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Rhodococcus

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Photograph of log phase (A) Deinococcus radiodurans and (B) Rhodococcus rhodochrous when suspended in 10−4 M phosphate buffer saline. The photographs were taken using an epifluorescent microscope.
Published: 01 May 2008
F ig . 2. Photograph of log phase (A) Deinococcus radiodurans and (B) Rhodococcus rhodochrous when suspended in 10 −4 M phosphate buffer saline. The photographs were taken using an epifluorescent microscope.
Journal Article
Published: 01 August 2003
Vadose Zone Journal (2003) 2 (3): 279–286.
... Description Reference 1,3-D Pseudomonas sp. Capable of completely metabolizing cis - and trans -3-CAA. Belser and Castro, 1971 Rhodococcus rhodochrous NCIMB13064 Can utilize 1,3-D as a sole C source, and can also grown on 3-CAA
   and 3-CAAC. Kulakova et al., 1997 Pseudomonas...
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First thumbnail for: Degradation of Fumigant Pesticides: 1,3-Dichloropr...
Second thumbnail for: Degradation of Fumigant Pesticides: 1,3-Dichloropr...
Journal Article
Published: 01 November 2023
Jour. Geol. Soc. India (2023) 99 (11): 1586–1594.
... with coal. It is a colorless solid that is chemically somewhat similar to anthracene. Previous studies reported the efficient biodesulfurization capacity of Ralstonia sp., Pseudoxanthomons sp. and Rhodococcus sp. to degrade dibenzothiophene present in the soil samples. Among these strains Rhodococcus...
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First thumbnail for: Geomicrobial Exploration of Sulfur Oxidizing Bacte...
Second thumbnail for: Geomicrobial Exploration of Sulfur Oxidizing Bacte...
Third thumbnail for: Geomicrobial Exploration of Sulfur Oxidizing Bacte...
Journal Article
Published: 01 May 2008
Vadose Zone Journal (2008) 7 (2): 406–419.
...F ig . 2. Photograph of log phase (A) Deinococcus radiodurans and (B) Rhodococcus rhodochrous when suspended in 10 −4 M phosphate buffer saline. The photographs were taken using an epifluorescent microscope. ...
FIGURES
First thumbnail for: Bacteria Transport and Deposition under Unsaturate...
Second thumbnail for: Bacteria Transport and Deposition under Unsaturate...
Third thumbnail for: Bacteria Transport and Deposition under Unsaturate...
Image
(A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 100% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 6A, 134 min is equal to 1 pore volume. C/C0 = relative effluent concentration, where C0 is the influent concentration of bacteria; Nt, number of bacteria recovered in the sand; Ni, number in a unit volume of the input bacterial suspension.
Published: 01 May 2008
F ig . 6. (A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 100% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 6A, 134 min is equal to 1 pore volume. C / C 0
Image
(A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 40% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 8A, 62 min is equal to 1 pore volume. C/C0 = relative effluent concentration, where C0 is the influent concentration of bacteria; Nt, number of bacteria recovered in the sand; Ni, number in a unit volume of the input bacterial suspension.
Published: 01 May 2008
F ig . 8. (A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 40% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 8A, 62 min is equal to 1 pore volume. C / C 0
Image
(A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 80% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 7A, 152 min is equal to 1 pore volume. C/C0 = relative effluent concentration, where C0 is the influent concentration of bacteria; Nt, number of bacteria recovered in the sand; Ni, number in a unit volume of the input bacterial suspension.
Published: 01 May 2008
F ig . 7. (A) Measured and fitted breakthrough curves and (B) retention profiles for Rhodococcus rhodochrous at 80% saturation. Fitted curves were obtained using the attachment model, the Langmuirian model, and the 2 site model. In Fig. 7A, 152 min is equal to 1 pore volume. C / C 0
Journal Article
Published: 01 October 2022
Jour. Geol. Soc. India (2022) 98 (10): 1380–1384.
...), these cave speleothems showed good microbial cell enumeration. The most common strain recovered and identified from cave speleothems was Rhodococcus sp. In vitro , the strain produced calcite, with biominerals appearing as tiny spherultites and coccoliths ( Baskar et al., 2018 ). This is a ground-breaking...
FIGURES
First thumbnail for: Studies on Geomicrobiology in some Indian Caves
Second thumbnail for: Studies on Geomicrobiology in some Indian Caves
Third thumbnail for: Studies on Geomicrobiology in some Indian Caves
Journal Article
Published: 01 September 2020
Russ. Geol. Geophys. (2020) 61 (9): 1007–1014.
... In the water and bottom sediments, we detected cultured hydrocarbon-oxidizing microorganisms belonging to the genera Pseudomonas , Sphingomonas, Rhodococcus, Williamsia, Microbacterium, Brevundimonas , Bacillus , and Paenibacillus . Bacteria of the genera Bacillus and Paenibacillus dominated the bottom...
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First thumbnail for: Current State of Deep Oil Seepage Near Cape Gorevo...
Second thumbnail for: Current State of Deep Oil Seepage Near Cape Gorevo...
Third thumbnail for: Current State of Deep Oil Seepage Near Cape Gorevo...
Journal Article
Published: 01 February 2001
Russ. Geol. Geophys. (2001) 42 (2): 219–221.
... , Arthrobacter , Bacillus , Chryseobacterium , Clavibacter , Curtobacterium , Methylobacterium , Micrococcus , Nocardia , Paenibacillus , Pseudomonas , Rhodococcus , Salmonella , Sphingobacterium , Sphingomonas , Staphylococcus , and Stenotrophomonas . The genus Bacillus is most abundant...
FIGURES
First thumbnail for: BIODIVERSITY OF MICROORGANISMS FROM BOTTOM SEDIMEN...
Journal Article
Published: 01 August 2012
Jour. Geol. Soc. India (2012) 80 (2): 267–275.
... Basin. Email: [email protected] Phylogenetically diverse group of bacteria belonging to genera of Brevibacterium, Corynebacterium, Flavobacterium, Mycobacterium, Nocardia, Pseudomonas and Rhodococcus  utilize light hydrocarbons ( Perry and Williams, 1968 ; Vestal and Perry, 1969...
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First thumbnail for: Geo-microbial Prospecting Studies of Surface Sedim...
Second thumbnail for: Geo-microbial Prospecting Studies of Surface Sedim...
Third thumbnail for: Geo-microbial Prospecting Studies of Surface Sedim...
Journal Article
Published: 01 November 2012
Jour. Geol. Soc. India (2012) 80 (5): 641–652.
... and Rhodococcus  utilize light hydrocarbons ( McLee et al. 1972 ; Perry and William, 1968 ; Vastal and Perry, 1969 ). These bacteria are mostly found enriched in the shallow soils/sediments above hydrocarbon bearing structures and can be used to differentiate between hydrocarbon prospective and non-prospective...
FIGURES
First thumbnail for: Geochemical Exploration for Hydrocarbons in the So...
Second thumbnail for: Geochemical Exploration for Hydrocarbons in the So...
Third thumbnail for: Geochemical Exploration for Hydrocarbons in the So...
Journal Article
Published: 24 March 2014
Quarterly Journal of Engineering Geology and Hydrogeology (2014) 47 (2): 145–157.
... ferrireducens Iron reduction Prokaryote (Bacteria) β-Proteobacteria Gallionella spp. Iron oxidation and creation of iron deposits that inhibit flow Prokaryote (Bacteria) γ-Proteobacteria Escherichia coli Pathogenic bacteria Prokaryote (Bacteria) Actinobacteria Rhodococcus spp...
FIGURES
First thumbnail for: Microbial communities in UK aquifers: current unde...
Journal Article
Published: 01 December 2013
Jour. Geol. Soc. India (2013) 82 (6): 712–718.
... with crude oil and the results indicated that non-ionic rhodococcus biosurfactant was more mobile and effective than the non-ionic synthetic surfactant. Urum et al. (2005) studied remediation of soil polluted with crude oil using rahamnolipid and sodium dodecyl sulfate (SDS). The result showed that SDS...
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First thumbnail for: UTCHEM Model Application for Prediction of Crude O...
Second thumbnail for: UTCHEM Model Application for Prediction of Crude O...
Third thumbnail for: UTCHEM Model Application for Prediction of Crude O...
Journal Article
Journal: Clay Minerals
Published: 01 December 2023
Clay Minerals (2023) 58 (4): 415–423.
... E. ( 2006 ) Organoclays for aquifer bioremediation: adsorption of chlorobenzene on organoclays and its degradation by RHODOCOCCUS B 528 . Water, Air & Soil Pollution: Focus , 6 , 317 – 329 . Yang S...
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First thumbnail for: Molecular dynamics simulation of dodecyl dimethyl ...
Second thumbnail for: Molecular dynamics simulation of dodecyl dimethyl ...
Third thumbnail for: Molecular dynamics simulation of dodecyl dimethyl ...
Journal Article
Published: 20 February 2023
Quarterly Journal of Engineering Geology and Hydrogeology (2023) 56 (2): qjegh2022-085.
...://nepis.epa.gov/Exe/ZyPURL.cgi?Dockey=100003YV.txt Whyte , L.G. , Slagman , S.J. et al. 1999 . Physiological adaptations involved in alkane assimilation at a low temperature by Rhodococcus sp. strain Q15 . Applied and Environmental Microbiology , 65 , 2961 – 2968 , https://doi.org/10.1128...
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First thumbnail for: Bioventing revisited: efficacy of enhanced biodegr...
Second thumbnail for: Bioventing revisited: efficacy of enhanced biodegr...
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Journal Article
Published: 01 May 2015
Vadose Zone Journal (2015) 14 (5): vzj2014.03.0028.
... by chromosomal integration of a modified green fluorescent protein gene . Appl. Microbiol. Biotechnol. 77 : 1287 – 1295 . doi:10.1007/s00253-007-1253-9 Priestley J.T. Coleman N.V. Duxbury T. . 2006 . Growth rate and nutrient limitation affect the transport of Rhodococcus sp. strain...
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First thumbnail for: Noninvasive Quantification of Green Fluorescent Pr...
Second thumbnail for: Noninvasive Quantification of Green Fluorescent Pr...
Third thumbnail for: Noninvasive Quantification of Green Fluorescent Pr...
Journal Article
Published: 01 May 2011
Vadose Zone Journal (2011) 10 (2): 532–540.
.... Rasch , T. Maskow , F. Mayer , and A. Steinbu ̈chel . 2004 . Physiological and morphological responses of the soil bacterium Rhodococcus opacus strain PD630 to water stress . FEMS Microbiol. Ecol . 50 : 75 – 86 . Aon , M.A. , D.E. Sarena , J.L. Burgos , and S...
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First thumbnail for: Water and Oxygen Dependence of Pseudomonas putida ...
Second thumbnail for: Water and Oxygen Dependence of Pseudomonas putida ...
Third thumbnail for: Water and Oxygen Dependence of Pseudomonas putida ...
Journal Article
Published: 01 August 2005
Vadose Zone Journal (2005) 4 (3): 744–759.
... aquifer . Chem. Geol . 161 : 415 – 442 . Hawari , J. , A. Halasz , C. Groom , S. Deschamps , L. Paquet , C. Beaulieu , and A. Corriveau . 2002 . Photodegradation of RDX in aqueous solution: A mechanistic probe for biodegradation with Rhodococcus sp . Environ...
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First thumbnail for: Barium and High Explosives in a Semiarid Alluvial ...
Second thumbnail for: Barium and High Explosives in a Semiarid Alluvial ...
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Journal Article
Published: 01 January 2017
Vadose Zone Journal (2017) 16 (1): 1–15.
... Géologique de Belgique , Brussels . Masy , T. , D. Caterina , O. Tromme , B. Lavigne , P. Thonart , S. Hiligsmann , and F. Nguyen . 2016 . Electrical resistivity tomography to monitor enhanced biodegradation of hydrocarbons with Rhodococcus erythropolis T902.1...
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First thumbnail for: Tracer Experiment in a Brownfield Using Geophysics...
Second thumbnail for: Tracer Experiment in a Brownfield Using Geophysics...
Third thumbnail for: Tracer Experiment in a Brownfield Using Geophysics...