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1.
J Appl Anim Welf Sci ; : 1-12, 2023 Jun 30.
Article in English | MEDLINE | ID: mdl-37387325

ABSTRACT

The aim of this study was to analyze the demographic, clinical, and hematological aspects of the population in a dog shelter located in the municipality of Lavras, Brazil. All animals were microchipped and evaluated by veterinarians. Whole blood samples were obtained from 329 dogs in the months of July-August 2019 and from 310 dogs in the months of January-February 2020. Most of the dogs were of mixed breed, received anti-rabies and polyvalent vaccines (100%), were dewormed (100%), and were spayed/neutered (98.59%), with a predominance of adult (86.51%), short-hair (67.51%), normal body condition (65.57%), medium-size (62.57%), and female (62.36%). The main clinical alterations detected were enlarged lymph nodes (38.69%), skin lesions (31.50%), overweight (23.32%), obesity (6.07%), elevated temperature (17.05%), and ear secretion (15.72%). Regarding hematological alterations, thrombocytopenia (36.31%), leukopenia (15.92%), anemia with decreased hemoglobin values (10.60%), hematocrit (9.70%), and red blood cells (5.14%) were observed. Most of the shelter dogs were apparently healthy, but specific measures for nutritional, dermatological, otological and disease management should be implemented once the health changes are verified, as they impact the general state of the population and adoptions.

2.
Microbes Infect ; 25(1-2): 105018, 2023.
Article in English | MEDLINE | ID: mdl-35940401

ABSTRACT

The Brucellaceae family comprises microorganisms similar both phenotypically and genotypically, making it difficult to identify the etiological agent of these infections. This study reports the first isolation, identification, and characterization of Pseudochrobactrum saccharolyticum (strain 115) from Latin America. Strain 115 was isolated in 2007 from a bovine in Brazil and was initially classified as Brucella spp. by classical microbiological tests and bcsp31 PCR. The antimicrobial susceptibility of strain 115 was tested against drugs used to treat human brucellosis by minimal inhibitory concentration test. Subsequently, the whole genome of the strain was sequenced, assembled, and characterized. Phylogenetic trees built from 16S rRNA and recA gene sequences enabled the classification of strain 115 as Pseudochrobactrum spp. Phylogenomic analysis using Single Nucleotide Polymorphisms and Average Nucleotide Identity allowed the classification of the strain as P. saccharolyticum. Additionally, a Tetra Correlation Search identified one related genome from the same species, which was compared with strain 115 by analyzing genomic islands. This is the first identification and whole-genome sequence of P. saccharolyticum in Latin America and highlights a challenge in the diagnosis of bovine brucellosis, which could be solved by including the sequencing of 16S rRNA and recA genes in routine diagnostics.


Subject(s)
Brucellaceae , Animals , Cattle , Humans , RNA, Ribosomal, 16S/genetics , Phylogeny , Latin America , Brucellaceae/genetics , DNA, Bacterial/genetics
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