首页> 外文期刊>FEMS Microbiology Ecology >Optical properties of dissolved organic matter relate to different depth-specific patterns of archaeal and bacterial community structure in the North Atlantic Ocean
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Optical properties of dissolved organic matter relate to different depth-specific patterns of archaeal and bacterial community structure in the North Atlantic Ocean

机译:溶解有机物的光学性质涉及北大西洋的古物和细菌群落结构的不同深度特异性模式

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摘要

Prokaryotic abundance, activity and community composition were studied in the euphotic, intermediate and deep waters off the Galician coast (NW Iberian margin) in relation to the optical characterization of dissolved organic matter (DOM). Microbial (archaeal and bacterial) community structure was vertically stratified. Among the Archaea, Euryarchaeota, especially Thermoplasmata, was dominant in the intermediate waters and decreased with depth, whereas marine Thaumarchaeota, especially Marine Group I, was the most abundant archaeal phylum in the deeper layers. The bacterial community was dominated by Proteobacteria through the whole water column. However, Cyanobacteria and Bacteroidetes occurrence was considerable in the upper layer and SAR202 was dominant in deep waters. Microbial composition and abundance were not shaped by the quantity of dissolved organic carbon, but instead they revealed a strong connection with the DOM quality. Archaeal communities were mainly related to the fluorescence of DOM (which indicates respiration of labile DOM and generation of refractory subproducts), while bacterial communities were mainly linked to the aromaticity/age of the DOM produced along the water column. Taken together, our results indicate that the microbial community composition is associated with the DOM composition of the water masses, suggesting that distinct microbial taxa have the potential to use and/or produce specific DOM compounds.
机译:在加利西亚海岸(NW IBERIAN MARIN)的EUPHEDIC,中间和深水中研究了原发性丰富,活动和社区组成,与溶解有机物(DOM)的光学表征有关。微生物(古物和细菌)群落结构垂直分层。在古代夏季,特别是热质上,在中间水域中占主导地位,深入减少,而海洋遗传学,特别是海洋群岛,是较深层层中最丰富的古代古猿。细菌群落由整个水柱的蛋白质主导。然而,在上层和SAR202在深水中显着的血细菌和菌株发生。微生物组成和丰度未通过溶解的有机碳的量成形,而是揭示了与DOM质量的强烈连接。古群落主要与DOM的荧光有关(表明不稳定DOM的呼吸和耐火子生产的产生),而细菌群落主要与沿水柱产生的DOM的芳香性/年龄相关联。我们的结果表明微生物群落组合物与水质量的DOM组成相关,表明明显的微生物分类群有可能使用和/或产生特异性的DOM化合物。

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