Environmental science. Rethinking the marine carbon cycle: factoring in the multifarious lifestyles of microbes.
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Nitrate Storage and Dissimilatory Nitrate Reduction by Eukaryotic MicrobesA network-based approach to disturbance transmission through microbial interactionsEvolving interactions between diazotrophic cyanobacterium and phage mediate nitrogen release and host competitive abilityPlankton networks driving carbon export in the oligotrophic oceanProteomic-based biotyping reveals hidden diversity within a microalgae culture collection: An example using DunaliellaEndosymbiosis and its implications for evolutionary theoryZoosporic parasites infecting marine diatoms - A black box that needs to be openedEvolutionary distinctiveness of fatty acid and polyketide synthesis in eukaryotesAn unexpected role for mixotrophs in the response of peatland carbon cycling to climate warming.Metabolic profiling identifies trehalose as an abundant and diurnally fluctuating metabolite in the microalga Ostreococcus tauri.Microbial Eukaryote Diversity and Activity in the Water Column of the South China Sea Based on DNA and RNA High Throughput Sequencing.Biodiversity patterns of plankton assemblages at the extremes of the Red Sea.Strong Seasonality of Marine Microbial Eukaryotes in a High-Arctic Fjord (Isfjorden, in West Spitsbergen, Norway).Phylogenetic diversity and biogeography of the Mamiellophyceae lineage of eukaryotic phytoplankton across the oceans.Multi-year assessment of coastal planktonic fungi reveals environmental drivers of diversity and abundanceDiverse, uncultivated bacteria and archaea underlying the cycling of dissolved protein in the oceanA role for fungi as parasites in the black box of marine trophic interactions.Identification of Associations between Bacterioplankton and Photosynthetic Picoeukaryotes in Coastal Waters.Resilience of Freshwater Communities of Small Microbial Eukaryotes Undergoing Severe Drought EventsIsolation by Time During an Arctic Phytoplankton Spring Bloom.Community Composition of Photosynthetic Picoeukaryotes in a Subtropical Coastal Ecosystem, with Particular Emphasis on Micromonas.Distribution and Diversity of Microbial Eukaryotes in Bathypelagic Waters of the South China Sea.A plankton bloom shifts as the ocean warms.Mixotrophy everywhere on land and in water: the grand écart hypothesis.Effect of light and prey availability on gene expression of the mixotrophic chrysophyte, Ochromonas spResponses of the picoprasinophyte Micromonas commoda to light and ultraviolet stress.Recurring patterns in bacterioplankton dynamics during coastal spring algae blooms.Genetic Manipulation of Competition for Nitrate between Heterotrophic Bacteria and DiatomsBiotic interactions as drivers of algal origin and evolution.Toward establishing model organisms for marine protists: Successful transfection protocols for Parabodo caudatus (Kinetoplastida: Excavata).Autotrophic and heterotrophic acquisition of carbon and nitrogen by a mixotrophic chrysophyte established through stable isotope analysisEntamoeba Clone-Recognition Experiments: Morphometrics, Aggregative Behavior, and Cell-Signaling Characterization.Probing the evolution, ecology and physiology of marine protists using transcriptomics.Metabarcoding and metabolome analyses of copepod grazing reveal feeding preference and linkage to metabolite classes in dynamic microbial plankton communities.Pronounced daily succession of phytoplankton, archaea and bacteria following a spring bloom.Culturing Heterotrophic Protists from the Baltic Sea: Mostly the "Usual Suspects" but a Few Novelties as Well.Gene expression characterizes different nutritional strategies among three mixotrophic protists.Distributions and relationships of virio- and picoplankton in the epi-, meso- and bathypelagic zones of the Western Pacific Ocean.The diversity and biogeography of abundant and rare intertidal marine microeukaryotes explained by environment and dispersal limitation.Mixotrophic Phytoflagellate Bacterivory Field Measurements Strongly Biased by Standard Approaches: A Case Study.
P2860
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P2860
Environmental science. Rethinking the marine carbon cycle: factoring in the multifarious lifestyles of microbes.
description
2015 nî lūn-bûn
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2015 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2015 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2015年の論文
@ja
2015年論文
@yue
2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
@zh-tw
2015年论文
@wuu
name
Environmental science. Rethink ...... arious lifestyles of microbes.
@ast
Environmental science. Rethink ...... arious lifestyles of microbes.
@en
Environmental science. Rethink ...... arious lifestyles of microbes.
@nl
type
label
Environmental science. Rethink ...... arious lifestyles of microbes.
@ast
Environmental science. Rethink ...... arious lifestyles of microbes.
@en
Environmental science. Rethink ...... arious lifestyles of microbes.
@nl
prefLabel
Environmental science. Rethink ...... arious lifestyles of microbes.
@ast
Environmental science. Rethink ...... arious lifestyles of microbes.
@en
Environmental science. Rethink ...... arious lifestyles of microbes.
@nl
P2093
P2860
P356
P1433
P1476
Environmental science. Rethink ...... arious lifestyles of microbes.
@en
P2093
Alexandra Z Worden
Amy E Zimmerman
Michael J Follows
Stephen J Giovannoni
P2860
P304
P356
10.1126/SCIENCE.1257594
P407
P577
2015-02-01T00:00:00Z