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1.
Animal ; 9(10): 1610-6, 2015 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-26144256

RESUMEN

Salernitano (SAL) is an ancient Italian horse breed developed over the course of the ages together with Napoletano and, during the 20th century, by crossing with Thoroughbred horse lines. Excellent in hurdle jumping, this breed is currently facing a concrete risk of extinction due to the lack of appropriate management strategies. This research is the first SAL genetic characterization that aims to set up the basic knowledge for a conservation plan. A representative sample of 61 SALs was analyzed by means of a set of 16 microsatellites markers (short tandem repeats (STRs)). The sequence of hypervariable D-loop mtDNA region was also performed on a subset of 24 mares in order to study the maternal diversity and obtain a complete picture of the internal genetic variation. All the molecular data were analyzed together with those obtained from three Sicilian horse breeds investigated in a previous research (Siciliano, Sanfratellano and Sicilian Oriental Purebred). STRs markers revealed a moderate level of genetic diversity in SAL (alleles/locus 5.1, He 0.67) and confirmed the hunch of genetic erosion. Autosomal variability highlighted a very light deficit of homozygotes (FIS=-0.067). Experimental D-loop sequences were compared by multiple alignments with those retrieved from biological databases and revealed two unreported haplotypes. The phylogenetic network, which was built on mtDNA sequences, included various cosmopolitan and European horses and showed SAL haplotypes distributed among different mtDNA lineages.


Asunto(s)
Variación Genética , Caballos/genética , Alelos , Animales , Secuencia de Bases , Cruzamiento , ADN Mitocondrial/genética , Femenino , Marcadores Genéticos/genética , Haplotipos , Masculino , Repeticiones de Microsatélite/genética , Datos de Secuencia Molecular , Filogenia , Alineación de Secuencia/veterinaria , Análisis de Secuencia de ADN/veterinaria
2.
J Food Prot ; 61(4): 469-75, 1998 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-9709212

RESUMEN

In vitro affinity tests were conducted to test the effectiveness of 19 activated carbons (ACs), hydrates sodium calcium aluminosilicate (HSCAS) and sepiolite (S) in binding ochratoxin A (OA) and deoxynivalenol (DON) from solution. Relationships between adsorption ability and physicochemical parameters of ACs (surface area, iodine number, methylene blue index) were tested. When 5 ml of a 4-micrograms/ml aqueous solution of OA was treated with 2 mg of AC, the ACs adsorbed 0.80 to 99.86% of the OA. HSCAS and S were not effective in binding OA. In two saturation tests carried out with increased amounts of OA (5 ml of 10-and 50-micrograms/ml aqueous solutions of OA, respectively) three ACs also showed high adsorption ability (adsorbing 92.23 to 96.57% of the OA). When 5 ml of a 4-micrograms/ml aqueous solution of DON was treated with 10 mg of AC, ACs adsored 1.83 to 98.93% of the DON. HSCAS and S were not effective in binding DON. An overall relation of adsorption ability to the physicochemical parameters of ACs was observed. The methylene blue index was more reliable than iodine number and surface area in predicting ability of ACs to adsorb OA and DON. Based on the data observed on the xxxxx eh present study as well as on aflatoxin B1 and fumonisin B1 from previous studies, it is concluded that ACs have high in vitro affinity for chemically different mycotoxins, and can be considered as potential multi-mycotoxin-sequestering agents. However, the ability to bind the main mycotoxins singly or in combination should be confirmed by in vivo investigations. Moreover, information on the amounts of AC to be added to feeds, and on the possible long-term effect on absorption of essential nutrients are needed.


Asunto(s)
Carbono/metabolismo , Micotoxinas/metabolismo , Ocratoxinas/metabolismo , Tricotecenos/metabolismo , Adsorción , Cromatografía Líquida de Alta Presión , Yodo , Azul de Metileno
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