| dc.description.abstract | In this study, for the very first time, aqueous extracts obtained from flowers of spontaneously grown or cultivated
Onopordum platylepis (Murb.) Murb. thistles were used as coagulating agents for the pilot-scale manufacture of
Caciofiore, a traditional Italian raw ewe’s milk cheese. Cheese prototypes were compared to control cheeses
curdled with a commercial thistle rennet obtained from flowers of Cynara cardunculus L. After 45 days of ripening
under controlled conditions, both the experimental and control cheese prototypes were analyzed for: cheese
yield, physico-chemical (pH, titratable acidity, aw, proximate composition), morpho-textural (color and texture),
and microbiological parameters (viable cell counts and species composition assessed by Illumina sequencing), as
well as volatile profile by SPME-GC–MS. Slight variations in titratable acidity, color, and texture were observed
among samples. Based on the results overall collected, neither the yield nor the proximate composition was
apparently affected by the type of thistle coagulant. However, the experimental cheese prototypes curdled with
extracts from flowers of both spontaneous or cultivated thistles showed 10 % higher values of water-soluble
nitrogen compared to the control prototypes. On the other hand, these latter showed slightly higher loads of
presumptive lactococci, thermophilic cocci, coliforms, and eumycetes, but lower counts of Escherichia coli. No
statistically significant differences were revealed by the metataxonomic analysis of the bacterial and fungal biota.
Though most volatile organic compounds (VOCs) were consistent among the prototypes, significant variability
was observed in the abundance of some key aroma compounds, such as butanoic, hexanoic, and octanoic acids,
ethanol, propan-2-ol, isobutyl acetate, 2-methyl butanoic acid, and 3-methyl butanal. However, further investigations are required to attribute these differences to either the type of coagulant or the metabolic activity of the microorganisms occurring in the analyzed cheese samples. The results overall collected support the potential exploitation of O. platylepis as a novel source of thistle coagulant to produce ewe’s milk cheeses. | es |