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Bioluminescent bioreporter Pseudomonas putida TVA8 as a detector of water pollution. Operational conditions and selectivity of free cells sensor

机译:生物发光生物报告物恶臭假单胞菌TVA8作为水污染检测器。游离细胞传感器的工作条件和选择性

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摘要

Conditions influencing bioluminescence output from Pseudomonas putida TVA8 harboring chromosomal tod-luxCDABE fusion were followed. In complex media, cell growth was not influenced by the presence of toluene at 53 mg/L. Bioluminescence induction was tested in minimal medium. At 15 ℃ the highest bioluminescence induced with toluene (1.325 mg/L) was reached after 6h. At 25 °C the bioluminescence maximum was approximately 20% lower but this was reached after 3.5 h, and at temperatures of 7 C, 28 C, 30 C and 34 C, bioluminescence peaked at <60% of the maximum. Time courses of bioluminescence were dependent on cell concentrations. The heights of bioluminescence maxima were proportional to toluene concentration in the range 0-26 mg/L Twenty-three organic pollutants (103x diluted saturated solutions) were tested as bioluminescent inducers. The bioluminescence maximum decreased in the order: ethylbenzene > toluene > phenol > benzene > 4-ethyltoluene > 4-fIuorotoluene > cumene > isobutylbenzene > styrene > trichloroethylene > o-, p-xylene > cresol > m-xylene > 2-methylnaphthalene > benzylchloride > naphthalene > salicylic acid > hexachlorobenzene > 2-chloronaphthalene > biphenyl > 2-bromonaphthalene > 1,3,5-triethylbenzene. Bioluminescence was also induced with ethanol and methanol and the presence of these alcohols in concentrations of <1% increased bioluminescence of toluene. The induction of bioluminescence from samples of wastewater and groundwater contaminated with BTEX (benzene, toluene, ethylbenzene and xylene) from 0.5 to 120 mg/L was demonstrated.
机译:追踪影响携带恶臭假单胞菌TVA8携带染色体tod-luxCDABE融合的生物发光输出的条件。在复杂培养基中,细胞生长不受53 mg / L甲苯存在的影响。在基本培养基中测试了生物发光诱导。在15℃下6h后达到了甲苯诱导的最高生物发光(1.325 mg / L)。在25°C下,生物发光最大值降低了约20%,但在3.5小时后达到了最大值,在7 C,28 C,30 C和34 C的温度下,生物发光的峰值低于最大值的60%。生物发光的时间过程取决于细胞浓度。最大生物发光高度与甲苯浓度成正比,范围为0-26 mg / L。测试了23种有机污染物(103x稀释的饱和溶液)作为生物发光诱导剂。生物发光最大值按以下顺序降低:乙苯>甲苯>苯酚>苯> 4-乙基甲苯> 4-氟甲苯>枯烯>异丁苯>苯乙烯>三氯乙烯>邻,对二甲苯>甲酚>间二甲苯> 2-甲基萘>苄基氯>萘>水杨酸>六氯苯> 2-氯萘>联苯> 2-溴萘> 1,3,5-三乙苯还用乙醇和甲醇诱导生物发光,并且这些醇的存在(浓度<1%)增加了甲苯的生物发光。证明了从BTEX污染的废水和地下水(苯,甲苯,乙苯和二甲苯)样品中诱导的生物发光为0.5至120 mg / L。

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  • 来源
    《Ecological indicators》 |2011年第3期|p.882-887|共6页
  • 作者单位

    Institute of Chemical Process Fundamentals oftheASCR v.v.i., Rozvojova 135, 165 02 Prague 6, Czech Republic;

    Institute of Chemical Technology Prague, Technicka 5, Czech Republic;

    Institute of Chemical Process Fundamentals oftheASCR v.v.i., Rozvojova 135, 165 02 Prague 6, Czech Republic, Institute of Chemical Technology Prague, Technicka 5, Czech Republic;

    University of Tennessee, 676 Dabney Hall, Knoxville, TN 37996-1605, USA;

    University of Tennessee, 676 Dabney Hall, Knoxville, TN 37996-1605, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    whole-cell biosensor; bioluminescence; pseudomonas putida tva8; btex; lux; bioreporter;

    机译:全细胞生物传感器;生物发光;恶臭假单胞菌tva8;btex;勒克斯;生物报告;

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