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Biomedical subjects

Maria Feligini

Publications and source records attributed to Maria Feligini.

5 recordsLinked to original sources

High-performance liquid chromatography of governing liquid to detect illegal bovine milk's addition in water buffalo Mozzarella: comparison with results from raw milk and cheese matrix.

A method to detect fraudulent addition of bovine milk in water buffalo Mozzarella cheese by gradient high-performance liquid chromatography (RP-HPLC), relying on the measurement of quantity ratios within beta-lactoglobulin protein family, is described. Analyses were performed on raw milk, cheese matrix and cheese governing liquid using a C4 column and UV detection. This work demonstrated that bovine milk addition during cheesemaking can be detected in governing liquid of Mozzarella down to the EU law limit of 1% as well as in raw milk and cheese matrix. A significant lowering of peaks' areas and heights was observed in cheese matrix and governing liquid samples in comparison with the corresponding milk ones, possibly due to proteins' degradation during the cheesemaking process. The results show that, unlike previous works reported, the use of a matrix-specific calibration curve is essential in order to achieve a proper quantitation of beta-lactoglobulin proteins, thus allowing a reliable estimation of bovine milk addition.

Animals↗

A single nucleotide polymorphism in the sheep kappa-casein coding region.

Genetic polymorphisms in CSN3 gene in Pag (Croatia), Sarda (Italy) and Pramenka (Serbia) sheep breeds were investigated. A single nucleotide polymorphism (SNP) was localized by sequence analysis (sequence submitted to GenBank under accession AY237637) relying on an original primer pair. Primers for sequencing (kappa-casF and kappa-casR) were designed on the available CSN3 sequences to amplify the genomic region encoding the major part of the mature protein (exon 4). An SNP was detected at position 237 of the sheep kappa-casein mRNA (reference sequence: GenBank X51822), where a thymine was substituted for a cytosine. The SNP was typed by conventional PCR and SYBR Green I-based real-time PCR. C and T alleles were discriminated using a dedicated set of primers that consisted of one common forward primer (SNP-TC) and two reverse primers (SNP-T and SNP-C), the latter two differing in the 3' end base and in the presence of a 12 bp poly-G tail in SNP-C. The SNP was found in both the heterozygous and the homozygous state in Sarda and Pramenka breeds, and in the heterozygous state only in the Pag breed. The observed allelic frequencies of the SNP were 0.12 in Pag, 0.27 in Sarda and 0.45 in Pramenka.

Alleles↗

The complete coding region sequence of river buffalo (Bubalus bubalis) SRY gene.

The Y-linked SRY gene is responsible for testis determination in mammals. Mutations in this gene can lead to XY Gonadal Dysgenesis, an abnormal sexual phenotype described in humans, cattle, horses and river buffalo. We report here the complete river buffalo SRY sequence in order to enable the genetic diagnosis of this disease. The SRY sequence was also used to confirm the evolutionary divergence time between cattle and river buffalo 10 million years ago.

Amino Acid Sequence↗

The complete nucleotide sequence of goat (Capra hircus) mitochondrial genome. Goat mitochondrial genome.

The goat mtDNA sequences reported to date are fragmentary. By using both in silico cloning procedure and conventional molecular biology techniques we have determined the complete nucleotide sequence of the goat (Capra hircus) mitochondrial genome. The length of the sequence was 16.640 bp. Genes responsible for 12S and 16S rRNAs, 22 tRNAs and 13 protein-coding regions are found. The genome organization is conformed to those of other mitochondrial genomes. Comparison between the 13 protein coding genes of goat, cow and sheep reveals that the difference range from 1.2 to 12.2% with a mean of 7.3% between goat and cow and from 0 to 15.6% (mean 4.7%) between goat and sheep.

Animals↗

Water buffalo (Bubalus bubalis): complete nucleotide mitochondrial genome sequence.

In this work, we report the whole sequence of the water buffalo (Bubalus bubalis) mitochondrial genome. The water buffalo mt molecule is 16.355 base pair length and shows a genome organization similar to those reported for other mitochondrial genome. These new data provide an useful tool for many research area, i.e. evolutionary study and identification of food origin.

Animals↗