4.8 Article

A new class of marine Euryarchaeota group II from the mediterranean deep chlorophyll maximum

Journal

ISME JOURNAL
Volume 9, Issue 7, Pages 1619-1634

Publisher

SPRINGERNATURE
DOI: 10.1038/ismej.2014.249

Keywords

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Funding

  1. Spanish Ministerio de Economia y Competitividad [CDS2009-00006, BFPU2013-48007-P]
  2. French Agence Nationale de la Recherche [ANR-08-GENM-024-001]
  3. MaCuMBA Project of the European Commission [311975]
  4. FEDER funds
  5. [ACOMP/2014/024]
  6. [AORG 2014/032]

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We have analyzed metagenomic fosmid clones from the deep chlorophyll maximum (DCM), which, by genomic parameters, correspond to the 16S ribosomal RNA (rRNA)-defined marine Euryarchaeota group IIB (MGIIB). The fosmid collections associated with this group add up to 4 Mb and correspond to at least two species within this group. From the proposed essential genes contained in the collections, we infer that large sections of the conserved regions of the genomes of these microbes have been recovered. The genomes indicate a photoheterotrophic lifestyle, similar to that of the available genome of MGIIA (assembled from an estuarine metagenome in Puget Sound, Washington Pacific coast), with a proton-pumping rhodopsin of the same kind. Several genomic features support an aerobic metabolism with diversified substrate degradation capabilities that include xenobiotics and agar. On the other hand, these MGIIB representatives are non-motile and possess similar genome size to the MGIIA-assembled genome, but with a lower GC content. The large phylogenomic gap with other known archaea indicates that this is a new class of marine Euryarchaeota for which we suggest the name Thalassoarchaea. The analysis of recruitment from available metagenomes indicates that the representatives of group IIB described here are largely found at the DCM (ca. 50 m deep), in which they are abundant (up to 0.5% of the reads), and at the surface mostly during the winter mixing, which explains formerly described 16S rRNA distribution patterns. Their uneven representation in environmental samples that are close in space and time might indicate sporadic blooms.

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