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首页> 外文期刊>Applied and Environmental Microbiology >Bioluminescent sensors for detection of bioavailable Hg(II) in the environment.
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Bioluminescent sensors for detection of bioavailable Hg(II) in the environment.

机译:用于检测环境中生物可利用的Hg(II)的生物发光传感器。

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Biosensors for the detection of pollutants in the environment can complement analytical methods by distinguishing bioavailable from inert, unavailable forms of contaminants. By using fusions of the well-understood Tn21 mercury resistance operon (mer) with promoterless luxCDABE from Vibrio fischeri, we have constructed and tested three biosensors for Hg(II). Bioluminescence specified by pRB28, carrying merRo/pT, by pOS14, mediating active transport of Hg(II), and by pOS15, containing an intact mer operon, was measured in rich and minimal media. The highest sensitivities were achieved in minimal medium and were 1, 0.5, and 25 nM Hg(II) for pRB28, pOS14, and pOS15, respectively. The utility of the biosensors in natural waters was demonstrated with freshwater, rain, and estuarine samples supplemented with Hg(II). mer-lux carried by pRB28 and pOS14 responded to Hg(II) in mercury-contaminated water samples collected from a freshwater pond. Semiquantitative analyses based on light emission in samples collected from the inlet (analytically determined total mercury, approximately 20 nM) and outlet (total mercury, approximately 7 nM) of the pond showed bioavailable mercury at approximately 20 and 1 to 2 nM, respectively. Thus, the biosensors described here semiquantitatively detect bioavailable inorganic mercury (at a nanomolar to micromolar concentration range) in contaminated waters.
机译:用于检测环境中污染物的生物传感器可以通过区分生物利用度与惰性,不可用形式的污染物来补充分析方法。通过使用广为人知的Tn21耐汞操纵子(mer)与费氏弧菌无启动子luxCDABE的融合,我们构建并测试了三种Hg(II)生物传感器。在丰富和最少的培养基中,测量了携带有merRo / pT的pRB28,介导Hg(II)主动转运的pOS14和包含完整mer操纵子的pOS15规定的生物发光。在最小培养基中获得了最高的灵敏度,对pRB28,pOS14和pOS15分别为1、0.5和25 nM Hg(II)。补充有Hg(II)的淡水,雨水和河口样品证明了生物传感器在天然水中的实用性。 pRB28和pOS14携带的mer-lux对从淡水池塘收集的汞污染的水样中的Hg(II)作出了反应。根据从池塘的入口(分析确定的总汞,约20 nM)和出口(总汞,约7 nM)收集的样品中的光发射进行的半定量分析显示,生物可利用的汞分别为约20和1至2 nM。因此,此处描述的生物传感器可半定量地检测受污染水中的生物可利用的无机汞(纳摩尔浓度至微摩尔浓度范围)。

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