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Current microbiology.

Periodical
Microbiology
Publisher:
Springer International.
Frequency: Monthly
Country: United States
Language: English
Start Year:1978 -
ISSN:
0343-8651 (Print)
1432-0991 (Electronic)
0343-8651 (Linking)
Impact Factor
2.6
2022
NLM ID:7808448
(DNLM):C56280000(s)
(OCoLC):03876758
Coden:CUMIDD
LCCN:78645177
Classification:W1 CU799CM
16S rDNA and ITS Sequence Diversity of Burkholderia mallei Isolated from Glanders-Affected Horses and Mules in India (2013-2019).
Current microbiology    December 18, 2021   Volume 79, Issue 1 31 doi: 10.1007/s00284-021-02701-8
Shanmugasundaram K, Singha H, Saini S, Tripathi BN.Glanders is a highly contagious and fatal infection of equids caused by the bacteria known as Burkholderia mallei. It is one of the notifiable equine diseases and is still present in Asia, South America and Africa. In India, glanders re-emerged in 2006, and thereafter, increasing numbers of cases were reported in different regions of the country. Between 2013 and 2019, 39 B. mallei were isolated from glanders-affected horses (n = 30) and mules (n = 9) from seven states of India such as Uttar Pradesh, Haryana, Delhi, Himachal Pradesh, Gujarat, Maharashtra and Tamil Nadu. In this study, ...
Fighting Off Wound Pathogens in Horses with Honeybee Lactic Acid Bacteria.
Current microbiology    June 21, 2016   Volume 73, Issue 4 463-473 doi: 10.1007/s00284-016-1080-2
Olofsson TC, Butler É, Lindholm C, Nilson B, Michanek P, Vásquez A.In the global perspective of antibiotic resistance, it is urgent to find potent topical antibiotics for the use in human and animal infection. Healing of equine wounds, particularly in the limbs, is difficult due to hydrostatic factors and exposure to environmental contaminants, which can lead to heavy bio-burden/biofilm formation and sometimes to infection. Therefore, antibiotics are often prescribed. Recent studies have shown that honeybee-specific lactic acid bacteria (LAB), involved in honey production, and inhibit human wound pathogens. The aim of this pilot study was to investigate the e...
Study of lysozyme resistance in Rhodococcus equi.
Current microbiology    October 30, 2013   Volume 68, Issue 3 352-357 doi: 10.1007/s00284-013-0483-6
Hébert L, Bidaud P, Goux D, Benachour A, Laugier C, Petry S.Lysozyme is an important and widespread component of the innate immune response that constitutes the first line of defense against bacterial pathogens. The bactericidal effect of this enzyme relies on its capacity to hydrolyze the bacterial cell wall and also on a nonenzymatic mechanism involving its cationic antimicrobial peptide (CAMP) properties, which leads to membrane permeabilization. In this paper, we report our findings on the lysozyme resistance ability of Rhodococcus equi, a pulmonary pathogen of young foals and, more recently, of immunocompromised patients, whose pathogenic capacity...
Identification of Pythium insidiosum by nested PCR in cutaneous lesions of Brazilian horses and rabbits.
Current microbiology    December 25, 2010   Volume 62, Issue 4 1225-1229 doi: 10.1007/s00284-010-9781-4
Botton SA, Pereira DI, Costa MM, Azevedo MI, Argenta JS, Jesus FP, Alves SH, Santurio JM.Pythium insidiosum is a fungus-like organism present in subtropical and tropical areas, such as Brazil, known to infect humans and various animal species. P. insidiosum is the etiological agent of pythiosis, an emerging and granulomatous disease characterized mainly by cutaneous and subcutaneous lesions in horses, the principal species affected. Accurate diagnosis of pythiosis and identification of its causal agent by microbiological and serological tests can be often difficult and inconclusive principally for horses and humans. The aim of this study was to evaluate the application of the prev...
Lactobacillus and Bifidobacterium diversity in horse feces, revealed by PCR-DGGE.
Current microbiology    September 5, 2009   Volume 59, Issue 6 651-655 doi: 10.1007/s00284-009-9498-4
Endo A, Futagawa-Endo Y, Dicks LM.Lactobacillus equi, Lactobacillus hayakitensis, Lactobacillus johnsonii, and Weissella confusa/cibaria were the dominant species in 12 South African horses. The Bifidobacterium-group was detected in the feces of only one of the 12 horses. Sequencing of the nested-PCR amplicon identified the Bifidobacterium-group as Parascardovia denticolens. Cell numbers of L. equi, L. hayakitensis, and W. confusa/cibaria were consistent in all samples. P. denticolens, Bifidodobacterium pseudolongum, and a phylogenetic relative of Alloscardovia omnicolens were rarely detected. L. equigenerosi, a dominant speci...
Viability of Rhodococcus equi and Parascaris equorum eggs exposed to high temperatures.
Current microbiology    September 1, 2009   Volume 60, Issue 1 38-41 doi: 10.1007/s00284-009-9497-5
Hébert L, Cauchard J, Doligez P, Quitard L, Laugier C, Petry S.There is great concern about the potential pathogen contamination of horse manure compost spread in the same fields horses graze in. To ensure that pathogen destruction occurs, temperatures need to be sufficiently high during composting. Here, we investigated the survival rate of two marker organisms, Rhodococcus equi and Parascaris equorum eggs, exposed to temperatures potentially encountered during horse manure composting. Our results show that the time required to achieve a 1 log10 reduction in R. equi population (D-value) are 17.1 h (+/-1.47) at 45 degrees C, 8.6 h (+/-0.28) at 50 degrees ...
Molecular characterization of Rhodococcus equi from horse-breeding farms by means of multiplex PCR for the vap gene family.
Current microbiology    February 10, 2009   Volume 58, Issue 4 399-403 doi: 10.1007/s00284-009-9370-6
Monego F, Maboni F, Krewer C, Vargas A, Costa M, Loreto E.This study evaluated the molecular characteristics of Rhodococcus equi isolates obtained from horses by a multiplex PCR assay that amplifies the vap gene family (vapA, -B, -C, -D, -E, -F, -G, and -H). A total of 180 R. equi isolates were studied from four different sources, namely healthy horse feces (112), soil (12), stalls (23), and clinical isolates (33) from horse-breeding farms. The technique was performed and confirmed by sequencing of amplified vap gene family controls. Thirty-two (17.8%) of the R. equi isolates were positive for the vapA gene and carried at least three other vap genes....
VanA-type vancomycin-resistant enterococci in equine and swine rectal swabs and in human clinical samples.
Current microbiology    July 25, 2007   Volume 55, Issue 3 240-246 doi: 10.1007/s00284-007-0115-0
de Niederhäusern S, Sabia C, Messi P, Guerrieri E, Manicardi G, Bondi M.Vancomycin-resistant enterococci (VRE) in healthy people and in food-producing animals seems to be quite common in Europe. The existence of this community reservoir of VRE has been associated with the massive use of avoparcin in animal husbandry. Eight years after the avoparcin ban in Europe, we investigated the incidence of VanA enterococci, their resistance patterns, and the mobility of their glycopeptide-resistance determinants in a sampling of animal rectal swabs and clinical specimens. A total of 259 enterococci isolated from equine, swine, and clinical samples were subcultured on KF-stre...
Phenotypical assays and partial sequencing of the hsp60 gene for identification of Streptococcus equi.
Current microbiology    May 4, 2007   Volume 54, Issue 5 331-334 doi: 10.1007/s00284-005-0458-3
Sá e Silva M, da Costa MM, de Avila Botton S, Barretta C, Groff AC, de Vargas AC.Strangles is an acute and contagious disease characterized by inflammation of the upper respiratory tract of horses. The etiological agent of strangles is the bacteria S. equi subsp. equi, which belongs to the Lancefield group C. Opportunistic agents from the same group are frequently isolated from horses with strangles and may induce mistaken diagnoses. Among the subspecies of S. equi, the phenotypic features are almost undistinguishable; however, the pathogenic potential is widely differentiated. The aim of this study was to characterize S. equi isolates obtained from clinical samples of str...
Quantitative determination of H2-utilizing acetogenic and sulfate-reducing bacteria and methanogenic archaea from digestive tract of different mammals.
Current microbiology    March 1, 1996   Volume 32, Issue 3 129-133 doi: 10.1007/s002849900023
Morvan B, Bonnemoy F, Fonty G, Gouet P.Total number of bacteria, cellulolytic bacteria, and H2-utilizing microbial populations (methanogenic archaea, acetogenic and sulfate-reducing bacteria) were enumerated in fresh rumen samples from sheep, cattle, buffaloes, deer, llamas, and caecal samples from horses. Methanogens and sulfate reducers were found in all samples, whereas acetogenes were not detected in some samples of each animal. Archaea methanogens were the largest H2-utilizing populations in all animals, and a correlation was observed between the numbers of methanogens and those of cellulolytic microorganisms. Higher counts of...