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Genomic insights into Candidatus Argiopiplasma dusa, a bacterial symbiont of the wasp spider Argiope bruennichi.

Created on 22 Sep 2026

Authors

Larissa M Busch, Monica M Sheffer, Nina Dombrowski, Henrik Krehenwinkel, Stefan Prost, Anja Spang, Gabriele Uhl, Tim Urich, Katharina J Hoff, Mia M Bengtsson

Published in

FEMS microbiology letters. Sep 22, 2026. Epub Sep 22, 2026.

Abstract

Bacterial symbionts were shown to have diverse but significant impacts on the fitness of their host in insects, but little is known on the symbionts of spiders and their interactions with their hosts. Here, we assembled and investigated the circular 575 kb genome of Candidatus Argiopiplasma dusa, a novel bacterial symbiont of the wasp spider Argiope bruennichi. Phylogenomic analysis placed this species within the phylum Mycoplasmatota, in a poorly characterized clade that may represent a new order-level lineage or affiliate with the Mycoplasmatales order. With 559 predicted genes, the genome is relatively small compared to other Mycoplasmatota genomes (on average 969 genes) and has a low GC content of ∼24%. While the genome encodes genes for proteins involved in glycolysis and fermentative acetate production, it revealed minimal biosynthetic capabilities with pathways for nucleotide, amino acid and vitamin biosynthesis being absent in Ca. Argiopiplasma dusa. This suggests a metabolic dependence and an endosymbiotic lifestyle within the spider host. The symbiont was detected in A. bruennichi populations across the distribution range of the spider but appears to be absent in certain populations.

PMID:
42770805
Bibliographic data and abstract were imported from PubMed on 22 Sep 2026.

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