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Significance of Mn and Fe for growth of coastal marine diatom Thalassiosira weissflogii

机译:锰和铁对沿海海洋硅藻Thalassiosira weissflogii生长的意义

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The significance of Mn and Fe for the growth of a coastal marine diatom Thalassiosira weissflogii was investigated by performing culture experiments containing macronutrients with either Mn or Fe, or both. Only the addition of both Mn and Fe induced the highest growth rates and maximal cell yields. Maximal growth was maintained in continuous culture media, which were repeatedly prepared by an inoculation of pre-culture and the addition of both Mn and Fe to the control culture medium containing macronutrients. In particular, it was found that the full growth recovery in Mn-sufficient medium (without added Fe) is accomplished by the addition of Fe even after several days’ incubation. On the contrary, there was no sufficient growth recovery by the addition of Mn after a long incubation time in Fe-sufficient medium but without additional Mn. These results suggest that T. weissflogii in Mn-sufficient waters retains the ability for full physiological recovery for a long time, probably resulting from the decrease in the oxidative stress of phytoplankton by the production of antioxidant enzyme Mn superoxide dismutase during a long incubation period.
机译:锰和铁对沿海海洋硅藻Thalasiosira weissflogii生长的意义通过进行含有大量营养元素(锰或铁或两者兼有)的培养实验进行了研究。仅添加锰和铁才能诱导最高的生长速率和最大的细胞产量。在连续培养基中保持最大生长,可通过接种预培养物并向含有大量营养素的对照培养基中同时添加Mn和Fe来反复制备。特别地,发现即使经过几天的温育,通过添加铁也可以在锰充足的培养基(不添加铁)中完全恢复生长。相反,在铁充足的培养基中经过长时间的培养后,通过添加Mn并没有足够的生长恢复,但是没有额外的Mn。这些结果表明,在含锰量充足的水域中,魏氏梭菌在很长一段时间内仍保留了完整的生理恢复能力,这可能是由于在较长的温育期中通过产生抗氧化酶Mn超氧化物歧化酶而减少了浮游植物氧化应激的结果。

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