• Title/Summary/Keyword: fermentation control

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Effects of Plant Herb Combination Supplementation on Rumen Fermentation and Nutrient Digestibility in Beef Cattle

  • Wanapat, M.;Kang, S.;Khejornsart, P.;Wanapat, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.8
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    • pp.1127-1136
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    • 2013
  • Four rumen-fistulated crossbred beef cattle (Brahman native) were randomly assigned according to a $4{\times}4$ Latin square design experiment to be fed plant herb supplements in their concentrate mixture. The treatments were: without herb supplementation (Control), lemongrass meal supplementation at 100 g/d (L), lemongrass meal supplementation at 100 g/d plus peppermint powder at 10 g/d (LP), and lemongrass meal supplementation at 100 g/d plus peppermint powder at 10 g/d with garlic powder 40 g/d (LPG), respectively. Based on the present study, the DMI and apparent digestibility of DM, OM, aNDF and ADF were not affected by dietary herb supplementation while CP digestibility tended to be decreased by herb supplement. Moreover, $NH_3$-N and BUN were decreased in all herb supplemented treatments and there was a tendency to an increase in ruminal pH in all herb supplemented groups. While there was no change in TVFA and C4 among lemongrass treatments, C2 was decreased in all herb supplemented treatments while C3 was increased. Methane production by calculation was the lowest in the LP and LPG groups. Population sizes of bacteria and protozoa were decreased in all herb supplemented groups, but not fungal zoospores. In all supplemented groups, total viable and proteolytic bacteria were decreased, while amylolytic and cellulolytic bacteria were similar. More importantly, in all herb supplemented groups, there were higher N balances, while there was no difference among treatments on purine derivative (PD) excretion or microbial N. Based on the results above, it could be concluded that there was no negative effect on ruminal fermentation characteristics and nutrient utilization by plant herb supplement, but protozoal population and $CH_4$ production were reduced. Thus, lemongrass alone or in combination with peppermint and garlic powder could be used as feed additives to improve rumen fermentation efficiency.

Effects of sodium diacetate on the fermentation profile, chemical composition and aerobic stability of alfalfa silage

  • Yuan, XianJun;Wen, AiYou;Desta, Seare T.;Wang, Jian;Shao, Tao
    • Asian-Australasian Journal of Animal Sciences
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    • v.30 no.6
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    • pp.804-810
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    • 2017
  • Objective: The objective of this study was to evaluate the effect of sodium diacetate (SDA) on fermentation profile, chemical composition and aerobic stability of alfalfa (Medicago sativa L.) silage. Methods: Fresh alfalfa was ensiled with various concentrations of SDA (0, 3, 5, 7, and 9 g/kg of fresh forage). After 60 days of the ensiling, the samples were collected to examine the fermentative quality, chemical composition and aerobic stability. Results: The application of SDA significantly (p<0.05) decreased silage pH with the lowest value in silage with 7 g/kg of SDA. The proliferations of enterobacteria, yeasts, molds and clostridia were inhibited by SDA, resulted in lower ethanol, propionic and butyric acid concentrations and dry matter loss in SDA treated silages than control. The increasing SDA linearly decreased free amino acid N (p<0.001), ammonia N (p = 0.018) and non-protein N (p<0.001), while linearly increased water soluble carbohydrate (p<0.001) and peptide N (p<0.001). It is speculated that SDA accelerated the shift from homofermentative to heterofermentative lactic acid bacteria during the silage fermentation, indicated by lower lactic acid production in SDA-9 than SDA-7 silages after 60 days of ensiling. Alfalfa silages treated with SDA at 7 g/kg had highest Flieg's point and remained stable more than 9 d during aerobic exposure under humid and hot conditions in southern China. Conclusion: SDA may be used as an additive for alfalfa silages at a level of 7 g/kg.

Formation of A L-Ascorbic Acid 2-o-$\alpha$-glucoside during Kimchi Fermentation

  • Jun, Hong-Ki;Bae, Kyung-Mi;Kim, Young-Hee;Cheigh, Hong-Sik
    • Preventive Nutrition and Food Science
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    • v.3 no.3
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    • pp.225-229
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    • 1998
  • Formation of a L-Ascorbic Acid 2-O-$\alpha$-glucoside(AA-2G) is a chemically stable dervative of asocrbate that shows a vitamin C acitivity in vitro as well as in vivo. We studied whether ascorbic acid(AA) and AA-2G are formed in baechu kimchi during fermentation at 4 $^{\circ}C$ or 18$^{\circ}C$. To determine the formation of AA and AA-2G during fermentation of kimchi, wheat flour (as a carbhydrate source) added baechu kimchi (WBK) and control baechu kimchi(CBK) were prepared and fermented at 4 $^{\circ}C$ or 18 $^{\circ}C$. A substance like AA-2G was detected by HPLC from WBK fermented at 18 $^{\circ}C$ for 26 days in fall season and confirmed later to be the AA-2G showing distinctive characteristics of heat stability and resistance to ascrobate oxidase catalase. However, none of the kimchi formed AA-2G when the kimchi were fermented under a different temperature condition such as 4 $^{\circ}C$ instead of 18 $^{\circ}C$ or a different season such as summer instead of fall even if they were fermented at 18 $^{\circ}C$. The pH of kimchi was decreased rapidly during the first 3 days. and then decreased slowly after 4 days when the kimchi were fermented at 18 $^{\circ}C$. However, there were slight changes of pH in both CBK and WBK feremented at 4$^{\circ}C$ for 30 $^{\circ}C$ days. Therefore, the AA-2G -forming activity in kimchi seems to be correlated with the formentation temperature, the microorganisms involved in kimchi fermentation and a suitable glycosyl donor for AA as provided by wheat flour in this study.

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Effects of Soybean Small Peptides on Rumen Fermentation and on Intestinal and Total Tract Digestion of Luxi Yellow Cattle

  • Wang, W.J.;Yang, W.R.;Wang, Y.;Song, E.L.;Liu, X.M.;Wan, F.C.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.1
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    • pp.72-81
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    • 2013
  • Four Luxi beef cattle ($400{\pm}10$ kg) fitted with ruminal, duodenal and ileal cannulas were used in a $4{\times}4$ Latin square to assess the effects of soybean small peptide (SSP) infusion on rumen fermentation, diet digestion and flow of nutrient in the gastrointestinal tract. The ruminal infusion of SSP was 0 (control), 100, 200 and 300 g/d. Ruminal SSP infusion linearly (p<0.01) and quadratically (p<0.01) increased microbial protein synthesis and rumen ammonia-N concentration. Concentrations of total volatile fatty acid were linearly increased (p = 0.029) by infusion SSP. Rumen samples were obtained for analysis of microbial ecology by real-time PCR. Populations of rumen Butyrivibrio fibrisolvens, Streptococcus bovis, Ciliate protozoa, Ruminococcus flavefaciens, and Prevotella ruminicola were expressed as a proportion of total Rumen bacterial 16S ribosomal deoxyribonucleic acid (rDNA). Butyrivibrio fibrisolvens populations which related to total bacterial 16S rDNA were increased (p<0.05), while Streptococcus bovis populations were linearly (p = 0.049) and quadratically (p = 0.020) decreased by infusion of SSP. Apparent rumen digestibility of DM and NDF were (Q, p<0.05; L, p<0.05) increased with infusion SSP. Total tract digestion of DM, OM and NDF were linearly (p<0.01) and quadratically (p<0.01) increased by infusing SSP. The flow of total amino acids (AA), essential amino acids (EAA) and individual amino acids were linearly (p<0.01) and quadratically (p<0.01) increased with infusion SSP. The digestibility of Lysine was quadratically (p = 0.033) increased and apparent degradability of Arginine was linearly (p = 0.032) and quadratically (p = 0.042) increased with infusion SSP. The results indicated that infusion SSP could improve nutrient digestion, ruminal fermentation and AA availability.

Studies on the Manufacture of Adlay Yoghurt I. The Physicochemical and Microbiological Properties of Adlay Yoghurt (율무 Yoghurt 제조에 관한 연구 I. 율무 Yoghurt의 이화학적 및 미생물학적 성질)

  • 김상범;임종우
    • Food Science of Animal Resources
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    • v.20 no.1
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    • pp.56-63
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    • 2000
  • This study was investigated the effects of the addition of adlay with levels of 1%(T1), 2%(T2), 3%(T3) and 4% (T4) in skim milk substrate on the physicochemical and microbiological properties of yoghurt during fermentation and storage period at 4$\pm$1$^{\circ}C$. Adlay yoghurt were fermented with the mixed cultures of YC-380, ABT-4 and ABT-D. Titratable acidity and pH values of all treatments were increased and decreased significantly(p<0.05) with fermentation period, respectively and increased and decreased slightly during the storage period, respectively. There were increased and decreased in order of all treatments fermented with YC-380, ABT-4 and ABT-D. Viscosity of adlay yoghurt increased rapidly in order of T4, T3, T2 and T1 during fermentation and slowly in order of T1, T2, T3 and T4 during the storage period. There were increased in order of all treatments fermented with ABT-D, YC-380 and ABT-4. The counts of viable cells of lactic acid bacteria in all treatments were rapidly and slightly increased during fermentation and storage period, respectively. There were increased in order of fermented with ABT-D, ABT-4 and YC-380 in all treatments. The counts of E. coli were not found in adlay yoghurt. In all treatments, T1 showed slightly high compared to that of control. Based on the results of this experiment, the optimum level of addition of adlay were 1% (w/v) for production of acid production, pH, viscosity and the counts of viable cells of lactic acid bacteria.

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Effect of Na-Acetate, Na-Malate and K-Sorbate on the pH, Acidity and Sourness during Kimchi Fermentation (Na-Acetate 및 Na-Malate와 K-Sorbate가 김치발효중 pH, 산도 및 산미에 미치는 효과)

  • Park, Kyoung-Ja;Woo, Soon-Ja
    • Korean Journal of Food Science and Technology
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    • v.20 no.1
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    • pp.40-44
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    • 1988
  • This paper was carried out to investigate the relation of pH, aciidity and sourness during Kimchi fermentation and preservatives on Kimchi fermentation. Na-acetate, Na-malate, K-sorbate and K-sorbate+acetic acid were added to Kimchi samples. These Kimchi samples were fomented for 7 days at $37^{\circ}C$ and $20^{\circ}C$. In the experiment about the sourness and buffer action by organic salts which showed that the intensity of sourness was differented by the difference of pH in the same acidity. Na-acetate (0.3%) and Na-malate (0.3%) acted as good buffer, whereas K-sorbate (0.1%) and K-sorbate (0.1%)+acetic acid (0.05%) acted as lactobacilli growth enhancer in the fermentation.

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Microbiological Characteristics of Alcoholfermenting Wild Yeast, Aureobasidium pullulans P-1 and Its Makgeolli Fermentation Characteristics (알코올 발효성 야생 효모, Aureobasidium pullulans P-1의 균학적 특성과 막걸리 발효 특성)

  • Hong, Yong-Cheol;Han, Sang-Min;Lee, Jong-Soo
    • The Korean Journal of Mycology
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    • v.46 no.3
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    • pp.307-314
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    • 2018
  • The goal of this study was to investigate the microbiological characteristics of the ethanol-producing wild yeast, Aureobasidium pullulans P-1, isolated from flowers growing near the Yedang reservoir, Chungnam province, Korea, and in addition, to optimize its fermentation ability for the production of Makgeolli. A. pullulans P-1 was oval-shaped, and formed ascospores and pseudomycelium. The P-1 strain was a halophilic and sugar tolerant yeast which grew in 15% NaCl and 50% glucose-containing yeast extract-peptone-dextrose media. The P-1 strain was also resistant to 20% ethanol. Changes of the physicochemical properties during Makgeolli fermentation by A. pullulans P-1 were investigated. A maximum of 8.45% ethanol was obtained when a mixture of cooked rice, 150% water, and 35% ipguk per cooked rice was fermented by 5% A. pullulans P-1 culture broth at $25^{\circ}C$ for 10 days. Antihypertensive angiotensin I-converting enzyme inhibitory activity in the Makgeolli ferment produced by A. pullulans P-1 reached a high of 71.1% after 10 days.

Investigation of Antifungal Activity for Plant Disease Control by Compost Teas Fermented under Different Temperatures (식물병 관리를 위해 다양한 온도조건에서 발효한 퇴비차의 항진균 활동에 관한 연구)

  • Tateda, Masafumi;Yamada, Kanae;Kim, Youngchul;Sato, Yukio
    • Journal of Korean Society on Water Environment
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    • v.24 no.3
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    • pp.280-284
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    • 2008
  • Efficacy of antifungal activity on plant pathogens by compost teas fermented under different temperatures was studied. Compost teas are recently chosen by agricultural producers for the better method of controlling plant diseases under increase of public consciousness against use of chemicals for controlling the diseases. Compost tea has been intensively studied; however, understanding of compost tea is still not well developed, and temperature influence during fermentation of compost tea on its antifungal activity has not been investigated. In this study, antifungal activities of compost teas fermented at 10, 20, 30, and $40^{\circ}C$ against selected 10 pathogens were observed. From the results, antifungal activities of compost teas at 20 and $30^{\circ}C$ of fermentation-temperatures showed the strongest while the weakest activity was observed with the compost tea at $10^{\circ}C$. Change of the activity by the fermentation-temperature apparently implied that microbes in the compost tea were strongly involved in its antifungal activity.

Effect of Nitrogen-Load Condition on Hydrogen Production and Bacterial Community in Continuous Anaerobic Hydrogen Fermentation Process

  • Kawagoshi, Yasunori;Nakao, Masaharu;Hino, Naoe;Iwasa, Tomonori;Furukawa, Kenji
    • Journal of Wetlands Research
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    • v.9 no.1
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    • pp.123-131
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    • 2007
  • Effect of nitrogen-load condition on hydrogen ($H_2$) production and bacterial community in a continuous anaerobic hydrogen fermentation were investigated. The slight $H_2$ production on extremely low nitrogen-load condition (C/N ratio: 180) at the start-up period. The highest $H_2$ production was obtained when the C/N ratio was 36, the $H_2$ production yield ($mol-H_2/mol-glucose$) reached to 1.7, and it was indicated that Clostridium pasteurianum mainly contributed to the $H_2$ production. The $H_2$ production was decreased on both the lower (C/N: 72) and higher (C/N: 18) nitrogen-load conditions. The excess nitrogen-load was not always suitable for the hydrogen production. The fluctuation of $H_2$ production seemed to be caused by a change in the bacterial community according to the nitrogen-load condition, while a recovery of $H_2$ productivity was possible by a control of nitrogen-load condition through the bacterial community change. When the nitrogen-load condition was not suitable for hydrogen production, the lactic acid concentration was increased and also lactic acid bacteria were definitely detected, which suggested that the competition between hydrogen fermentator and lactic acid producer was occurred. These results demonstrated that the nitrogen-load condition affect on the $H_2$ productivity through the change of bacterial community in anaerobic hydrogen fermentation.

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The Isoflavonoid Constituents and Biological Active of Astragalus Radix by Fermentation of β-glucosidase Strains (β-glucosidase 활성 균주 발효에 의한 황기 Isoflavonoid 성분변화 및 생리활성)

  • Kim, Chul Joong;Choi, Jae Hoo;Seong, Eun Soo;Lim, Jung Dae;Choi, Seon Kang;Yu, Chang Yeon;Lee, Jae Geun
    • Korean Journal of Medicinal Crop Science
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    • v.28 no.5
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    • pp.371-378
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    • 2020
  • Background: In this study, the radix of Astragalus membranaceus Bunge extract fermented by Saccharomyces cerevisiae, Weissella cibaria, and Pediococcus pentosaceus to increase the levels of isoflavonoid aglycone contents. Methods and Results: In order to change the in isoflavonoids, we fermented the radix of A. membranaceus extracts with microorganisms that have β-glucosidase activity. Besed on the β-glucosidase activity, we selected three strains, Weissella cibaria, Pediococcus pentosaceus, and Saccharomyces cerevisiae. HPLC analysis revealed that the levels of isoflavonoid aglycones were increased in all fermentation cases, and the extracts fermented by S. cerevisiae showed the highest levels of isoflavonoid aglycones. We evaluated the antioxidant activity, anti-wrinkle effects and whitening effects of the S. cerevisiae-fermented extracts using the DPPH assay, tyrosinase inhibition activity assay, and collagenase inhibition activity assay. We confirmed higher activity in S. cerevisiae-fermented extracts than in control, with the half maximal inhibitory concentration (IC50) value of 565.1 ± 59.1 ㎍/㎖ in DPPH radical scavenging activity, tyrosinase inhibition rate of 78.4 ± 0.9%, and collagenase inhibition rate of 83.8 ± 1.1%. Conclusions: We selected three stains of microorganisms showing high β-glucosidase activity, W. cibaria, P. pentosaceus and S. cerevisiae. Isoflavonoid glycones in the radix of A. membranaceus were converted to isoflavonoid aglycones by fermentation. In addition, the fermented radix of A. membranaceus exhibited antioxidant activity, anti-wrinkle effect, whitening effect and radical scavenging activity.