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Dairy maturation of milk used in the manufacture of Parmigiano-Reggiano cheese: effects on physico-chemical characteristics, rennet-coagulation aptitude and rheological properties

Published online by Cambridge University Press:  12 May 2008

Massimo Malacarne*
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
Andrea Summer
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
Paolo Formaggioni
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
Piero Franceschi
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
Sandro Sandri
Affiliation:
Centro Lattiero Caseario, via Torelli 17, 43100 ParmaItaly
Mauro Pecorari
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
Paola Vecchia
Affiliation:
Centro Ricerche Produzioni Animali, Corso Garibaldi 42, 42100 Reggio EmiliaItaly
Primo Mariani
Affiliation:
Sezione di Scienza e Tecnologie Lattiero Casearie – Dip. Produzioni Animali, Biotecnologie Veterinarie, Qualità e Sicurezza degli Alimenti. Università degli Studi di Parma, via del Taglio 8, 43100 ParmaItaly
*
*For correspondence; e-mail: massimo.malacarne@unipr.it

Abstract

The aim of this research was to study the effects of dairy maturation on the physico-chemical characteristics and technological properties of milk used for Parmigiano-Reggiano cheese manufacture. Three different operating conditions (CF1, CF2 and CF3) were considered. Full cream milk from the evening milking was stored on the farm and delivered to the cheese factory in churns (CF1) or in thermoregulated tanks at a temperature not lower than 18°C (CF2 and CF3). The natural creaming (10–12 h overnight) was performed in a traditional large flat vat containing 10–12 hl (CF1 and CF2) or in thermoregulated large flat vats containing 60 hl at about 15°C (CF3). Twenty-four, 24 and 22 maturation trials were performed in CF1, CF2, and CF3, respectively, during 2 consecutive years. A significant increase (P⩽0·05) in pH during the maturation of milk was observed in CF1 and CF2. The increase of pH was higher (P⩽0·05) in CF1 than CF2 and CF3. The values of titratable acidity were higher (P⩽0·05) in partially skimmed evening (PS) milk than in full cream (FC) milk in each operative condition. The increase observed in CF2 was higher than those reported in CF1 and CF3. Compared with FC milk, PS milk showed lower values (P⩽0·05) of casein and casein number and higher contents (P⩽0·05) of whey proteins and, particularly, proteose-peptone. The increase of proteose-peptone – per 100 g SNF or 100 g casein – was significantly higher (P⩽0·05) in CF1 than in CF2 and, in particular, than in CF3. A higher increase (P⩽0·05) of resistance to compression was observed in CF1 with respect to CF3. CF2 variation was not different with respect to either CF1 or CF3. Variation of the difference between PS and FC milks (PS-FC) in pH, TBC and fat were clearly lower in CF3 than CF1. This means that the control of milk temperature throughout the whole maturation phase offers a greater control of both microbial development and extent of creaming.

Type
Research Article
Copyright
Copyright © Proprietors of Journal of Dairy Research 2008

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References

Allen, RJL 1940 The estimation of phosphorus. Biochemical Journal 34 858865CrossRefGoogle ScholarPubMed
Amram, Y, Delespaul, G, Vandeweghe, J, Schneid, N & Lenoir, J 1982 Refrigeration of milk and its implications in cheesemaking. II. Efficacy of different correction treatments. Revue Laitière Française 404 5357Google Scholar
Andrews, AT & Alichanidis, E 1983 Proteolysis of caseins and the proteose-peptone fraction of bovine milk. Journal of Dairy Research 50 275290CrossRefGoogle ScholarPubMed
Annibaldi, S 1973 Application of lactodynamography, gelometry and tensiometry in the evaluation of the aptitude of milk to cheesemaking. Proceedings, Corso Aggiornamento Tecnico Produzione Parmigiano-Reggiano, pp. 129145 (Ed.Parmigiano-Reggiano, Consorzio). Reggio Emilia: AgeGoogle Scholar
Anon. 1963 [Titratable acidity evaluation with the Soxhlet-Henkel (SH) method]. Milchwissenschaft 18 520Google Scholar
Aschaffenburg, R & Drewry, J 1959 New procedure for the routine determination of the various non-casein proteins of milk. Proceedings, 15th International Dairy Congress 3 16311637Google Scholar
Bagni, A, Chiavari, C, Castagnetti, GB, Grazia, L & Losi, G 1987 Further observations on the milk chamber cooling effect in the Parmigiano-Reggiano cheese technology. Il Latte 12 10171025Google Scholar
Battistotti, B & Corradini, C 1993 Italian Cheese. In Cheese: chemistry, physics and microbiology, Vol. 2, pp. 221243 (Ed.Fox, PF). London: Chapman & HallCrossRefGoogle Scholar
Biggs, DA 1978 Instrumental infrared estimation of fat, protein and lactose in milk: collaborative study. Journal of the Association of Official Analytical Chemists 61 10151034Google ScholarPubMed
Choi, J, Horne, DS & Lucey, JA 2007 Effect of insoluble calcium concentration on rennet coagulation properties of milk. Journal of Dairy Science 90 26122623CrossRefGoogle Scholar
Council Regulation 1992 (EEC) No. 2081/92 of 14 July 1992 on the protection of geographical indications and designations of origin for agricultural products and foodstuffs. Official Journal of the European Union L 208 of 24 July 1992, 18Google Scholar
Dalgleish, DG & Law, AJR 1989 pH-Induced dissociation of bovine casein micelles II. Mineral solubilization and its relation to casein release. Journal of Dairy Research 56 727735CrossRefGoogle Scholar
De Man, JM 1962 Measurement of the partition of some milk constituents between the dissolved and colloidal phases. Journal of Dairy Research 29 279283CrossRefGoogle Scholar
Desmazeaud, M 1984 The maturation of milk. In Le fromage, pp. 175178 (Ed.Eck, A). Paris: LavoisierGoogle Scholar
Guinee, TP, Mulholland, EO, Kelly, J & Callaghan, DJO 2007 Effect of protein-to-fat ratio of milk on the composition, manufacturing efficiency, and yield of Cheddar cheese. Journal of Dairy Science 90 110123CrossRefGoogle ScholarPubMed
Hyslop, DB 2003 Enzymatic coagulation of milk. In Advanced Dairy Chemistry. Vol. 1. (Part B), pp. 830878 (Eds Fox, PF and McSweeney, PLH). New York: Kluwer Academic/PlenumGoogle Scholar
Ikonen, T, Morri, S, Tyrisevä, AM, Ruottinen, O, Ojala, M 2004 Genetic and phenotypic correlations between milk coagulation properties, milk production traits, somatic cell count, casein content and pH of milk. Journal of Dairy Science 87 458467CrossRefGoogle Scholar
Johnston, DE & Murphy, RJ 1984 Effects of fat content on properties of rennet-induced milk gels. Milchwissenschaft 39 585587Google Scholar
Kang, YJ & Frank, JF 1988 Proteolysis of high quality raw milk during storage at various temperatures. Journal of Dairy Science 71 14841491CrossRefGoogle Scholar
Law, AJR & Leaver, J 1998 Effects of acidification and storage of milk on dissociation of bovine casein micelles. Journal of Agricultural and Food Chemistry 46 50085016CrossRefGoogle Scholar
Le Graet, Y & Brulé, G 1993 Effects of pH and ionic strength on distribution of minerals salts in milk. Le Lait 73 5160CrossRefGoogle Scholar
Lucey, JA 2001 Formation and physical properties of milk protein gels. Journal of Dairy Science 85 281294CrossRefGoogle Scholar
Ma, Y & Barbano, DM 2000 Gravity separation of raw bovine milk: fat globule size distribution and fat content of milk fractions. Journal of Dairy Science 83 17191727CrossRefGoogle ScholarPubMed
Mariani, P, Summer, A, Formaggioni, P, Malacarne, M & Battistotti, B 2001 Remarks about the main dairy-technological requisites of milk for grana cheese production. Scienza e Tecnica Lattiero-Casearia 52 4991Google Scholar
McMahon, DJ & Brown, RJ 1982 Evaluation of Formagraph for comparing rennet solutions. Journal of Dairy Science 65 16391642CrossRefGoogle Scholar
Savini, E 1946 [Analysis of milk and dairy products] Milano: HoepliGoogle Scholar
Shalabi, SI & Fox, PF 1982 Influence of pH on the rennet coagulation time. Journal of Dairy Research 49 153157CrossRefGoogle Scholar
Udabage, P, McKinnon, IR & Augustin, A 2001 Effects of mineral salts and calcium chelating agents on the gelation of renneted skim milk. Journal of Dairy Science 84 15691575CrossRefGoogle ScholarPubMed
van Boeckel, MAJS & Crijns, CL 1994 Behaviour of the proteose-peptone fraction during renneting of milk. Netherland Milk Dairy Journal 48 117126Google Scholar
Walstra, P 1993 The syneresis of curd. In Cheese: chemistry, physics and microbiology, Vol. 1, pp. 141191 (Ed.Fox, PF). London: Chapman & HallCrossRefGoogle Scholar
White, JCD & Davies, DT 1958 The relation between the chemical composition of milk and the stability of the caseinate complex. I. General introduction, description of samples, methods and chemical composition of samples. Journal of Dairy Research 25 236255CrossRefGoogle Scholar
Zannoni, M, Nanni, M & Mora, R 1984 Influence of different conditions of natural creaming on milk and cheese characteristics. Scienza e Tecnica Lattiero-Casearia 35 541556Google Scholar
Zoon, P, van Vliet, T & Walstra, P 1989 Rheological properties of rennet-induced skim milk gels. 4. The effect of pH and NaCl. Netherland Milk Dairy Journal 43 1734Google Scholar