Department of Microbiology and Ecosystem Science, Centre for Microbiology and Environmental Systems Science, University of Vienna, Vienna, Austria.
Department of Internal Medicine and Oncology, Semmelweis University, Budapest, Hungary.
ISME J. 2022 Jan;16(1):247-256. doi: 10.1038/s41396-021-01056-z. Epub 2021 Jul 22.
Adelgids (Insecta: Hemiptera: Adelgidae) form a small group of insects but harbor a surprisingly diverse set of bacteriocyte-associated endosymbionts, which suggest multiple replacement and acquisition of symbionts over evolutionary time. Specific pairs of symbionts have been associated with adelgid lineages specialized on different secondary host conifers. Using a metagenomic approach, we investigated the symbiosis of the Adelges laricis/Adelges tardus species complex containing betaproteobacterial ("Candidatus Vallotia tarda") and gammaproteobacterial ("Candidatus Profftia tarda") symbionts. Genomic characteristics and metabolic pathway reconstructions revealed that Vallotia and Profftia are evolutionary young endosymbionts, which complement each other's role in essential amino acid production. Phylogenomic analyses and a high level of genomic synteny indicate an origin of the betaproteobacterial symbiont from endosymbionts of Rhizopus fungi. This evolutionary transition was accompanied with substantial loss of functions related to transcription regulation, secondary metabolite production, bacterial defense mechanisms, host infection, and manipulation. The transition from fungus to insect endosymbionts extends our current framework about evolutionary trajectories of host-associated microbes.
球蚜(昆虫纲:半翅目:球蚜科)是一小群昆虫,但它们携带着一组令人惊讶的多样化的菌细胞相关共生体,这表明共生体在进化过程中经历了多次替代和获得。特定的共生体对专门在不同的次生针叶树上的球蚜类群具有特异性。我们采用宏基因组学方法研究了包含β变形菌(“Candidatus Vallotia tarda”)和γ变形菌(“Candidatus Profftia tarda”)共生体的球松球蚜/球松长足管蚜种复合体的共生关系。基因组特征和代谢途径重建表明,Vallotia 和 Profftia 是进化上年轻的内共生体,它们在必需氨基酸的产生中相互补充。系统基因组学分析和高度的基因组同线性表明,β变形菌共生体起源于根霉真菌的内共生体。这种进化转变伴随着与转录调控、次生代谢产物产生、细菌防御机制、宿主感染和操纵相关的功能大量丧失。从真菌到昆虫内共生体的转变扩展了我们关于宿主相关微生物进化轨迹的现有框架。