0000000000202552

AUTHOR

Alexander Eiler

0000-0001-9916-9567

showing 8 related works from this author

Archaea in boreal Swedish lakes are diverse, dominated by Woesearchaeota and follow deterministic community assembly

2020

Despite their key role in biogeochemical processes, particularly the methane cycle, archaea are widely underrepresented in molecular surveys because of their lower abundance compared to bacteria and eukaryotes. Here, we use parallel high‐resolution small subunit rRNA gene sequencing to explore archaeal diversity in 109 Swedish lakes and correlate archaeal community assembly mechanisms to large‐scale latitudinal, climatic (nemoral to arctic), and nutrient (oligotrophic to eutrophic) gradients. Sequencing with universal primers showed the contribution of archaea was on average 0.8% but increased up to 1.5% of the three domains in forest lakes. Archaea‐specific sequencing revealed that freshwa…

Biogeochemical cycleGeologic SedimentsRange (biology)BiodiversityBiologyjärvetMicrobiologyDNA sequencing03 medical and health scienceslimnologiaAbundance (ecology)PhylogeneticsRNA Ribosomal 16SEcology Evolution Behavior and SystematicsPhylogeny030304 developmental biologySwedenEkologi0303 health sciencesEcology030306 microbiologyEcologyPhylumSequence Analysis RNABiodiversity15. Life on landbiology.organism_classificationArchaeaddc:ekosysteemit (ekologia)Molecular TypingLakesMikrobiologi13. Climate actionaineiden kiertomakea vesimikrobiologiaWater MicrobiologyarkeonitOxidation-ReductionArchaea
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Novel Autotrophic Organisms Contribute Significantly to the Internal Carbon Cycling Potential of a Boreal Lake

2018

ABSTRACT Oxygen-stratified lakes are typical for the boreal zone and also a major source of greenhouse gas emissions in the region. Due to shallow light penetration, restricting the growth of phototrophic organisms, and large allochthonous organic carbon inputs from the catchment area, the lake metabolism is expected to be dominated by heterotrophic organisms. In this study, we test this assumption and show that the potential for autotrophic carbon fixation and internal carbon cycling is high throughout the water column. Further, we show that during the summer stratification carbon fixation can exceed respiration in a boreal lake even below the euphotic zone. Metagenome-assembled genomes an…

0301 basic medicine030106 microbiologyHeterotrophDNA RibosomaljärvetMicrobiologyCarbon cycle03 medical and health sciencesWater columnTotal inorganic carbonRNA Ribosomal 16SVirologyCluster AnalysisPhotic zoneAnaerobiosis14. Life underwaterAutotrophFinlandPhylogeny030304 developmental biologyTotal organic carbon0303 health sciencesAutotrophic ProcessesmetagenomicsPhototroph030306 microbiologygreenhouse gas emissionsEcologyhiilen kiertoCarbon fixationSequence Analysis DNAiron oxidizers15. Life on landBiotaCarbonQR1-502Food webLakesMikrobiologi13. Climate actionmikro-organismitredox gradientEnvironmental sciencechemoautotrophyResearch ArticlemBio
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Metagenomic insights into strategies of aerobic and anaerobic carbon and nitrogen transformation in boreal lakes

2015

Thousands of net-heterotrophic and strongly stratifying lakes dominate the boreal landscape. Besides their central role as emitters of greenhouse gases, we have only recently begun to understand the microbial systems driving the metabolic processes and elemental cycles in these lakes. Using shotgun metagenomics, we show that the functional potential differs among lake types, with humic lakes being particularly enriched in carbon degradation genes. Most of the metabolic pathways exhibit oxygen- and temperature-dependent stratification over depth, coinciding with shifts in bacterial community composition, implying that stratification is a major factor controlling lake metabolism. In the botto…

Nitrogenta1172boreal lakesOceanografi hydrologi och vattenresurserBiologymicrobial ecologyArticleBacteria AnaerobicOceanography Hydrology and Water ResourcesWater columncarbon cyclenitrogen cycleCompounds of carbon14. Life underwaterAutotrophNitrogen cyclechemistry.chemical_classificationmetagenomicsMultidisciplinaryEcologyhiilen kiertota1183WaterAnoxic waters6. Clean waterCarbonBacteria AerobicOxygenmikrobiekologiaLakeschemistryBoreal13. Climate actionMetagenomicsGreenhouse gasta1181Water Microbiology
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Resistant Microbial Cooccurrence Patterns Inferred by Network Topology

2015

ABSTRACT Although complex cooccurrence patterns have been described for microbes in natural communities, these patterns have scarcely been interpreted in the context of ecosystem functioning and stability. Here we constructed networks from species cooccurrences between pairs of microorganisms which were extracted from five individual aquatic time series, including a dystrophic and a eutrophic lake as well as an open ocean site. The resulting networks exhibited higher clustering coefficients, shorter path lengths, and higher average node degrees and levels of betweenness than those of random networks. Moreover, simulations demonstrated that taxa with a large number of cooccurrences and place…

Ecological stabilityEcologyEcologyNode (networking)Microbial ConsortiaMolecular Sequence DataContext (language use)Sequence Analysis DNABiologyNetwork topologyApplied Microbiology and BiotechnologyStability (probability)Microbial EcologyBetweenness centralityConvergence (routing)Cluster AnalysisMicrobial InteractionsCluster analysisBiological systemWater MicrobiologyEcosystemFood ScienceBiotechnology
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Distinct and diverse anaerobic bacterial communities in boreal lakes dominated by candidate division OD1

2012

Lakes have a central role in the carbon cycle of the boreal landscape. These systems typically stratify in summer and their hypolimnetic microbial communities influence burial of biogenic organic matter in sediments. The composition of bacterial communities in these suboxic habitats was studied by pyrosequencing of 16S rRNA amplicons from five lakes with variable dissolved organic carbon (DOC) concentrations. Bacterioplankton communities in the hypolimnetic waters were clearly different from the surface layer with candidate division OD1, Chlorobi and Bacteroidetes as dominant community members. Several operational taxonomic units (OTUs) affiliated with candidate division OD1 were abundant a…

chemistry.chemical_classificationGeomicrobiologyEcologyBiodiversityBacterioplanktonBiologyMicrobiologyCarbon cycleBacteria AnaerobicLakeschemistryBorealRNA Ribosomal 16SDissolved organic carbonOriginal ArticleOrganic matterEcosystemHypolimnionEcosystemFinlandEcology Evolution Behavior and SystematicsThe ISME Journal
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Unveiling distribution patterns of freshwater phytoplankton by a next generation sequencing based approach.

2012

The recognition and discrimination of phytoplankton species is one of the foundations of freshwater biodiversity research and environmental monitoring. This step is frequently a bottleneck in the analytical chain from sampling to data analysis and subsequent environmental status evaluation. Here we present phytoplankton diversity data from 49 lakes including three seasonal surveys assessed by next generation sequencing (NGS) of 16S ribosomal RNA chloroplast and cyanobacterial gene amplicons and also compare part of these datasets with identification based on morphology. Direct comparison of NGS to microscopic data from three time-series showed that NGS was able to capture the seasonality in…

Time FactorsBiodiversitylcsh:MedicineMarine and Aquatic SciencesFresh WaterPlant Science580 Plants (Botany)10126 Department of Plant and Microbial BiologyPhytoplankton successionRNA Ribosomal 16Ssequence databasesNaturvetenskapEnvironmental monitoringlcsh:ScienceTrophic levelFreshwater EcologyMultidisciplinaryEcologyEcologykloroplastiHigh-Throughput Nucleotide SequencingGenomicsPlantssinibakteeritviherhiukkasetribosomal RNANatural ScienceskasviplanktonResearch ArticleFood ChainAlgaeta11721100 General Agricultural and Biological SciencesBiologyjärvetMicrobiologyDNA sequencingMicrobial EcologysekvenssitietokantaModel Organisms1300 General Biochemistry Genetics and Molecular BiologyPlant and Algal ModelsPhytoplanktonEvolutionary Systematicsribosomaalinen RNAsyanobakteeritBiologyTaxonomy1000 MultidisciplinaryEvolutionary BiologySequence Analysis RNAlcsh:RfungiRibosomal RNAjärviTaxonPhytoplanktonphytoplanktonEarth Scienceslcsh:QEnvironmental ProtectionEcological EnvironmentsPloS one
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Bacterial and phytoplankton responses to nutrient amendments in a boreal lake differ according to season and to taxonomic resolution

2011

Nutrient limitation and resource competition in bacterial and phytoplankton communities may appear different when considering different levels of taxonomic resolution. Nutrient amendment experiments conducted in a boreal lake on three occasions during one open water season revealed complex responses in overall bacterioplankton and phytoplankton abundance and biovolume. In general, bacteria were dominant in spring, while phytoplankton was clearly the predominant group in autumn. Seasonal differences in the community composition of bacteria and phytoplankton were mainly related to changes in observed taxa, while the differences across nutrient treatments within an experiment were due to chang…

lcsh:MedicineEcological successionBacteria. phytoplanktonNutrientAbundance (ecology)LimnologyBiologiska vetenskaperlcsh:Sciencemedia_commonFreshwater Ecology0303 health sciencesMultidisciplinaryEcologyEcologyCommunity structureBiological SciencesActinobacteriaCommunity EcologyLimnectic EcologySeasonsLimnectic EcosystemWater MicrobiologyResearch ArticleMicrobial Taxonomymedia_common.quotation_subjectboreal lakesBiologyMicrobiologyCompetition (biology)nutrientsdMicrobial Ecology03 medical and health sciencesPhytoplanktonEvolutionary Systematics14. Life underwaterBiologyTaxonomy030304 developmental biologyEvolutionary BiologyCommunity030306 microbiologylcsh:RfungiPlant TaxonomyBacterioplankton15. Life on landLakes13. Climate actionPhytoplanktonEarth Sciencesta1181lcsh:Q
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Resistant microbial co-occurrence patterns inferred by network topology

2015

ecosystemmicrobial co-occurrencenetwork topology
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