Sep 2026· Environmental Science and Technology· 0 citations· 73 references
Medicine
TL;DR
Recurrent cyanobacterial enrichment in plastisphere communities is demonstrated and co-occurrence patterns between cyanobacteria and heterotrophic taxa are identified, generating hypotheses regarding possible phototroph-heterotroph linkages on plastic surfaces that warrant experimental investigation.
Abstract
The plastisphere is an emerging anthropogenic ecosystem hosting complex microbial assemblages. While heterotrophic colonizers are well studied, the role of primary producers such as cyanobacteria remains underexplored. Here, we reanalyzed 16S rRNA gene amplicon data from 3160 plastisphere samples across 62 aquatic studies to assess their role in community assembly at a global scale. Substrate type explained a significant but relatively small fraction of variation (R2 = 0.048), whereas β-diversity showed clear separation between marine and freshwater communities. Among all substrate types (plastic, microplastic, natural polymer, and nonplastic), plastic-associated communities exhibited the highest estimated contribution of deterministic assembly processes in both freshwater and marine ecosystems. Co-occurrence networks showed low modularity and high clustering, revealing recurrent community association patterns across plastisphere data sets, while several topologically central taxa exhibited frequent associations with cyanobacteria. Notably, Xenococcaceae and Phormidesmiaceae were consistently enriched on plastics relative to surrounding environments. Independent metagenomic analyses corroborate enrichment of Phormidesmiaceae. These results demonstrate recurrent cyanobacterial enrichment in plastisphere communities and identify co-occurrence patterns between cyanobacteria and heterotrophic taxa. These associations generate hypotheses regarding possible phototroph-heterotroph linkages on plastic surfaces that warrant experimental investigation.
Mangroves persist under strong environmental constraints with support from microbes. Although microbial communities differ among mangrove compartments, their assembly mechanisms and compartment-specific functional signatures remain poorly resolved. Here, we combine peptide nucleic acid–clamping coupled with 16S rRNA ge...
D. J. Jiménez, T. Jamil, María Fernanda Peña-Valencia et al.· bioRxiv· 0 citations
Findings revealed that MP pollution modified microbial community assembly in urban soils, creating a decoupled, pollutant-driven microbial system, and integrating these effects into urban environmental risk assessments is therefore urgently needed.
Gang Wang, Ji-Fu Li, Deng-Feng Wang et al.· Environmental Research· 0 citations
These findings demonstrate that P. cirratum maintains compartmentalized prokaryotic and viral communities through niche-specific abiotic filtering and biotic selection, promoting nutrient acquisition and stress resilience in bryophyte-dominated ecosystems.
Chao-Jian Hu, Muhammad Asif, Jin-Hui Liu et al.· iScience· 0 citations
ABSTRACT The phycosphere, the organic‐rich microenvironment surrounding phytoplankton cells, mediates interactions between algae and other microorganisms, mainly prokaryotes. We investigated associations between Chaetoceros spp., one of the most abundant diatom genera in coastal waters, and particle‐attached prokaryoti...
Anna Chiara Trano, R. Casotti, R. Piredda· Environmental Microbiology R...· 0 citations
Aquaculture infrastructures create persistent artificial habitats that support complex plastisphere communities shaped by both environmental variability and farming-derived enrichment. This study investigated the seasonal dynamics, vertical structuring, and ecological organization of microbial assemblages colonizing br...