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Using a bioluminescent bacterial bioreporter to assess iron bioavailability in the oceans.

机译:使用生物发光细菌生物报告仪评估海洋中铁的生物利用度。

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Recent improvements in modern analytical methods have considerably increased our understanding of Fe biogeochemistry in the Ocean. Compiled data have shown that Fe concentrations are low in most open ocean surface waters and that the bioavailability of this Fe is influenced by organic complexation. Of presumed biotic origin, the importance of this organic complexation to Fe availability remains to be elucidated. Unfortunately, current analytical tools do not allow for a linkage to be established between Fe speciation to Fe bioavailability.; To supplement chemical analyses, we have developed a bioanalytical tool: a heterotrophic bacterial bioluminescent reporter system that responds quantitatively to bioavailable Fe concentrations. Data collected during one field study in a freshwater system as well as three independent field studies in marine systems demonstrate that these whole-cell biosensors are a powerful tool for environmental monitoring, providing both qualitative and quantitative insights on Fe biogeochemistry.; To complement this work, laboratory studies have been carried out to characterize the influence of various sources of Fe-complexing organic ligands, including synthetic chelators, bacterial and fungal siderophores and virus-mediated bacterial lysis products. The results of this study will be presented in the context of attempting to clarify the role that the organic complexation of Fe may play in regulating Fe bioavailability to the diverse planktonic components of the aquatic microbial community.; To improve our abilities to standardize this tool in the field, a green fluorescent protein gene expressed under control of a constitutive promoter has been introduced in the genomic DNA of P. putida FeLux. The resulting dual bioreporter will allow for the enumeration of bioreporter cells in environmental samples in parallel to the detection the bioluminescent signal in response to changes in Fe bioavailability.
机译:现代分析方法的最新改进大大增加了我们对海洋中铁生物地球化学的了解。汇编的数据表明,在大多数露天海洋表层水中,Fe的浓度很低,并且这种Fe的生物利用度受有机络合物的影响。关于推测的生物来源,这种有机络合物对铁的有效性的重要性尚待阐明。不幸的是,当前的分析工具不允许在铁的形态与铁的生物利用度之间建立联系。为了补充化学分析,我们开发了一种生物分析工具:一种异养细菌生物发光报告系统,可对生物可利用的铁浓度进行定量响应。在淡水系统的一次现场研究以及海洋系统的三个独立的现场研究期间收集的数据表明,这些全细胞生物传感器是用于环境监测的强大工具,提供了有关铁生物地球化学的定性和定量分析。为了补充这项工作,已经进行了实验室研究,以表征各种复杂的铁络合有机配体来源的影响,包括合成螯合剂,细菌和真菌铁载体以及病毒介导的细菌裂解产物。本研究的结果将在试图阐明铁的有机络合物在调节铁对水生微生物群落的多种浮游生物的生物利用度中的作用的背景下提出。为了提高我们在该领域标准化该工具的能力,在组成型启动子控制下表达的绿色荧光蛋白基因已被引入恶臭假单胞菌的基因组DNA中。所产生的双重生物报告物将允许对环境样品中的生物报告物细胞进行计数,同时响应于对铁生物利用度变化的检测生物发光信号。

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