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Leucine incorporation by aerobic anoxygenic phototrophic bacteria in the Delaware estuary

机译:特拉华河口好氧产氧营养细菌的亮氨酸掺入

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摘要

Aerobic anoxygenic phototrophic (AAP) bacteria are well known to be abundant in estuaries, coastal regions and in the open ocean, but little is known about their activity in any aquatic ecosystem. To explore the activity of AAP bacteria in the Delaware estuary and coastal waters, single-cell 3H-leucine incorporation by these bacteria was examined with a new approach that combines infrared epifluorescence microscopy and microautoradiography. The approach was used on samples from the Delaware coast from August through December and on transects through the Delaware estuary in August and November 2011. The percent of active AAP bacteria was up to twofold higher than the percentage of active cells in the rest of the bacterial community in the estuary. Likewise, the silver grain area around active AAP bacteria in microautoradiography preparations was larger than the area around cells in the rest of the bacterial community, indicating higher rates of leucine consumption by AAP bacteria. The cell size of AAP bacteria was 50% bigger than the size of other bacteria, about the same difference on average as measured for activity. The abundance of AAP bacteria was negatively correlated and their activity positively correlated with light availability in the water column, although light did not affect 3H-leucine incorporation in light–dark experiments. Our results suggest that AAP bacteria are bigger and more active than other bacteria, and likely contribute more to organic carbon fluxes than indicated by their abundance.
机译:众所周知,好氧厌氧光养细菌(AAP)在河口,沿海地区和公海中含量很高,但对它们在任何水生生态系统中的活性了解甚少。为了研究特拉华河口和沿海水域中AAP细菌的活性,采用结合了红外表面荧光显微镜和显微放射自显影技术的新方法,研究了这些细菌掺入单细胞 3 H-亮氨酸的方法。该方法于8月至12月在特拉华海岸的样本以及2011年8月和2011年11月在特拉华河口的样带中使用。活性AAP细菌的百分率比其余细菌中活性细胞的百分率高两倍。河口社区。同样,显微放射自显影制剂中活性AAP细菌周围的银颗粒面积大于其余细菌群落中细胞周围的面积,表明AAP细菌消耗亮氨酸的比率更高。 AAP细菌的细胞大小比其他细菌大50%,与活性测得的平均差异大致相同。尽管在明暗实验中光不影响 3 H-亮氨酸的掺入,但AAP细菌的丰度与水柱中的光利用率呈负相关,而其活性与光利用率呈正相关。我们的结果表明,AAP细菌比其他细菌更大,活性更高,并且可能对有机碳通量的贡献超过其丰度。

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