Academic literature on the topic 'Providencia rettgeri biochemical reactions'

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Journal articles on the topic "Providencia rettgeri biochemical reactions"

1

Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Sambhu Charan Mondal, and Snehasis Jana. "Antibiogram, Biochemical Reactions and Biotyping of Biofield Treated Providencia rettgeri." American Journal of Health Research 3, no. 6 (2015): 344–51. https://doi.org/10.5281/zenodo.169135.

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Providencia rettgeri (P. rettgeri) is the key organism for gastrointestinal tract infections due to its high virulence properties. The current study was designed to investigate the effect of Mr. Trivedi’s biofield energy treatment on P. rettgeri in lyophilized as well as revived state for antimicrobial susceptibility pattern, biochemical characteristics, and biotype number. The lyophilized strain of P. rettgeri (ATCC 9250) was divided into two parts, Group (Gr.) I: control and Gr. II: treatment. After biofield treatment, Gr. II was further subdivided into two parts, Gr. IIA and Gr. IIB.
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2

Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Sambhu Charan Mondal, and Snehasis Jana. "Antibiogram, Biochemical Reactions and Biotyping of Biofield Treated Providencia rettgeri." American Journal of Health Research 3, no. 6 (2015): 344–51. https://doi.org/10.11648/j.ajhr.20150306.15.

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<em>Providencia rettgeri</em>&nbsp;(<em>P. rettgeri</em>) is the key organism for gastrointestinal tract infections due to its high virulence properties. The current study was designed to investigate the effect of Mr. Trivedi&rsquo;s biofield energy treatment on&nbsp;<em>P. rettgeri</em>&nbsp;in lyophilized as well as revived state for antimicrobial susceptibility pattern, biochemical characteristics, and biotype number. The lyophilized strain of&nbsp;<em>P. rettgeri</em>&nbsp;(ATCC 9250) was divided into two parts, Group (Gr.) I: control and Gr. II: treatment. After biofield treatment, Gr. II
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3

Ayyal Al‐Gburi, Nagham Mohammed. "Isolation and Molecular Identification and Antimicrobial Susceptibility of Providencia spp. from Raw Cow’s Milk in Baghdad, Iraq." Veterinary Medicine International 2020 (November 18, 2020): 1–6. http://dx.doi.org/10.1155/2020/8874747.

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A total of sixty raw milk samples were collected from (street vendors and shops) from Baghdad city, Iraq. The samples were inoculated into peptone water and, then, subcultured onto McConkey agar and Blood agar. Identification of isolates was confirmed by microscopic examination, cultural characteristic, biochemical tests, Vitek (VITEK®2 system), and Biolog GN substrate reactions followed by 16S rRNA and specific genes sequencing. Of 60 raw cow’s milk samples, Providencia spp. were identified only in 4 samples (6.67%) and P. rettgeri was the most common, 2/4 (50%), followed by P. stuartii and P
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4

Kumar Trivedi, Mahendra. "Antibiogram, Biochemical Reactions and Biotyping of Biofield Treated <i>Providencia rettgeri</i>." American Journal of Health Research 3, no. 6 (2015): 344. http://dx.doi.org/10.11648/j.ajhr.20150306.15.

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5

Omoruyi, I. M., P. P. Ovia, Z. Ahmad-Dirisu, E. Osemwowa, and Y. I. Ibitoye. "Plasmid-Borne Mobile Colistin Resistant Gene (Mcr-1) Detection and Multidrug Resistant Bacteria Isolated from Some Abattoir Environments in Benin City, Edo State, Nigeria." Nigerian Journal of Biotechnology 40, no. 1 (2023): 43–55. http://dx.doi.org/10.4314/njb.v40i1.5.

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Antibiotics resistance is an increasing public health challenge globally, and very recently, global attention has focused on colistin, which is termed “last resort antibiotics”. This study was aimed at investigating the prevalence of plasmid-borne mobile colistin resistant and multidrug resistant bacteria from 6 major abattoirs located in Benin City, Edo State, Nigeria. Two hundred and eighty-eight samples from fresh water, wastewater, utensils, and handlers were obtained over a 6-months period. Mean mesophilic aerobic bacteria (MAB) and thermotolerant coliform bacteria (TCB) were determined b
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6

Abdulla, Riyadh Abdullhamzah, Sattar Numea Oras, Madeeh Khalil Ahmed, et al. "Providencia Rettgeri Common Causes of UTI." International Journal Of Medical Science And Clinical Research Studies 03, no. 04 (2023): 727–30. https://doi.org/10.5281/zenodo.7848988.

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Wasit city, Iraq provided a total of twenty-four different samples of urine for the researchers to examine. The samples were first cultured onto Ma-Cconkey agar and Blood agar, and placed into brain heart infusion broth. Microscopic inspection, cultural characteristics, biochemical assays, and the Api20 E system were all utilized to independently verify the isolates&#39; identities. Only two out of twenty-four human samples (8.3%) included Providencia species, with P. rettgeri being the most prevalent of those species. Using the disc diffusion technique, tests of antimicrobial susceptibility w
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7

Somvanshi, Vishal S., Elke Lang, Bettina Sträubler, et al. "Providencia vermicola sp. nov., isolated from infective juveniles of the entomopathogenic nematode Steinernema thermophilum." International Journal of Systematic and Evolutionary Microbiology 56, no. 3 (2006): 629–33. http://dx.doi.org/10.1099/ijs.0.63973-0.

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In the course of isolating bacteria from infective juveniles of the entomopathogenic nematode Steinernema thermophilum Ganguly &amp; Singh, 2000, three isolates were obtained (OP1T, OP29 and VS3). On the basis of 16S rRNA gene sequence analysis and riboprint patterns, these three strains were identical to each other but distinct from the type strains of the five recognized species of the genus Providencia. Based on biochemical and genomic analysis and supported by the low (&lt;35 %) DNA–DNA relatedness between strain OP1T and the type strain of its phylogenetically closest relative, Providenci
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8

Silva, Maria José Cavalcante da, Sebastião Ferreira Palmeira Junior, Kleber Fortes Junior, et al. "IAA production of indigenous isolate of plant growth promoting rhizobacteria in the presence of tryptophan." March 2020, no. 14(03):2020 (March 20, 2020): 537–44. http://dx.doi.org/10.21475/ajcs.20.14.03.p2239.

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The plant growth-promoting rhizobacteria (PGPRBs) is an interesting way to promote increased vegetable production. Here, we aimed to isolate, identify, and characterize PGPRBs by using biochemical tests, sequencing of 16S ribossomal DNA, in vitro and screening for indoleacetic acid production. The isolates were identified through VITEK® 2 Compact equipment, which is an automated system. We identified microorganisms such as Alcaligenes faecalis sp. faecalis, Pseudomonas putida, Proteus vulgaris, Providencia rettgeri, Serratia marcescens e Myroides sp. by performing vitek 2 biochemical tests. Th
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9

Ezechukwu, Precious Somtochukwu, and Jerry Obeta Ugwuanyi. "Providencia rettgeri and Sporosarcina koreensis as efficient cell factories for valorization of palm oil mill effluent to produce polyhydroxyalkanoates." Bio-Research 22, no. 3 (2024): 2441–54. https://doi.org/10.4314/br.v22i3.3.

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Polyhydroxyalkanoates (PHAs) are versatile carbon-neutral, eco-friendly biopolymers that can replace highly polluting petroleum plastics. Microorganisms accumulate PHAs in response to stress. Unfortunately, PHA is more expensive than plastics due to high cost of feedstock. Palm Oil Mill Effluent (POME) an abundant waste from oil palm production can support sustainable production of PHA using appropriate microorganism. Fresh and naturally acidified POME were used as negative-cost feedstock to produce PHA using novel bacteria. Six of 247 isolates obtained from POME / dumpsite soil efficiently ac
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10

Iqbal, Junaid, Mehwish Sagheer, Nazneen Tabassum, Ruqaiyyah Siddiqui, and Naveed Ahmed Khan. "Culturable Aerobic and Facultative Anaerobic Intestinal Bacterial Flora of Black Cobra (Naja naja karachiensis) in Southern Pakistan." ISRN Veterinary Science 2014 (April 9, 2014): 1–5. http://dx.doi.org/10.1155/2014/878479.

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Using morphological analysis and biochemical testing, here for the first time, we determined the culturable gut bacterial flora (aerobes and facultative anaerobes) in the venomous Black Cobra (Naja naja karachiensis) from South Asia. The findings revealed that these snakes inhabit potentially pathogenic bacteria including Serratia marcescens, Pseudomonas aeruginosa, Shewanella putrefaciens, Aeromonas hydrophila, Salmonella sp., Moraxella sp., Bacillus sp., Ochrobactrum anthropi, and Providencia rettgeri. These findings are of concern, as injury from snake bite can result in wound infections an
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