Rothballer Michael, Schmid Michael, Klein Ilona, Gattinger Andreas, Grundmann Sabine, Hartmann Anton
Department of Rhizosphere Biology, GSF - National Research Centre for Environment and Health, Ingolstaedter Landstrasse 1, D-85764 Neuherberg, Germany.
Institute of Soil Ecology, GSF - National Research Centre for Environment and Health, Ingolstaedter Landstrasse 1, D-85764 Neuherberg, Germany.
Int J Syst Evol Microbiol. 2006 Jun;56(Pt 6):1341-1348. doi: 10.1099/ijs.0.64031-0.
The genus Herbaspirillum of the Betaproteobacteria mainly comprises diazotrophic bacteria with a potential for endophytic and systemic colonization of a variety of plants. The plant-associated bacterial isolates N3(T), N5 and N9 were derived from surface-sterilized wheat roots. After phylogenetic analysis of 16S rRNA gene sequence data the isolates could be allocated to the genus Herbaspirillum, and 99.9 % similarity to the sequence of Herbaspirillum lusitanum P6-12(T) was found. A set of 16S rRNA gene-targeted oligonucleotide probes was developed for the identification of the three novel isolates and H. lusitanum (Hhilu446), and for the specific detection of several other Herbaspirillum species described recently. For higher phylogenetic resolution, the 23S rRNA gene sequences of all members of the genus was sequenced and used to construct a phylogenetic tree. Isolates N3(T), N5 and N9 formed a group that was distinct from all other Herbaspirillum species. In addition, isolate N3(T) and H. lusitanum P6-12(T) exhibited a DNA-DNA hybridization value of only 25 %. The value for DNA-DNA hybridization between N3(T) and other members of the genus Herbaspirillum was between 14 and 32 %; DNA-DNA hybridization between strain N3(T) and isolates N5 and N9 produced values above 95 %. This places the three isolates as representatives of a novel species within the genus Herbaspirillum. A Biolog GN2 assay supported this conclusion. The major fatty acids were C(16 : 1)omega7c, C(16 : 0) and C(18 : 1)omega7c, and the DNA G+C content ranged from 60.9 to 61.5 mol%. Therefore these three isolates should be classified within a novel species, for which the name Herbaspirillum hiltneri sp. nov. is proposed. The type strain is N3(T) (=DSM 17495(T)=LMG 23131(T)).
β-变形菌纲的草螺菌属主要由具有在多种植物中进行内生和系统定殖潜力的固氮细菌组成。与植物相关的细菌分离株N3(T)、N5和N9源自表面消毒的小麦根。对16S rRNA基因序列数据进行系统发育分析后,这些分离株可归为草螺菌属,并且发现其与葡萄牙草螺菌P6-12(T)的序列相似度为99.9%。开发了一组针对16S rRNA基因的寡核苷酸探针,用于鉴定这三个新分离株和葡萄牙草螺菌(Hhilu446),以及特异性检测最近描述的其他几种草螺菌属物种。为了获得更高的系统发育分辨率,对该属所有成员的23S rRNA基因序列进行了测序,并用于构建系统发育树。分离株N3(T)、N5和N9形成了一个与所有其他草螺菌属物种不同的类群。此外,分离株N3(T)和葡萄牙草螺菌P6-12(T)的DNA-DNA杂交值仅为25%。N3(T)与草螺菌属其他成员之间的DNA-DNA杂交值在14%至32%之间;菌株N3(T)与分离株N5和N9之间的DNA-DNA杂交值高于95%。这表明这三个分离株是草螺菌属内一个新物种的代表。Biolog GN2分析支持了这一结论。主要脂肪酸为C(16 : 1)ω7c、C(16 : 0)和C(18 : 1)ω7c,DNA G+C含量在60.9至61.5 mol%之间。因此,这三个分离株应归为一个新物种,提议将其命名为希尔特纳草螺菌(Herbaspirillum hiltneri sp. nov.)。模式菌株为N3(T)(=DSM 17495(T)=LMG 23131(T))。