Microbial transformation of elements: the case of arsenic and selenium.
about
Ecology and biotechnology of selenium-respiring bacteriaStenotrophomonas maltophilia SeITE02, a new bacterial strain suitable for bioremediation of selenite-contaminated environmental matricesPhylogenetic and phenotypic analyses of arsenic-reducing bacteria isolated from an old tin mine area in Thailand.Molecular variation and horizontal gene transfer of the homocysteine methyltransferase gene mmuM and its distribution in clinical pathogensA high-throughput oxidative stress biosensor based on Escherichia coli roGFP2 cells immobilized in a k-carrageenan matrix.Increasing the Richness of Culturable Arsenic-Tolerant Bacteria from Theonella swinhoei by Addition of Sponge Skeleton to the Growth Medium.Biogenic mineral production by a novel arsenic-metabolizing thermophilic bacterium from the Alvord Basin, Oregon.Production of selenium nanoparticles in Pseudomonas putida KT2440.Bioprospecting Red Sea Coastal Ecosystems for Culturable Microorganisms and Their Antimicrobial Potential.Mechanisms of metal resistance and homeostasis in haloarchaea.Selenium (IV,VI) reduction and tolerance by fungi in an oxic environment.Selenium uptake and assessment of the biochemical changes in Arthrospira (Spirulina) platensis biomass during the synthesis of selenium nanoparticles.Characterization of the arsenite oxidizer Aliihoeflea sp. strain 2WW and its potential application in the removal of arsenic from groundwater in combination with Pf-ferritin.Organoarsenical Biotransformations by Shewanella putrefaciens.Energy metabolism and multiple respiratory pathways revealed by genome sequencing of Desulfurispirillum indicum strain S5.A microdialysis-based analytical system for dynamic monitoring of arsenic transformation under microbial activity.Mitochondrial function in Leydig cell steroidogenesis.Speeding up bioproduction of selenium nanoparticles by using Vibrio natriegens as microbial factory.Oxidation of arsenite by two β-proteobacteria isolated from soil.Probing the biogeochemistry of arsenic: response of two contrasting aquifer sediments from Cambodia to stimulation by arsenate and ferric iron.Isolation, identification and characterization of arsenic transforming exogenous endophytic Citrobacter sp. RPT from roots of Pteris vittata.Bioremediation of Arsenic-Contaminated Water: Recent Advances and Future Prospects
P2860
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P2860
Microbial transformation of elements: the case of arsenic and selenium.
description
2002 nî lūn-bûn
@nan
2002 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
name
Microbial transformation of elements: the case of arsenic and selenium.
@ast
Microbial transformation of elements: the case of arsenic and selenium.
@en
type
label
Microbial transformation of elements: the case of arsenic and selenium.
@ast
Microbial transformation of elements: the case of arsenic and selenium.
@en
prefLabel
Microbial transformation of elements: the case of arsenic and selenium.
@ast
Microbial transformation of elements: the case of arsenic and selenium.
@en
P2093
P1476
Microbial transformation of elements: the case of arsenic and selenium.
@en
P2093
P2888
P304
P356
10.1007/S10123-002-0091-Y
P577
2002-09-26T00:00:00Z