Insects engage in manifold interactions with bacteria that can shift along the parasitism-mutualism continuum. However, only a small number of bacterial taxa managed to successfully colonize a wide diversity of insects, by evolving mechanisms for host-cell entry, immune evasion, germline tropism, reproductive manipulation, and/or by providing benefits to the host that stabilize the symbiotic association. Here, we report on the discovery of an Enterobacterales endosymbiont (Symbiodolus, type species Symbiodolus clandestinus) that is widespread across at least six insect orders and occurs at high prevalence within host populations. Fluorescence in situ hybridization in several Coleopteran and one Dipteran species revealed Symbiodolus' intracellular presence in all host life stages and across tissues, with a high abundance in female ovaries, indicating transovarial vertical transmission. Symbiont genome sequencing across 16 host taxa revealed a high degree of functional conservation in the eroding and transposon-rich genomes. All sequenced Symbiodolus genomes encode for multiple secretion systems, alongside effectors and toxin-antitoxin systems, which likely facilitate host-cell entry and interactions with the host. However, Symbiodolus-infected insects show no obvious signs of disease, and biosynthetic pathways for several amino acids and cofactors encoded by the bacterial genomes suggest that the symbionts may also be able to provide benefits to the hosts. A lack of host-symbiont cospeciation provides evidence for occasional horizontal transmission, so Symbiodolus' success is likely based on a mixed transmission mode. Our findings uncover a hitherto undescribed and widespread insect endosymbiont that may present valuable opportunities to unravel the molecular underpinnings of symbiosis establishment and maintenance.
Intracellular symbiont Symbiodolus is vertically transmitted and widespread across insect orders.
细胞内共生体Symbiodolus通过垂直传播广泛存在于昆虫的各个目中
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作者:Wierz Jürgen C, Dirksen Philipp, Kirsch Roy, Krüsemer Ronja, Weiss Benjamin, Pauchet Yannick, Engl Tobias, Kaltenpoth Martin
| 期刊: | ISME Journal | 影响因子: | 10.000 |
| 时间: | 2024 | 起止号: | 2024 Jan 8; 18(1):wrae099 |
| doi: | 10.1093/ismejo/wrae099 | 研究方向: | 细胞生物学 |
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