• 제목/요약/키워드: DGGE

검색결과 273건 처리시간 0.022초

Response of Syntrophic Propionate Degradation to pH Decrease and Microbial Community Shifts in an UASB Reactor

  • Zhang, Liguo;Ban, Qiaoying;Li, Jianzheng;Jha, Ajay Kumar
    • Journal of Microbiology and Biotechnology
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    • 제26권8호
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    • pp.1409-1419
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    • 2016
  • The effect of pH on propionate degradation in an upflow anaerobic sludge blanket (UASB) reactor containing propionate as a sole carbon source was studied. Under influent propionate of 2,000 mg/l and 35℃, propionate removal at pH 7.5-6.8 was above 93.6%. Propionate conversion was significantly inhibited with stepwise pH decrease from pH 6.8 to 6.5, 6.0, 5.5, 5.0, 4.5, and then to 4.0. After long-term operation, the propionate removal at pH 6.5-4.5 maintained an efficiency of 88.5%-70.1%, whereas propionate was hardly decomposed at pH 4.0. Microbial composition analysis showed that propionate-oxidizing bacteria from the genera Pelotomaculum and Smithella likely existed in this system. They were significantly reduced at pH ≤5.5. The methanogens in this UASB reactor belonged to four genera: Methanobacterium, Methanospirillum, Methanofollis, and Methanosaeta. Most detectable hydrogenotrophic methanogens were able to grow at low pH conditions (pH 6.0-4.0), but the acetotrophic methanogens were reduced as pH decreased. These results indicated that propionate-oxidizing bacteria and acetotrophic methanogens were more sensitive to low pH (5.5-4.0) than hydrogenotrophic methanogens.

Polymorphisms of SLC22A9 (hOAT7) in Korean Females with Osteoporosis

  • Ahn, Seong Kyu;Suh, Chang Kook;Cha, Seok Ho
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권4호
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    • pp.319-325
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    • 2015
  • Among solute carrier proteins, the organic anion transporters (OATs) play an important role for the elimination or reabsorption of endogenous and exogenous negatively charged anionic compounds. Among OATs, SLC22A9 (hOAT7) transports estrone sulfate with high affinity. The net decrease of estrogen, especially in post-menopausal women induces rapid bone loss. The present study was performed to search the SNP within exon regions of SLC22A9 in Korean females with osteoporosis. Fifty healthy controls and 50 osteoporosis patients were screened for the genetic polymorphism in the coding region of SLC22A9 using GC-clamped PCR and denaturing gradient gel electrophoresis (DGGE). Six SNPs were found on the SLC22A9 gene from Korean women with/without osteoporosis. The SNPs were located as follows: two SNPs in the osteoporosis group (A645G and T1277C), three SNPs in the control group (G1449T, C1467T and C1487T) and one SNP in both the osteoporosis and control groups (G767A). The G767A, T1277C and C1487T SNPs result in an amino acid substitution, from synonymous vs nonsynonymous substitution arginine to glutamine (R256Q), phenylalanine to serine (F426S) and proline to leucine (P496L), respectively. The Km values and Vmax of the wild type, R256Q, P496L and F426S were 8.84, 8.87, 9.83 and $12.74{\mu}M$, and 1.97, 1.96, 2.06 and 1.55 pmol/oocyte/h, respectively. The present study demonstrates that the SLC22A9 variant F426S is causing inter-individual variation that is leading to the differences in transport of the steroid sulfate conjugate (estrone sulfate) and, therefore this could be used as a marker for certain disease including osteoporosis.

Enterococcus faecium R0026 Combined with Bacillus subtilis R0179 Prevent Obesity-Associated Hyperlipidemia and Modulate Gut Microbiota in C57BL/6 Mice

  • Huang, Jinli;Huang, Juan;Yin, Tianyi;Lv, Huiyun;Zhang, Pengyu;Li, Huajun
    • Journal of Microbiology and Biotechnology
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    • 제31권2호
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    • pp.181-188
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    • 2021
  • Bacillus subtilis and Enterococcus faecium are commonly used probiotics. This study aimed to identify the effect of live combined Bacillus subtilis R0179 and Enterococcus faecium R0026 (LCBE) on obesity-associated hyperlipidemia and gut microbiota in C57BL/6 mice. Forty male C57BL/6 mice were divided into four groups: normal group (N group), model group (M group), low-dose group (L group), and high-dose group (H group). Mice were gavaged with LCBE at 0.023 g/mice/day (L group) or 0.23 g/mice/day (H group) and fed with a high-fat diet for 8 weeks. In vitro E. faecium R0026 showed an ability to lower the low-concentration of cholesterol by 46%, and the ability to lower the high-concentration of cholesterol by 58%. LCBE significantly reduced the body weight gain, Lee index, brown fat index and body mass index of mice on a high-fat diet. Moreover, LCBE markedly improved serum lipids (including serum triglyceride, total cholesterol, low-density lipoprotein and high-density lipoprotein) while also significantly reducing liver total cholesterol. Serum lipopolysaccharide and total bile acid in L and H groups decreased significantly compared with M group. PCR-DGGE analysis showed that the composition of gut microbiota in the treatment groups was improved. Akkermansia muciniphila was found in H group. The PCA result indicated a similar gut microbiota structure between LCBE treatment groups and normal group while the number of bands and Shannon diversity index increased significantly in the LCBE treatment groups. Finally, qPCR showed Bifidobacterium spp. increased significantly in H group compared with M group, LCBE alleviated liver steatosis and improved brown adipose tissue index.

Molecular methods for diagnosis of microbial pathogens in muga silkworm, Antheraea assamensis Helfer (Lepidoptera: Saturniidae)

  • Gangavarapu Subrahmanyam;Kangayam M. Ponnuvel;Kallare P Arunkumar;Kamidi Rahul;S. Manthira Moorthy;Vankadara Sivaprasad
    • International Journal of Industrial Entomology and Biomaterials
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    • 제47권1호
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    • pp.1-11
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    • 2023
  • The Indian golden muga silkworm, Antheraea assamensis Helfer is an economically important wild silkworm endemic to Northeastern part of India. In recent years, climate change has posed a threat to muga silk production due to the requirement that larvae be reared outdoors. Since the muga silkworm larvae are exposed to the vagaries of nature, the changing climate has increased the incidence of microbial diseases in the rearing fields. Accurate diagnosis of the disease causing pathogens and its associated epidemiology are prerequisites to manage the diseases in the rearing field. Although conventional microbial culturing methods are widely used to identify pathogenic bacteria, they would not provide meaningful information on a wide variety of silkworm pathogens. The information on use of molecular diagnostic tools in detection of microbial pathogens of wild silk moths is very limited. A wide range of molecular and immunodiagnostic techniques including denaturing gradient gel electrophoresis (DGGE), random amplified polymorphism (RAPD), 16S rRNA/ITSA gene sequencing, multiplex polymerase chain reaction (M-PCR), fluorescence in situ hybridization (FISH), immunofluorescence, and repetitive-element PCR (Rep-PCR), have been used for detecting and characterizing the pathogens of insects with economic significance. Nevertheless, the application of these molecular tools for detecting and typing entomopathogens in surveillance studies of muga silkworm rearing is very limited. Here, we discuss the possible application of these molecular techniques, their advantages and major limitations. These methods show promise in better management of diseases in muga ecosystem.

낙동강에서의 유기성 오염 유무에 따른 질화세균의 변화 (Changes of Nitrifying Bacteria Depending on the Presence and Absence of Organic Pollutant in Nak-Dong River)

  • 진선영;이영옥
    • 미생물학회지
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    • 제49권2호
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    • pp.137-145
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    • 2013
  • 유기성 오염원(생활하수 처리시설 방류수) 유무에 따른 질화 세균의 변화를 알아보기 위해 낙동강의 2 조사수역에서 다양한 형태의 질소(T-N, $NH_4$-N, $NO_2$-N, $NO_3$-N) 농도를 측정하였고 조사 수역에 있는 질화세균 종류를 확인한 후, fluorescent in situ hybridization (FISH)법으로 질화세균 수를 정량 평가하였다. 즉 암모니아 산화세균의 종류는 amoA 유전자, 그리고 아질산 산화 세균인 Nitrobacter sp.는 SSU 16S rDNA 특정 기호서열을 목표로 한 PCR-DGGE를 수행한 후 염기서열 분석으로 그들이 각각 Nitrosomonas sp., Nitrobacter sp.임이 확인됨에 따라 그에 상응하는 gene probe, NSO190와 NIT3을 사용해 FISH법을 수행하여 각 수역의 질화세균수를 비교하였다. 아울러 전반적인 세균학적 수질을 모니터링하기 위해 수계에 많은 ${\alpha}{\cdot}{\beta}{\cdot}{\gamma}$-Proteobacteria도 FISH법으로 검출하였다. ${\alpha}{\cdot}{\beta}{\cdot}{\gamma}$-Proteobacteria 분포도와 모든 유형의 질소 측정 결과에 따르면 정점 1 보다 정점 2의 유기물 오염도가 높다고 할 수 있었다. 이에 상응해 NSO160과 NIT3로 검출한 평균 질화세균수도 정점 1 (암모니아산화세균, $7.8{\times}10^5$; 아질산산화세균, $0.8{\times}10^6$ cells/ml)보다 정점 2 (암모니아산화세균, $9.3{\times}10^5$; 아질산산화세균, $1.6{\times}10^6$ cells/ml)에 더 많았고 그들이 총세균수에서 차지하는 평균 비율(%) 역시 정점 1 (NSO190, 18%; NIT3, 23%)에 비해 정점 2 (NSO190, 27%; NIT3, 34%)에서 높았다. 따라서 유기오염도가 낮은 상수원수 취수장 인근 수역인 정점 1 보다 생활하수처리시설 방류수로 인해 유기성 오염원이 상존하는 정점 2에서의 질화작용이 더 활발하다고 결론지을 수 있었다.

Bacterial Community Dynamics during Swine In vitro Fermentation Using Starch as a Substrate with Different Feed Additives for Odor Reduction

  • Alam, Md.J.;Jeong, C.D.;Mamuad, L.L.;Sung, H.G.;Kim, D.W.;Cho, S.B.;Lee, K.;Jeon, C.O.;Lee, Sang-S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권5호
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    • pp.690-700
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    • 2012
  • The experiment was conducted by in vitro fermentation and bacterial community analysis to investigate the reduction of odorous compounds in response to the use of feed additives (FA) during carbohydrate overload in growing pigs. Soluble starch at 1% (control) and various FA at 0.1% Ginseng meal (FA1); Persimmon leaf (FA2); Gingko nut (FA3) and Oregano lippia (FA4) were added to fecal slurry and incubated anaerobically for 12 and 24 h. In vitro parameters and microbial diversity of the dominant bacteria following fermentation were analyzed using Denaturing Gradient Gel Electrophoresis (DGGE), band cloning and sequencing of the V3 region. Results showed that total gas production increased with the advancement of incubation (p<0.05). pH values of FAs and control groups were decreased except the FA4 group which increased somewhat from 12 to 24 h (p<0.05). Ammonia nitrogen ($NH_3$-N) and $H_2S$ gas concentrations were comparatively lower in both stages in FA4 treatment than in the other groups (p<0.05). Hence, $NH_3$-N concentrations in liquid phases were increased (p<0.05) from 12 to 24 h, but the trend was lowest in FA4 than in the other groups at both stages. The total VFA production was comparatively lower and butyrate levels were moderate in FA4 group than in the the other groups during both stages (p<0.05). Indirect odor-reducing compounds such as $NO_2$, $NO_3$ and $SO_4$ concentrations were higher in the FA4 and FA3 than in the other groups at 24 h (p<0.05). After fermentation, ten dominant bands appeared, six of which appeared in all samples and four in only the FA4 treated group. The total number of DGGE bands and diversity was higher in the FA4-group compared to other groups. Additionally, similarity indices were lowest (71%) in the FA4, which represented a different bacterial community compared with the other groups. These findings indicate that $NH_3$-N, $H_2S$ and VFA production was minimal, and pH was also better in the FA4 group than in the other groups. Furthermore, the conversion of odor-reducing indirect compounds or their intermediates was higher in the FA4 group in compared to the other groups. FA4 group generated less odorous products and more indirect products by in vitro fermentation at 24 h, and their microbial pattern appeared to differ from that of the other groups. These findings suggest that this particular FA could change the microbial population, which may have a beneficial effect on odor reduction. It is recommended that the oregano lippia may be supplied to growing pigs as FA along with excess carbohydrate sources to reduce the production of odorous compounds.

Denaturing Gradient Gel Electrophoresis를 이용한 매립지 침출수로 오염된 지하수의 세균 군집 분석 (Analysis of Bacterials Community Structure in Leadchate-Contaminated Groundwater using Denaturing Gradient Gel Electrophoresis)

  • 김재수;김지영;구소연;고경석;이상돈;조경숙;고동찬
    • 한국미생물·생명공학회지
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    • 제34권2호
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    • pp.166-173
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    • 2006
  • 본 연구는 매립지 침출수로 오염된 지하수에서 수지화학적 분석결과와 미생물 군집구조 사이의 관계를 밝히기 위해 수행되었다. 이 연구를 위해 5개의 시료, 즉 침출수(KSG1-12), 처리수(KSG1-16), 두 개의 오염 지하수(KSG1-07과 KSG1-08), 비오염 지하수(KSG1-13)를 채취하여 분석하였다. 각 시료의 pH는 순서대로 8.83, 8.04, 6.87, 6.87, 6.53이였으며, 산화환원전위(Eh)는 각각 108, 202, 47, 200, 154 mV 이였고, 전기전도도(EC)는 3710, 894, 1223, 559, 169.9 $\mu$S/cm이였으며, 부유물질(SS)의 농도는 각각 86.45, 13.74, 4.18, 0.24, 11.91 mg/L이었다. KSG1-12 시료의 음이온 농도가 전체적으로 높았는데, 특히 염소이온($Cl^-$)와 중탄산염 ($HCO_3^-$)이 높았다. 기타 전자수용체와 관련 있는 이온들의 농도에서, 철(Fe), 망간(Mn), 황산염($SO_4^{2-}$)은 KSG01-08보다 KSG1-07에서 더 높았고 질산염은 반대로 나타났다. DGGE fingerprint 분석을 통한 유사도 비교는 KSG1-13과 KSG1-16이 57.2%로 가장 높았는데, 둘 다 오염도가 낮거나 오염이 전혀 없기 때문으로 추정된다. 한편, KSG1-08은 KSG1-13과 25.8% 그리고 KSG1-12와 27.6%의 유사성을 나타냈는데 이는 오염도의 차이 때문일 것으로 사료된다. 각 시료 별 우점종들의 가장 많이 분포된 계통발생학적 집단을 보면 KSG1-12는 분석된 클론 중 55.6%가 $\alpha$-Proteobacteria에 속하였고, KSG1-16은 50.0%가 $\gamma$-Proteobacteria, KSG1-07은 66.7%가 $\beta$-Proteobacteria, KSG1-08은 54.5%가 $\gamma$-proteobacteria, KSG1-13은 36.4%가 $\beta$-Proteobacteria에 속하였다. 이러한 결과를 통해 매립지 침출수가 지하수를 따라 흐르면서 미생물 군집구조가 바뀌었음을 알 수 있었는데, 오염물질의 농도변화, 이용 가능한 전자수용체, 및 기타 여러 환경요인들의 차이에 의한 것임을 추측할 수 있다.

혐기 발효 공정을 통한 음식물류 폐기물 탈리액으로부터 수소 생산 (Dark Fermentative Hydrogen Production using the Wastewater Generated from Food Waste Recycling Facilities)

  • 김동훈;이모권;임소영;김미선
    • 한국수소및신에너지학회논문집
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    • 제22권3호
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    • pp.326-332
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    • 2011
  • The authors examined the effects of operating parameters on the $H_2$ production by dark fermentation of the wastewater generated from food waste recycling facilities, in short "food waste wastewater (FWW)". Central composite design based response surface methodology was applied to analyze the effect of initial pH (5.5-8.5) and substrate concentration (2-20 g Carbo. COD/L) on $H_2$ production. The experiment was conducted under mesophilic ($35^{\circ}C$) condition and a heat-treated ($90^{\circ}C$ for 20min)anaerobic digester sludge was used as a seeding source. Although there was a little difference in carbohydrate removal, $H_2$ yield was largely affected by the experimental conditions, from 0.38 to 1.77 mol $H_2$/mol $hexose_{added}$. By applying regression analysis, $H_2$ yield was well fitted based on the coded value to a second order polynomial equation (p = 0.0243): Y = $1.78-0.17X_1+0.30X_2+0.37X_1X_2-0.29X_1{^2}-0.35X_2{^2}$, where $X_1$, $X_2$, and Y are pH, substrate concentration (g Carbo. COD/L), and hydrogen yield (mol $H_2$/mol $hexose_{added}$), respectively. The 2-D response surface clearly showed a high inter-dependency between initial pH and substrate concentration, and the role of these two factors was to control the pH during fermentation. According to the statistical optimization, the optimum condition of initial pH and substrate concentration were 7.0 and 13.4 g Carbo. COD/L, respectively, under which predicted $H_2$ yield was 1.84 mol $H_2$/mol $hexose_{added}$. Microbial analysis using 16S rRNA PCR-DGGE showed that $Clostridium$ sp. such as $Clostridium$ $perfringens$, $Clostridium$ $sticklandii$, and $Clostridium$ $bifermentans$ were main $H_2$-producers.

압축공기 분사시스템을 이용한 유류오염 해안의 효율적 정화 및 이에 따른 미생물군집분석 (Efficient Clean-up of Oil Spilled Shorelines Using the Compressed Air Jet System and Concomitant Microbial Community Analysis)

  • 장재수;김경희;이재식;;고성철
    • 미생물학회지
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    • 제49권4호
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    • pp.353-359
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    • 2013
  • 본 연구의 목표는 압축공기분사시스템을 이용하여 원유로 유출이 된 해안을 정화함에 있어서 그 정화효율성과 정화 전후의 총석유탄화수소(total petroleum hydrocarbon; TPH) 농도 및 미생물군집변화를 관찰함으로써 그 최적 정화과정을 이해하기 위한 기초자료를 얻고자 하는 것이다. 압축공기제트시스템을 2-5회 연속적용 시 오염지의 TPH가 약 66%까지 저감이 된 반면에 대조구인 해수를 펌핑한 경우에는 40% 정도의 저감효과가 관찰이 되었다. 압축공기의 분사 후 PCR-DGGE에 의한 미생물군집분석 결과에서는 유류분해미생물의 군집은 확인이 되지 않았다. 이는 정화에 의한 낮은 TPH 농도(약 100 mg/kg 수준, 탄소원), 처리환경에 내재적인 제한적인 질소 및 인의 농도에 기이한 것으로 판단된다. 따라서 잔여분의 유류는 에어제트시스템을 적용시 제한적 영양염류(질소 및 인 등)를 적절한 방식과 농도로 투여할 경우 거의 완전하게 제거가 가능할 것으로 사료된다. 향후 본 기술은 고농도의 유류 및 유기물로 오염된 다양한 수질환경 및 토양환경의 효율적이고 환경친화적인 정화에 활용이 될 것으로 기대된다.

Stability of Partial Nitrification and Microbial Population Dynamics in a Bioaugmented Membrane Bioreactor

  • Zhang, Yunxia;Xu, Yanli;Jia, Ming;Zhou, Jiti;Yuan, Shouzhi;Zhang, Jinsong;Zhang, Zhen-Peng
    • Journal of Microbiology and Biotechnology
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    • 제19권12호
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    • pp.1656-1664
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    • 2009
  • Bioaugmentation of bioreactors focuses on the removal of numerous organics, with little attention typically paid to the maintenance of high and stable nitrite accumulation in partial nitrification. In this study, a bioaugmented membrane bioreactor (MBR) inoculated with enriched ammonia-oxidizing bacteria (AOB) was developed, and the effects of dissolved oxygen (DO) and temperature on the stability of partial nitrification and microbial community structure, in particular on the nitrifying community, were evaluated. The results showed that DO and temperature played the most important roles in the stability of partial nitrification in the bioaugmented MBR. The optimal operation conditions were found at 2-3 mgDO/l and $30^{\circ}C$, achieving 95% ammonia oxidization efficiency and nitrite ratio ($NO_2^-/{NO_x}^-$) of 0.95. High DO (5-6 mg/l) and low temperature ($20^{\circ}C$) had negative impacts on nitrite accumulation, leading to nitrite ratio drop to 0.6. However, the nitrite ratio achieved in the bioaugmented MBR was higher than that in most previous literatures. Denaturing gradient gel electrophoresis (DGGE) and fluorescence in situ hybridization (FISH) were used to provide an insight into the microbial community. It showed that Nitrosomonas-like species as the only detected AOB remained predominant in the bioaugmented MBR all the time, and coexisted with numerous heterotrophic bacteria. The heterotrophic bacteria responsible for mineralizing soluble microbial products (SMP) produced by nitrifiers belonged to the Cytophaga-Flavobacterium-Bacteroides (CFB) group, and $\alpha$-, $\beta$-, and $\gamma$- Proteobacteria. The fraction of AOB ranging from 77% to 54% was much higher than that of nitrite-oxidizing bacteria (0.4-0.9%), which might be the primary cause for the high and stable nitrite accumulation in the bioaugmented MBR.