Suppr超能文献

等待中的共生体:叶蝉最小细菌群落中初期内共生体互补和替代的动态。

Symbionts in waiting: the dynamics of incipient endosymbiont complementation and replacement in minimal bacterial communities of psyllids.

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Locked Bag 1797, Penrith, NSW, 2751, Australia.

Current address: Department of Agriculture and Water Resources, 1 Crewe Place, Rosebery, NSW, 2018, Australia.

出版信息

Microbiome. 2017 Jun 6;5(1):58. doi: 10.1186/s40168-017-0276-4.

Abstract

BACKGROUND

Obligate bacterial primary (P-) endosymbionts that are maternally inherited and codiverge with hosts are widespread across insect lineages with nutritionally restricted diets. Secondary (S-) endosymbionts are mostly facultative, but in some hosts, they complement P-endosymbiont function and therefore become obligate. Phylogenetic evidence exists for host switching and replacement of S-endosymbionts. The community dynamics that precede endosymbiont replacement and complementation have been little studied across host species, yet they are fundamental to the evolution of endosymbiosis.

RESULTS

We performed bacterial 16S rRNA gene amplicon sequencing of 25 psyllid species (Hemiptera, Psylloidea) across different developmental stages and ecological niches by focusing on the characterisation of the bacteria other than the universally present P-endosymbiont Carsonella (Gammaproteobacteria). Most species harboured only one dominant representative of diverse gammaproteobacterial S-endosymbionts that was consistently detected across all host individuals and populations (Arsenophonus in eight species, Sodalis or Sodalis-like bacteria in four species, unclassified Enterobacteriaceae in eight species). The identity of this dominant obligate S-endosymbiont varied across closely related host species. Unexpectedly, five psyllid species had two or three co-occurring endosymbiont species other than Carsonella within all host individuals, including a Rickettsiella-like bacterium (Gammaproteobacteria) in one psyllid species. Based on standard and quantitative PCR, all psyllids carried Carsonella, at higher titres than their dominant S-endosymbionts. Some psyllids also had Alphaproteobacteria (Lariskella, Rickettsia, Wolbachia) at varying prevalence. Incidence of other bacteria, including known plant pathogens, was low. Ecological niche of gall-forming, lerp-forming and free-living psyllid species did not impact endosymbiont communities. Two flush-feeding psyllid species had population-specific differences, and this was attributable to the higher endosymbiont diversity in native ranges and the absence of some endosymbionts in invasive ranges.

CONCLUSIONS

Our data support the hypothesis of strict vertical transmission of minimal core communities of bacteria in psyllids. We also found evidence for S-endosymbiont replacement across closely related psyllid species. Multiple dominant S-endosymbionts present in some host species, including at low titre, constitute potential examples of incipient endosymbiont complementation or replacement. Our multiple comparisons of deep-sequenced minimal insect bacterial communities exposed the dynamics involved in shaping insect endosymbiosis.

摘要

背景

在以营养受限饮食为食的昆虫谱系中,普遍存在与宿主共同进化的专性细菌初级(P-)内共生体和共同进化的专性细菌内共生体。次生(S-)内共生体大多是兼性的,但在一些宿主中,它们补充 P-内共生体的功能,因此成为专性的。宿主的转变和 S-内共生体的替代存在着系统发育的证据。在宿主物种之间,很少研究内共生体替代和补充之前的群落动态,但这些动态是内共生进化的基础。

结果

我们通过聚焦于除普遍存在的 P-内共生体 Carsonella(γ-变形杆菌)以外的细菌的特征,对 25 种半翅目(半翅目,Psylloidea)若虫进行了细菌 16S rRNA 基因扩增子测序,这些若虫跨越了不同的发育阶段和生态位。大多数物种只携带一种多样化的γ-变形杆菌 S-内共生体的优势代表,该内共生体在所有宿主个体和种群中都被一致检测到(八种物种中的 Arsenophonus,四种物种中的 Sodalis 或 Sodalis 样细菌,八种物种中的未分类肠杆菌科)。这种优势的专性 S-内共生体在密切相关的宿主物种之间存在差异。出乎意料的是,在所有宿主个体中,有五种若虫除了 Carsonella 外还有两种或三种共存的内共生体,包括一种弹状菌(γ-变形杆菌)。基于标准和定量 PCR,所有若虫携带 Carsonella,其滴度均高于其主要的 S-内共生体。一些若虫还具有α-变形杆菌(Lariskella、Rickettsia、Wolbachia),其流行率各不相同。其他细菌的发病率较低,包括已知的植物病原体。造瘿、造蜡和自由生活的若虫物种的生态位并没有影响内共生体群落。两种吸食汁液的若虫物种存在种群特异性差异,这归因于其原生范围内的内共生体多样性较高,以及入侵范围内某些内共生体的缺失。

结论

我们的数据支持了这样一种假设,即半翅目昆虫中细菌的最小核心群落严格垂直传播。我们还发现了在密切相关的若虫物种中 S-内共生体替代的证据。一些宿主物种中存在多种优势 S-内共生体,包括低滴度的内共生体,这构成了潜在的内共生体补充或替代的例子。我们对深度测序的最小昆虫细菌群落的多次比较揭示了塑造昆虫内共生的动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04fd/5461708/09ef597a9c08/40168_2017_276_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验