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Diversity of Archaea and detection of crenarchaeotal amoA genes in the rivers Rhine and Têt

  • Utrecht University
  • extern

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Pelagic archaeal phylogenetic diversity and the potential for crenarchaeotal nitrification of Group 1.1a were determined in the rivers Rhine and Tet by 16S rRNA sequencing, catalyzed reported deposition-fluorescence in situ hybridization (CARD-FISH) and quantification of 16S rRNA and functional genes. Euryarchaeota were, for the first time, detected in temperate river water even though a net predominance of crenarchaeotal phylotypes was found. Differences in phylogenic distribution were observed between rivers and seasons. Our data suggest that a few archaeal phylotypes (Euryarchaeota Groups RC-V and LDS, Crenarchaeota Group 1.1a) are widely distributed in pelagic riverine environments whilst others (Euryarchaeota Cluster Sagma-1) may only occur seasonally in river water. Crenarchaeota Group 1.1a has recently been identified as a major nitrifier in the marine environment and phylotypes of this group were also present in both rivers, where they represented 0.3% of the total pelagic microbial community. Interestingly, a generally higher abundance of Crenarchaeota Group 1.1a was found in the Rhine than in the Tet, and crenarchaeotal ammonia monooxygenase gene (amoA) was also detected in the Rhine, with higher amoA copy numbers measured in February than in September. This suggests that some of the Crenarchaeota present in river waters have the ability to oxidize ammonia and that riverine crenarchaeotal nitrification of Group 1.1a may vary seasonally.
Original languageEnglish
Pages (from-to)189-201
Number of pages13
JournalAquatic Microbial Ecology
Volume55
Issue number2
DOIs
Publication statusPublished - 2009
Externally publishedYes

Funding

We thank M. Baas, M. Woltering and J. van den Donker (NIOZ) for their assistance with sampling in the Rhine. We are also grateful to A. Smit (NIOZ) for his help with the CARD-FISH analyses and to G. van Noort (NIOZ) for his assistance with the microscopy. Special thanks are extended to our colleagues from the NIOZ molecular lab, H. Witte, J. van Bleijswijk, E. Panoto and A. Boere, for their invaluable advice, assistance and enthusiasm. We are also indebted to W. Ludwig (Centre de Formation et de Recherche sur l'Environnement Marin, Universite de Perpignan), who kindly provided us with the raw nutrient and salinity data collected in the Tet River in June 2001, which are published in Garcia-Esteves et al. (2007) as mean annual values. The present study is part of the Land-Ocean Interactions in the Coastal Zone (LOICZ) project supported by the Research Council for Earth and Life Science (ALW), with financial aid from the Netherlands Organisation for Scientific Research (NWO) (grant no. 014.27.003 to J.S.S.D.).

FundersFunder number
Research Council for Earth and Life Science
Netherlands Organisation for Applied Scientific Research014.27.003

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 14 - Life Below Water
      SDG 14 Life Below Water

    Keywords

    • Archaea
    • Diversity
    • Nitrification
    • River

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