Search bioRxiv⌕ Search

Biology subjects

Tischer, M.

Publications and source records attributed to Tischer, M..

2 recordsLinked to original sources

Rapid spread of nutritional Wolbachia symbionts across and within solitary bee species

Maternally inherited, intracellular Bacteria of the genus Wolbachia are extremely widespread among arthropods. Their evolutionary success is owed to frequent host shifts and rapid subsequent spread within host populations, often facilitated by Wolbachia-induced reproductive manipulations. Theory suggests that carrying Wolbachia must also be beneficial for a successful spread, however the nature of such benefits remains unclear. Here, we demonstrate that Wolbachias success in many solitary bee species is strongly associated with the presence of a gene cassette enabling Wolbachia to synthesize Biotin (vitamin B7). This ability is absent from almost all other Wolbachia strains but common among bee associated strains. We show that Wolbachia occurs in up to 70% of all bee species and that strains carrying this rare genomic element have independently spread into numerous bee hosts recently. We further demonstrate that the presence of the biotin operon is associated with specialised diets in several bee species, suggesting a previously overlooked nutritional role of Wolbachia in this group of important pollinators. Overall, our results suggest that nutritional benefits provided by symbionts may represent a more widespread and important mechanism by which reproductive manipulators spread into new host species than previously appreciated.

evolutionary biology↗

Dissecting multitrophic interactions: the relationships among Entomophthora, their dipteran hosts, and associated bacteria

Interactions with microorganisms from across a range of mutualism-to-pathogenicity spectrums shape the biology of insects at all levels - from individual traits to populations and communities. However, the understanding of pathogens attacking non-model insect species in natural ecosystems, or their interactions with other insect-associated microorganisms, is fragmentary. Here, we tested a conceptually novel approach - the simultaneous sequencing of insect, fungal, and bacterial marker gene amplicons - as a means of dissecting interactions among entomopathogenic fungi in the genus Entomophthora and their dipteran hosts in South Greenland. We aimed to describe the taxonomic diversity of Entomophthora-killed flies, their pathogens, and the bacterial diversity within a set of field-collected dead insects exhibiting signs of Entomophthora infection. Across nine collected dipteran species, we identified multiple Entomophthora genotypes, with strong but not perfect patterns of host-specificity across the five targeted marker regions. Additionally, we found consistent differences in bacterial community composition among fungus-killed fly species and sampling sites. Our results substantially expand the knowledge of Entomopthora diversity and host associations while providing the very first insights into associated bacteria and their potential roles. We also conclude that multi-target amplicon sequencing can be a powerful tool for addressing broad questions about biological interactions in diverse natural communities.

ecology↗