首页> 外文期刊>Progress in Oceanography >Photoreactivity of riverine and phytoplanktonic dissolved organic matter and its effects on the dynamics of a bacterial community from the coastal Mediterranean Sea
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Photoreactivity of riverine and phytoplanktonic dissolved organic matter and its effects on the dynamics of a bacterial community from the coastal Mediterranean Sea

机译:河滨和浮游植物溶解有机物的光反应性及其对地中海沿岸细菌群落动态的影响

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High solar radiation levels measured in the Mediterranean basin can result in photo-oxidation of dissolved organic matter (DOM) at the sea surface. The objective of the present study was to determine the effects of solar radiation on two contrasting sources of DOM (diatom-derived DOM and riverine DOM) and to evaluate its effect on the growth and the composition of a bacterial community from the Mediterranean Sea. DOM was sequentially exposed to artificial solar radiation or kept in the dark and then added to microcosms containing coastal seawater. For both sources of DOM, light exposure induced photo-alterations by decreasing absorbance and fluorescence of colored dissolved organic matter. However, resulting effects on bacteria were contrasted. Photo-alteration of phytoplankton-derived DOM resulted in a lower bacterial growth during the three first days, without modifying the total dissolved organic carbon consumption. Moreover, after 3 days of incubation, the bacterial diversity as determined by 16S rRNA gene pyrosequencing, revealed that DOM phototransformation led to a higher relative abundance of Alphaproteobacteria and a lower relative abundance of Gammaproteobacteria. A limited number of operational taxonomic units (OTUs) (n = 44) explained 80% of the diversity changes between dark and the light treatments, with an equal number of positively and negatively affected OTUs. In contrast, the photobleaching measured on riverine DOM after sunlight exposure had no effect on both bacterial carbon cycling and composition during a 7-days biodegradation experiment. Our results demonstrate that the effects of solar radiation on DOM greatly differ according to the initial composition of DOM and that changes in bacterial composition, when occurred, showed diverse responses inside a same class of bacteria, underlying the necessity to use a sufficiently resolutive approach to describe them. A better understanding of the interactive effects of the biological degradation and the photoinduced degradation of DOM are required in the context of the global change affecting Mediterranean Sea. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在地中海盆地中测量到的高太阳辐射水平会导致海面溶解有机物(DOM)发生光氧化。本研究的目的是确定太阳辐射对DOM的两个相反来源(硅藻衍生的DOM和河流的DOM)的影响,并评估其对来自地中海的细菌群落的生长和组成的影响。 DOM依次暴露在人造太阳辐射下或保持在黑暗中,然后添加到包含沿海海水的缩影中。对于两种DOM源,曝光都会通过降低有色溶解有机物的吸光度和荧光来引起光改变。但是,对比了对细菌产生的影响。浮游植物来源的DOM的光变导致在前三天内细菌生长降低,而未改变总溶解有机碳消耗量。此外,孵育3天后,通过16S rRNA基因焦磷酸测序确定的细菌多样性表明DOM光转化导致α变形杆菌的相对丰度较高,而γ变形细菌的相对丰度较低。有限数量的操作分类单位(OTU)(n = 44)解释了暗处理和亮处理之间80%的多样性变化,而正向和负向影响的OTU数量相同。相反,在7天的生物降解实验中,日光照射后在河流DOM上测得的光致漂白对细菌碳循环和组成均没有影响。我们的结果表明,太阳辐射对DOM的影响根据DOM的初始组成而有很大差异,并且细菌组成的变化在发生时显示出同一类细菌内部的不同响应,这表明必须使用足够的分辨方法描述他们。在影响地中海的全球变化的背景下,需要更好地了解DOM的生物降解和光诱导降解的相互作用。 (C)2017 Elsevier Ltd.保留所有权利。

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