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Bifunctional reductase CYP102, Bacillus megaterium
Known as:
P450102 protein, Bacillus megaterium
, P450BM-3 protein, Bacillus megaterium
, P450(BM-3) protein, Bacillus megaterium
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National Institutes of Health
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Related topics
Related topics
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Broader (1)
flavocytochrome P450 BM3 monoxygenases
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2019
2019
The cytochrome P450BM-1 of Bacillus megaterium A14K is induced by 2,3,7,8-Tetrachlorinated dibenzo-p-dioxin: Biophysical, molecular and biochemical determinants.
A. Hanano
,
Mouhnad Shaban
,
Douaa Almutlk
,
Ibrahem Almousally
Chemosphere
2019
Corpus ID: 53215232
Highly Cited
2016
Highly Cited
2016
Rhizobacterial Strain Bacillus megaterium BOFC15 Induces Cellular Polyamine Changes that Improve Plant Growth and Drought Resistance
Cheng Zhou
,
Zhongyou Ma
,
+4 authors
Jianfei Wang
International Journal of Molecular Sciences
2016
Corpus ID: 1681684
Plant-growth-promoting rhizobacteria can improve plant growth, development, and stress adaptation. However, the underlying…
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2016
2016
Isolation and identification of Bacillus megaterium YB3 from an effluent contaminated site efficiently degrades pyrene
S. S. Meena
,
R. Sharma
,
Priti Gupta
,
S. Karmakar
,
K. K. Aggarwal
Journal of Basic Microbiology
2016
Corpus ID: 5211466
Industrial effluents contaminated sites may serve as repositories of ecologically adapted efficient pyrene degrading bacteria. In…
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2014
2014
Rhizobacteria for reduced fertilizer inputs in wheat (Triticum aestivum spp. vulgare) and barley (Hordeum vulgare) on Aridisols in Turkey
R. Çakmakçı
,
M. Turan
,
M. Gulluce
,
F. Şahin
2014
Corpus ID: 54846578
The present study assessed the effect of seed inoculation with single or multiple plant growth-promoting rhizobacterial (PGPR…
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2013
2013
Growth and yield enhancement of Triticum aestivum L. by rhizobacteria isolated from agronomic plants.
A. Sadiq
,
B. Ali
2013
Corpus ID: 56454168
Growth and yield response of Triticum aestivum L. was evaluated by inoculating plants with rhizobacteria isolated from agronomic…
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2012
2012
Spatial configuration of extracellular polymeric substances of Bacillus megaterium TF10 in aqueous solution.
Ling-ling Wang
,
Longfei Wang
,
Xiaodong Ye
,
Wen‐Wei Li
,
Guo-ping Sheng
,
Hanqing Yu
Water Research
2012
Corpus ID: 23110792
2010
2010
Mutational Analysis of Bacillus megaterium QM B1551 Cortex-Lytic Enzymes
G. Christie
,
Fatma Işık Üstok
,
Qiaozhi Lu
,
L. Packman
,
C. Lowe
Journal of Bacteriology
2010
Corpus ID: 6680272
ABSTRACT Molecular-genetic and muropeptide analysis techniques have been applied to examine the function in vivo of the Bacillus…
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1998
1998
Marinospirillum gen. nov., with descriptions of Marinospirillum megaterium sp. nov., isolated from kusaya gravy, and transfer of Oceanospirillum minutulum to Marinospirillum minutulum comb. nov.
Masataka Satomi
,
Bon Kimura
,
M. Hayashi
,
Y. Shouzen
,
M. Okuzumi
,
T. Fujii
International Journal of Systematic Bacteriology
1998
Corpus ID: 19907917
Two strains of helical, halophilic, Gram-negative, heterotrophic bacteria were isolated from kusaya gravy which is a traditional…
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Highly Cited
1995
Highly Cited
1995
Inactivation of the major extracellular protease from Bacillus megaterium DSM319 by gene replacement
K. Wittchen
,
F. Meinhardt
,
K. Meinhardt
Applied Microbiology and Biotechnology
1995
Corpus ID: 6766079
An efficient method for gene replacement in Bacillus megaterium was developed and used to inactivate the chromosomal neutral…
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Highly Cited
1981
Highly Cited
1981
Acid-soluble spore proteins of Bacillus subtilis
W. C. Johnson
,
D. Tipper
Journal of Bacteriology
1981
Corpus ID: 24007834
Acid-soluble spore proteins (ASSPs) comprise about 5% of the total protein of mature spores of different Bacillus subtilis…
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