Environmental stress response in wine lactic acid bacteria:: Beyond Bacillus subtilis

被引:109
作者
Spano, G. [1 ]
Massa, S. [1 ]
机构
[1] Foggia Univ, Dept Food Sci, I-71100 Foggia, Italy
关键词
wine; abiotic stresses; sigma(B); CtsR; Lactobacillus plantarum; Oenococcus oeni;
D O I
10.1080/10408410600709800
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Lactic acid bacteria ( LAB) constitute a heterogeneous group of bacteria that are traditionally used to produce fermented foods. The industrialization of food transformations has increased the economical importance of LAB, as they play a crucial role in the development of the organoleptic and hygienic quality of fermented products. However, the strains selected for industrial purposes, should tolerate adverse conditions encountered in industrial processes, either during starter handling and storage ( freeze-drying, freezing, or spray-drying) or during food processing in which abiotic stresses such as heat, cold, acidity, and high concentration of NaCl or ethanol are common. Wine LAB have to deal with several stresses including an acidic pH, a high alcoholic content, non optimal growth temperatures, and growth-inhibitory compounds such as fatty acids and tannins, originated from yeast and bacteria metabolism. Wine LAB have developed several mechanisms to escape or to tolerate wine conditions. They carry out a malolactic fermentation in this stressful environment. In addition to the regulation of the expression of specific genes, bacteria have evolved adaptive networks to face the challenges of a changing environment and to survive under conditions of stress. The so called Global Regulatory Systems control the simultaneous expression of a large number of genes in response to a variety of environmental stress factors. CIRCE sequences able to bind the HrcA repressor, sigma(B) dependent promoters and CtsR regulatory elements have been observed in several genes identified from wine LAB. Improved knowledge of regulators and a better understanding of LAB stress responses could constitute a basis of comparison with the well known model microorganisms, Escherichia coli and Bacillus subtilis. Moreover, it can provide an important insight into improving current industrial starter strains.
引用
收藏
页码:77 / 86
页数:10
相关论文
共 83 条
[41]  
2557::AID-ELPS2557&gt
[42]  
3.0.CO
[43]  
2-B
[44]   A REVIEW: Arginine metabolism in wine lactic acid bacteria and its practical significance [J].
Liu, SQ ;
Pilone, GJ .
JOURNAL OF APPLIED MICROBIOLOGY, 1998, 84 (03) :315-327
[45]   Malolactic fermentation in wine - beyond deacidification [J].
Liu, SQ .
JOURNAL OF APPLIED MICROBIOLOGY, 2002, 92 (04) :589-601
[46]  
LIU SQ, 1995, AM J ENOL VITICULT, V46, P166
[47]   Lactic acid bacteria in the quality improvement and depreciation of wine [J].
Lonvaud-Funel, A .
ANTONIE VAN LEEUWENHOEK INTERNATIONAL JOURNAL OF GENERAL AND MOLECULAR MICROBIOLOGY, 1999, 76 (1-4) :317-331
[48]  
LONVAUDFUNEL A, 1995, FEMS MICROBIOL LETT, V126, P209, DOI 10.1016/0378-1097(95)00020-6
[49]   Growth and arginine metabolism of the wine lactic acid bacteria Lactobacillus buchneri and Oenococcus oeni at different pH values and arginine concentrations [J].
Mira de Orduña, R ;
Patchett, ML ;
Liu, SQ ;
Pilone, GJ .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2001, 67 (04) :1657-1662
[50]  
MISHRA P, 1993, STRESS TOLERANCE FUN