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Genetically modified Pseudomonas biosensing biodegraders to detect PCB and chlorobenzoate bioavailability and biodegradation in contaminated soils

机译:转基因的假单胞菌生物传感生物降解剂,可检测污染土壤中的PCB和氯苯甲酸酯生物利用度和生物降解

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摘要

Whole cell microbial biosensors offer excellent possibilities for assaying the complex nature of the bioavailable and bioaccessible fraction of pollutants in contaminated soils, which currently cannot be easily addressed. This paper describes the application and evaluation of three microbial biosensor strains designed to detect the bioavailability and biodegradation of PCBs (and end-products) in contaminated soils and sediments. Polychlorinated biphenyls (PCBs) are considered to be one of the most wide spread, hazardous and persistent pollutants. Herein we describe that there was a positive correlation between the PCB levels within the samples and the percentage of biosensor cells that were expressing their reporter gene; gfp. Immobilisation of the biosensors in calcium alginate beads allowed easy and accurate detection of the biosensor strains in contaminated soil and sludge samples. The biosensors also showed that PCB degradation activity was occurring at a much greater level in Pea inoculated planted soil compared to inoculated unplanted soil indicating rhizoremediation (the removal of pollutants by plant root associated microbes) shows considerable promise as a solution for removing organic xenobiotics from the environment.
机译:全细胞微生物生物传感器为分析污染土壤中污染物的生物可利用和生物可利用部分的复杂性质提供了极好的可能性,目前尚不容易解决。本文介绍了三种微生物生物传感器菌株的应用和评估,这些菌株旨在检测受污染的土壤和沉积物中多氯联苯(及其最终产品)的生物利用度和生物降解性。多氯联苯(PCB)被认为是传播最广,危险和持久性污染物之一。在这里,我们描述了样品中的PCB水平与表达其报告基因的生物传感器细胞的百分比之间存在正相关。 gfp。将生物传感器固定在藻酸钙珠中可以轻松,准确地检测受污染的土壤和污泥样品中的生物传感器菌株。生物传感器还显示,与未接种的土壤相比,在豌豆接种的种植土壤中,PCB降解活性的发生程度要高得多,这表明根际修复(通过植物根系相关微生物去除污染物)显示出从植物中去除有机异物的巨大潜力。环境。

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