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Evidence for strong environmental control on bacterial microbiomes of Antarctic springtails

Scientific Reports 2021 21 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 35 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Claudio Cucini, Chiara Leo, Claudio Cucini, Chiara Leo, Peter Convey Peter Convey Francesco Nardi, Claudio Cucini, Claudio Cucini, Francesco Frati, Francesco Nardi, Francesco Frati, Francesco Nardi, Francesco Nardi, Antonio Carapelli, Peter Convey Peter Convey Antonio Carapelli, Antonio Carapelli, James T. Weedon, Peter Convey Francesco Nardi, Dick Roelofs, Dick Roelofs, Francesco Frati, Antonio Carapelli, Peter Convey Peter Convey

Summary

Researchers studied the bacterial communities living inside four species of Antarctic springtails (tiny soil insects) and found that geography — where the springtails lived — was a stronger influence on their gut microbiome than which species they were. This finding helps explain how extreme environments shape the microbial ecosystems inside animals, including those exposed to microplastic contamination.

Collembola are a key component of the soil biota globally, playing an important role in community and ecosystem dynamics. Equally significant are their associated microbiomes, that can contribute to key metabolic functions. In the present study, we investigated the bacterial community composition of four Antarctic springtail species to assess if and how the extreme Antarctic environment has shaped the collembolans' microbiomes. Springtails were collected from two biogeographical regions, the maritime and the continental Antarctic. From each region, two endemic species, belonging to the genera Cryptopygus (Isotomidae, Entomobryomorpha) and Friesea (Neanuridae, Poduromorpha), were included. This experimental design allowed us to quantify the relative importance of ecological factors (different regions of occurrence) and/or phylogenetic divergence in the host (different Orders) in shaping the Collembola microbiome. The diversity and richness of springtail microbiomes was lower in the Antarctic taxa compared to published information from species from temperate regions. The microbiome composition was predominantly species-specific, with a limited core microbiome shared across the four species examined. While both geographic origin and host species influenced the associated microbiomes, the former was the prevalent driver, with closer similarity between springtails from the same bioregion than between those belonging to the same genus.

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