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Artículo

DNA stable isotope probing reveals the impact of trophic interactions on bioaugmentation of soils with different pollution histories

Nieto, Esteban EmanuelIcon ; Jurburg, Stephanie D.; Steinbach, Nicole; Festa, SabrinaIcon ; Morelli, Irma Susana; Coppotelli, Bibiana MarinaIcon ; Chatzinotas, Antonis
Fecha de publicación: 08/2024
Editorial: Springer
Revista: Microbiome
ISSN: 2049-2618
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Biología Celular, Microbiología

Resumen

Background: Bioaugmentation is considered a sustainable and cost-effective methodology to recover contaminated environments, but its outcome is highly variable. Predation is a key top-down control mechanism affecting inoculum establishment, however, its effects on this process have received little attention. This study focused on the impact of trophic interactions on bioaugmentation success in two soils with different pollution exposure histories. We inoculated a 13C-labelled pollutant-degrading consortium in these soils and tracked the fate of the labelled biomass through stable isotope probing (SIP) of DNA. We identified active bacterial and eukaryotic inoculum-biomass consumers through amplicon sequencing of 16S rRNA and 18S rRNA genes coupled to a novel enrichment factor calculation.Results: Inoculation effectively increased PAH removal in the short-term, but not in the long-term polluted soil. A decrease in the relative abundance of the inoculated genera was observed already on day 15 in the long-term polluted soil, while growth of these genera was observed in the short-term polluted soil, indicating establishment of the inoculum. In both soils, eukaryotic genera dominated as early incorporators of 13C-labelled biomass, while bacteria incorporated the labelled biomass at the end of the incubation period, probably through cross-feeding. We also found different successional patterns between the two soils. In the short-term polluted soil, Cercozoa and Fungi genera predominated as early incorporators, whereas Ciliophora, Ochrophyta and Amoebozoa were the predominant genera in the long-term polluted soil.Conclusion: Our results showed differences in the inoculum establishment and predator community responses, affecting bioaugmentation efficiency. This highlights the need to further study predation effects on inoculum survival to increase the applicability of inoculation-based technologies.
Palabras clave: bioaugmentation , predation , SIP-DNA , bacterial consortia
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution 2.5 Unported (CC BY 2.5)
Identificadores
URI: http://hdl.handle.net/11336/264523
URL: https://microbiomejournal.biomedcentral.com/articles/10.1186/s40168-024-01865-2
DOI: http://dx.doi.org/10.1186/s40168-024-01865-2
Colecciones
Articulos(CINDEFI)
Articulos de CENT.DE INV EN FERMENTACIONES INDUSTRIALES (I)
Citación
Nieto, Esteban Emanuel; Jurburg, Stephanie D.; Steinbach, Nicole; Festa, Sabrina; Morelli, Irma Susana; et al.; DNA stable isotope probing reveals the impact of trophic interactions on bioaugmentation of soils with different pollution histories; Springer; Microbiome; 12; 1; 8-2024; 1-12
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