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鲁德普拉滕斯拟无枝酸菌新种和斯佩博纳拟无枝酸菌新种:从南非土壤中分离出的产抗生素放线菌。

Amycolatopsis roodepoortensis sp. nov. and Amycolatopsis speibonae sp. nov.: antibiotic-producing actinobacteria isolated from South African soils.

作者信息

Everest Gareth J, le Roes-Hill Marilize, Rohland Jeffrey, Enslin Salomi, Meyers Paul R

机构信息

Department of Molecular and Cell Biology, University of Cape Town, Rondebosch, Cape Town, South Africa.

出版信息

J Antibiot (Tokyo). 2014 Dec;67(12):813-8. doi: 10.1038/ja.2014.79. Epub 2014 Jun 25.

Abstract

Two novel members of the genus Amycolatopsis were isolated from soil samples collected in South Africa. Strains JS72(T) and M29(T) clustered in the same clade in the 16S-rRNA, gyrB-16S-rRNA and gyrB-recN gene trees. Both strains showed anti-mycobacterial activity. The oxyB P450 monooxygenase B gene required for the production of glycopeptide antibiotics was detected in both strains, while strain JS72(T) was also shown to contain the 3-amino-5-hydroxy-benzoic acid synthase gene, which is required for the production of the ansamycin class of antibiotics. Genetic distance values (based on the gyrB and recN genes) were calculated between strains JS72(T) and M29(T) and their closest phylogenetic relatives. The values for strain JS72(T) were all above the threshold values of 0.02 and 0.04, respectively, that have been proposed to distinguish Amycolatopsis-type strains. The gyrB-based values for strain M29(T) were above the threshold for all but one strain; the recN-based values were all above the threshold. These data, along with DNA-DNA hybridization data, showed that strains JS72(T) and M29(T) belong to distinct genomic species. The physiological, phylogenetic and genetic distance data support the description of strains JS72(T) and M29(T) as the type strains of novel species, for which the names Amycolatopsis speibonae sp. nov. (=DSM 46660(T)=NRRL B-24958(T)) and Amycolatopsis roodepoortensis sp. nov. (=DSM 46661(T)=NRRL B-24959(T)) are proposed, respectively.

摘要

从南非采集的土壤样本中分离出了拟无枝酸菌属的两个新成员。菌株JS72(T)和M29(T)在16S - rRNA、gyrB - 16S - rRNA和gyrB - recN基因树中聚集在同一进化枝中。两种菌株均显示出抗分枝杆菌活性。在两种菌株中均检测到了产生糖肽抗生素所需的oxyB P450单加氧酶B基因,而菌株JS72(T)还被证明含有产生安莎霉素类抗生素所需的3 - 氨基 - 5 - 羟基苯甲酸合酶基因。计算了菌株JS72(T)和M29(T)与其最接近的系统发育亲缘关系菌株之间的遗传距离值(基于gyrB和recN基因)。菌株JS72(T)的值分别均高于已提出的用于区分拟无枝酸菌属型菌株的0.02和0.04阈值。菌株M29(T)基于gyrB的值除一个菌株外均高于阈值;基于recN的值均高于阈值。这些数据以及DNA - DNA杂交数据表明,菌株JS72(T)和M29(T)属于不同的基因组种。生理、系统发育和遗传距离数据支持将菌株JS72(T)和M29(T)描述为新物种的模式菌株,分别提议将其命名为斯皮博纳拟无枝酸菌(Amycolatopsis speibonae)新种(=DSM 46660(T)=NRRL B - 24958(T))和鲁德普特拟无枝酸菌(Amycolatopsis roodepoortensis)新种(=DSM 46661(T)=NRRL B - 24959(T))。

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