NARA Discovery
NARA Subscribed Scholarly Literature Discovery
Boolean search: climate AND coral · microplastic OR nanoplastic · plastic NOT freshwater · "marine heatwave"
Advanced Search
Topic searches article titles and abstracts. Starts a new search; publisher and year refine it.
Searches article titles and abstracts.
Accepts bare DOI, doi: prefix, or a doi.org URL.
Complete publisher name. Publisher imprints are grouped under their main publisher where applicable.
Exact match by full journal title or ISSN.
Rudolf Amann results 79 · Newest (Page 1/4, per page 25)
Export CSV Export RIS Export current results · up to 5,000 records
Author: Rudolf Amann ×Clear All Filters
Search Results
Environmental Microbiology · 2026 · Vol. 28 · Issue 8 · Wiley
Biodegradation of benzene is most challenging among the plethora of hydrocarbons due to its high chemical stability. While aerobic bacteria employ O 2 ‐dependent oxygenases to overcome the high energy barrier, anaerobic benzene degradation remains enigmatic. Here we achieve an anaerobic enrichment, which is clonal with respect to the benzene‐degrading, sulphate‐reducing, marine bacterium BzS1, from a previously reported enrich...
Environmental Microbiology · 2025 · Vol. 27 · Issue 11 · Wiley
Microbial communities play pivotal roles in ocean biogeochemistry, yet linking their composition to ecosystem functions remains a significant challenge. In this study, we demonstrate the predictive power of bacterioplankton taxonomic composition in explaining oxygen consumption during dissolved organic matter (DOM) degradation. Using 4 years of experimental data, we integrated ‘omics with statistical modeling, applying feature...
Environmental Microbiology · 2025 · Vol. 27 · Issue 8 · Wiley
Marine hydrocarbon seeps are hotspots for sulphate reduction coupled to hydrocarbon oxidation. In situ metabolic rates of sulphate‐reducing bacteria (SRB) degrading hydrocarbons other than methane, however, remain poorly understood. Here, we assessed the environmental role of Desulfosarcinaceae clades SCA1, SCA2 for degradation of n ‐butane and clade LCA2 for n ‐dodecane. Quantification by CARD‐FISH showed that SCA1 constitute...
Environmental Microbiology · 2024 · Vol. 26 · Issue 8 · Wiley
Heterotrophic bacteria in the ocean initiate biopolymer degradation using extracellular enzymes that yield low molecular weight hydrolysis products in the environment, or by using a selfish uptake mechanism that retains the hydrolysate for the enzyme‐producing cell. The mechanism used affects the availability of hydrolysis products to other bacteria, and thus also potentially the composition and activity of the community. In m...
Environmental Microbiology · 2024 · Vol. 26 · Issue 2 · Wiley
Heterotrophic bacteria hydrolyze high molecular weight (HMW) organic matter extracellularly prior to uptake, resulting in diffusive loss of hydrolysis products. An alternative ‘selfish’ uptake mechanism that minimises this loss has recently been found to be common in the ocean. We investigated how HMW organic matter addition affects these two processing mechanisms in surface and bottom waters at three stations in the North Atl...
Frontiers in Marine Science · 2023 · Vol. 10 · Frontiers
Particulate organic matter plays a significant role in the marine carbon cycle. Its sinking exports organic carbon from the surface to deep oceans. Using fractionated filtration, we analysed particles of 3 – 10 µm and >10 µm and their microbiomes in thirty-five stations along a latitudinal transect of the Atlantic Ocean and provide new insights into the composition, community dynamics, and catabolic potential of particle-attac...
Environmental Microbiology · 2022 · Vol. 24 · Issue 5 · Wiley
Summary Marine heterotrophic bacteria contribute considerably to global carbon cycling, in part by utilizing phytoplankton‐derived polysaccharides. The patterns and rates of two different polysaccharide utilization modes – extracellular hydrolysis and selfish uptake – have previously been found to change during spring phytoplankton bloom events. Here we investigated seasonal changes in bacterial utilization of three polysaccha...
Environmental Microbiology · 2021 · Vol. 23 · Issue 1 · Wiley
Summary Microbial communities have important functions during spring phytoplankton blooms, regulating bloom dynamics and processing organic matter. Despite extensive research into such processes, an in‐depth assessment of the fungal component is missing, especially for the smaller size fractions. We investigated the dynamics of unicellular mycoplankton during a spring phytoplankton bloom in the North Sea by 18S rRNA gene tag s...
BIOspektrum · 2020 · Vol. 26 · Issue 7 · Springer
The oceans have been compared to a “global heterotrophic digester”. This is due to the high productivity of microalgae and the rapid turnover of the produced biomass by microbes. A major part of the algal biomass consists of diverse polysaccharides which belong to the most complex polymer structures in nature. These marine sugars are decomposed by specialized bacteria, mainly of the phyla Bacteroidetes and Gammaproteobacteria,...
Environmental Microbiology · 2020 · Vol. 22 · Issue 5 · Wiley
Summary Spring phytoplankton blooms in temperate environments contribute disproportionately to global marine productivity. Bloom‐derived organic matter, much of it occurring as polysaccharides, fuels biogeochemical cycles driven by interacting autotrophic and heterotrophic communities. We tracked changes in the mode of polysaccharide utilization by heterotrophic bacteria during the course of a diatom‐dominated bloom in the Ger...
Environmental Microbiology · 2019 · Vol. 21 · Issue 11 · Wiley
Summary While the dynamics of microbial community assembly driven by environmental perturbations have been extensively studied, our understanding is far from complete, particularly for light‐induced perturbations. Extremely halophilic communities thriving in coastal solar salterns are mainly influenced by two environmental factors—salt concentrations and high sunlight irradiation. By experimentally manipulating light intensity...
Environmental Microbiology · 2019 · Vol. 21 · Issue 10 · Wiley
Summary Sulphide‐driven anoxygenic photosynthesis is an ancient microbial metabolism that contributes significantly to inorganic carbon fixation in stratified, sulphidic water bodies. Methods commonly applied to quantify inorganic carbon fixation by anoxygenic phototrophs, however, cannot resolve the contributions of distinct microbial populations to the overall process. We implemented a straightforward workflow, consisting of...
Environmental Microbiology · 2019 · Vol. 21 · Issue 2 · Wiley
Summary Metal‐sulfides are wide‐spread in marine benthic habitats. At deep‐sea hydrothermal vents, they occur as massive sulfide chimneys formed by mineral precipitation upon mixing of reduced vent fluids with cold oxygenated sea water. Although microorganisms inhabiting actively venting chimneys and utilizing compounds supplied by the venting fluids are well studied, only little is known about microorganisms inhabiting inacti...
Environmental Microbiology · 2018 · Vol. 20 · Issue 11 · Wiley
Summary Marine microscopic algae carry out about half of the global carbon dioxide fixation into organic matter. They provide organic substrates for marine microbes such as members of the Bacteroidetes that degrade algal polysaccharides using carbohydrate‐active enzymes (CAZymes). In Bacteroidetes genomes CAZyme encoding genes are mostly grouped in distinct regions termed polysaccharide utilization loci (PULs). While some stud...
Environmental Microbiology · 2017 · Vol. 19 · Issue 8 · Wiley
Summary Cotylorhiza tuberculata is an important scyphozoan jellyfish producing population blooms in the Mediterranean probably due to pelagic ecosystem's decay. Its gastric cavity can serve as a simple model of microbial–animal digestive associations, yet poorly characterized. Using state‐of‐the‐art metagenomic population binning and catalyzed reporter deposition fluorescence in situ hybridization (CARD‐FISH), we show that onl...
Environmental Microbiology · 2017 · Vol. 19 · Issue 6 · Wiley
Summary Mobile genomic islands distribute functional traits between microbes and habitats, yet it remains unclear how their proteins adapt to new environments. Here we used a comparative phylogenomic and proteomic approach to show that the marine bacterium Pseudoalteromonas haloplanktis ANT/505 acquired a genomic island with a functional pathway for pectin catabolism. Bioinformatics and biochemical experiments revealed that th...
Environmental Microbiology · 2017 · Vol. 19 · Issue 3 · Wiley
Summary Gammaproteobacterial Reinekea spp. were detected during North Sea spring algae blooms in the years 2009‐2012, with relative abundances of up to 16% in the bacterioplankton. Here, we explore the ecophysiology of ‘R. forsetii' strain Hel1_31_D35 that was isolated during the 2010 spring bloom using (i) its manually annotated, high‐quality closed genome, (ii) re‐analysis of in situ data from the 2009–2012 blooms and (iii)...
Environmental Microbiology · 2017 · Vol. 19 · Issue 1 · Wiley
Summary Although fluorescence in situ hybridization (FISH) with specific ribosomal RNA (rRNA)‐targeted oligonucleotides is a standard method to detect and identify microorganisms, the specific detection of genes in bacteria and archaea, for example by using geneFISH, requires complicated and lengthy (> 30 h) procedures. Here we report a much improved protocol, direct‐geneFISH, which allows specific gene and rRNA detection with...