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cereus giganteus/carbohydrate

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Fnr mediates carbohydrate-dependent regulation of catabolic and enterotoxin genes in Bacillus cereus F4430/73.

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We had previously demonstrated that Fnr is required for fermentative growth and oxic production of hemolysin BL (Hbl) and non-hemolytic enterotoxin (Nhe) in the food-borne pathogen Bacillus cereus F4430/73. In the present work, the regulatory impact of Fnr on microaerobic growth and enterotoxin

The production of Bacillus cereus enterotoxins is influenced by carbohydrate and growth rate.

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Enterotoxin production is a key factor in Bacillus cereus food poisoning. Herein, the effect of the growth rate (mu) on B. cereus toxin production when grown on sucrose was studied and the Hemolytic BL enterotoxin (HBL) and nonhemolytic enterotoxin (Nhe) production by B. cereus was compared
Bacillus anthracis and Bacillus cereus are closely related pathogenic organisms that are difficult to differentiate phenotypically or genotypically. It is well known that vegetative and spore forms of bacilli are quite distinct both morphologically and chemically, but spore-specific chemical markers

Cell wall carbohydrate compositions of strains from the Bacillus cereus group of species correlate with phylogenetic relatedness.

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Members of the Bacillus cereus group contain cell wall carbohydrates that vary in their glycosyl compositions. Recent multilocus sequence typing (MLST) refined the relatedness of B. cereus group members by separating them into clades and lineages. Based on MLST, we selected several B. anthracis, B.

Two additional carbohydrate-binding sites of beta-amylase from Bacillus cereus var. mycoides are involved in hydrolysis and raw starch-binding.

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In the previous X-ray crystallographic study, it was found that beta-amylase from Bacillus cereus var. mycoides has three carbohydrate-binding sites aside from the active site: two (Site2 and Site3) in domain B and one (Site1) in domain C. To investigate the roles of these sites in the catalytic

Single cell profiling of surface carbohydrates on Bacillus cereus.

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Cell surface carbohydrates are important to various bacterial activities and functions. It is well known that different types of Bacillus display heterogeneity of surface carbohydrate compositions, but detection of their presence, quantitation and estimation of variation at the single cell level

Linking Bacillus cereus Genotypes and Carbohydrate Utilization Capacity.

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We characterised carbohydrate utilisation of 20 newly sequenced Bacillus cereus strains isolated from food products and food processing environments and two laboratory strains, B. cereus ATCC 10987 and B. cereus ATCC 14579. Subsequently, genome sequences of these strains were analysed together with
Bacillus cereus is thought to be a beneficial bacterium for plants in several aspects, such as promoting plant growth and inducing plant disease resistance. However, there is no detailed report on the effect of Bacillus cereus acting on Nicotiana tabacum. In the present study, RNA-based sequencing
Sigma 54 is a transcriptional regulator predicted to play a role in physical interaction of bacteria with their environment, including virulence and biofilm formation. In order to study the role of Sigma 54 in Bacillus cereus, a comparative transcriptome and phenotypic study was performed using B.

Lactate dehydrogenase A promotes communication between carbohydrate catabolism and virulence in Bacillus cereus.

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The diarrheal potential of a Bacillus cereus strain is essentially dictated by the amount of secreted nonhemolytic enterotoxin (Nhe). Expression of genes encoding Nhe is regulated by several factors, including the metabolic state of the cells. To identify metabolic sensors that could promote

Primary characterization and evaluation of anti ulcerogenic activity of an aqueous extract from callus culture of Cereus peruvianus Mill. (Cactaceae).

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In the current study we reported cultivation, extraction procedure, analysis and preliminary characterization of the aqueous extract from Cereus peruvianus callus culture and evaluated its anti ulcerogenic activity in vivo models of experimental ulcers in Wistar rats. The obtained aqueous extract

Primary Characterization and Evaluation of Anti Ulcerogenic Activity of an Aqueous Extract from Callus Culture of Cereus peruvianus Mill. (Cactaceae).

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In the current study we reported cultivation, extraction procedure, analysis and preliminary characterization of the aqueous extract from Cereus peruvianus callus culture and evaluated its anti ulcerogenic activity in vivo models of experimental ulcers in Wistar rats. The obtained aqueous extract
Amylases enzymes hydrolyze starch molecules to producediverse products including dextrins, and progressively smaller polymers. These include glucose units linked through α-1-1, α-1-4, α-1-6, glycosidic bonds. This enzyme carry an (α /β) 8 or TIM barrel structure ia also produced containing the

Circular-dichroism studies on two -lactamases from Bacillus cereus.

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The circular-dichroism (CD) spectra of beta-lactamases I and II from Bacillus cereus 569/H are reported, along with that of the beta-lactamase II free from carbohydrate. The results show that carbohydrate makes an appreciable contribution to the optical activity of beta-lactamase II in the

Fructose and glucose mediates enterotoxin production and anaerobic metabolism of Bacillus cereus ATCC14579(T).

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OBJECTIVE To determine the effects of carbohydrates on Bacillus cereus ATCC14579(T) anaerobic metabolism and enterotoxin production in amino acids rich medium. RESULTS Bacillus cereus anaerobic growth on different carbohydrates (glucose, fructose, sucrose or glucose-fructose mixture) was examined in
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