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1.
J Vet Med Sci ; 86(8): 828-832, 2024 Aug 02.
Article de Anglais | MEDLINE | ID: mdl-38897953

RÉSUMÉ

Strangles is a globally widespread, commonly diagnosed and important infectious disease of equids caused by Streptococcus equi subsp. equi. We performed whole genome sequencing of 19 S. equi isolates collected from imported horses at the Japanese border. Of these isolates, 15 isolates were obtained from clinical cases and 4 were from subclinical cases. The 19 isolates were grouped into 3 Bayesian analysis of population structure (BAPS) groups by the core genome single nucleotide polymorphism analysis corresponding to exporting country, SeM typing, or exporter of the horses. The 19 isolates possessed same pathogenic genes regardless of clinical status in imported horses and no antimicrobial resistance genes. The disease status of the horses may rather reflect the prior exposure of animals with sub-clinical infection to S. equi.


Sujet(s)
Maladies des chevaux , Infections à streptocoques , Equus caballus , Animaux , Maladies des chevaux/microbiologie , Japon , Infections à streptocoques/médecine vétérinaire , Infections à streptocoques/microbiologie , Séquençage nucléotidique à haut débit/médecine vétérinaire , Polymorphisme de nucléotide simple , Séquençage du génome entier , Streptococcus/génétique , Streptococcus/isolement et purification , Streptococcus equi/génétique , Streptococcus equi/isolement et purification , Génome bactérien
2.
J Vet Med Sci ; 81(6): 924-927, 2019 Jun 28.
Article de Anglais | MEDLINE | ID: mdl-31019139

RÉSUMÉ

Strangles is a commonly diagnosed and important infectious disease of equids worldwide, caused by Streptococcus equi subsp. equi. We determined the SeM genotypes of S. equi isolated from imported horses at the Japanese border within the past 8 years, which allowed us to classify 12 strains isolated from these horses from each exporter into four allelic groups. These alleles were different from the alleles of past isolates found in Japan. Furthermore, four strains classified into the same allele were isolated from horses from one exporter over several years. In this study, S. equi isolates from different exporters had different SeM alleles. Attention to the hygiene status of farms will be necessary to prevent the incursion of strangles.


Sujet(s)
Maladies des chevaux/microbiologie , Infections à streptocoques/médecine vétérinaire , Streptococcus equi/génétique , Animaux , Protéines bactériennes/génétique , Maladies des chevaux/épidémiologie , Equus caballus , Japon/épidémiologie , Lymphadénite/microbiologie , Lymphadénite/médecine vétérinaire , Infections à streptocoques/microbiologie , Streptococcus equi/isolement et purification
3.
J Chem Phys ; 138(18): 184704, 2013 May 14.
Article de Anglais | MEDLINE | ID: mdl-23676061

RÉSUMÉ

A three-dimensional interaction force mapping experiment was carried out on a muscovite mica surface in an aqueous solution using a high-resolution and low-thermal drift frequency-modulation atomic force microscope. By collecting oscillatory frequency shift versus distance curves at the mica∕solution interface, complicated hydration structures on the mica surface were visualized. Reconstructed two-dimensional frequency shift maps showed dot-like or honeycomb-like patterns at different tip-sample distances with a separation of 0.2 nm with each other, which agree well to the water molecule density maps predicted by a statistical-mechanical theory. Moreover, site-specific force versus distance curves showed a good agreement with theoretically calculated site-specific force curves by a molecular dynamics simulation. It is found that the first and second hydration layers give honeycomb-like and dot-like patterns in the two-dimensional frequency shift images, respectively, corresponding to the lateral distribution function in each layer.


Sujet(s)
Silicates d'aluminium/composition chimique , Microscopie à force atomique , Solutions , Propriétés de surface , Eau/composition chimique
4.
J Phys Chem B ; 108(20): 6441-4, 2004 May 20.
Article de Anglais | MEDLINE | ID: mdl-18950132

RÉSUMÉ

The coherent quantum transport properties through the spin-polarized polyphenoxyl radical molecule have been investigated, using the density-functional-derived tight-binding model and the Green's functions method. The majority and minority spin components exhibit considerably different transmission spectra in the vicinity of the Fermi level. Namely, each spin component carries a different amount of current when the bias voltage is applied between the two electrodes that sandwich the polyradical molecule. Therefore, if the magnetization axis of the polyradical is fixed by the external magnetic field, and if the spin flip does not occur during the transmission, the assumed molecular bridge is expected to work as a spin filter or a spin valve. Furthermore, as long as the bias voltage is weak, the total spin current is observed to be larger than the current through its reduced molecular form. It indicates that the adsorption of some chemical species on the radical sites can be sensed by the change in conductance of the molecular bridge.

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