. palea. The phytochelatin synthase gene was identified in the four diatoms, but its expression was only revealed in N. palea, without a clear difference between control and Zn-supplemented cells. Among the four species, A. paludosa was the most sensitive and A. coffeaeformis, the most tolerant. A. acutiuscula seemed to be under metal starvation, whereas, to survive, only N. palea developed several stress responses.
机译:研究了四种海洋硅藻(Amphora acutiuscula,Nitzschia palea,Amphora coffeaeformis和Entomoneis)中锌的补充(20μm)对生长,光合作用,抗氧化酶活性(超氧化物歧化酶,抗坏血酸过氧化物酶,过氧化氢酶)和植物螯合酶合酶基因表达的影响。 paludosa)。补锌降低了最大细胞密度。在总光合作用的演变与总叶绿素含量之间发现线性关系。锌处理降低了高辐照下除咖啡曲霉和paludosa中的电子传输速率。发现光释放氧气的效率与光收集天线的尺寸之间存在线性关系。在添加锌的大肠埃希氏菌中,外部碳酸酐酶活性受到刺激,但与光合作用的增加无关。抗氧化酶的总活性没有显示出明显的增加,除了在N.pala中的抗坏血酸过氧化物酶活性。在四个硅藻中都鉴定出了植物螯合素合成酶基因,但其表达仅在古生猪笼草中显示,而对照细胞和锌补充细胞之间没有明显差异。在这四个物种中,paludosa A.是最敏感的,而A. coffeaeformis是最耐受的。 Acutiuscula似乎处于金属饥饿状态,而为了生存,只有N. palea出现了几种应激反应。

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