• Title/Summary/Keyword: Lactobacillus confusa

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Effect of Salt Type and Concentration on the Growth of Lactic Acid Bacteria Isolated from Kimchi (소금의 종류와 농도가 배추김치에서 분리한 유산균의 생육에 미치는 영향)

  • Hahn, Young-Sook
    • Korean Journal of Food Science and Technology
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    • v.35 no.4
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    • pp.743-747
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    • 2003
  • Tests show that the growth of lactic bacteria in kimchi varies according to the type and concentration of salt used. Weissella confusa, the early stage bacteria in kimchi fermentation, increased sharply after 5 hr of induction with 3% light salt and refined salt. However, the induction period lengthened to 12 hr with 3% sea salt and bamboo salt. Lactobacillus delbrueckii ss lactis and L. pentosus which grow in the middle stage of fermentation, and L. hamsteri, which grows at the end stage of fermentation, were found after 12 hr of induction with 3% salt of all kinds. When 5% light salt was added to the culture medium, the induction period of bacteria other than W. confusa lengthens to 12 hr. The trend is similar for sea salt, bamboo salt, and refined salt, with a higher NaCl concentration resulting in less growth. W. confusa showed salt tolerance, but L. hamsteri was affected by the type and concentration of salt. With 5% sea salt, bamboo salt, and refined salt, the growth of bacteria was inhibited by up to 24 hr.

Cytotoxic, Antioxidative, and ACE Inhibiting Activities of Dolsan Leaf Mustard Juice (DLMJ) Treated with Lactic Acid Bacteria

  • Yoo Eun-Jeong;Lim Hyun-Soo;Park Kyung-Ok;Choi Myeong-Rak
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.10 no.1
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    • pp.60-66
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    • 2005
  • This study was performed to know whether there is any change of physiological activity in DLMJ which is inoculated by lactic acid bacteria. Lactic acid bacteria were isolated from Dolsan leaf mustard Kimchi (DLMK) at $20^{\circ}C$. In the optimum ripening period, the population of Leuconostoc and Lactobacilli in the DLMK were found to be high. The Leuconostoc, Lactobacilli and Lactococci strains were identified as Leuconostoc mesenteroides, Leuconostoc gelidum, Weissella confusa, Lactobacillus plantarum, Lactobacillus raffinolactis, Lactococcus lactis and Weissella confusa using the Biolog system. The most predominant strain which was isolated from DLMK was Weissella confusa. As the results of the phylogenetic analysis using 16s rDNA sequence, the Weissella confusa turned out to be Weissella kimchii, with 99.0% similarity. To investigated the change of physiological activity in DLMJ by lactic acid bacteria, 7 predominant strains inoculated to DLMJ (Dolsan Leaf Mustard Juice). The cytotoxicity was found to be under $19.55\%$ all cases. Also, the antioxidative activity of the DLMJ treated with lactic acid bacteria was very low, which might have been due to the reduced antioxidative phytochemicals during the preparation of the sterile sample. The ACE inhibiting activity of DLMJ by inoculation with Weissella kimchii was shown to be the highest ($94.0\%$). This could be that the degradation of sulfur containing materials in DLMJ by Weissella kimchii gave rise to ACE inhibiting activity.

Origin of lactic acid bacteria in mulkimchi fermentation

  • Hwang, Chung Eun;Haque, Md. Azizul;Hong, Su Young;Kim, Su Cheol;Cho, Kye Man
    • Journal of Applied Biological Chemistry
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    • v.62 no.4
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    • pp.441-446
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    • 2019
  • The assortment of endophytic lactic acid bacteria (LAB) in kimchi derives from its raw vegetables, which include Chinese cabbage, radish, welsh onion, onion, garlic, red pepper, and ginger. These vegetables were examined during mulkimchi fermentation using gene-specific multiplex polymerase chain reaction and 16S ribosomal RNA sequence analysis. Sixteen species from five LAB genera (Leuconostoc, Lactobacillus, Lactococcus, Pediococcus, and Weissella) appeared in the raw kimchi materials. Interestingly, nine LAB species were identified in mulkimchi on fermentation day 0 as follows: Leuconostoc carnosum, Leuconostoc citreum, Leuconostoc gelidum, Leuconostoc inhae, Leuconostoc mesenteroides, Lactobacillus plantarum, Lactobacillus sakei, Lactococcus lactis, and Weissella confusa. Seven additional LAB species were present in mulkimchi at fermentation day 9 as follows: Leuconostoc gasicomitatum, Leuconostoc kimchii, Lactobacillus brevis, Lactobacillus curvatus, Lactobacillus pentosus, Pediococcus pentosaceus, and Weissella koreensis. These species corresponded completely with the LAB in kimchi vegetables. Wei. confusa was the predominant LAB during early fermentation (pH 6.20 to 4.98 and acidity 0.20 to 0.64%), while Lac. sakei, Lac. plantarum, and Wei. koreensis became dominant later in fermentation (pH 4.98 to 3.88 and acidity 0.64 to 1.26%). These results collectively demonstrate that the LAB involved in mulkimchi fermentation originates from the raw vegetables examined.

Effect of Liquid Fertilizer Containing medium of Lactobacillus confusa and Pichia anomala on Growth in Creeping Bentgrass (유산균(Lactobacillus confusa)과 효모균(Pichia anomala) 배양액 함유 액비의 시용이 크리핑 벤트그래스의 생육에 미치는 영향)

  • Kim, Young-Sun;Ham, Suon-Kyu;Kim, Tack-Soo;Jeon, Hyun-Suk
    • Asian Journal of Turfgrass Science
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    • v.22 no.2
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    • pp.185-196
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    • 2008
  • This Study was conducted to evaluate the effect of liquid fertilizer containing medium of on growth of shoot and root in creeping bentgrass (Agrostis palustris Huds. cv. Pennlixs). According to application method of liquid fertilizer, the experiment plot was designed as follows; NF : non-fertilizer; CF : compound fertilizer(21-17-17) only; T500, T300, T100 : compound fertilizer +liquid fertilizer solution diluted 500, 300, 100 folds, respective; L500 : only liquid fertilizer solution which contained the medium of Lactobacillus confusa and Pichia anomala diluted 500 folds. The every treatments was arranged by a completely randomized complete block designs with three replications. The order of turf qualities like leaf color index and chlorophyll content in treatments showed T500 T300 T100 $\geq$ CF > NF. In treatment applied with compound fertilizer, the dry weight of shoot increased by about 13% in T500, T300 and T100 than CF, and that of root about 25% in just T300. Dry weight of shoot and root increased by 88% and 44% in L500 than NF, respectively. As compared with CF, T/R ratio in T500, T300 and T100 increased by 20%, 11% and 21%, respectively and root length 7%, 8% and 3%. In comparison with NF, T/R ratio and root length in L500 increased by 39% and 74%. These results suggested that the application of liquid fertilizer containing medium of Lactobacillus confusa and Pichia anomala induced the development of turf quality and growth by promoting root growth in creeping bentgrass.

Isolation of Leuconostoc and Weissella Species Inhibiting the Growth of Lactobacillus sakei from Kimchi (김치로부터 Lactobacillus sakei 생육저해 Leuconostoc 및 Weissella 속 균주의 분리)

  • Lee, Kwang-Hee;Lee, Jong-Hoon
    • Microbiology and Biotechnology Letters
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    • v.39 no.2
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    • pp.175-181
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    • 2011
  • Kimchi is a group of traditional fermented vegetable foods in Korea and known to be the product of a natural mixed-fermentation process carried out principally by lactic acid bacteria (LAB). According to microbial results based on conventional identification, Leuconostoc mesenteroides and Lactobacillus plantarum were considered to be responsible for the good taste and over-ripening of kimchi, respectively. However, with the application of phylogenetic identification, based on 16S ribosomal RNA gene similarities, a variety of Leuconostoc and Lactobacillus species not detected in the previous studies have been isolated, together with a species in the genus Weissella. Additionally, Lactobacillus sakei has been accepted as the most populous LAB in over-ripened kimchi. In this study, Leuconostoc and Weissella species inhibiting the growth of Lb. sakei were isolated from kimchi for future applications to do with kimchi fermentation. From 25 kimchi samples, 378 strains in the genera Leuconostoc and Weissella were isolated and 68 strains identified as Lc. mesenteroides, Lc. citreum, Lc. lactis, W. cibaria, W. confusa, and W. paramesenteroides exhibited growth inhibition against Lb. sakei. Most of the strains also had antagonistic activities against Lb. brevis, Lb. curvatus, Lb. paraplantarum, Lb. pentosus, and Lb. plantarum. Their antagonistic activities against Lb. sakei were more remarkable at lower temperatures of incubation.

Effect of Liquid Fertilizer Contained Fermentation of Lactobacillus confusa and Pichia anomala on Growth of Creeping Bentgrass (A. palustris Huds. CV. Pennlixs) (유산군(Lactobacillus confusa)과 효모균(Pichia anomala) 발효 액체비료의 시용이 크리핑벤트그래스(A. palustris Huds. CV. Pennlixs)의 생육에 미치는 영향)

  • Kim, Young-Sun;Ham, Suon-Kyu;Kim, Tack-Soo;Jeong, Hyun-Suk
    • Asian Journal of Turfgrass Science
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    • v.22 no.1
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    • pp.49-56
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    • 2008
  • This study was conducted to evaluate effect of liquid fertilizer contained medium of Lactobacillus confusa and Pichia anoala on growth of creeping bentgrass(Agrostis palustris Huds. CV. Pennlixs). By application method of liquid fertilizer, the experiment plot was designed as following; NF was non-fertilized treatment, control was applied with compound fertilizer and treatment 1(T-1), treatment 2(T-2) and treatment 3(T-3) were applied with compound fertilizer and liquid fertilizer solution diluted 500, 300 and 100 folds, respectively. The every treatments was arranged a randomized complete block with three replications. Compared with NF, leaf color index of control, T-1, T-2 and T-3 in creeping bentgrass was increased 7.4%, 7.5%, 77% and 7.2%, respectively and chlorophyll content of T-1, T-2 and T-3 in creeping bentgrass was increased 45.7%, 45.6%, 52.1% and 49.6%, respectively, and T-2 and T-3 was increased 4.4% and 2.7% more than control. Dry weight of T-1, T-2 and T-3 was increased 2.7%, 13.8% and 13.9% more than control, when compared to control. These results were found that turfgrass qualities and growth was improved in treatment applied to compound fertilizer and solution of liquid fertilizer diluted 300 folds.

Bacterial Diversity in the Initial Fermentation Stage of Korean and Chinese Kimchi (발효 초기 한국산 및 중국산 김치의 Bacteria 다양성 평가)

  • Lee, Myeong-Jae;Cho, Kyeung-Hee;Han, Eung-Soo;Lee, Jong-Hoon
    • Microbiology and Biotechnology Letters
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    • v.38 no.2
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    • pp.207-215
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    • 2010
  • The purpose of this research is to draw the bacterial community difference between Korean and Chinese kimchi for future use in the confirmation of kimchi origin. Initial fermentation stage kimchi samples (above pH 5) were used for the analysis of bacterial diversity. From 26 Korean kimchi samples, 1,017 strains in the 45 genera and from 22 Chinese kimchi samples, 842 strains in the 54 genera were isolated with use of marine medium, nutrient medium, succinate minimal medium (SMM), leuconostocs selective medium (LUSM) agars. In the order of isolated numbers, Bacillus, Weissella, Leuconostoc, Pseudomonas, and Lactobacillus genera and Bacillus, Weissella, Lactobacillus, Pseudomonas, Serratia, and Enterobacter genera were predominated in Korean and Chines kimchi, respectively. Among the isolated lactic acid bacteria, Weissella spp. were isolated most dominantly owing to the biased growth of Weissella spp. on LUSM agar. Species in the genera Leuconostoc and Lactobacillus were the next frequently isolated LAB from Korean and Chinese kimchi, respectively. Weissella confusa was isolated only from Korean kimchi and W. soli and Serratia proteamculans were isolated only from Chinese kimchi. They have a possibility to be used as target bacteria to differentiate Korean kimchi from Chinese kimchi.

In Vitro Evaluation of Cholesterol Reduction by Lactic Acid Bacteria Extracted from Kimchi (김치 젖산균의 In Vitro에서 콜레스테롤 저하 효과)

  • Kim, Gum-Ran;Kim, Mi-Jung
    • Culinary science and hospitality research
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    • v.12 no.4 s.31
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    • pp.259-268
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    • 2006
  • It has been recognized that high level of serum cholesterol is a risk factor associated with atherosclerosis and coronary heart disease. Ingestion of probiotic lactic acid bacteria(LAB) in Kimchi would possibly be a method to decrease serum cholesterol in humans, as it was reported. In vitro culture experiment evaluated the effects of LAB(Leu. citreum, Lac. plantarum, Leu. mesenteroides, Weissella kimchii, W. confusa) extracted from Kimchi on cholesterol reduction in the MRS broth containing soluble cholesterol. Experimental strain of Leu. citreum and Leu. mesenteroides dominated in the first phase of Kimchi fermentation reduced the level of cholesterol 55.64% and 56.37%, respectively. Also, cholesterol lowering-effect was observed in over 55% of Lac. plantarum, W. kimchii and W. confusa strains, which were dominated in the end phase of fermentation. Our results suggest that selected probiotic LAB from Kimchi have an excellent cholesterol reducing effect in in vitro culture.

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Effects of Ensiling Fermentation and Aerobic Deterioration on the Bacterial Community in Italian Ryegrass, Guinea Grass, and Whole-crop Maize Silages Stored at High Moisture Content

  • Li, Yanbing;Nishino, Naoki
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.9
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    • pp.1304-1312
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    • 2013
  • The effects of storage period and aerobic deterioration on the bacterial community were examined in Italian ryegrass (IR), guinea grass (GG), and whole-crop maize (WM) silages. Direct-cut forages were stored in a laboratory silo for 3, 7, 14, 28, 56, and 120 d without any additives; live counts, content of fermentation products, and characteristics of the bacterial community were determined. 2,3-Butanediol, acetic acid, and lactic acid were the dominant fermentation products in the IR, GG, and WM silages, respectively. The acetic acid content increased as a result of prolonged ensiling, regardless of the type of silage crop, and the changes were distinctively visible from the beginning of GG ensiling. Pantoea agglomerans, Rahnella aquatilis, and Enterobacter sp. were the major bacteria in the IR silage, indicating that alcoholic fermentation may be due to the activity of enterobacteria. Staphylococcus sciuri and Bacillus pumilus were detected when IR silage was spoiled, whereas between aerobically stable and unstable silages, no differences were seen in the bacterial community at silo opening. Lactococcus lactis was a representative bacterium, although acetic acid was the major fermentation product in the GG silage. Lactobacillus plantarum, Lactobacillus brevis, and Morganella morganii were suggested to be associated with the increase in acetic acid due to prolonged storage. Enterobacter cloacae appeared when the GG silage was spoiled. In the WM silage, no distinctive changes due to prolonged ensiling were seen in the bacterial community. Throughout the ensiling, Weissella paramesenteroides, Weissella confusa, and Klebsiella pneumoniae were present in addition to L. plantarum, L. brevis, and L. lactis. Upon deterioration, Acetobacter pasteurianus, Klebsiella variicola, Enterobacter hormaechei, and Bacillus gibsonii were detected. These results demonstrate the diverse bacterial community that evolves during ensiling and aerobic spoilage of IR, GG, and WM silages.

A Comparative Study between Microbial Fermentation and Non-Fermentation on Biological Activities of Medicinal Plants, with Emphasis on Enteric Methane Reduction (천연 약용식물의 미생물 발효를 통한 장내 메탄 생성 억제 효과 비교 연구)

  • Lee, A-Leum;Park, Hae-Ryoung;Kim, Mi-So;Cho, Sangbuem;Choi, Nag-Jin
    • Korean Journal of Organic Agriculture
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    • v.22 no.4
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    • pp.801-813
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    • 2014
  • A study was conducted to improve the biological activity of two medicinal plants, Eucommia ulmoides Oliv. and Glycyrrhiza uralensis, by fermentation. The biological activity was assessed by determining antibacterial, antioxidant and antimethanogenic properties. Fermentation was achieved by adding the plant materials in MRS broth at 10% (w/v) and different starter cultures at 1% (v/v). Condition for fermentation were incubation temperature of $30^{\circ}C$ and agitation at 150 rpm for 48 h. Six starter cultures, Weissella confusa NJ28 (Genbank accession number KJ914897), Weissella cibaria NJ33 (Genbank accession number KJ914898), Lactobacillus curvatus NJ40 (Genbank accession number KJ914899), Lactobacillus brevis NJ42 (Genbank accession number KJ914900), Lactobacillus plantarum NJ45 (Genbank accession number KJ914901) and Lactobacillus sakei NJ48 (Genbank accession number KJ914902) were used. Antibacterial activity was observed in L. curvatus NJ40 and L. plantarum NJ45 only as opposed to other treatments, including the non-fermented groups, which showed no antibacterial activity. Both plants showed antioxidant activity, although E. ulmoides Oliv. had lower activity than G. uralensis. However, fermentation by all strains significantly improved (p<0.05), antioxidant activity in both plants compared to non-fermented treatment. Six treatments were based on antibacterial activity results, selected for in vitro rumen fermentation; 1) non-fermented E. ulmoides, 2) fermented E. ulmoides NJ40, 3) fermented E. ulmoides NJ45, 4) non-fermented G. uralensis, 5) fermented G. uralensis NJ40, 6) fermented G. uralensis NJ45. A negative control was also added, making a total of 7 treatments for the in vitro experiment. Medicinal plant-based treatments significantly improved (p<0.05) total volatile fatty acid (VFA) concentration. Significant methane reduction per mol of VFA were observed in G. uralensis (p<0.05). Based on the present study, fermentation improves the biological activity of E. ulmoides Oliv. and G. uralensis. Fermented G. uralensis could also be applied as an enteric methane mitigating agent in ruminant animals.