Piccini C, García-Alonso J
Departamento de Microbiología, Instituto de Investigaciones Biológicas Clemente Estable, Montevideo, Uruguay.
Laboratorio de Biodiversidad, Centro Universitario Regional Este, Universidad de la República, Campus de Maldonado, 20000 Maldonado, Uruguay.
Mar Pollut Bull. 2015 Feb 28;91(2):476-82. doi: 10.1016/j.marpolbul.2014.08.039. Epub 2014 Sep 22.
Intertidal benthic ecosystems in estuaries are productive sites where microbial processes play critical roles in nutrients mineralization, primary production and trophic web. In this groundwork study we analyzed the bacterial community of intertidal biofilms from Río de la Plata beaches with different anthropogenic impacts. Several environmental parameters were measured and bacterial assemblages were analyzed by 16S-rDNA pyrosequencing. The average OTU found per sample was 527.3±122.5, showing similar richness and diversity among them. However, sites having the highest and lowest salinity displayed higher bacterial diversity. Assemblages from a site nearby an oil refinery, showing the lowest salinity and oxygen concentration, were clearly distinct from the rest. The weight of this splitting relied on OTUs belonging to Thauera, known by its ability to metabolize aromatic compounds. Our results suggest that intertidal bacterial assemblages would be structured by major estuarine variables such as salinity, and that anthropogenic-induced environmental parameters might also be relevant.
河口潮间带底栖生态系统是多产地带,微生物过程在养分矿化、初级生产和营养网中发挥着关键作用。在这项基础研究中,我们分析了来自不同人为影响的拉普拉塔河海滩潮间带生物膜的细菌群落。测量了几个环境参数,并通过16S - rDNA焦磷酸测序分析细菌组合。每个样本发现的平均OTU为527.3±122.5,它们之间显示出相似的丰富度和多样性。然而,盐度最高和最低的地点显示出更高的细菌多样性。来自炼油厂附近一个地点的组合,显示出最低的盐度和氧气浓度,明显与其他组合不同。这种分化的权重依赖于属于陶厄氏菌属的OTU,该菌以其代谢芳香族化合物的能力而闻名。我们的结果表明,潮间带细菌组合将由主要的河口变量如盐度构建,并且人为诱导的环境参数可能也有关联。