Variable stoichiometry and homeostatic regulation of bacterial biomass elemental composition.
about
Differential nutrient limitation of soil microbial biomass and metabolic quotients (qCO2): is there a biological stoichiometry of soil microbes?Interactions between temperature and nutrients across levels of ecological organization.Ecological Stoichiometry beyond Redfield: An Ionomic Perspective on Elemental Homeostasis.Comparing the Ecological Stoichiometry in Green and Brown Food Webs - A Review and Meta-analysis of Freshwater Food WebsSeeing the forest for the genes: using metagenomics to infer the aggregated traits of microbial communities.Stoichiometric flexibility in diverse aquatic heterotrophic bacteria is coupled to differences in cellular phosphorus quotas.Response of a stoichiometrically imbalanced ecosystem to manipulation of nutrient supplies and ratios.Heterotrophic bacteria from an extremely phosphate-poor lake have conditionally reduced phosphorus demand and utilize diverse sources of phosphorus.Nutrient treatments alter microbial mat colonization in two glacial meltwater streams from the McMurdo Dry Valleys, Antarctica.Transcriptional changes underlying elemental stoichiometry shifts in a marine heterotrophic bacteriumPhysiological, biomass elemental composition and proteomic analyses of Escherichia coli ammonium-limited chemostat growth, and comparison with iron- and glucose-limited chemostat growth.Phosphate and ATP uptake by lake bacteria: does taxonomical identity matter?Stoichiometric imbalances between terrestrial decomposer communities and their resources: mechanisms and implications of microbial adaptations to their resources.Stoichiometry of natural bacterial assemblages from lakes located across an elevational gradient.Microbial Community Structure and Function Decoupling Across a Phosphorus Gradient in Streams.The marine phosphorus cycle.Bridging Food Webs, Ecosystem Metabolism, and Biogeochemistry Using Ecological Stoichiometry Theory.Aquatic heterotrophic bacteria have highly flexible phosphorus content and biomass stoichiometry.The Effects of Nutrient Imbalances and Temperature on the Biomass Stoichiometry of Freshwater BacteriaThe sensitivity of marine N(2) fixation to dissolved inorganic nitrogen.What intrinsic and extrinsic factors explain the stoichiometric diversity of aquatic heterotrophic bacteria?Changes in nutrient stoichiometry, elemental homeostasis and growth rate of aquatic litter-associated fungi in response to inorganic nutrient supply.Growth rate and resource imbalance interactively control biomass stoichiometry and elemental quotas of aquatic bacteria.C:N:P stoichiometry and nutrient limitation of the soil microbial biomass in a grazed grassland site under experimental P limitation or excess
P2860
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P2860
Variable stoichiometry and homeostatic regulation of bacterial biomass elemental composition.
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
Variable stoichiometry and hom ...... biomass elemental composition.
@ast
Variable stoichiometry and hom ...... biomass elemental composition.
@en
type
label
Variable stoichiometry and hom ...... biomass elemental composition.
@ast
Variable stoichiometry and hom ...... biomass elemental composition.
@en
prefLabel
Variable stoichiometry and hom ...... biomass elemental composition.
@ast
Variable stoichiometry and hom ...... biomass elemental composition.
@en
P2860
P356
P1476
Variable stoichiometry and hom ...... biomass elemental composition.
@en
P2093
J Thad Scott
Timothy M Lapara
P2860
P356
10.3389/FMICB.2012.00042
P577
2012-02-22T00:00:00Z