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首页> 外文期刊>Anais da Academia Brasileira de Ciências >Bacterial and Archaeal Communities Variability Associated with Upwelling and Anthropogenic Pressures in the Protection Area of Arraial do Cabo (Cabo Frio region - RJ)
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Bacterial and Archaeal Communities Variability Associated with Upwelling and Anthropogenic Pressures in the Protection Area of Arraial do Cabo (Cabo Frio region - RJ)

机译:与Arraial do Cabo(Cabo Frio region-RJ)保护区的上升流和人为压力相关的细菌和古细菌群落的变异性

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摘要

Upwelling systems contain a high diversity of pelagic microorganisms and their composition and activity are defined by factors like temperature and nutrient concentration. Denaturing gradient gel electrophoresis (DGGE) technique was used to verify the spatial and temporal genetic variability of Bacteria and Archaea in two stations of the Arraial do Cabo coastal region, one under upwelling pressure and another under anthropogenic pressure. In addition, biotic and abiotic variables were measured in surface and deep waters from three other stations between these stations. Six samplings were done during a year and adequately represented the degrees of upwelling and anthropogenic pressures to the system. Principal Component Analysis (PCA) showed negative correlations between the concentrations of ammonia and phosphorous with prokaryotic secondary production and the total heterotrophic bacteria. PCA also showed negative correlation between temperature and the abundance of prokaryotic cells. Bacterial and archaeal compositions were changeable as were the oceanographic conditions, and upwelling had a regional pressure while anthropogenic pressure was punctual. We suggest that the measurement of prokaryotic secondary production was associated with both Bacteria and Archaea activities, and that substrate availability and temperature determine nutrients cycling.
机译:上升流系统包含多种上层微生物,其组成和活性由温度和养分浓度等因素决定。变性梯度凝胶电泳(DGGE)技术用于验证Arraial do Cabo沿海地区两个站的细菌和古细菌的时空遗传变异,一个站在上升压力下,另一个在人为压力下。此外,还测量了这些站之间其他三个站的地表水和深水中的生物和非生物变量。一年中进行了六次采样,充分代表了系统上升流和人为压力的程度。主成分分析(PCA)显示,原核生物副产氨和磷的浓度与总异养细菌之间呈负相关。 PCA还显示温度与原核细胞丰度之间呈负相关。细菌和古细菌的组成随海洋条件的变化而变化,上升流具有区域性压力,而人为压力则是守时的。我们建议原核生物次级生产的测量与细菌和古细菌的活动有关,并且底物的可用性和温度决定了养分的循环。

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