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从土壤中分离得到的两种新型苝降解菌——鞘氨醇单胞菌和假单胞菌。

Two novel pyrene-degrading Diaphorobacter sp. and Pseudoxanthomonas sp. isolated from soil.

机构信息

Department of Microbiology, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.

出版信息

J Biosci Bioeng. 2009 Dec;108(6):488-95. doi: 10.1016/j.jbiosc.2009.05.016.

Abstract

Two new bacterial strains, KOTLB and RN402, which have the ability to utilize pyrene as their sole source of carbon and energy, were isolated from soil. Strains KOTLB and RN402 degraded 99% of 100 mg/l of pyrene in liquid cultures within 16 days. Besides pyrene, both strains also degraded 100 mg/l of phenanthrene almost completely within 8 days and degraded 99% and 55% of 100 mg/l of fluoranthene within 24 days, respectively. 16S rDNA-based phylogenetic analysis suggested that strains KOTLB and RN402 were Diaphorobacter sp. and Pseudoxanthomonas sp., respectively. These two genera have never been reported to be involved in pyrene degradation. Polymerase chain reaction (PCR) amplification with nidA-specific primers revealed the presence of a dioxygenase gene in both strains. The partial nidA gene products of both strains (317 and 384 amino acids, respectively) exhibited 99-100% identity to the NidA proteins, which are the large subunit of terminal dioxygenases for pyrene degradation of Mycobacterium spp. In addition, PCR further demonstrated that nidA genes of these strains were located on a megaplasmid. This is the first report showing that pyrene-degrading Gram-negative bacteria harbor the nidA gene.

摘要

从土壤中分离到两株能够利用芘作为唯一碳源和能源的新细菌菌株 KOTLB 和 RN402。在液体培养中,菌株 KOTLB 和 RN402 在 16 天内降解了 100mg/L 的芘的 99%。除了芘之外,这两株菌在 8 天内几乎完全降解了 100mg/L 的菲,在 24 天内分别降解了 100mg/L 的荧蒽的 99%和 55%。基于 16S rDNA 的系统发育分析表明,菌株 KOTLB 和 RN402 分别为 Diaphorobacter sp.和 Pseudoxanthomonas sp.。这两个属以前从未被报道参与芘的降解。用 nidA 特异性引物进行聚合酶链反应(PCR)扩增显示两株菌中都存在双加氧酶基因。两株菌的部分 nidA 基因产物(分别为 317 和 384 个氨基酸)与分枝杆菌属末端双加氧酶大亚基的 NidA 蛋白具有 99-100%的同一性。此外,PCR 进一步证实这些菌株的 nidA 基因位于一个巨大质粒上。这是首次报道表明能够降解芘的革兰氏阴性菌携带 nidA 基因。

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