Artículos de revistas
Leuconostoc strains isolated from dairy products: Response against food stress conditions
Fecha
2017-09Registro en:
D'Angelo, Luisa; Cicotello, Joaquín; Zago, Miriam; Guglielmotti, Daniela Marta; Quiberoni, Andrea del Lujan; et al.; Leuconostoc strains isolated from dairy products: Response against food stress conditions; Academic Press Ltd - Elsevier Science Ltd; Food Microbiology; 66; 9-2017; 28-39
0740-0020
CONICET Digital
CONICET
Autor
D'Angelo, Luisa
Cicotello, Joaquín
Zago, Miriam
Guglielmotti, Daniela Marta
Quiberoni, Andrea del Lujan
Suárez, Viviana Beatriz
Resumen
A systematic study about the intrinsic resistance of 29 strains (26 autochthonous and 3 commercial ones), belonging to Leuconostoc genus, against diverse stress factors (thermal, acidic, alkaline, osmotic and oxidative) commonly present at industrial or conservation processes were evaluated. Exhaustive result processing was made by applying one-way ANOVA, Student's test (t), multivariate analysis by Principal Component Analysis (PCA) and Matrix Hierarchical Cluster Analysis. In addition, heat adaptation on 4 strains carefully selected based on previous data analysis was assayed. The strains revealed wide diversity of resistance to stress factors and, in general, a clear relationship between resistance and Leuconostoc species was established. In this sense, the highest resistance was shown by Leuconostoc lactis followed by Leuconostoc mesenteroides strains, while Leuconostoc pseudomesenteroides and Leuconostoc citreum strains revealed the lowest resistance to the stress factors applied. Heat adaptation improved thermal cell survival and resulted in a cross–resistance against the acidic factor. However, all adapted cells showed diminished their oxidative resistance. According to our knowledge, this is the first study regarding response of Leuconostoc strains against technological stress factors and could establish the basis for the selection of “more robust” strains and propose the possibility of improving their performance during industrial processes.