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Integrated effects of important environmental factors on arsenic biotransformation and photosynthetic efficiency by marine microalgae

机译:重要环境因素对海洋微藻砷生物转化和光合效率的综合影响

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Microalgae play an important role in arsenic (As) bioaccumulation and biogeochemical cycling in marine ecosystems. Marine microalgal growth and As biotransformation processes depend on environmental factors, including salinity, temperature, and nutrient concentrations, and data in this regard are available in the literature. However, research on the integrated effects of environmental factors on marine diatom species remains scarce and unclear. Herein, salinity and temperature are both considered in combination to investigate their influence on As uptake, biotransformation, and photosynthetic efficiency (PE). Two strains of marine diatom species, Asteroplanus karianus and Skeletonema sp., were cultured in an f/2-based nutrient medium. Microalgae were cultured under various temperatures (5.0, 20, and 35 degrees C) and salinities (1.0 parts per thousand, 10 parts per thousand, 25 parts per thousand, and 40 parts per thousand) in association with As and phosphate-enriched (1.0 mu mol L-1 of As(V) + 10 mu mol L-1 of PO43-) or deficient (20 nmol L-1 of As(V) + 1.0 mu mol L-1 of PO43-) conditions. For both species, maximum growth, As accumulation, biotransformation, and PE were recorded at 10 and 14 day of culture. Microalgal growth, As accumulation, biotransformation, and PE were maximum at 20 degrees C with salinities of 10 parts per thousand and 20 parts per thousand. Cell shape was also observed to be good at optimal at this temperature (20 degrees C) and range of salinity (10%o and 20%o). A conceptual model of integrated effects of environmental factors on growth and As accumulation and biotransformation activities by these marine microalgae has been proposed. This study contributed to the elucidation of the relationship between environmental factors and As biotransformation mechanisms, which may further provide significant insight about As remediation processes.
机译:微藻在海洋生态系统中的生物累积和生物地球化学循环中发挥着重要作用。海洋微藻生长和作为生物转化过程取决于环境因素,包括盐度,温度和营养浓度,并且在这方面的数据在文献中可用。但是,对海洋硅藻种类对环境因素的综合影响的研究仍然稀缺,不清楚。本文,盐度和温度都考虑组合以研究其对摄取,生物转化和光合效率(PE)的影响。两种海洋硅藻毒素,Asteroplanus kararyus和骨质肿仓sp。,在F / 2的营养培养基中培养。与富集的和磷酸盐相关的各种温度(5.0,20和35℃)和盐度(1.0份每千份,每千分别为每千份,每千份,每千份,每千份,40份)培养微藻(1.0 MO MOL L-1的(v)+10μmoll-1的po43-)或缺陷(20nmol l-1,为(v)+1.0μmoll-1的po43-)条件。对于物种,最大增长,作为培养的10和14天记录了积累,生物转化和体积。微藻生长,作为积聚,生物转化和PE在20摄氏度的最大值最大,盐度为每千分别,每千份20次。还观察到细胞形状在该温度(20℃)和盐度范围(10%O和20%O)上是良好的。提出了这些海洋微藻对生长和积累和生物转化活动的环境因素综合影响的概念模型。这项研究有助于阐明环境因素与生物转化机制之间的关系,这可能进一步为修复过程提供了重要的洞察力。

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