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首页> 外文期刊>Elementa: science of the anthropocene >Relative abundance of Bacillus spp., surfactant-associated bacterium present in a natural sea slick observed by satellite SAR imagery over the Gulf of Mexico
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Relative abundance of Bacillus spp., surfactant-associated bacterium present in a natural sea slick observed by satellite SAR imagery over the Gulf of Mexico

机译:墨西哥湾卫星SAR图像观测到的天然海浮油中与表面活性剂相关的细菌芽孢杆菌的相对丰度

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摘要

The damping of short gravity-capillary waves (Bragg waves) due to surfactant accumulation under low wind speed conditions results in the formation of natural sea slicks. These slicks are detectable visually and in synthetic aperture radar satellite imagery. Surfactants are produced by natural life processes of many marine organisms, including bacteria, phytoplankton, seaweed, and zooplankton. In this work, samples were collected in the Gulf of Mexico during a research cruise on the R/V F.G. Walton Smith to evaluate the relative abundance of Bacillus spp., surfactant-associated bacteria, in the sea surface microlayer compared to the subsurface water at 0.2 m depth. A method to reduce potential contamination of microlayer samples during their collection on polycarbonate filters was implemented and advanced, including increasing the number of successive samples per location and changing sample storage procedures. By using DNA analysis (real-time polymerase chain reaction) to target Bacillus spp., we found that in the slick areas, these surfactant-associated bacteria tended to reside mostly in subsurface waters, lending support to the concept that the surfactants they may produce move to the surface where they accumulate under calm conditions and enrich the sea surface microlayer.
机译:在低风速条件下,由于表面活性剂的积累,短重力毛细管波(Bragg波)的衰减导致了自然浮油的形成。这些浮油在视觉上和合成孔径雷达卫星图像中均可检测到。表面活性剂是由许多海洋生物的自然生命过程产生的,包括细菌,浮游植物,海藻和浮游动物。在这项工作中,在R / V F.G.上进行的研究航行期间,在墨西哥湾收集了样本。沃尔顿·史密斯(Walton Smith)评估了表面活性剂相关细菌芽孢杆菌(Bacillus spp。)在海表微层中与0.2 m深度的水下水相比的相对丰度。一种减少微层样品在聚碳酸酯过滤器上收集过程中潜在污染的方法已得到实施和改进,包括增加每个位置的连续样品数量和更改样品存储程序。通过使用DNA分析(实时聚合酶链反应)靶向芽孢杆菌,我们发现在光滑地区,这些与表面活性剂相关的细菌往往主要生活在地下水中,这为它们可能产生的表面活性剂提供了支持。移到它们在平静条件下聚集的表面,并丰富了海表微层。

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