Acetic acid bacteria in traditional balsamic vinegar: Phenotypic traits relevant for starter cultures selection

被引:144
作者
Gullo, Maria [1 ]
Giudici, Paolo [1 ]
机构
[1] Univ Modena, Dept Agr Sci, I-42100 Reggio Emilia, Italy
关键词
acetic acid bacteria; selected starter culture; traditional balsamic vinegar;
D O I
10.1016/j.ijfoodmicro.2007.11.076
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
This review focuses on acetic acid bacteria in traditional balsamic vinegar process. Although several studies are available on acetic acid bacteria ecology, metabolism and nutritional requirements, their activity as well as their technological traits in homemade vinegars as traditional balsamic vinegar is not well known. The basic technology to oxidise cooked grape must to produce traditional balsamic vinegar is performed by the so called "seed-vinegar" that is a microbiologically undefined starter Culture obtained from spontaneous acetification of previous raw material. Selected starter cultures are the main technological improvement in order to innovate traditional balsamic vinegar production but until now they are rarely applied. To develop acetic acid bacteria starter cultures, selection criteria have to take in account composition of raw material, acetic acid bacteria metabolic activities, applied technology and desired characteristics of the final product. For traditional balsamic vinegar, significative phenotypical traits of acetic acid bacteria have been highlighted. Basic traits are: ethanol preferred and efficient oxidation, fast rate of acetic acid production, tolerance to high concentration of acetic acid, no overoxidation and low pH resistance. Specific traits are tolerance to high sugar concentration and to a wide temperature range. Gluconacetobacter europaeus and Acetobacter malorum strains can be evaluated to develop selected starter cultures since they show one or more suitable characters. (C) 2007 Elsevier B.V All rights reserved.
引用
收藏
页码:46 / 53
页数:8
相关论文
共 74 条
[1]   New developments in oxidative fermentation [J].
Adachi, O ;
Moonmangmee, D ;
Toyama, H ;
Yamada, M ;
Shinagawa, E ;
Matsushita, K .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2003, 60 (06) :643-653
[2]  
Adams MR, 1998, MICROBIOLOGY FERMENT, V1, P1, DOI DOI 10.1007/978-1-4613-0309-1_1
[3]   GLUCOSE-METABOLISM AND GLUCONIC ACID PRODUCTION BY ACETOBACTER-DIAZOTROPHICUS [J].
ATTWOOD, MM ;
VANDIJKEN, JP ;
PRONK, JT .
JOURNAL OF FERMENTATION AND BIOENGINEERING, 1991, 72 (02) :101-105
[4]   Rapid method for total, viable and non-viable acetic acid bacteria determination during acetification process [J].
Baena-Ruano, S ;
Jiménez-Ot, C ;
Santos-Dueñas, IM ;
Cantero-Moreno, D ;
Barja, F ;
García-García, I .
PROCESS BIOCHEMISTRY, 2006, 41 (05) :1160-1164
[5]   Spoilage of bottled red wine by acetic acid bacteria [J].
Bartowsky, EJ ;
Xia, D ;
Gibson, RL ;
Fleet, GH ;
Henschke, PA .
LETTERS IN APPLIED MICROBIOLOGY, 2003, 36 (05) :307-314
[6]   Acetobacter intermedius. sp. nov. [J].
Boesch, C ;
Trcek, J ;
Sievers, M ;
Teuber, M .
SYSTEMATIC AND APPLIED MICROBIOLOGY, 1998, 21 (02) :220-229
[7]  
BUCKENHUSKES HJ, 1993, FEMS MICROBIOL REV, V12, P253, DOI 10.1016/0168-6445(93)90067-J
[8]  
Cleenwerck I, 2002, INT J SYST EVOL MICR, V52, P1551, DOI 10.1099/00207713-52-5-1551
[9]  
De Ley J, 1984, BERGEYS MANUAL SYSTE, V1, P267
[10]   Modelling the kinetics of growth of Acetobacter aceti in discontinuous culture:: influence of the temperature of operation [J].
de Ory, I ;
Romero, LE ;
Cantero, D .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 1998, 49 (02) :189-193