Open Journal of Ecology

Open Journal of Ecology

ISSN Print: 2162-1985
ISSN Online: 2162-1993
www.scirp.org/journal/oje
E-mail: oje@scirp.org
"The Variation of Microbial Communities in a Depth Profile of an Acidic, Nutrient-Poor Boreal Bog in Southwestern Finland"
written by Irina Tsitko, Merja Lusa, Jukka Lehto, Lauri Parviainen, Ari T. K. Ikonen, Anne-Maj Lahdenperä, Malin Bomberg,
published by Open Journal of Ecology, Vol.4 No.13, 2014
has been cited by the following article(s):
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[2] 典型网纹红土结构土壤细菌群落及其生态网络特征 ①
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[4] Linking prokaryotic community composition to carbon biogeochemical cycling across a tropical peat dome in Sarawak, Malaysia
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[5] Persistence and resistance: Survival mechanisms of Candidatus Dormibacterota from nutrient poor Antarctic soils
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[6] Microbial Community Composition Correlates with Metal Sorption in an Ombrotrophic Boreal Bog: Implications for Radionuclide Retention
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[7] Vertical distribution of prokaryotes communities and predicted metabolic pathways in New Zealand wetlands, and potential for environmental DNA indicators …
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[8] Microbial community succession between coal matrix and culture solution in a simulated methanogenic system with lignite
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[9] Decoupled richness of generalist anaerobes and sulphate‐reducing bacteria is driven by pH across land uses in temperate soils
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[10] Diversity and Abundance of Microbial Communities in UASB Reactors during Methane Production from Hydrolyzed Wheat Straw and Lucerne
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[11] Effects of Nitrogen Deposition on Nitrogen-Mineralizing Enzyme Activity and Soil Microbial Community Structure in a Korean Pine Plantation
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[12] Characterization of Bacterial and Fungal Communities Reveals Novel Consortia in Tropical Oligotrophic Peatlands
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[13] Vertical changes in bacterial community composition down to a depth of 20 m on the degraded Loess Plateau in China
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[14] Ni (II) Interactions in Boreal Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and Pseudomonas sp. Strains Isolated From an Acidic …
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[15] Структура бактериальных сообществ основных типов растений верхового болота
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[16] Understanding urban stormwater denitrification in bioretention internal water storage zones
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[17] Vertical stratification of peatland microbial communities follows a gradient of functional types across hummock–hollow microtopographies
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[18] Composition of Bacterial Communities of the Main Types of Bog Plants
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[19] Intra-horizon differentiation of the bacterial community and its co-occurrence network in a typical Plinthic horizon
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[20] The Variation of Microbial Communities in a Depth Profile of Peat in the Gahai Lake Wetland Natural Conservation Area
Geomicrobiology Journal, 2018
[21] Microbial Composition and Activity of Natural, Restored, and Reclaimed Wetland Soils: a Case Study of Poyang Lake Basin, China
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[22] Microbial diversity and activity in the active layer of thawing permafrost: a case study in Northern Norway
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[23] Acetate Activates Deep Subsurface Fracture Fluid Microbial Communities in Olkiluoto, Finland
Geosciences, 2018
[24] 氮依赖型甲烷厌氧氧化菌的整合
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[25] Microbial community structure in a Malaysian tropical peat swamp forest: the influence of tree species and depth
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[26] Planctomycetes in boreal and subarctic wetlands: diversity patterns and potential ecological functions
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[27] Seasonal and ecohydrological regulation of active microbial populations involved in DOC, CO 2, and CH 4 fluxes in temperate rainforest soil
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[28] Soil depth and crop determinants of bacterial communities under ten biofuel cropping systems
Soil Biology and Biochemistry, 2017
[29] Microbial Abundance and Activity in Biochar-Amended Landfill Cover Soils: Evidence from Large-Scale Column and Field Experiments
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[30] Water table drawdown shapes the depth-dependent variations in prokaryotic diversity and structure in Zoige peatlands
FEMS Microbiology Ecology, 2017
[31] Metagenomic analysis of river microbial communities
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[32] The uptake of Ni2+ and Ag+ by bacterial strains isolated from a boreal nutrient-poor bog
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[33] Microbial communities and their predicted metabolic characteristics in deep fracture groundwaters of the crystalline bedrock at Olkiluoto, Finland.
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[34] The uptake of Ni 2+ and Ag+ by bacterial strains isolated from a boreal nutrient-poor bog
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[35] Microbiome Analysis Across a Natural Copper Gradient at a Proposed Northern Canadian Mine Site
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[36] Passive water purification of pit lakes–a case study from the closed Hammaslahti Cu-Zn-Au mine
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[37] Bacterial populations on brewery filling hall surfaces as revealed by next-generation sequencing
Separation Science and Technology, 2016
[38] Uptake of radioiodide by Paenibacillus sp., Pseudomonas sp., Burkholderia sp. and Rhodococcus sp. isolated from a boreal nutrient-poor bog
Journal of Environmental Sciences, 2016
[39] A novel isolate and widespread abundance of the candidate alphaproteobacterial order (Ellin 329), in southern Appalachian peatlands
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[40] Microbial communities and their predicted metabolic characteristics in deep fracture groundwaters of the crystalline bedrock at Olkiluoto, Finland
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[41] Community Analysis Of Southern Appalachian Fens, And Characterization And Isolation Of A Novel Bacterium And Order
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[42] Sorption of radioiodide in an acidic, nutrient-poor boreal bog: insights into the microbial impact
Journal of environmental radioactivity, 2015
[43] Factors affecting the sorption of cesium in a nutrient-poor boreal bog
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[44] The microbial impact on the sorption behaviour of selenite in an acidic, nutrient-poor boreal bog
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[45] Sorption behaviour of I-, SeO3 2-and Cs+ in an ombrotrophic boreal bog
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[46] Sorption Behaviour of I-, SeO32-and Cs+ in an Ombrotrophic Boreal Bog-A Study on Microbial Effects
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