• 제목/요약/키워드: Pseudomonas putida B2

검색결과 32건 처리시간 0.02초

Cloning and Expression of Pseudomonas cepacia catB Gene in Pseudomonas putida

  • Song, Seung-Yeon;Jung, Young-Hee;Lee, Myeong-Sok;Lee, Ki-Sung;Kim, Young-Soo;Kim, Chi-Kyung;Choi, Sang-Ho;Min, Kyung-Hee
    • Journal of Microbiology
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    • 제34권4호
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    • pp.334-340
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    • 1996
  • The enzyme, cis,cis-muconate lactonizing enzyme has been proposed to play a key role in the $\beta$-ketoadipate pathway of benzoate degradation. A 3.2-kb EcoRI fragment termed as pRSU2, isolated from a Pseudomonas cepacia genomic library was able to complement the catB defective mutant. Several relevant restriction enzyme sites were determined within the cloned fragment. In Pseudomonas putida SUC2 carrying pRSU2, the enzyme activity was relatively higher than those of the induced or partially induced state of wild type P. putida PRS2000. It was probably due to higher expression of P. cepacia catB in P. putida PRS2000. It was probably due to higher expression of P. cepacia catB in P. putida. One possible interpretation of these results is that the catB promoter in P. cepacia is recognized within P. putida, resulting in the almost same expression level.

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Pseudomonas putida B2가 접종된 Biofilter의 황화수소제거 효과 (Effect of Hydrogen Sulfide Removal by Biofilter Seeded with Pseudomonas putida B2)

  • 윤지용;이수철;권일;성창근
    • KSBB Journal
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    • 제16권3호
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    • pp.286-289
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    • 2001
  • 본 실험은 Pseudomonas p$mu$tida 82를 접종한 biofilter에서의 H2S 제거능올 알아 보았다. 담체로는 유기담체로 peat moss, 무기탐체로 perlite 그리고 활성탄(GAC)을 각각 부피비로 50:25:25로 혼합하여 사용하였고, P. putida B2가 접종된 실험구는 본 균주가 접종되지 않은 대조구와 비교해본 결과 30% 정도의 제거율 향상을 볼 수 있었고, 운전중 $H_2S$ 부하 변동에 대해 대조구보다 안정되고 높은 제거율을 나타낸다는 것을 알 수 있었다. 염계 부하량은 제거율 100%를 기준으로 할 때 살헝구의 경우 $14.83 g/m$3hr$인 것으로 나타났고, 대조 구의 경우 최대 $4.93 g/m$3hr$나타냐 약 3배 정도 질험구가 더 큰 부하량 처리능력을 나타내였다.- 본 질험결파로 탈취 균주로서 P. putida B2의 가능성을 타진해 본 결파 충불한 $H_2S$ 제거력을 발휘했으며, 아울러 활성탄을 점가하여 부하 변동에 대해 보다 안정적인 제거효과를 보여 현 탈취공정의 부하 변동에 대한 안정성과 순치 기간의 필요성율 극복할 수 있을 것으로 판단된다.

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Pseudomonas putida F1과 Burkholderia cepacia G4에 의한 BTEX, trichloroethylene 분해 (Degradation of BTEX and Trichloroethylene by Pseudomonas putida F1 and Burkholderia cepacia G4)

  • 이승우;이준명;장덕진
    • KSBB Journal
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    • 제13권5호
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    • pp.561-568
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    • 1998
  • Two cometabolic trichloroethylene (TC) degraders, Pseudomonas putida F1 and Burkholderia (Pseudomonas) cepacia G4, were found to catabolize phenol, benzene, toluene, and ethylbenzene as carbon and energy sources. Resting cells of P. putida F1 and B. cepacia G4 grown in the presence of toluene and phenol, respectively, were able to degrade not only benzene, toluene and ethylenzene but also TCE and p-xylene. However, these two strains grown in the absence of toluene or phenol did not degrade TCE and p-xylene. Therefore, it was tentatively concluded that cometabolic degradation of TC and p-xylene was mediated by toluene dioxygenase (P. putida F1) or toluene-2-monooxygenase (B. cepacia G4). Maximal degradation rates of BTEX and TCE by toluene- and phenol-induced resting cells of P. putida F1 and B. cepacia G4 were appeared to be 4-530 nmol/(min$.$mg cell protein) when a single compound was solely served as a target substrate. In case of double substrates, the benzene degradation rate by P. putida F1 in the presence of toluene was decreased up to one seventh of that for the single substrate. TCE degradation rate was also linearly decreased as toluene concentration increased. On the other hand, toluene degradation rate was enhanced by benzene and TCE. For B. cepacia G4, degradation rates of TCE and toluene increased 4 times in the presence of 50 ${\mu}$M phenol. From these results, it was concluded that a degradation rate of a compound in the presence of another cosubstrate(s) could not be predicted by simply generalizing antagonistic or synergistic interactions between substrates.

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Characterization of the Biogenic Manganese Oxides Produced by Pseudomonas putida strain MnB1

  • Jiang, Shaofeng;Kim, Do-Gun;Kim, Jeong-Hyun;Ko, Seok-Oh
    • Environmental Engineering Research
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    • 제15권4호
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    • pp.183-190
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    • 2010
  • Biogenic Mn oxides are expected to have great potential in the control of water pollution due to their high catalytic activity, although information on biological Mn oxidation is not currently sufficient. In this study, the growth of a Mn oxidizing microorganism, Pseudomonas putida MnB1, was examined, with the Mn oxides formed by this strain characterized. The growth of P. putida MnB1 was not significantly influenced by Mn(II), but showed a slightly decreased growth rate in the presence of Pb(II) and EE2, indicating their insignificant adsorption onto the cell surface. Mn oxides were formed by P. putida MnB1, but the liquid growth medium and resulting biogenic solids were poorly crystalline, nano-sized particles. Biogenic Mn oxidation by P. putida MnB1 followed Michaelis-Menten kinetics, with stoichiometric amounts of Mn oxides formed, which corresponded with the initial Mn(II) concentration. However, the formation of Mn oxides was inhibited at high initial Mn(II) concentration, suggesting mass transfer obstruction of Mn(II) due to the accumulation of Mn oxides on the extracellular layer. Mn oxidation by P. putida MnB1 was very sensitive to pH and temperature, showing sharp decreases in the Mn oxidation rates outside of the optimum ranges, i.e. pH 7.43-8.22 and around 20-$26^{\circ}C$.

Cloning and Sequence Analysis of the xyIL Gene Responsible for 4CBA-Dihydrodiol Dehydrogenase from Pseudomonas sp. S-47

  • 박동우;이상만;가종옥;김지경
    • 미생물학회지
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    • 제38권4호
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    • pp.275-275
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    • 2002
  • Pseudomonas sp. S-47 is capable of catabolizing 4-chlorobenzoate (4CBA) as carbon and energy sources under aerobic conditions via the mesa-cleavage pathway. 4CBA-dioxygenase and 4CBA-dihydrodiol dehydrogenase (4CBA-DD) catalyzed the degradation af 4CBA to produce 4-chlorocatechol in the pathway. In this study, the xylL gene encoding 4CBA-DD was cloned from the chromosomal DNA of Pseudomonas sp. S-47 and its nucleotide sequence was analyzed. The xylL gene was found to be composed of 777 nucleotide pairs and to encode a polypeptide of 28 kDa with 258 amino acid residues. The deduced amino acid sequence of the dehydrogenase (XylL) from strain S-47 exhibited 98% and 60% homologies with these of the corresponding enzymes, Pseudomonas putida mt-2 (XyIL) and Acinetobacter calcoaceticus (BenD), respectively. However, the amino arid sequences show 30% or less homology with those of Pseudomonas putida (BnzE), Pseudomonas putida Fl (TodD), Pseudomonas pseudoalcaligenes KF707 (BphB), and Pseudomonas sp. C18 (NahB). Therefore, the 4CBA-dihydrodiol dehdrogenase of strain S-47 belongs to the group I dehydrogenase involved in the degradation of mono-aryls with a carboxyl group.

Salicylate를 생분해하는 pseudomonas putida의 특성 (Characterization of a salicylate-degrading strain of pseudomonas putida)

  • 홍순우;하영칠;이계준;배경숙
    • 미생물학회지
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    • 제24권1호
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    • pp.51-56
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    • 1986
  • Eight strains of the bacteria capable of growing on salicylate as the sole carbon source were isolated form soil and river water. Three of these isolates were identified as Acinetobacter calcoaceticus (AcBl), Pseuomonas putida biotype B (PpB2), and P. putida biotype A (PpB3). Effects of temperature, pH and C source concentration on biodegradation of salicylate by PpB3 were wxamined. The optimum conditions were as follows; $30^{\circ}C$ for temperature, 7.0 for pH, and 10mM for C source concentration. Ultraviolet scanning spectrum of the salicylate was measured. The spectrum has two peaks at 225nm and 292nm. The spectra of the culture filtrates indicate that ring degradation of salicylate is accomplished.

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Carbapenemase를 생산하는 imipenem 내성 세균의 특성 및 항생제 감수성 (Characteristics and Antibiotic Susceptibility of Imipenem-Resistant Clinical Isolates Producing Carbapenemase)

  • 최한나;박철;김형락;백근식;김세나;성치남
    • 생명과학회지
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    • 제20권8호
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    • pp.1214-1220
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    • 2010
  • 대한민국 순천의 병원 입원 환자의 검체로부터 imipenem 내성 세균을 분리하였다. 54개의 분리균을 16S rRNA 유전자와 gyrB 유전자 염기서열 비교를 기초로 하여 계통분류학적으로 동정하였다. 분리균들은 Pseudomonas aeruginosa (30균주; 55.6%), Acinetobacter baumannii (21; 38.9%), Enterobacter hormaechei (2)와 Pseudomonas putida (2)에 속했다. 22개의 균주가 metallo-$\beta$-lactamase (MBL)를 생산하였으며 종별 구성은 다음과 같다; Acinetobacter baumannii 12균주, Pseudomonas aeruginosa 7균주, P. putida 2균주 그리고 Enterobacter hormaechei 1균주. 분리균들의 항생제 감수성은 디스크 확산법과 Vitek 을 이용하여 조사하였다. IMP 와 VIM 형의 metallo-$\beta$-lactamase를 생산하는 균주들은 OXA 와 SHV 형 $\beta$-lactamase를 생산하는 균주들에 비해 ceftazidime, aztreonam, amikacin과 gentamicin에 대한 내성율이 높았다.

Cloning and Sequence Analysis of Two Catechol-degrading Gene Clusters from a Phenol-utilizing Bacterium Pseudomonas putida SM25

  • Jung, Young-Hee;Ka, Jong-Ok;Cheon, Choong-Ⅰll;Lee, Myeong-Sok;Song, Eun-Sook;Daeho Cho;Park, Sang-Ho;Ha, Kwon-Soo;Park, Young-Mok
    • Journal of Microbiology
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    • 제41권2호
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    • pp.102-108
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    • 2003
  • A 6.1 kb Sph I fragment from the genomic DNA of Pseudomonas putida SM 25 was cloned into the veetor pUC19. The open reading frame of catB was found to consist of 1,122 nucleotides. The sequence alignment of the catB gene products from different kinds of bacteria revealed an overall identity ranging from 40 to 98%. The catC gene contained an open reading frame of 96 codons, from which a protein with a molecular mass of about 10.6 kDa was predicted. The amino acids in the proposed activesite region of CatC were found to be almost conserved, including the charged residues. Since the catBC genes in P. putida SM25 were tightly linked, the could be regulated under coordinate transcription, and transcribed from a single promoter located upstream of the catB gene, as in P. putida RBI.

Cloning and Sequence Analysis of the xyIL Gene Responsible for 4CBA-Dihydrodiol Dehydrogenase from Pseudomonas sp. S-47

  • Park, Dong-Woo;Kim, Youngsoo;Lee, Sang-Mahn;Ka, Jong-Ok;Kim, Chi-Kyung
    • Journal of Microbiology
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    • 제38권4호
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    • pp.275-280
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    • 2000
  • Pseudomonas sp. S-47 is capable of catabolizing 4-chlorobenzoate (4CBA) as rarbon and energy sources under aerobic conditions via the mesa-cleavage pathway. 4CBA-dioxygenase and 4CBA-dihydrodiol dehydrogenase (4CBA-DD) catalyzed the degradation af 4CBA to produce 4-chlorocatechol in the pathway. In this study, the xylL gene encoding 4CBA-DD was cloned from the chromosomal DNA of Pseudomonas sp. S-47 and its nucleotide sequence was analyzed. The xylL gene was found to be composed of 777 nucleotide pairs and to encode a polypeptide of 28 kDa with 258 amino acid residues. The deduced amino acid sequence of the dehydrogenase (XylL) from strain S-47 exhibited 98% and 60% homologies with these of the corresponding enzymes, Pseudomonas putida mt-2 (XyIL) and Acinetobacter calcoaceticus (BenD), respectively. However, the amino arid sequences show 30% or less homology with those of Pseudomonas putida (BnzE), Pseudomonas putida Fl (TodD), Pseudomonas pseudoalcaligenes KF707 (BphB), and Pseudomonas sp. C18 (NahB). Therefore, the 4CBA-dihydrodiol dehdrogenase of strain S-47 belongs to the group I dehydrogenase involved in the degradation of mono-aryls with a carboxyl group.

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Pseudomonas sp. 의 균주개발에 유용한 클로닝 백터 pKU11 의 조립

  • 강형일;고상근;이영록
    • 미생물학회지
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    • 제30권5호
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    • pp.410-414
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    • 1992
  • 난분해계 물질을 분해할 수 있는 균주 개발에 유용한 클로닝백터를 개발하기 위하여, Pseudomonas putida 로부터 유래한 R 플라스미드 pKU10 을 HindIII 로부터 부분소화하여 약 8.5 kb 의 새로운 플라스미드 pKU11 을 조립하고, 여러 숙주세포에서의 안정성 및 catechol 2, 3-dioxygenase 유전자의 클로닝 을 통해 난분해계 유전자클로닝 백터로의 유용성을 조사하였다. pKU11 은 높은 농도의 ampicilin 과 tetracyclin 에 대해서 내성을 나타내었고, P. putida TN1307 에 도입되었을 때 수세대 동안 안정되게 발현되었지만, Pseudomonas 이외의 숙주세포로서 E. coli 와 Achromobacter gr. D. V. 에 도입되었을 낮은 형질전환빈도와 불안정성을 나타내었다. pKU11 의 copy 수는 8 개로 조사되었고, pKU11 에 xylene 분해에 관련된 catechol 2, 3-dioxygenase 유전자를 클로닝 하였을 때 P. putida TN 1307 에서 잘 발현하였다. 따라서 pkU11 은 난 분해계 유전자를 클로닝하는에 Pseudomonas 에서 유용한 벡터로서 쓰일 수 있을 것으로 사료된다.

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