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多环芳烃污染土壤的细菌群落与酶活性

Bacterial communities and enzyme activities of PAHs polluted soils.

作者信息

Andreoni V, Cavalca L, Rao M A, Nocerino G, Bernasconi S, Dell'Amico E, Colombo M, Gianfreda L

机构信息

Dipartimento di Scienze e Tecnologie Alimentari e Microbiologiche, Università degli Studi, Via Celoria 2, 20133 Milano, Italy.

出版信息

Chemosphere. 2004 Nov;57(5):401-12. doi: 10.1016/j.chemosphere.2004.06.013.

Abstract

Three soils (i.e. a Belgian soil, B-BT, a German soil, G, and an Italian agricultural soil, I-BT) with different properties and hydrocarbon-pollution history with regard to their potential to degrade phenanthrene were investigated. A chemical and microbiological evaluation of soils was done using measurements of routine chemical properties, bacterial counts and several enzyme activities. The three soils showed different levels of polycyclic aromatic hydrocarbons (PAHs), being their contamination strictly associated to their pollution history. High values of enzyme activities and culturable heterotrophic bacteria were detected in the soil with no or negligible presence of organic pollutants. Genetic diversity of soil samples and enrichment cultures was measured as bands on denaturing gradient gel electrophoresis (DGGE) of amplified 16S rDNA sequences from the soil and enrichment community DNAs. When analysed by Shannon index (H'), the highest genetic biodiversity (H'=2.87) was found in the Belgian soil B-BT with a medium-term exposition to PAHs and the poorest biodiversity (H'=0.85) in the German soil with a long-term exposition to alkanes and PAHs and where absence, or lower levels of enzyme activities were measured. For the Italian agricultural soil I-BT, containing negligible amounts of organic pollutants but the highest Cu content, a Shannon index=2.13 was found. The enrichment of four mixed cultures capable of degrading solid phenanthrene in batch liquid systems was also studied. Phenanthrene degradation rates in batch systems were culture-dependent, and simple (one-slope) and complex (two-slope) kinetic behaviours were observed. The presence of common bands of microbial species in the cultures and in the native soil DNA indicated that those strains could be potential in situ phenanthrene degraders. Consistent with this assumption are the decrease of PAH and phenanthrene contents of Belgian soil B-BT and the isolation of phenanthrene-degrading bacteria. From the fastest phenanthrene-degrading culture C(B-BT), representative strains were identified as Achromobacter xylosoxidans (100%), Methylobacterium sp. (99%), Rhizobium galegae (99%), Rhodococcus aetherovorans (100%), Stenotrophomonas acidaminiphila (100%), Alcaligenes sp. (99%) and Aquamicrobium defluvium (100%). DGGE-profiles of culture C(B-BT) showed bands attributable to Rhodococcus, Achromobacter, Methylobacterium rhizobium, Alcaligenes and Aquamicrobium. The isolation of Rhodococcus aetherovorans and Methylobacterium sp. can be consistent with the hypothesis that different phenanthrene-degrading strategies, cell surface properties, or the presence of xenobiotic-specific membrane carriers could play a role in the uptake/degradation of solid phenanthrene.

摘要

研究了三种性质不同且具有不同碳氢化合物污染历史的土壤(即一种比利时土壤B - BT、一种德国土壤G和一种意大利农业土壤I - BT)降解菲的潜力。通过测量常规化学性质、细菌计数和几种酶活性对土壤进行了化学和微生物学评估。这三种土壤显示出不同水平的多环芳烃(PAHs),其污染情况与其污染历史密切相关。在有机污染物不存在或含量可忽略不计的土壤中检测到较高的酶活性值和可培养的异养细菌。通过对土壤样品和富集培养物中扩增的16S rDNA序列进行变性梯度凝胶电泳(DGGE),以条带形式测量土壤样品和富集培养物的遗传多样性。通过香农指数(H')分析发现,在中期暴露于PAHs的比利时土壤B - BT中遗传生物多样性最高(H' = 2.87),而在长期暴露于烷烃和PAHs且酶活性不存在或较低的德国土壤中生物多样性最差(H' = 0.85)。对于意大利农业土壤I - BT,其有机污染物含量可忽略不计但铜含量最高,香农指数为2.13。还研究了在分批液体系统中富集四种能够降解固体菲的混合培养物。分批系统中菲的降解速率取决于培养物,观察到了简单(单斜率)和复杂(双斜率)的动力学行为。培养物和天然土壤DNA中微生物物种的共同条带表明,这些菌株可能是潜在的原位菲降解菌。比利时土壤B - BT中PAH和菲含量的降低以及菲降解菌的分离与这一假设一致。从降解菲最快的培养物C(B - BT)中,鉴定出代表性菌株为木糖氧化无色杆菌(100%)、甲基杆菌属(99%)、鹰嘴豆根瘤菌(99%)、嗜醚红球菌(100%)、嗜酸寡养单胞菌(100%)、产碱菌属(99%)和脱氮水生菌(100%)。培养物C(B - BT)的DGGE图谱显示出可归因于红球菌、无色杆菌、根瘤甲基杆菌、产碱菌和水生菌的条带。嗜醚红球菌和甲基杆菌属的分离可能与不同的菲降解策略、细胞表面特性或存在外源性特异性膜载体在固体菲的摄取/降解中起作用的假设一致。

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