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首页> 外文期刊>Journal of phycology >Physiological characterization of a Synechococcus sp (Cyanophyceae) strain PCC 7942 iron-dependent bioreporter for freshwater environments
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Physiological characterization of a Synechococcus sp (Cyanophyceae) strain PCC 7942 iron-dependent bioreporter for freshwater environments

机译:Synechococcus sp(Cyanophyceae)菌株PCC 7942依赖铁的生物报告物在淡水环境中的生理特性

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The complex chemical speciation of Fe in aquatic systems and the uncertainties associated with biological assimilation of Fe species make it difficult to assess the bioavailability of Fe to phytoplankton in relation to total dissolved Fe concentrations in natural waters. We developed a cyanobacterial Fe-responsive bioreporter constructed in Synechococcus sp. strain PCC 7942 by fusing the Fe-responsive isiAB promoter to Vibrio harveyi luxAB reporter genes. A comprehensive physiological characterization of the bioreporter has been made in defined Fraquil medium at free ferric ion concentrations ranging from pFe 21.6 to pFe 19.5. Whereas growth and physiological parameters are largely constrained over this range of Fe bioavailability, the bioreporter elicits a luminescent signal that varies in response to Fe deficiency. A dose-response characterization of bioreporter luminescence made over this range of Fe3+ bioavailability demonstrates a sigmoidal response with a dynamic linear range extending between pFe 21.1 and pFe 20.6. The applicability of using this Fe bioreporter to assess Fe availability in the natural environment has been tested using water samples from Lake Huron (Laurentian Great Lakes). Parallel assessment of dissolved Fe and bioreporter response from these samples reinforces the idea that measures of dissolved Fe should not be considered alone when assessing Fe availability to phytoplankton communities. [References: 60]
机译:水系统中铁的复杂化学形态以及与铁物种的生物同化相关的不确定性,使得难以评估与浮游生物有关的铁的生物利用度与天然水中总溶解铁浓度的关系。我们开发了在Synechococcus sp。中构建的蓝细菌铁反应性生物报告基因。通过将铁反应性isiAB启动子融合到哈维弧菌luxAB报道基因中来分离PCC 7942菌株。在限定的Fraquil介质中,铁离子浓度范围为pFe 21.6至pFe 19.5,对生物报告物进行了全面的生理表征。尽管在此Fe生物利用度范围内,生长和生理参数受到很大限制,但生物报告者会发出响应Fe缺乏而变化的发光信号。在此Fe3 +生物利用度范围内进行的生物报告分子发光的剂量响应表征表明,S型响应具有在pFe 21.1和pFe 20.6之间延伸的动态线性范围。使用来自休伦湖(Laurentian Great Lakes)的水样,已经测试了使用这种Fe生物报告仪评估自然环境中Fe的有效性。对这些样品中溶解的铁和生物报告者反应的并行评估强化了这样一种观念,即在评估浮游植物群落的铁可用性时,不应单独考虑溶解铁的措施。 [参考:60]

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