首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Effects of ultraviolet-B radiation and nutrient enrichment on the productivity of benthic microalgae in shallow coastal lagoons of the North Central Gulf of Mexico
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Effects of ultraviolet-B radiation and nutrient enrichment on the productivity of benthic microalgae in shallow coastal lagoons of the North Central Gulf of Mexico

机译:紫外线-B辐射和养分富集对墨西哥北部中部湾浅海泻湖底栖微藻生产力的影响

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摘要

Benthic microalgae (BMA) play important roles in shallow coastal systems. Few studies have addressed the combined effects of ultraviolet-B radiation (UVB) and nutrient enrichment on the productivity of BMA. Here we use field and microcosms experiments to explore the single and combined effects of ambient and increased UVB and sediment nutrient enrichment on the productivity of BMA in two shallow coastal lagoons of the North Central Gulf of Mexico. We found few negative effects of ambient and increased UVB levels, even though increased UVB levels were higher than liberal predictions of anthropogenic increase for the studied area. In contrast, we found several positive effects of sediment fertilization, although all positive effects were restricted to one of the lagoons. These results point to strong protective responses of BMA to UVB in the lagoons studied. Such protective responses do not appear to be limited by ambient nutrient availability. This study indicates that sediment nutrient enrichment is a more important driver for BMA, and by default for the ecological functioning of the lagoons studied, than current and predicted UVB levels. These conclusions, however, may not apply to other coastal systems, where the interactive effects of fertilization and UVB on BMA deserve further investigation.
机译:底栖微藻(BMA)在浅海沿岸系统中起重要作用。很少有研究解决紫外线B辐射(UVB)和营养富集对BMA生产力的综合影响。在这里,我们使用田野和微观实验来探索环境和UVB的增加以及沉积物养分富集对墨西哥北部中部海湾两个浅沿海泻湖中BMA生产力的单一和综合影响。尽管增加的UVB水平高于研究区域人为增加的自由预测,但我们发现环境和UVB水平升高的负面影响很小。相反,我们发现了沉积物施肥的几个积极作用,尽管所有积极作用都局限于一个泻湖。这些结果表明,在所研究的泻湖中,BMA对UVB有很强的保护作用。这样的保护性反应似乎不受环境养分利用率的限制。这项研究表明,与当前和预测的UVB水平相比,沉积物养分的富集是BMA的更重要驱动力,并且默认情况下对于所研究的泻湖的生态功能更重要。但是,这些结论可能不适用于其他沿海系统,在这些沿海系统中,施肥和UVB对BMA的交互作用值得进一步研究。

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    Dauphin Island Sea Lab, 101 Bienville Blvd., Dauphin Island, Alabama 36528, United States Department of Marine Sciences, University of South Alabama, LSCB 25, Mobile, Alabama 36688, United States;

    Dauphin Island Sea Lab, 101 Bienville Blvd., Dauphin Island, Alabama 36528, United States Department of Biological Sciences, University of Alabama, Tuscaloosa, AL 35487, United States;

    Dauphin Island Sea Lab, 101 Bienville Blvd., Dauphin Island, Alabama 36528, United States Department of Marine Sciences, University of South Alabama, LSCB 25, Mobile, Alabama 36688, United States;

    Dauphin Island Sea Lab, 101 Bienville Blvd., Dauphin Island, Alabama 36528, United States Department of Marine Sciences, University of South Alabama, LSCB 25, Mobile, Alabama 36688, United States;

    Marine Program, University of New Hampshire, 24 Colovos Road, Durham, New Hampshire 03824, United States;

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  • 正文语种 eng
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  • 关键词

    benthic microalgae; chlorophyll a; nutrient enrichment; primary productivity; UVB;

    机译:底栖微藻叶绿素a;营养丰富;初级生产力;紫外线B;

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