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未培养细菌内共生体的原位鉴定及系统发育分析

Identification in situ and phylogeny of uncultured bacterial endosymbionts.

作者信息

Amann R, Springer N, Ludwig W, Görtz H D, Schleifer K H

机构信息

Lehrstuhl für Mikrobiologie, Technische Universität München, Germany.

出版信息

Nature. 1991 May 9;351(6322):161-4. doi: 10.1038/351161a0.

Abstract

The use of Koch's technique to isolate bacteria in pure cultures has enabled thousands of bacterial species to be characterized. But for the many microorganisms that have never been cultivated, DNA amplification in vitro using the polymerase chain reaction is now making their genes accessible. Here we use this technique to study bacteria of the genus Holospora, which live in ciliates and whose phylogenetic relationship has remained unknown because they are impossible to cultivate. Species of Holospora are highly infectious and live in the nuclei of their specific host cells: H. elegans and H. undulata infect micronuclei of Paramecium caudatum, whereas H. obtusa infects the macronucleus in other strains of the same host species; Holospora species have a common developmental cycle. We have amplified, cloned and sequenced gene fragments encoding ribosomal RNA of H. obtusa. The phylogenetic position of H. obtusa in the alpha group of Proteobacteria was determined by 16S rRNA sequence analysis. The sequences were then used to design species- as well as genus-specific rRNA hybridization probes, which enabled us to detect and differentiate individual cells of the endosymbionts in situ. The large amount of rRNA in the cells indicates a high physiological activity of the endosymbionts in the host nuclei.

摘要

利用科赫氏技术在纯培养物中分离细菌,已使数千种细菌得以鉴定。但对于许多从未培养过的微生物而言,如今利用聚合酶链反应进行体外DNA扩增,使其基因得以获取。在此,我们运用这项技术研究全孢螺菌属细菌,它们寄生于纤毛虫中,由于无法培养,其系统发育关系一直不明。全孢螺菌属物种具有高度传染性,寄生于特定宿主细胞的细胞核中:秀丽全孢螺菌和波动全孢螺菌感染尾草履虫的微核,而钝全孢螺菌感染同一宿主物种其他菌株的大核;全孢螺菌属物种具有共同的发育周期。我们已对钝全孢螺菌编码核糖体RNA的基因片段进行了扩增、克隆和测序。通过16S rRNA序列分析确定了钝全孢螺菌在变形菌门α亚群中的系统发育位置。然后利用这些序列设计了种属特异性rRNA杂交探针,这使我们能够原位检测和区分内共生体的单个细胞。细胞中大量的rRNA表明内共生体在宿主细胞核中具有较高的生理活性。

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