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1.
Flavour of type II sourdoughs is influenced by the ingredients, processing conditions, and starter culture composition. It is, however, not fully clear to what extent different sourdough lactic acid bacteria (LAB) contribute to flavour. Therefore, two types of flour (rye and wheat) and different LAB starter culture strains were used to prepare sourdoughs, thereby leaving the yeast microbiota uncontrolled. All LAB starter culture strains tested were shown to be prevalent and to acidify the flour/water mixture to pH values between 3.1 and 3.9 after 24 h of fermentation. Multiple aldehydes, alcohols, ketones, and carboxylic acids were produced by the sourdough-associated microbiota throughout the fermentation period. Based on the organoleptic evaluation of breads produced with these sourdoughs, five LAB strains were selected to perform prolonged wheat and rye fermentations as to their capacity to result in an acidic (Lactobacillus fermentum IMDO 130101, Lactobacillus plantarum IMDO 130201, and Lactobacillus crustorum LMG 23699), buttermilk-like (Lactobacillus amylovorus DCE 471), or fruity flavour (Lactobacillus sakei CG1). Upon prolonged fermentation, higher metabolite concentrations were produced. For instance, L. sakei CG1 produced the highest amounts of 3-methyl-1-butanol, which was further converted into 3-methylbutyl acetate. The latter compound resulted in a fruity banana flavour after 48 h of fermentation, probably due to yeast interference. Rye fermentations resulted in sourdoughs richer in volatiles than wheat, including 3-methyl-1-butanol, 2-phenylethanol, and ethyl acetate. 相似文献
2.
Carlo Giuseppe Rizzello Maria De Angelis Rossana Coda Marco Gobbetti 《European Food Research and Technology》2006,223(3):405-411
This work was aimed at showing the capacity of selected sourdough lactic acid bacteria to hydrolyze wheat and rye allergens. Hydrolysis was investigated after wheat sourdough fermentation and after treatment of wheat and rye sourdough breads with pepsin, trypsin and pancreatin, which mimicked the digestive process. As shown by immunoblotting with sera from allergic patients, wheat sourdough fermentation caused the disappearance of some IgE-binding proteins (albumins/globulins and gliadins mainly) with respect to the chemically acidified dough used as the control. The IgE-binding protein profile of wheat and rye sourdough breads differed from those of baker's yeast breads. The signals of the IgE-binding proteins contained in the sourdough breads disappeared after in vitro digestion with pepsin, trypsin and pancreatin. The same effect by digestive enzymes was not found for baker's yeast breads which showed persistent IgE-binding proteins. As shown by ELISA inhibition assays, the presence of IgE-binding low molecular weight proteins/peptides in sourdough breads significantly decreased with respect to baker's yeast breads. Proteolytic activity by selected sourdough lactic acid bacteria may have an importance during food processing to produce pre-digested wheat and rye dough which contains IgE-binding proteins degradable by digestive enzymes. 相似文献
3.
Antonio Alfonzo Giusi VentimigliaOnofrio Corona Rosalia Di GerlandoRaimondo Gaglio Nicola FrancescaGiancarlo Moschetti Luca Settanni 《Food microbiology》2013
Lactic acid bacteria (LAB) were analysed from wheat flours used in traditional bread making throughout Sicily (southern Italy). Plate counts, carried out in three different media commonly used to detect food and sourdough LAB, revealed a maximal LAB concentration of approximately 4.75 Log CFU g−1. Colonies representing various morphological appearances were isolated and differentiated based on phenotypic characteristics and genetic analysis by randomly amplified polymorphic DNA (RAPD)-PCR. Fifty unique strains were identified. Analysis by 16S rRNA gene sequencing grouped the strains into 11 LAB species, which belonged to six genera: Enterococcus, Lactobacillus, Lactococcus, Leuconostoc, Pediococcus and Weissella. Weissella cibaria, Lactobacillus plantarum, Leuconostoc pseudomesenteroides and Leuconostoc citreum were the most prevalent species. The strains were not geographically related. Denaturing gradient gel electrophoresis (DGGE) analysis of total DNA of flour was used to provide a more complete understanding of the LAB population; it confirmed the presence of species identified with the culture-dependent approach, but did not reveal the presence of any additional LAB species. Finally, the technological characteristics (acidifying capacity, antimicrobial production, proteolytic activity, organic acid, and volatile organic compound generation) of the 50 LAB strains were investigated. Eleven strains were selected for future in situ applications. 相似文献
4.
制备冷冻干燥乳酸菌的相关影响因素的研究进展 总被引:1,自引:0,他引:1
从技术和经济角度出发,让乳酸菌在干燥及其后续的贮藏过程中,尽可能多的存活是非常重要的。这篇文章主要综述与冷冻干燥乳酸菌制备的几个相关因素。 相似文献
5.
Biodiversity of lactic acid bacteria and yeasts in spontaneously-fermented buckwheat and teff sourdoughs 总被引:2,自引:0,他引:2
In this study, four different laboratory scale gluten-free (GF) sourdoughs were developed from buckwheat or teff flours. The fermentations were initiated by the spontaneous biota of the flours and developed under two technological conditions (A and B). Sourdoughs were propagated by continuous back-slopping until the stability was reached. The composition of the stable biota occurring in each sourdough was assessed using both culture-dependent and -independent techniques. Overall, a broad spectrum of lactic acid bacteria (LAB) and yeasts species, belonging mainly to the genera Lactobacillus, Pediococcus, Leuconostoc, Kazachstania and Candida, were identified in the stable sourdoughs. Buckwheat and teff sourdoughs were dominated mainly by obligate or facultative heterofermentative LAB, which are commonly associated with traditional wheat or rye sourdoughs. However, the spontaneous fermentation of the GF flours resulted also in the selection of species which are not consider endemic to traditional sourdoughs, i.e. Pediococcus pentosaceus, Leuconostoc holzapfelii, Lactobacillus gallinarum, Lactobacillus vaginalis, Lactobacillus sakei, Lactobacillus graminis and Weissella cibaria. In general, the composition of the stable biota was strongly affected by the fermentation conditions, whilst Lactobacillus plantarum dominated in all buckwheat sourdoughs. Lactobacillus pontis is described for the first time as dominant species in teff sourdough. Among yeasts, Saccharomyces cerevisiae and Candida glabrata dominated teff sourdoughs, whereas the solely Kazachstania barnetti was isolated in buckwheat sourdough developed under condition A. This study allowed the identification and isolation of LAB and yeasts species which are highly competitive during fermentation of buckwheat or teff flours. Representatives of these species can be selected as starters for the production of sourdough destined to GF bread production. 相似文献
6.
It has been proved in previous studies that fish can be fermented by lactic acid bacteria (LAB). Added glucose must be at
concentrations of almost 1% to reduce the pH to <5.3, a level which corresponds to the safe pH values for meat products. Because
some LAB and some contaminating microbes form biogenic amines, this study was conducted to examine the possible formation
of biogenic amines during the fish fermentation process. Other parameters under study were sensory quality, pH value, titrated
acid content, weight loss, a
w value, redox potential and microbiological counts. Three groups of fish (rainbow trout) with three different LAB inocula
and a group without any inoculum were made. The fermentation of the products made with LAB succeeded. The products were sensorially
accepted, the inoculated LAB grew to >8 log cfu/g, the pH reduced to 5.0–5.3 and a
w to 0.927 and the pseudomonads, the predominant flora of fish raw material, disappeared. The fish raw material and the products
contained low amounts of biogenic amines with one exception: cadaverine, histamine and tyramine increased in all product groups
in one experimental series (II) out of three. The highest concentrations of these amines were in the control products without
any LAB inoculation. The LAB used and the contaminants isolated from the products were unable to produce cadaverine, histamine
or tyramine. The appearance of these amines could therefore be caused by the non-isolated contaminants of fish raw material.
Received: 18 June 1999 相似文献
7.
Spanish cheese screening and selection of lactic acid bacteria with high gamma-aminobutyric acid production 总被引:1,自引:0,他引:1
Gamma-aminobutyric acid (GABA) is a non-protein four-carbon amino acid which is considered a bioactive component known for its physiological functions, including a regulator of blood pressure, neurotransmitter, diuretic and anti-stress effects. Its use in foods might confer health benefits. Microorganisms such as yeast, fungi or bacteria can produce GABA naturally. Among them, the lactic acid bacteria are being studied for the potential development of fermented foods because their physiological activities and their designation of generally recognized as safe (GRAS). The objective of this study was to evaluate the GABA-production capacity in a whole wheat flour medium of lactic acid bacteria strains that showed a high conversion of glutamic acid to GABA in a screening conducted in 58 Spanish artisanal cheeses. Synthesis of GABA by these strains in a non-optimized whole wheat flour in water solution (1:5) was quantified by High-Performance Liquid Chromatography. The 4 strains showing the highest GABA production were genotypically and phenotypically characterized. Results indicated an interesting fermentative variability between strains. The addition of these isolated lactic acid strains in fermented food products could allow a potentially functional food for regulating hypertension. 相似文献
8.
Whey, a by-product of the cheese industry usually disposed as waste, is a source of biological and functional valuable proteins. The aim of this work was to evaluate the potentiality of three lactic acid bacteria strains to design a starter culture for developing functional whey-based drinks. Fermentations were performed at 37 and 42 degrees C for 24h in reconstituted whey powder (RW). Carbohydrates, organic acids and amino acids concentrations during fermentation were evaluated by RP-HPLC. Proteolytic activity was measured by the o-phthaldialdehyde test and hydrolysis of whey proteins was analyzed by Tricine SDS-PAGE. The studied strains grew well (2-3log cfu/ml) independently of the temperature used. Streptococcus thermophilus CRL 804 consumed 12% of the initial lactose concentration and produced the highest amount of lactic acid (45 mmol/l) at 24h. Lactobacillus delbrueckii subsp. bulgaricus CRL 454 was the most proteolytic (91 microg Leu/ml) strain and released the branched chain amino acids Leu and Val. In contrast, Lactobacillus acidophilus CRL 636 and S. thermophilus CRL 804 consumed most of the amino acids present in whey. The studied strains were able to degrade the major whey proteins, alpha-lactalbumin being degraded in a greater extent (2.2-3.4-fold) than beta-lactoglobulin. Two starter cultures were evaluated for their metabolic and proteolytic activities in RW. Both cultures acidified and reduced the lactose content in whey in a greater extent than the strains alone. The amino acid release was higher (86 microg/ml) for the starter SLb (strains CRL 804+CRL 454) than for SLa (strains CRL 804+CRL 636, 37 microg/ml). Regarding alpha-lactalbumin and beta-lactoglobulin degradation, no differences were observed as compared to the values obtained with the single cultures. The starter culture SLb showed high potential to be used for developing fermented whey-based beverages. 相似文献
9.
Herv Robert Valrie Gabriel Catherine Fontagn-Faucher 《International journal of food microbiology》2009,135(1):53-59
The lactic acid microflora of nine traditional wheat sourdoughs from the Midi-Pyrénées area (South western France) was previously isolated and preliminary characterized using conventional morphological and biochemical analysis. However, such phenotypic methods alone are not always reliable and have a low taxonomic resolution for identification of lactic acid bacteria species. In the present study, a total of 290 LAB isolates were identified by PCR amplification using different sets of specific primers in order to provide a thorough characterization of the lactic flora from these traditional French sourdoughs. Overall, the LAB isolates belonged to 6 genera: Lactobacillus (39%, 8 species), Pediococcus (38%, 1 species), Leuconostoc (17%, 2 species), Weissella (4%, 2 species), Lactococcus (1%, 1 species) and Enterococcus (< 1%, 1 species) and 15 different species were detected: L. plantarum, L. curvatus, L. paracasei, L. sanfranciscensis, L. pentosus, L. paraplantarum, L. sakei, L. brevis, P. pentosaceus, L. mesenteroides, L. citreum, W. cibaria, W. confusa, L. lactis and E. hirae. Facultative heterofermentative LAB represent more than 76% of the total isolates, the main species isolated herein correspond to L. plantarum and P. pentosaceus. Obligate heterofermentative lactobacilli (L. sanfranciscencis, L. brevis) represent less than 3% of the total isolates whereas Leuconostoc and Weissella species represent 21% of the total isolates and have been detected in eight of the nine samples. Detection of some LAB species was preferentially observed depending on the isolation culture medium. The number of different species within a sourdough varies from 3 to 7 and original associations of hetero- and homofermentative LAB species have been revealed. Results from this study clearly confirm the diversity encountered in the microbial community of traditional sourdough and highlight the importance of LAB cocci in the sourdough ecosystem, along with lactobacilli. 相似文献
10.
11.
12.
In this research, the effects of lactic acid bacteria starter and hop additives, similar to yeast, on the quality of the
resulting dough and bread, especially the development of staling, were investigated. In the experiments, a mixed culture containing
Lactobacillus plantarum and L. fermentum was inoculated at the levels of 2% and 4% depending on the flour quantity. Hop additives were used at the levels of 0.025%
and 0.05%. The effects of type-1, type-3 and type-5 flours were investigated with respect to their chemical composition, physical
properties and bread experiment at three different periods, i. e. December 1993, March and June 1994. According to the results
obtained, the best values for all three types of flours were found to occur in the second period, i. e. March 1994, whereas
the lowest values were observed at the end of the third term. Almost all additives had an effect on dough and bread properties,
pH and acidity development and, moreover, on the development of staling. The combined application of 0.05% hop and lactic
acid bacteria starters at the levels of 2% and 4% was the most effective at delaying staling.
Received: 10 December 1996 相似文献
13.
从鱼肉丸中分离筛选到1株具有抑菌活性的乳酸菌菌株Y153,对单核细胞增生李斯特菌ATCC54003的生长具有良好的抑制作用。16SrRNA序列同源性分析鉴定乳酸菌Y153为乳酸链球菌属(Streptococcus)。在排除有机酸、过氧化氢的干扰后,确定该抑菌物质为蛋白类物质,即细菌素,命名为细菌素Y153。理化性质分析表明,细菌素Y153具有较好的热稳定性、酸碱稳定性可被人体内蛋白酶降解的特性。由此对乳酸链球菌所产细菌素Y153有了初步的研究,为开发天然的食品防腐剂奠定理论基础。 相似文献
14.
In this research, the effects of lactic acid bacteria starter and hop additives, similar to yeast, on the quality of the
resulting dough and bread, especially the development of staling, were investigated. In the experiments, a mixed culture containing
Lactobacillus plantarum and L. fermentum was inoculated at the levels of 2% and 4% depending on the flour quantity. Hop additives were used at the levels of 0.025%
and 0.05%. The effects of type-1, type-3 and type-5 flours were investigated with respect to their chemical composition, physical
properties and bread experiment at three different periods, i. e. December 1993, March and June 1994. According to the results
obtained, the best values for all three types of flours were found to occur in the second period, i. e. March 1994, whereas
the lowest values were observed at the end of the third term. Almost all additives had an effect on dough and bread properties,
pH and acidity development and, moreover, on the development of staling. The combined application of 0.05% hop and lactic
acid bacteria starters at the levels of 2% and 4% was the most effective at delaying staling.
Received: 10 December 1996 相似文献
15.
Microbiological study of lactic acid bacteria in kefir grains by culture-dependent and culture-independent methods 总被引:4,自引:0,他引:4
Lactic acid bacteria (LAB) in different original kefir grains were first assessed using polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) by a culture-dependent way, and were further confirmed by DNA sequencing techniques. Results indicated that a combined method of cultivation with PCR-DGGE and subsequent DNA sequencing could successfully identify four LAB strains from three kefir grains from Taiwan (named Hsinchu, Mongolia and Ilan). Lactobacillus kefiri accounted, in the three kefir grains, for at least half of the isolated colonies while Lb. kefiranofaciens was the second most frequently isolated species. Leuconostoc mesenteroides was less frequently found but still in the three kefir grains conversely to Lactococcus lactis which based on culture-dependent isolation was only found in two of the kefir grains. It was interesting to find that all three kefir grains contain similar LAB species. Furthermore, the DGGE as a culture-independent method was also applied to detect the LAB strains. Results indicated that Lb. kefiranofaciens was found in all three kefir grains, whereas Lb. kefiri was only observed in Hsinchu kefir grain and Lc. lactis was found in both Mongolia and Ilan samples. Two additional strains, Pseudomonas spp. and E. coli, were also detected in kefir grains. 相似文献
16.
17.
乳酸菌发酵代谢合成叶酸的影响因素 总被引:1,自引:0,他引:1
对嗜酸乳杆菌以及乳酸乳球菌发酵合成叶酸的影响因素进行了研究。结果表明,乳酸菌代谢合成叶酸的产率为17~100μg/L,菌种、培养时间、pH值、对氨基苯甲酸(PABA)质量浓度会影响乳酸菌合成叶酸的产量。与乳酸乳球菌乳酸亚种相比,嗜酸乳杆菌CH-2生成的叶酸产量要高。不同菌株生成叶酸的能力与pH值有关,嗜酸乳杆菌在pH值为4.2叶酸产率明显下降,乳酸乳球菌乳酸亚种产叶酸的能力则不受pH值影响。添加PABA可以显著提高乳酸菌的叶酸产率。选择适宜的乳酸菌菌株,优化发酵工艺参数可以提高乳及相关食品中叶酸的质量浓度,达到生物方式强化叶酸的效果。 相似文献
19.
Stephanie A. Vogelmann Michael Seitter Ulrike Singer Markus J. Brandt Christian Hertel 《International journal of food microbiology》2009,130(3):205-212
The adaptability of lactic acid bacteria (LAB) and yeasts to sourdoughs prepared from cereals, pseudocereals and cassava was investigated using PCR-DGGE and bacteriological culture combined with rRNA gene sequence analysis. Sourdoughs were prepared either from flours of the cereals wheat, rye, oat, barley, rice, maize, and millet, or from the pseudocereals amaranth, quinoa, and buckwheat, or from cassava, using a starter consisting of various species of LAB and yeasts. Doughs were propagated until a stable microbiota was established. The dominant LAB and yeast species were Lactobacillus fermentum, Lactobacillus helveticus, Lactobacillus paralimentarius, Lactobacillus plantarum, Lactobacillus pontis, Lactobacillus spicheri, Issatchenkia orientalis and Saccharomyces cerevisiae. The proportion of the species within the microbiota varied. L. paralimentarius dominated in the pseudocereal sourdoughs, L. fermentum, L. plantarum and L. spicheri in the cassava sourdough, and L. fermentum, L. helveticus and L. pontis in the cereal sourdoughs. S. cerevisiae constituted the dominating yeast, except for quinoa sourdough, where I. orientalis also reached similar counts, and buckwheat and oat sourdoughs, where no yeasts could be detected. To assess the usefulness of competitive LAB and yeasts as starters, the fermentations were repeated using flours from rice, maize, millet and the pseudocereals, and by starting the dough fermentation with selected dominant strains. At the end of fermentation, most of starter strains belonged to the dominating microbiota. For the rice, millet and quinoa sourdoughs the species composition was similar to that of the prior fermentation, whereas in the other sourdoughs, the composition differed. 相似文献
20.
大豆蛋白水解物促进乳酸发酵的作用 总被引:9,自引:0,他引:9
通过研究添加大豆蛋白水解物对保加利亚乳杆菌培养过程中体系的酸度、粘度、细菌生长量的影响,验证了大豆蛋白水解产物对保加利亚乳杆菌增殖的促进作用。 相似文献