Bacterioplankton Community Diversity of a Portuguese Aquifer System (Maciço Calcário Estremenho)

Author:

de Figueiredo Daniela R.1ORCID,Condesso de Melo Maria T.2ORCID,Saraiva Pedro P.1ORCID,Oliveira Joana2,Gonçalves Ana M. M.3ORCID,Reboleira Ana Sofia P. S.45ORCID,Polónia Ana R. M.1ORCID,Abrantes Nelson1ORCID,Cleary Daniel F. R.1ORCID

Affiliation:

1. Department of Biology & CESAM (Centre for Environmental and Marine Studies), University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal

2. Civil Engineering Research and Innovation for Sustainability (CERIS), Instituto Superior Técnico, Departamento de Engenharia de Recursos Minerais e Energéticos, Universidade de Lisboa, Av. Rovisco Pais, 1, 1049-001 Lisbon, Portugal

3. CFE—Centre for Functional Ecology: Science for People & Planet, Department of Life Sciences, University of Coimbra, 3000-456 Coimbra, Portugal

4. Centre for Ecology, Evolution and Environmental Changes (cE3c) & CHANGE-Global Change and Sustainability Institute, and Departamento de Biologia Animal, Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisbon, Portugal

5. Museu Nacional de História Natural e da Ciência, Universidade de Lisboa, Rua da Escola Politécnica, 1250-102 Lisbon, Portugal

Abstract

Climate change may increase the vulnerability of aquifers to contamination through extreme precipitation and extended drought periods. Therefore, the understanding of groundwater ecosystem dynamics is crucial, with bacterial assemblages playing a major role in biogeochemical cycles. The present research describes a geospatial study targeting the bacterial community structure of groundwaters from the largest karst aquifer in Portugal (the Maciço Calcário Estremenho), integrating hydrogeochemical and bacterial diversity data. A total of 22 samples were analyzed from a set of 11 geographically sparsely distributed groundwater sources in dry vs. wet seasons. The 16S rRNA gene barcoding data revealed bacterial community variability across samples in space and time. The phylum Proteobacteria was dominant across all samples (from 44 to 92% of total sequence reads), mainly represented by the classes Alphaproteobacteria (orders Sphingomonadales, BD7–3, Rhizobiales and Rhodospirillales), Betaproteobacteria (orders Burkholderiales, Rhodocyclales, Nitrosomonadales), Gammaproteobacteria (orders Pseudomonadales, Xanthomonadales, Alteromonadales, Legionellales) and Deltaproteobacteria (orders Myxococcales, Spirobacillales). Variation in the bacterial community was primarily attributed to parameters such as redox conditions (DO, ORP), Fe, Mn, SO4, PO4, Sr and Cl, but also some minor and trace elements (Al, V, Cr, Cu, Pb). Our results provide novel insights into bacterial diversity in relation to groundwater hydrogeochemistry. The strong dominance of OTUs related to bacterial taxa associated with nitrification/denitrification also highlights a potentially important role of these assemblages on nutrients (nitrogen sources) and groundwater quality dynamics at this karstic aquifer system. Moreover, the integration of bacterial assemblages information is emphasized as central for water quality monitoring programs.

Funder

Portuguese Foundation for Science and Technology

FCT/national funds

FCT/MCTES

cE3c

University of Coimbra

Centre for Functional Ecology-Science for People and the Planet

Publisher

MDPI AG

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