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Limited variation in microbial communities across populations of Macrosteles leafhoppers (Hemiptera: Cicadellidae).
Mulio, Sandra Åhlén; Zwolinska, Agnieszka; Klejdysz, Tomasz; Prus-Frankowska, Monika; Michalik, Anna; Kolasa, Michal; Lukasik, Piotr.
Afiliación
  • Mulio SÅ; Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.
  • Zwolinska A; Department of Plant Physiology, Faculty of Biology, Adam Mickiewicz University, Poznan, Poland.
  • Klejdysz T; Institute of Plant Protection - National Research Institute, Research Centre for Registration of Agrochemicals, Poznan, Poland.
  • Prus-Frankowska M; Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.
  • Michalik A; Department of Developmental Biology and Morphology of Invertebrates, Institute of Zoology and Biomedical Research, Faculty of Biology, Jagiellonian University, Kraków, Poland.
  • Kolasa M; Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.
  • Lukasik P; Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.
Environ Microbiol Rep ; 16(3): e13279, 2024 Jun.
Article en En | MEDLINE | ID: mdl-38855918
ABSTRACT
Microbial symbionts play crucial roles in insect biology, yet their diversity, distribution, and temporal dynamics across host populations remain poorly understood. In this study, we investigated the spatio-temporal distribution of bacterial symbionts within the widely distributed and economically significant leafhopper genus Macrosteles, with a focus on Macrosteles laevis. Using host and symbiont marker gene amplicon sequencing, we explored the intricate relationships between these insects and their microbial partners. Our analysis of the cytochrome oxidase subunit I (COI) gene data revealed several intriguing findings. First, there was no strong genetic differentiation across M. laevis populations, suggesting gene flow among them. Second, we observed significant levels of heteroplasmy, indicating the presence of multiple mitochondrial haplotypes within individuals. Third, parasitoid infections were prevalent, highlighting the complex ecological interactions involving leafhoppers. The 16S rRNA data confirmed the universal presence of ancient nutritional endosymbionts-Sulcia and Nasuia-in M. laevis. Additionally, we found a high prevalence of Arsenophonus, another common symbiont. Interestingly, unlike most previously studied species, M. laevis exhibited only occasional cases of infection with known facultative endosymbionts and other bacteria. Notably, there was no significant variation in symbiont prevalence across different populations or among sampling years within the same population. Comparatively, facultative endosymbionts such as Rickettsia, Wolbachia, Cardinium and Lariskella were more common in other Macrosteles species. These findings underscore the importance of considering both host and symbiont dynamics when studying microbial associations. By simultaneously characterizing host and symbiont marker gene amplicons in large insect collections, we gain valuable insights into the intricate interplay between insects and their microbial partners. Understanding these dynamics contributes to our broader comprehension of host-microbe interactions in natural ecosystems.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Simbiosis / Bacterias / ARN Ribosómico 16S / Microbiota / Hemípteros Idioma: En Revista: Environ Microbiol Rep Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Simbiosis / Bacterias / ARN Ribosómico 16S / Microbiota / Hemípteros Idioma: En Revista: Environ Microbiol Rep Año: 2024 Tipo del documento: Article