Ni uptake and limitation in marine Synechococcus strains
about
Feedback Interactions between Trace Metal Nutrients and Phytoplankton in the OceanEcological genomics of marine picocyanobacteriaThe unique biogeochemical signature of the marine diazotroph trichodesmiumMetagenomic Analysis of the Indian Ocean Picocyanobacterial Community: Structure, Potential Function and Evolution.Temporal variation of Synechococcus clades at a coastal Pacific Ocean monitoring site.A microarray for assessing transcription from pelagic marine microbial taxa.Elemental economy: microbial strategies for optimizing growth in the face of nutrient limitation.Exploring the Link between Micronutrients and Phytoplankton in the Southern Ocean during the 2007 Austral Summer.Chemistry of marine ligands and siderophores.High iron requirement for growth, photosynthesis, and low-light acclimation in the coastal cyanobacterium Synechococcus bacillarisGenetic identification of a high-affinity Ni transporter and the transcriptional response to Ni deprivation in Synechococcus sp. strain WH8102Interrelated influence of light and Ni on Trichodesmium growthCoastal strains of marine Synechococcus species exhibit increased tolerance to copper shock and a distinctive transcriptional response relative to those of open-ocean strains.Diel nitrogen fixation pattern of Trichodesmium: the interactive control of light and Ni.Protein fractionation and detection for metalloproteomics: challenges and approaches.Effects of Trace Metal Concentrations on the Growth of the Coral Endosymbiont Symbiodinium kawagutii.Differential distributions of synechococcus subgroups across the california current system.Fractionation and identification of metalloproteins from a marine cyanobacterium.Diversity, function and evolution of genes coding for putative Ni-containing superoxide dismutases.Dissolved organic matter reduces algal accumulation of methylmercury.Utilization of urea and expression profiles of related genes in the dinoflagellate Prorocentrum donghaiense.Interactive effects of spectral quality and trace metal availability on the growth of Trichodesmium and Symbiodinium.Identification of Ni-(L-His)₂ as a substrate for NikABCDE-dependent nickel uptake in Escherichia coli.Surface distribution of dissolved trace metals in the oligotrophic ocean and their influence on phytoplankton biomass and productivityMetallophores and Trace Metal BiogeochemistryA Deg-protease family protein in marine Synechococcus is involved in outer membrane protein organization
P2860
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P2860
Ni uptake and limitation in marine Synechococcus strains
description
2007 nî lūn-bûn
@nan
2007年の論文
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2007年学术文章
@wuu
2007年学术文章
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2007年学术文章
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2007年学术文章
@zh-my
2007年学术文章
@zh-sg
2007年學術文章
@yue
2007年學術文章
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2007年學術文章
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name
Ni uptake and limitation in marine Synechococcus strains
@ast
Ni uptake and limitation in marine Synechococcus strains
@en
type
label
Ni uptake and limitation in marine Synechococcus strains
@ast
Ni uptake and limitation in marine Synechococcus strains
@en
prefLabel
Ni uptake and limitation in marine Synechococcus strains
@ast
Ni uptake and limitation in marine Synechococcus strains
@en
P2093
P2860
P356
P1476
Ni uptake and limitation in marine Synechococcus strains
@en
P2093
Brian Palenik
Christopher L Dupont
Katherine Barbeau
P2860
P356
10.1128/AEM.01007-07
P407
P577
2007-10-19T00:00:00Z