Search results for "arkeonit"

showing 5 items of 5 documents

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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Vertical stratification of bacteria and archaea in sediments of a small boreal humic lake

2019

biomassbiomassaarchaeata1172ta1183sedimentitbakteerithumusjärvetmikrobistosediment16S rRNAlakebacteriaarkeonitFEMS Microbiology Letters
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Vertical stratification of bacteria and archaea in sediments of a small boreal humic lake

2019

ABSTRACT Although sediments of small boreal humic lakes are important carbon stores and greenhouse gas sources, the composition and structuring mechanisms of their microbial communities have remained understudied. We analyzed the vertical profiles of microbial biomass indicators (PLFAs, DNA and RNA) and the bacterial and archaeal community composition (sequencing of 16S rRNA gene amplicons and qPCR of mcrA) in sediment cores collected from a typical small boreal lake. While microbial biomass decreased with sediment depth, viable microbes (RNA and PLFA) were present all through the profiles. The vertical stratification patterns of the bacterial and archaeal communities resembled those in mar…

Geologic SedimentsBacteriabiomassarchaeaMicrobiota116 Chemical sciencessedimentitBiodiversityDNA Restriction EnzymeshumusjärvetbakteeritLakesmikrobistosedimentRNA Ribosomal 16SResearch LetterEnvironmental Microbiologybiomassa (teollisuus)16S rRNAWater MicrobiologylakearkeonitHumic Substances
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Resistant ammonia-oxidizing archaea endure, but adapting ammonia-oxidizing bacteria thrive in boreal lake sediments receiving nutrient-rich effluents

2018

Climate change along with anthropogenic activities changes biogeochemical conditions in lake ecosystems, modifying the sediment microbial communities. Wastewater effluents introduce nutrients and organic material but also novel microbes to lake ecosystems, simulating forthcoming increases in catchment loadings. In this work, we first used 16s rRNA gene sequencing to study how the overall sediment microbial community responds to wastewater in six boreal lakes. To examine forthcoming changes in the lake biogeochemistry, we focused on the ammonia-oxidizing archaea (AOA) and bacteria (AOB), and examined their functional and compositional community response to wastewater. Although we found the l…

resistancemikrobistojätevesikuormitusnitrifikaatiosedimentitcatchment loadingmikrobitjätevesiwastewaterarkeonitjärvetbakteerit219 Environmental biotechnology
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New insight to the role of microbes in the methane exchange in trees: evidence from metagenomic sequencing

2021

Methane (CH4) exchange in tree stems and canopies and the processes involved are among the least understood components of the global CH4 cycle. Recent studies have focused on quantifying tree stems as sources of CH4 and understanding abiotic CH4 emissions in plant canopies, with the role of microbial in situ CH4 formation receiving less attention. Moreover, despite initial reports revealing CH4 consumption, studies have not adequately evaluated the potential of microbial CH4 oxidation within trees. In this paper, we discuss the current level of understanding on these processes. Further, we demonstrate the potential of novel metagenomic tools in revealing the involvement of microbes in the C…

0106 biological sciences0301 basic medicinePhysiologyPlant Science01 natural sciencesmetaaniMethaneTreesbakteerit03 medical and health scienceschemistry.chemical_compoundboreal forestsUltraviolet radiationAbiotic componentbiologyNorwayEcologyAtmospheric methaneTaigakasvifysiologiapuut (kasvit)Picea abiesgenomiikka15. Life on landbiology.organism_classificationmethanogenic archaeametsätplant microbiometree030104 developmental biologymethane exchangeboreaalinen vyöhykemikrobistochemistry13. Climate actionMetagenomicsEnvironmental scienceaineiden kiertoMetagenomicsmethanotrophic bacteriaMethanearkeonit010606 plant biology & botanycaptured metagenomicsNew Phytologist
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