Toward a mechanistic understanding of how natural bacterial communities respond to changes in temperature in aquatic ecosystems.

scientific article published on 7 February 2008

Toward a mechanistic understanding of how natural bacterial communities respond to changes in temperature in aquatic ecosystems. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1038/ISMEJ.2008.9
P8608Fatcat IDrelease_z46oa3e65fhfhi2ls3ho5jef3e
P698PubMed publication ID18256701
P5875ResearchGate publication ID5594906

P50authorJames B. CotnerQ51666810
P2093author name stringClaudia Neuhauser
Edward K Hall
P2860cites workEnvironmental genome shotgun sequencing of the Sargasso SeaQ27860605
Temporal patterns in bacterial communities in three temperate lakes of different trophic status.Q31152463
Annually reoccurring bacterial communities are predictable from ocean conditionsQ33255661
Control of membrane lipid fluidity by molecular thermosensorsQ35909825
Vertical and seasonal variations of bacterioplankton subgroups with different nucleic Acid contents: possible regulation by phosphorusQ42122496
Temperature affects stoichiometry and biochemical composition of Escherichia coli.Q51725757
The Ecological Role of Water-Column Microbes in the SeaQ55933732
Synchrony and seasonality in bacterioplankton communities of two temperate riversQ57272528
Major role of bacteria in biogeochemical fluxes in the ocean's interiorQ59075184
Interannual dynamics and phenology of bacterial communities in a eutrophic lakeQ59402158
Effect of low temperature on microbial growth: lowered affinity for substrates limits growth at low temperatureQ73047464
Elemental ratios and the uptake and release of nutrients by phytoplankton and bacteria in three lakes of the Canadian shieldQ86639524
P433issue5
P921main subjectecosystemQ37813
aquatic ecosystemQ3289906
bacterial communityQ129982151
P304page(s)471-481
P577publication date2008-02-07
P1433published inThe ISME JournalQ7741240
P1476titleToward a mechanistic understanding of how natural bacterial communities respond to changes in temperature in aquatic ecosystems.
P478volume2

Reverse relations

cites work (P2860)
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