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“嗜多宿主新美菌(暂定名)”新属,新种:关于早期分化立克次氏体的进化史、宿主范围及宿主转移的思考

'Candidatus Megaira polyxenophila' gen. nov., sp. nov.: considerations on evolutionary history, host range and shift of early divergent rickettsiae.

作者信息

Schrallhammer Martina, Ferrantini Filippo, Vannini Claudia, Galati Stefano, Schweikert Michael, Görtz Hans-Dieter, Verni Franco, Petroni Giulio

机构信息

Dipartimento di Biologia, Università di Pisa, Pisa, Italy.

出版信息

PLoS One. 2013 Aug 20;8(8):e72581. doi: 10.1371/journal.pone.0072581. eCollection 2013.

Abstract

"Neglected Rickettsiaceae" (i.e. those harboured by non-hematophagous eukaryotic hosts) display greater phylogenetic variability and more widespread dispersal than pathogenic ones; yet, the knowledge about their actual host range and host shift mechanism is scarce. The present work reports the characterization following the full-cycle rRNA approach (SSU rRNA sequence, specific in situ hybridization, and ultrastructure) of a novel rickettsial bacterium, herewith proposed as 'Candidatus Megaira polyxenophila' gen. nov., sp. nov. We found it in association with four different free-living ciliates (Diophrys oligothrix, Euplotes octocarinatus, Paramecium caudatum, and Spirostomum sp., all belonging to Alveolata, Ciliophora); furthermore it was recently observed as intracellular occurring in Carteria cerasiformis and Pleodorina japonica (Chlorophyceae, Chlorophyta). Phylogenetic analyses demonstrated the belonging of the candidate new genus to the family Rickettsiaceae (Alphaproteobacteria, Rickettsiales) as a sister group of the genus Rickettsia. In situ observations revealed the ability of the candidate new species to colonize either nuclear or cytoplasmic compartments, depending on the host organism. The presence of the same bacterial species within different, evolutionary distant, hosts indicates that 'Candidatus Megaira polyxenophila' recently underwent several distinct host shifts, thus suggesting the existence of horizontal transmission pathways. We consider these findings as indicative of an unexpected spread of rickettsial infections in aquatic communities, possibly by means of trophic interactions, and hence propose a new interpretation of the origin and phylogenetic diversification of rickettsial bacteria.

摘要

“被忽视的立克次氏体科细菌”(即那些寄生于非吸血真核宿主的细菌)比致病性立克次氏体科细菌表现出更大的系统发育变异性和更广泛的分布;然而,关于它们实际的宿主范围和宿主转移机制的知识却很匮乏。本研究报告了一种新型立克次氏体细菌的全周期rRNA方法(小亚基rRNA序列、特异性原位杂交和超微结构)鉴定结果,在此将其命名为“嗜多宿主新立克次氏体(Candidatus Megaira polyxenophila)”,属名nov.,种名nov.。我们发现它与四种不同的自由生活纤毛虫(寡毛双滴虫、八肋游仆虫、尾草履虫和旋口虫,均属于纤毛门、纤毛纲)相关联;此外,最近还观察到它在蜡形卡特藻和日本多星藻(绿藻门、绿藻纲)的细胞内出现。系统发育分析表明,这个候选新属属于立克次氏体科(α-变形菌纲、立克次氏体目),是立克次氏体属的姐妹群。原位观察揭示了候选新物种根据宿主生物体的不同,能够定殖于细胞核或细胞质区室。在不同的、进化距离较远的宿主中存在相同的细菌物种,这表明“嗜多宿主新立克次氏体”最近经历了几次不同的宿主转移,因此暗示了水平传播途径的存在。我们认为这些发现表明立克次氏体感染在水生群落中意外传播,可能是通过营养相互作用实现的,因此对立克次氏体细菌的起源和系统发育多样化提出了一种新的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf08/3748036/5a90ce65f0db/pone.0072581.g001.jpg

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