• Title/Summary/Keyword: dominant microorganisms

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Changes in Pathogens and Antibiotic Sensitivities in very Low Birth Weight Infants with Neonatal Sepsis (극소저출생체중아에서 신생아 패혈증의 원인균 및 항생제 감수성의 변화)

  • Kim, Kyung-Nam;Park, Ho-Jin
    • Neonatal Medicine
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    • v.15 no.1
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    • pp.54-60
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    • 2008
  • Purpose : To set up an appropriate treatment plan for neonatal sepsis by investigating changes in pathogens and antibiotic sensitivities. Methods : The medical records of very low birth weight infants (VLBWI) admitted to the neonatal intensive care unit (NICU) of the Eulji University Hospital between January 2000 and June 2006 were retrospectively reviewed. The culture reports were analyzed for causative microorganisms and antibiotic sensitivities. Results : Among 164 neonates, 19 neonates (11.6%) had 26 episodes of culture-proven sepsis. Very late onset sepsis was the most common type. The dominant pathogens of sepsis included Klebsiella pneumoniae, Streptococcus spp., coagulase negative Staphylococcus and Enterobacter spp., and were mostly multi-drug resistant. Conclusion : For the appropriate treatment of neonatal sepsis, proper use of antibiotics through the periodic review and understanding of changes of the microorganisms and antimicrobial sensitivities is necessary to prevent multi-drug resistant microorganisms and to avoid excessive use of broad-spectrum empiric antibiotics.

Responses of weed community and soil biota to cessation of fertilization

  • Eo, Jin-U
    • Journal of Ecology and Environment
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    • v.33 no.4
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    • pp.317-323
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    • 2010
  • Nutrient availability is a critical component of agroecosystems, and is relevant to both above- and below- ground interactions. The principal objective of this study was to determine how the cessation of fertilization affects the communities of weeds and soil organisms in a corn/wheat field. Changes in dominant weed species, substrate-induced respiration, and the population density of nematodes and microarthropods were evaluated. Microbial substrate-induced respiration (SIR) and the population density of microarthropods decreased following the cessation of fertilization and were partly correlated with the aboveground weed biomass. The cessation of organic fertilizer application but continuing application of inorganic fertilizer reduced the population density of nematodes. In response to the cessation of fertilization, weed communities were dominated by species with little dependency on fertilization. Amaranthus retroflexus was identified as the most dominant species in the corn field; however, it was replaced by Digitaria ciliaris after the cessation of fertilization. In the wheat field, the cessation of fertilization led to a rapid reduction in the biomass of most weeds, except for Vicia angustifolia, supposedly as the result of symbiotic nitrogen fixation. Additionally, the fact that weed biomass was partially correlated with SIR or the population density of microarthropods may reflect a mutual feedback between soil organisms and weeds. The results indicate that the cessation of fertilization alters communities of weeds and soil organisms through changes in weed biomass and interactions with symbiotic microorganisms.

Study of Tannin Reducing Effect of Aronia by Yeast Isolated from Jeotgal (젓갈에서 분리된 효모를 이용한 아로니아의 탄닌 성분 저감화 효과에 관한 연구)

  • Shin, Hyo-Ju;Byun, Ock-Hee;Kim, Yu-Jin;Bang, Bo-Yeon;Park, Jung Min;Jeong, Yong-Seob;Bai, Dong-Hoon
    • The Korean Journal of Mycology
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    • v.43 no.4
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    • pp.247-252
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    • 2015
  • Aronia (Black chokeberry, Aronia melanocarpa) belonging to the Rosaceae family, is native to eastern North America. Aronia contain high levels of flavonoids, mostly anthocyanins and proanthocyanidins, which are known as condensed tannins. The dominant proanthocyanidins in aronia are (-)-epicatechin and (+)-catechin. The concentration of proanthocyanidins in aronia is higher than in other berries, however due to the astringent taste it is not desirable for consumption. Therefore, the purpose of this study is to evaluate the effect of aronia on the reduction in tannins by yeast isolated from regional Jeotgal. We isolated strains of yeast with high ${\beta}$-glucosidase activity from Jeotgal, with the MTY2 strains exhibiting a reduction in final tannin concentration according to thin layer chromatography (TLC) analysis. MTY2 was confirmed as Kazachstania servazzii using an 18S rDNA sequence and named as K. servazzii MTY2. K. servazzii MTY2 showed most significant growth when K. servazzii MTY2 was cultured in a solution of 10% (w/v) glucose, 3% (w/v) tryptone and 0.1% (w/v) sodium chloride. According to the high performance liquid chromatography (HPLC) analysis, the (+) - catechin peak is present, but (-) - epicatechin peak was reduced at culture condition added with 10% glucose in medium.

Effects of Mild Heat Treatment on Microorganisms, Respiratory Characteristics and Firmness of Fuji Apple (중온 열수 처리가 사과의 표면 미생물, 호흡특성 및 경도에 미치는 영향)

  • Seo, Ja-Young;Kim, En-Jeong;Hong, Seok-In;Yu, Sung-Hun;Kim, Dong-Man
    • Korean Journal of Food Science and Technology
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    • v.38 no.1
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    • pp.47-51
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    • 2006
  • Microorganisms involved in decaying Fuji apples during storage were investigated. Seven pathogens were isolated from the rotted fruits. Penicillium spp. was derived from 65-75% of decayed apples with P. expansum being dominant species. Effects of mild heat treatment on microbial reduction, respiration, and texture characteristics in Fuji apples were examined through hot water dipping at $40-65^{\circ}C$ for varied timε periods. Initial counts of total microorganisms and moulds in fresh fruits s showed 4.75 and 4.66 log CFU/g in a stem, as well as 5.35 and 4.32 log CFU/g in a calyx, respectively. The heat treatment at $40^{\circ}C$ for 180 min significantly reduced the population of total microorganisms and moulds in the fruits. Respiration rate of the apple fruits increased immediately after heat treatment and then returned to the normal level during storage. The rates of ethylene production in the fruits treated at $40-50^{\circ}C$ were maintained lower than that of the untreated control. The fruits treated at $40^{\circ}C$ showed slightly greater flesh firmness than the other apple samples during storage.

Types of Deterioration of Storage Rice in Korea and Identification of the Causitive Microorganisms (II) (한국(韓國)의 미곡변질(米穀變質)의 유형(類型)과 그 원인(原因)이 되는 균군(菌群)에 대(對)하여(제2보)(第二報))

  • Kim, Young-Bae;Cho, Duck-Hiyon
    • Applied Biological Chemistry
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    • v.17 no.1
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    • pp.54-62
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    • 1974
  • 62 specimens of deteriorated rice which were collected all over Korea, were classified according to their color outlooks, and the causitive microorganisms were isolated and identified. The following results were observed; 1. 62 specimens of deteriorated rice were classified according to color outlooks into 7 types; reddish yellow, light reddish yellow, light gray yellow, light reddish yellow, light gray yellow, light red, ligt gray, dark gray and rice weevil type. 2. The isolated microorganisms from 62 specimens of deteriorated rice were 44 species, 5 genera of molds, 1 species of yeast, and 14 species, 4 genera of bacteria. 3. The frequently observed microorganisms which caused the deterioration were Asp. glaucus group, Asp. oryzae, Asp. candidus, and Asp. versicolor. Among bacteria, Bacillus was dominant. 4. The relationship between color outlook types and the deterioration causing microrrganisms was not definite, but Pen. islandicum from reddish yellow, Asp. candidus and Asp. clavatus from light reddish yellow, Asp. glaucus group, Asp. candidus, Asp. versicolor and Asp. fumigatus from light red, Asp. oryzae from light gray yellow, and Asp. glaucus group and Pencillium species from light gray and dark gray were chiefly isolated. 5. As mycotoxin producing fungi, Asp. fumigatus, Pen. citrinum, Pen. islandicum, Asp. flavus, and Asp. ochraceus were detected, but their growth frequencies were not very high to be problems except Pen, islandicum which infected an imported rice sample heavily.

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Perchlorate Removal by River Microorganisms in Industrial Complexes (산업단지지역 하천 미생물에 의한 퍼클로레이트 제거)

  • Jo, Kang-Ick;Ahn, Yeonghee
    • Korean Chemical Engineering Research
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    • v.52 no.1
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    • pp.92-97
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    • 2014
  • Perchlorate ($ClO_4^-$) is an emerging contaminant of soil/groundwater and surface water. $ClO_4^-$ has been shown to inhibit iodide uptake into the thyroid gland and cause a reduction in thyroid hormone production. $ClO_4^-$ is highly soluble and very stable in water. Biodegradation by $ClO_4^-$-reducing bacteria (PRB) is considered the most important factor in natural attenuation of $ClO_4^-$. Rivers in an industrial complex have potential to be contaminated with $ClO_4^-$ discharged from point or non-point sources. In this study, water samples were taken from the rivers running through the Gumi industrial complexes and used for batch test to analyze $ClO_4^-$-degradation potential of river microorganisms. The results of 83-h batch culture showed that $ClO_4^-$-removal efficiency of all samples was 0.77% or less without addition of an external electron ($e^-$) donor. However $ClO_4^-$-removal efficiency was higher when an $e^-$ donor (acetate, thiosulfate, $S^0$, or $F^0$) was added into the batch culture, showing up to 100% removal efficiency. The removal efficiency was various depending on type of $e^-$ donor and site of sampling. When acetate was used as an $e^-$ donor, the highest $ClO_4^-$-removal efficiency was observed among the $e^-$ donors used in this study, suggesting that activity of heterotrophic PRB was dominant. The results of this study provide basic information on natural attenuation of $ClO_4^-$ by river microorganisms. The information can be useful to prepare a strategy to enhance efficiency of $ClO_4^-$ biodegradation for in situ bioremediation.

Improved Cell Viability of Lactobacillus crispatus KLB46 by Stress Adaptation (Lactobacillus crispatus KLB46의 스트레스 전처리시 열 내성 증진효과)

  • Kwak, Dae-Yung;Kang, Chang-Ho;Jeon, HanEul;So, Jae-Seong
    • KSBB Journal
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    • v.29 no.2
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    • pp.81-86
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    • 2014
  • Lactobacilli, the dominant species of microorganisms in the vaginal flora of healthy women, play important roles to prevent bacterial vaginosis and other sexually transmitted diseases. In this study, we carried out studies on stress adaptation prior to various stress treatment. We found that heat or salt adapted KLB46 showed higher cell viability than non adapted upon heat stress at $60^{\circ}C$ for 20 min. When chloramphenicol was added during the adaptation process, heat tolerance was abolished. This result suggested that de novo protein synthesis was essential during adaptation.

Bioprospecting Potential of the Soil Metagenome: Novel Enzymes and Bioactivities

  • Lee, Myung Hwan;Lee, Seon-Woo
    • Genomics & Informatics
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    • v.11 no.3
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    • pp.114-120
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    • 2013
  • The microbial diversity in soil ecosystems is higher than in any other microbial ecosystem. The majority of soil microorganisms has not been characterized, because the dominant members have not been readily culturable on standard cultivation media; therefore, the soil ecosystem is a great reservoir for the discovery of novel microbial enzymes and bioactivities. The soil metagenome, the collective microbial genome, could be cloned and sequenced directly from soils to search for novel microbial resources. This review summarizes the microbial diversity in soils and the efforts to search for microbial resources from the soil metagenome, with more emphasis on the potential of bioprospecting metagenomics and recent discoveries.

The Study of Microbial Population & Dynamics in Hydrocarbon Contaminated Areas (유류오염지역의 미생물 분포 및 활성도에 관한 연구)

  • 김무훈;김순기;이원권;경우성;박덕신
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1999.10a
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    • pp.28-31
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    • 1999
  • The purpose of this study is to see the effect of microbial population and dynamics of the indigeonous microorganisms on hydrocarbon contaminated areas. The microbial structures and activities to determine the microbial capabilities of the contaminated sites are very important for the remedial action technology selection. Throughout microbial studies on different conditions by ETS(Electron Transport System) and microbial activity analysis, it was found that aeration and water contents are the most important factors in this site remediation. According to test results, Burkholderia spp. was dominant species, and acclimation is also an important factor for the accerelated biodegradation.

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Saccharomyces cerevisiae의 물질대사에 미치는 중성자의 영향

  • 이민재
    • Journal of Plant Biology
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    • v.7 no.4
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    • pp.9-14
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    • 1964
  • According to the results measured the respiratory quotient of Saccharomyces cerevisiae with neutron radiation by manometric direct method, the respiratory quotient of them was stimulated at the dose(7$\times$106N/$\textrm{cm}^2$/sec) of neutron radiation for 60 seconds, and was inhibited in each group irradiated at the high dose (7$\times$108N/$\textrm{cm}^2$/sec) of neutron. Its physiological effects influenced on neutron had relations with respiratory quotient, reproductive rate and fermentation in the curve of normal logarithmic phase. The multiple reactions which appeared in yeast, indicated that a great deal of physiological function were closely correlated with the irradiated dosage of neutron. The kinds of free amino acid in yeast irradiated with neutron were different from those of unirradiated yeast. The activityof dehydrogenase system accelerated the metabolic function of yeast irradiated at some low dose of neutron. By this results, it may demonstrate that the fact which the phenomena obtained in the stimulation of neutron possess its character for several generation, is dependent on the theory of mutation. Subsequently, it seemed reasonable certain dominant type of microorganisms.

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