School of Biological Sciences, University of Queensland, 4072, Brisbane, QLD, Australia.
BMC Genomics. 2013 Jan 16;14:20. doi: 10.1186/1471-2164-14-20.
The endosymbiont Wolbachia pipientis causes diverse and sometimes dramatic phenotypes in its invertebrate hosts. Four Wolbachia strains sequenced to date indicate that the constitution of the genome is dynamic, but these strains are quite divergent and do not allow resolution of genome diversification over shorter time periods. We have sequenced the genome of the strain wBol1-b, found in the butterfly Hypolimnas bolina, which kills the male offspring of infected hosts during embyronic development and is closely related to the non-male-killing strain wPip from Culex pipiens.
The genomes of wBol1-b and wPip are similar in genomic organisation, sequence and gene content, but show substantial differences at some rapidly evolving regions of the genome, primarily associated with prophage and repetitive elements. We identified 44 genes in wBol1-b that do not have homologs in any previously sequenced strains, indicating that Wolbachia's non-core genome diversifies rapidly. These wBol1-b specific genes include a number that have been recently horizontally transferred from phylogenetically distant bacterial taxa. We further report a second possible case of horizontal gene transfer from a eukaryote into Wolbachia.
Our analyses support the developing view that many endosymbiotic genomes are highly dynamic, and are exposed and receptive to exogenous genetic material from a wide range of sources. These data also suggest either that this bacterial species is particularly permissive for eukaryote-to-prokaryote gene transfers, or that these transfers may be more common than previously believed. The wBol1-b-specific genes we have identified provide candidates for further investigations of the genomic bases of phenotypic differences between closely-related Wolbachia strains.
共生菌沃尔巴克氏体(Wolbachia pipientis)在其无脊椎宿主中引起多种不同的表型,有时甚至是剧烈的表型。迄今为止,已测序的 4 种沃尔巴克氏体菌株表明,基因组的组成是动态的,但这些菌株差异很大,无法解析较短时间内的基因组多样化。我们对在蝴蝶 Hypolimnas bolina 中发现的菌株 wBol1-b 的基因组进行了测序,该菌株在胚胎发育过程中杀死受感染宿主的雄性后代,与非雄性杀伤菌株 wPip 来自库蚊(Culex pipiens)密切相关。
wBol1-b 和 wPip 的基因组在基因组组织、序列和基因内容上相似,但在基因组的一些快速进化区域存在显著差异,主要与前噬菌体和重复元件有关。我们在 wBol1-b 中鉴定出 44 个没有在任何以前测序的菌株中发现同源物的基因,表明沃尔巴克氏体的非核心基因组迅速多样化。这些 wBol1-b 特异性基因包括一些最近从系统发育上较远的细菌类群中水平转移而来的基因。我们进一步报告了第二个可能的从真核生物到沃尔巴克氏体的水平基因转移案例。
我们的分析支持了这样一种观点,即许多内共生基因组具有高度的动态性,并且容易受到来自广泛来源的外源遗传物质的影响和接受。这些数据还表明,这种细菌物种特别允许真核生物到原核生物的基因转移,或者这些转移比以前认为的更为普遍。我们鉴定的 wBol1-b 特异性基因为进一步研究密切相关的沃尔巴克氏体菌株之间表型差异的基因组基础提供了候选基因。