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Differential detection of key enzymes of polyaromatic-hydrocarbon-degrading bacteria using PCR and gene probes

机译:使用PCR和基因探针的多芳族 - 烃降解细菌的差异检测

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Bacteria with ability to degrade polyaromatic hydrocarbons (PAHs), isolated from wastewater and soil samples, were investigated for their taxonomic, physiological and genetic diversity. Eighteen isolates able to metabolize naphthalene or phenanthrene as sole carbon source were taxonomically affiliated to different subclasses of the Proteobacteria (Sphingomonas spp., Acidovorax spp., Comamonas spp. and Pseudomonas spp.) and to phyla of Gram-positive bacteria with low and high DNA G+C content (Paenibacillus sp. and Rhodococcus spp., respectively). Representatives of the genera Pseudomonas and Sphingomonas formed a remarkably high fraction of these isolates; 9 out of 18 strains belonged to these groups. Tests for enzyme activities showed that the majority of the isolates growing with PAHs as sole sources of carbon and energy had an active catechol 2,3-dioxygenase (C23O). C23O specific activities were very diverse, ranging from 0·1 to 650 mU (mg protein)-1. Pseudomonas and Sphingomonas strains showed considerably higher activities than the other isolates. All PAH degraders were examined for the presence of an initial PAH dioxygenase and C23O, which catalyse key steps of PAH degradation, by PCR amplification of gene fragments and subsequent hybridization. PCR primers and internal oligonucleotide probes were developed for the specific detection of the genes of Pseudomonas and Sphingomonas strains.
机译:研究具有降解从​​废水和土壤样品中的多芳烃(PAH)的能力的细菌进行了分类,生理和遗传多样性。能够以唯一碳源作为唯一碳源代谢萘或菲膦的18个分离株与植物的不同亚类(SppingoMonas spp。,acidovorax spp。,comamonas spp。和pseudomonas spp。)和革兰氏阳性细菌的低和高DNA G + C含量(Paenibacillus sp.和rhodococcus spp)。 Genera pseudomonas和鞘氨醇的代表形成了这些分离株的显着高分分数;在18个菌株中有9个属于这些群体。酶活性的试验表明,由于碳和能量唯一的碳和能量源生长的分离物的大部分分离物具有活性儿茶酚2,3-二氧化根(C23O)。 C23O特异性的活动非常多样化,范围为0·1至650μm(mg蛋白质)-1。假单胞菌和鞘豆瘤菌株表现出比其他分离株相当高的活动。通过PCR扩增基因片段和随后的杂交来检查所有PAH DiOxygenase和C23O的初始PAH二恶英酶和C23O的存在。开发了PCR引物和内部寡核苷酸探针,用于特异性检测假单胞菌和鞘氨醇菌株的基因。

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