• Title/Summary/Keyword: Inoculum concentration

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Production of Biomass and Bioactive Compounds from Cell Suspension Cultures of Eurycoma longifolia in Balloon Type Bubble Bioreactors

  • Shim, Kyu-Man;Murthy, Hosakatte Niranjana;Park, So-Young;Rusli, Ibrahim;Paek, Kee-Yoeup
    • Horticultural Science & Technology
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    • v.33 no.2
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    • pp.251-258
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    • 2015
  • Eurycoma longifolia is an important rare medicinal plant that contains valuable bioactive compounds. In the present study, cell suspension culture of E. longifolia was established for the production of biomass and phenolic compounds. Various medium parameters, such as concentration of auxin, salt strength of the medium, and sucrose and nitrogen concentrations, were optimized for the production of biomass at the flask-scale level. Full strength Murashige and Skoog (MS) medium supplemented with $3.0mg{\cdot}L^{-1}$ naphthaleneacetic acid (NAA), 3% (w/v) sucrose, 0:60 $NH{_4}^+:NO{_3}^-$ was found suitable for biomass accumulation. Based on the optimized flask-scale parameters, cell suspension cultures were established in balloon-type bubble bioreactors, and bioprocess parameters such as inoculum density and aeration rate were optimized. Inoculum density of $50g{\cdot}L^{-1}$ and increasing aeration rate from 0.05 to 0.3 vvm, with increases every 7 days, were suitable for the accumulation of both biomass and phenolic compounds. With the optimized conditions, $14.70g{\cdot}L^{-1}$ dry biomass, $10.33mg{\cdot}g^{-1}$ DW of phenolics and $3.89mg{\cdot}g^{-1}$ DW of flavonoids could be achieved. Phenolics isolated from the cell biomass showed optimal free radical scavenging activity.

Influence of Water Potential in Potato Tuber on Decay Development by Bacterial Soft Rot Caused by Erwinia carotovora var. atroseptica (감자연부병 (Erwinia carotovora var. atroseptica)에 의한 감자괴경부패와 water potential 에 관한 연구)

  • Hahm Young Il
    • Korean journal of applied entomology
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    • v.23 no.4 s.61
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    • pp.242-246
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    • 1984
  • Results obtained from the experiment conducted to find out e relationships between tuber decay, and water potential and bruising in or on the tubers, are summerized as follows ; 1) When potato tubers were bruised or injected with bacterial inoculum, the tubers with high water potential rotted more easily than the tubers with low potential. A big difference in the development of decay between high and low water potential tubers was found. 2) In tubers injected with different levels of inoculum. high water potential tubers were more susceptible to soft rot than low water potential tubers. 3) $ED_{50}$ of inoculum concentration was 8.5(log) at high water potential tubers and 9.8(log) at low water potential. A small difference between low and high water potential was detected. The results of this experiment show that potatoes should be handled carefully and must be dried after harvest to reduce decay development in shipment and storage.

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Methane Production Potential of Food Waste and Food Waste Mixture with Swine Manure in Anaerobic Digestion

  • Islam, Mohammad Nazrul;Park, Keum-Joo;Yoon, Hyung-Sun
    • Journal of Biosystems Engineering
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    • v.37 no.2
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    • pp.100-105
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    • 2012
  • Purpose: Methane production potential in aerobic digestion was assessed according to feed to inoculum (F/I) ratio for food waste only, and mixing ratio of two materials for food waste and swine manure to give a basic data for the design of anaerobic digestion system. Methods: Anaerbic digestion test was performed using a lab scale batch reactor at $35^{\circ}C$ for six different feed to inoculum (F/I) ratios (0.50, 0.72, 1.14, 1.50, 2.14 and 3.41), three food waste to swine manure ratios (100:0, 60:40 and 40:60) with two different loading concentrations (10g VS/L and 30g VS/L). Results: For food waste only, the highest biogas yield of 1008 mL/gVS was obtained at 0.50 of F/I. For the co-digestion of food waste and swine manure mixture, the highest biogas yield of 1148 mL/gVS was obtained at a mixing ratio of 40:60 with loading concentration of 10g VS/L. Conclusions: F/I ratio for the food waste only, mixing ratio of food waste and swine manure, and co-substrate loading rate affected the biogas production rate. For the low loading rate, there was not so much difference according to the mixing ratio of food waste and swine manure, but for the high loading rate higher biogas yield was acquired for the co-digestion of food waste and swine manure than for the food waste alone (mixing ratio, 100:0).

Fabrication of Biogenic Antimicrobial Silver Nanoparticles by Streptomyces aegyptia NEAE 102 as Eco-Friendly Nanofactory

  • El-Naggar, Noura El-Ahmady;Abdelwahed, Nayera A.M.;Darwesh, Osama M.M.
    • Journal of Microbiology and Biotechnology
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    • v.24 no.4
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    • pp.453-464
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    • 2014
  • The current research was focused on the extracellular biosynthesis of bactericidal silver nanoparticles (AgNPs) using cell-free supernatant of a local isolate previously identified as a novel Streptomyces aegyptia NEAE 102. The biosynthesis of silver nanoparticles by Streptomyces aegyptia NEAE 102 was quite fast and required far less time than previously published strains. The produced particles showed a single surface plasmon resonance peak at 400 nm by UV-Vis spectroscopy, which confirmed the presence of AgNPs. Response surface methodology was chosen to evaluate the effects of four process variables ($AgNO_3$ concentration, incubation period, pH levels, and inoculum size) on the biosynthesis of silver nanoparticles by Streptomyces aegyptia NEAE 102. Statistical analysis of the results showed that the linear and quadratic effects of incubation period, initial pH, and inoculum size had a significant effect (p < 0.05) on the biosynthesis of silver nanoparticles by Streptomyces aegyptia NEAE 102. The maximum silver nanoparticles biosynthesis (2.5 OD, at 400 nm ) was achieved in runs number 5 and 14 under the conditions of 1 mM $AgNO_3$ (1-1.5% (v/v)), incubation period (72-96 h), initial pH (9-10), and inoculum size (2-4% (v/v)). An overall 4-fold increase in AgNPs biosynthesis was obtained as compared with that of unoptimized conditions. The biosynthesized silver nanoparticles were characterized using UV-VIS spectrophotometer and Fourier transform infrared spectroscopy analysis, in addition to antimicrobial properties. The biosynthesized AgNPs significantly inhibited the growth of medically important pathogenic gram-positive (Staphylococcus aureus) and gram-negative bacteria (Pseudomonas aeruginosa) and yeast (Candida albicans).

Efficient Production of Glucose Isomerase from Atrhrobacter sp. L-3 (Arthrobacoer sp. L-3가 생성하는 Glucose Isomerase의 최적 생성조건)

  • 이은숙
    • Journal of the East Asian Society of Dietary Life
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    • v.7 no.1
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    • pp.29-33
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    • 1997
  • The efficient production of glucose isomerase (G. I0.) produced form Arthrobacter sp. L-3 was studied. The optimum culture time of the enzyme was 40hr. The maximum enzyme activity was found at glucose concentration 1%. G. I. activity did not affect inoculum size. The glucose isomerase activity was strongly influenced by the addition of glucose.

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Enhancement of Ethanol Production via Hyper Thermal Acid Hydrolysis and Co-Fermentation Using Waste Seaweed from Gwangalli Beach, Busan, Korea

  • Sunwoo, In Yung;Nguyen, Trung Hau;Sukwong, Pailin;Jeong, Gwi-Teak;Kim, Sung-Koo
    • Journal of Microbiology and Biotechnology
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    • v.28 no.3
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    • pp.401-408
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    • 2018
  • The waste seaweed from Gwangalli beach, Busan, Korea was utilized as biomass for ethanol production. Sagassum fulvellum (brown seaweed, Mojaban in Korean name) comprised 72% of the biomass. The optimal hyper thermal acid hydrolysis conditions were obtained as 8% slurry contents, 138 mM sulfuric acid, and $160^{\circ}C$ of treatment temperature for 10 min with a low content of inhibitory compounds. To obtain more monosaccharides, enzymatic saccharification was carried out with Viscozyme L for 48 h. After pretreatment, 34 g/l of monosaccharides were obtained. Pichia stipitis and Pichia angophorae were selected as optimal co-fermentation yeasts to convert all of the monosaccharides in the hydrolysate to ethanol. Co-fermentation was carried out with various inoculum ratios of P. stipitis and P. angophorae. The maximum ethanol concentration of 16.0 g/l was produced using P. stipitis and P. angophorae in a 3:1 inoculum ratio, with an ethanol yield of 0.47 in 72 h. Ethanol fermentation using yeast co-culture may offer an efficient disposal method for waste seaweed while enhancing the utilization of monosaccharides and production of ethanol.

Biodegradation of Diesel by Rhodococcus fascians in Sand Column (Rhodococcus fascians를 이용한 모래 컬럼내 디젤유 분해)

  • Moon, Jun-Hyung;Koo, Ja-Ryong;Yun, Hyun-Shik
    • KSBB Journal
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    • v.26 no.1
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    • pp.1-6
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    • 2011
  • Contamination of soils, groundwater, air and marine environment with hazardous and toxic chemicals is major side effect by the industrialization. Bioremediation, the application of microorganism or microbial processes to degrade environmental contaminant, is one of the new environmental technologies. Because of low water solubility and volatility of diesel, bioremediation is more efficient than physical and chemical methods. The purpose of this study is biodegradation of diesel in sand by using Rhodococcus fascians, a microorganism isolated from petroleum contaminated soil. This study was performed in the column containing sand obtained from sea sides. Changes in biodegradability of diesel with various flow rates, inoculum sizes, diesel concentrations, and pH were investigated in sand column. The optimal condition for biodegradation of diesel by R. fascians in sand column system was initial pH 8 and air flow rate of 30 mL/min. Higher diesel degradation was achieved at larger inoculum size and the diesel degradation by R. fascians was not inhibited by diesel concentration up to 5%.

Lab sacle의 섬유상담체를 이용한 VOCs 제거

  • Jang, Jeong-Gyun;Choe, Hwan-Seok;Park, Ju-Yeong;Cha, Jin-Myeong;O, Min-Ha;Park, Don-Hui
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.552-555
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    • 2001
  • This work reported concerns the removal of mixtures of methyl ethyl ketone (MEKJ, methyl isobutyl ketone (MIBK) and BTXs, which find wide application as industrial solvents, using the biofilter by the microbial consortium, The biofilter was constructed from acryl columns and was 400 mm in length and 55 mm in diameter and the height of fibrous packing material which made of PVC was 160 111111, 8 seconds of the retention time, pH 6.5 - 7.5 and the initial inlet concentration of MEK, MIBK and BTXs were 220 ppm. The removal efficiency of the gaseous mixtures was relatively low during the initial 2 days after inoculum of the microbial consortium, after 3 days, however, the efficiency was increased remarkably. In this study, The removal efficiency of the biofilter for the mixtures show the high degree from one day after inoculum of the microbial consortium, having no relation to the fluctuation of the inlet concentration of MEK, MIBK and BTXs.

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The Fermentation Characteristics of Newly Selected Thermotolerant Yeasts at High Temperature

  • Sohn, Ho-Yong;Park, Wan;Jin, Ing-Nyol;Seu, Jung-Hwn
    • Journal of Microbiology and Biotechnology
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    • v.4 no.3
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    • pp.222-229
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    • 1994
  • In order to develop a method of economical production and to reduce energy-consumption in fuel alcohol production, we investigated the fermentation characters of two newly selected thermotolerant yeasts. The RA-74-2 showed stable and superior fermentability between 30 and $40^{\circ}C$ in 20% glucose media in comparison to the industrial strains. The optimum concentration of glucose for economical fermentation at $40^{\circ}C$ was 15-18%, and organic nitrogen was necessary for a satisfactory fermentation. The optimum pH was 4.0 and aeration was adversed for high temperature fermentation. Agitation was an important factor at $40^{\circ}C$ and the addition of magnesium ion 0.2% was required in this experiment. When the inoculum was increased, ethanol productivity as well as the speed of fermentation increased. On the other hand RA-912, which can grow at $48^{\circ}C$, showed similar fermentability between 30-$45^{\circ}C$ in 20% glucose media As the concentration of substrate decreased, fermentation ratio increased at $45^{\circ}C$ (45%, 65%, 95% fermentation ratio in 20%, 15%, 10% glucose media, respectively). Also, requirement of organic nitrogen and magnesium ion in RA-912 was similar in RA-74-2. The optimum pH for fermentation was 5.0, and the effects of agitation were enhanced at $37^{\circ}C$ than at $45^{\circ}C$. As the inoculum was increased, fermentation speed became more enhanced but the ethanol productivity was less affected. RA-912 showed fermentability with various substrates. Among the substrates used, inulin was the most promising substrate for the high-temperature fermentation. When 14.5% inulin was used as the substrate, 93% and 55% fermentation ratios were shown at $37^{\circ}C$ and $45^{\circ}C$, respectively.

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Antifungal Activity of EDTA and Combinatory Synergism of EDTA with Polygodial against Saccharomyces cerevisiae (Saccharomyces cerevisiae에 대한 EDTA의 항진균 활성 및 EDTA와 Polygodial 간의 병용 효과)

  • Lee, Sang-Hwa;Lee, Jae-Ran;Kim, Chang-Jin
    • Korean Journal of Food Science and Technology
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    • v.31 no.4
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    • pp.1109-1114
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    • 1999
  • The antifungal activity of ethylenediaminetetraacetic acid (EDTA), an antioxidative food preservative, was investigated against Saccharomyces cerevisiae. At the general condition for antifugal test, EDTA exhibited the minimum inhibitory concentration (MIC) of 200 ${\mu}g/ml$ and the minimum fungicidal concentration (MFC) of 6,400 ${\mu}g/mL$, As seen with the antibacterial activity, the antifungal activity of EDTA was greatly decreased by high inoculum size, acidic medium, and cation ($Ca^{++},\;or\;Mg^{++}$) added to medium. On the other hand, when EDTA was combined with polygodial isolated from natural food spice, they showed strong synergism on the antifungal activity. Further, the diminishing antifungal activity of EDTA by high inoculum size, acidic medium, and cation ($Ca^{++}\;or\;Mg^{++}$) added to medium was considerably improved by the combination with polygodial.

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