• Title/Summary/Keyword: Molecular Characterization

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Endophytic fungi harbored in Panax notoginseng: diversity and potential as biological control agents against host plant pathogens of root-rot disease

  • Zheng, You-Kun;Miao, Cui-Ping;Chen, Hua-Hong;Huang, Fang-Fang;Xia, Yu-Mei;Chen, You-Wei;Zhao, Li-Xing
    • Journal of Ginseng Research
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    • v.41 no.3
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    • pp.353-360
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    • 2017
  • Background: Endophytic fungi play an important role in balancing the ecosystem and boosting host growth. In the present study, we investigated the endophytic fungal diversity of healthy Panax notoginseng and evaluated its potential antimicrobial activity against five major phytopathogens causing root-rot of P. notoginseng. Methods: A culture-dependent technique, combining morphological and molecular methods, was used to analyze endophytic fungal diversity. A double-layer agar technique was used to challenge the phytopathogens of P. notoginseng. Results: A total of 89 fungi were obtained from the roots, stems, leaves, and seeds of P. notoginseng, and 41 isolates representing different morphotypes were selected for taxonomic characterization. The fungal isolates belonged to Ascomycota (96.6%) and Zygomycota (3.4%). All isolates were classified to 23 genera and an unknown taxon belonging to Sordariomycetes. The number of isolates obtained from different tissues ranged from 12 to 42 for leaves and roots, respectively. The selected endophytic fungal isolates were challenged by the root-rot pathogens Alternaria panax, Fusarium oxysporum, Fusarium solani, Phoma herbarum, and Mycocentrospora acerina. Twenty-six of the 41 isolates (63.4%) exhibited activity against at least one of the pathogens tested. Conclusion: Our results suggested that P. notoginseng harbors diversified endophytic fungi that would provide a basis for the identification of new bioactive compounds, and for effective biocontrol of notoginseng root rot.

Purification and Characterization of ($Ca^{2+}$+$Mg^{2+}$)-ATPase of Sarcoplasmic Reticulum from Rat Skeletal Muscle (쥐 근소포체의 ($Ca^{2+}$+$Mg^{2+}$)-ATPase의 분리정제와 그 효소특성에 관하여)

  • Lee, Jong-Soon;Ha, Doo-Bong;Chung, Chin-Ha
    • The Korean Journal of Zoology
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    • v.28 no.1
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    • pp.31-43
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    • 1985
  • The $(Ca^{2+}+Mg^{2+})$-ATPase has been purified homogeneously from sarcoplasmic reticulum of rat skeletal muscle by sucrose density gradient centrifugation. The purified enzyme has a molecular weight of 115,000 as judged by polyacrylamide gel electrophoresis in the presence of sodium dedecyl sulfate, and therefore has the same size of the enzyme in rabbit and chick skeletal muscle. $Ca^{2+}, Mg^{2+}, Fe^{2+}, Co^{2+}, and Mn^{2+}$ at 50 $\\muM$ show stimulatory effect on the ATP-ase, while $Zn^{2+}, Cu^{2+}, and Hg^{2+}$ inhibit it at the same concentration. The ATPase activity is insensitive to antimalarial drugs such as quinine and quinacrine, but is sensitive to inhibition by p-hydroxymecurie benzoate and phenylmethylsulfonylfluoride. The enzyme has optimum pH of 6 to 7 and Km value for ATP is estimated to be 98 $\\muM$. Thus, a number of biochemical properties of this enzyme appear to be different from those of the enzyme that have been isolated from rabbit skeletal muscle. The $(Ca^{2+}+Mg^{2+})$-ATPase appears to be selectively degraded in microsomal fraction. The activity of metalloendoprotease is evident in the microsomal preparation when assayed by radioactively labeled protein substrate, such as $^{3}H-casein and $^{125}I$-insulin. However, it is presently unclear whether the metalloendoprotease is responsible for the degradation of the $(Ca^{2+}+Mg^{2+})$-ATPase.

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Purification and Characterization of Protease from Bacillus subtilis PANH765 (Bacillus subtilis PANH765가 생산하는 Protease의 정제 및 특성)

  • 이창호;우철주;베동호;김관필
    • Food Science and Preservation
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    • v.10 no.2
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    • pp.246-251
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    • 2003
  • Pretense produced by Bacillus subtilis PANH765 was purified from culture supernatant by using ammonium sulfate fractionation DEAE-cellulose ion exchange chromatography, and gel filtration with Sephacryl S 200 HR and Sepharose CL-6B. DEAE-cellulose ion exchange column chromatography, separated the pretense into one fraction. This fraction was further purified using Sephacryl S 200 HR and Sepharose CL-6B gel titration. The molecular mass of pretense was estimated to be 35.0 kDa by the SDS-PAGE and gel filtration using Sepharose CL-6B. The results indicated that the purified pretense are monomeric proteins. Specific activity and purification folds of pretense were 657 U/mg and 4.35, respectively. The optimum temperature, optimum pit stable at a temperature range and pH ranges for the purified protease were 65$^{\circ}C$, 7.05, 50 ∼ 75$^{\circ}C$ and 6.0 ∼ 7.5, respectively. The pretense activity was decreased by the presence of PMSF and DFP, which the protease activity was increased by the presence of Na$\^$+/, K$\^$+/, Mg$\^$2+/ and NH$_4$$\^$+/ ions.

Purification and Characterization of Protease Produced by Aspergillus wentti Isolated from Korean Traditional Meju (한국 전통 메주 유래의 Aspergillus wentti가 생성하는 Protease 의 정제 및 특성)

  • Lim, Seong-Il
    • Korean Journal of Food Science and Technology
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    • v.32 no.1
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    • pp.161-167
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    • 2000
  • The protease produced by a newly isolated Aspergillus wentti from Korean traditional Meju was purified and characterized. The optimal medium composition and culture conditions for maximum protease production were ; bran :1% glucose solution =1 : 1, pH 9.0, $30^{\circ}C$, and 4 days of fermentation. Protease was purified by QAE-Sephadex, SP-Sephadex ion exchange chromatography and Sephadex G-100 chromatography. The specific activity and the purification fold of the purified enzyme were 213 unit/mg protein and 27.3, respectively. The molecular weight of purified protease was found to be 32 kDa by SDS-PAGE. Km and Vmax value's for hammastein milk casein were $3.049{\times}10^{-4}\;M\;and\;151.1\;{\mu}g/min$, respectively. Kinetic parameters showed that the enzyme has higher affinity to casein than isolated soybean protein, hemoglobin and bovine serum albumin. Optimal pH and temperature for reaction of the purified enzyme were 9.0 and $50^{\circ}C$, respectively. The enzyme was stable at pH 4.0-11.0, below $40^{\circ}C$, and the activity was not stimulated by metal ions. 1mM phenylmethylsulfonyl fluoride inhibited the enzyme activity by 98.5%. It means that the enzyme is one of serine protease.

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Determination of Heat Killing Temperature of Orchardgrass(Dactylis glomerata L.) (오차드그라스 (Dactylis glomerata L.)의 치사온도 결정)

  • Kim, K.Y.;Kang, K.M.;Rim, Y.W.;Park, G.J.;Lim, Y.C.;Seo, S.;Son, D.Y.;Jo, J.K.
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.24 no.1
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    • pp.25-28
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    • 2004
  • To determine lethal temperature of orchardgrass (Dactylis glomerata L. cv. Janbeol 102) developed in Korea at heat-stressed conditions, seedlings grown in a amall pots for 4 weeks were treated at $45^{\circ}C$, $50^{\circ}C$ or $55^{\circ}C$ for 1 h. Heat treatments at $60^{\circ}C$ and $65^{\circ}C$ for 1 h, several plants were withered and showed damage symptom on their leaves. When the plants were exposed to $70^{\circ}C$ for 1 h, most of leaves were severely withered, but it was not lethal conditions for the whole plants. By contrast, most of plants were died within one day after heat treatment at $80^{\circ}C$ for 1h. Furthermore, plants exposed to $80^{\circ}C$ for 55 min were also died within 7 days. It was found that new shoots were regenerated from the plants that had been treated at $80^{\circ}C$ within 50 min. These results indicate that heat treatment at $80^{\circ}C$ for 55 min is an optimum condition to distinguish the lethality of orchardgrass plants. Simple viability assay system established in this study will be useful for selection and characterization of heat-tolerant transgenic orchardgrass plants.

Characterization of Somatolactin cDNA from Rock Bream (Oplegnathus fasciatus) (돌돔(Oplegnathus fasciatus) somatolactin cDNA의 분석)

  • 강현실;여인규;이제희
    • Journal of Life Science
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    • v.13 no.6
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    • pp.805-813
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    • 2003
  • cDNA encoding somatolactin (SL) was obtained by RT-PCR from pituitary glands of rock bream (Oplegnathus fasciatus). The full length cDNA of rock bream somatolactin (rbSL) is 1636 bp long. It contains a 696 bp open reading frame encoding a signal peptide of 24 amino acids (an) and a mature protein of 207 aa. rbSL has seven cysteine residues$(Cys^{5},\; Cys^{15},\; Cys^{42},\; Cys^{65},\; Cys^{181},\; Cys^{198}\; $and $Cys^{206})$ and two potential N-glycosylation sites at positions $Asn^{121}$and $Asn^{153}$. The rbSL shares 61.1∼92.6% amino acid sequence similarities and 63∼92.6% nucleotide sequence identities with other teleost SLs, except for goldfish and channel catfish SL. Amino acid sequence alignment revealed that rbSL has four conserved domains $(A_{SL},\; B_{SL},\; C_{SL}and\; D_{SL})$ common to all SLs. Out of these domains, $(A_{SL},\; B_{SL},\; C_{SL}and\; D_{SL})$, are also conserved in all teleost growth hormones and prolactins. The cDNA of rbSL has been cloned into pET expression vector in order to produce recombinant rbSL in E. coli BL2l(DE3) cells. The recombinant protein showed a molecular weight of 27 kDa in SDS-PAGE.

Purification and Characterization of β-Xylosidase from Paenibacillus sp. DG-22 (Paenibacillus sp. DG-22로부터 β-xylosidase의 정제 및 특성분석)

  • Lee, Tae-Hyeong;Lim, Pyung-Ok;Lee, Yong-Eok
    • Journal of Life Science
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    • v.17 no.10
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    • pp.1341-1346
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    • 2007
  • An intracellular ${\beta}-xylosidase$ from Paenibacillus sp. DG-22 was purified to homogeneity by ion-exchange, hydrophobic interaction and gel-filtration chromatography. The molecular weight of the enzyme was measured to be 156,000 by gel filtration and 80,000 by SDS-PAGE, indicating that the enzyme consisted of two identical subunits. The purified enzyme exhibited maximum activity at $65^{\circ}C$ and pH 5.5. It retained 89% of its initial activity up to 60 min at $60^{\circ}C$ and had a half-life of 25 min at $65^{\circ}C$. The enzyme was highly specific for pNPX as the substrate. It showed little or no activity against other p-nitrophenyl glycosides and xylans. The $K_m\;and\;V_{max}$ for pNPX was 0.53 mM and 3.18 U/mg protein, respectively. The ${\beta}-xylosidase$ was strongly inhibited by $Ag^+,\;Fe^{2+},\;Hg^{2+}\;and\;Zn^{2+}$ and slightly activated by DTT. The hydrolysis product from xylobiose, xylotriose, and xylotetraose was xylose.

Characterization of Sporulation-Specific Glucoamylase of Saccharomyces diastaticus (Saccharomyces diastaticus의 포자형성 특이 글루코아밀라제의 특성)

  • Kim, Eun-Ju;Ahn, Jong-Seog;Kang, Dae-Ook
    • Journal of Life Science
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    • v.20 no.5
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    • pp.683-690
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    • 2010
  • The yeast strains of Saccharomyces diastaticus produce one of three isozymes of an extracellular glucoamylase I, II or III, a type of exo-enzyme which can hydrolyse starch to generate glucose molecules from non-reducing ends. These enzymes are encoded by the STA1, STA2 and STA3 genes. Another gene, sporulation-specific glucoamylase (SGA), also exists in the genus Saccharomyces which is very homologous to the STA genes. The SGA has been known to be produced in the cytosol during sporulation. However, we hypothesized that the SGA is capable of being secreted to the extracellular region because of about 20 hydrophobic amino acid residues at the N-terminus which can function as a signal peptide. We expressed the cloned SGA gene in S. diastaticus YIY345. In order to compare the biochemical properties of the extracellular glucoamylase and the SGA, the SGA was purified from the culture supernatant through ammonium sulfate precipitation, DEAE-Sephadex A-50, CM-Sephadex C-50 and Sephadex G-200 chromatography. The molecular weight of the intact SGA was estimated to be about 130 kDa by gel filtration chromatography with high performance liquid chromatography (HPLC) column. Sodium dedecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) analysis showed it was composed of two heterogeneous subunits, 63 kDa and 68 kDa. The deglycosylation of the SGA generated a new 59 kDa band on the SDS-PAGE analysis, indicating that two subunits are glycosylated but the extent of glycosylation is different between them. The optimum pH and temperature of the SGA were 5.5 and $45^{\circ}C$, respectively, whereas those for the extracellular glucoamylase were 5.0 and $50^{\circ}C$. The SGA were more sensitive to heat and SDS than the extracellular glucoamylase.

Protease Properties of Protease-Producing Bacteria Isolated from the Digestive Tract of Octopus vulgaris (Octopus vulgaris의 장관으로부터 분리한 단백질 분해효소 생성 균주와 생성된 효소의 특성)

  • Liu, Qing;Ren, Pei;Piao, Meizi;Yang, Ji-Young
    • Journal of Life Science
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    • v.23 no.12
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    • pp.1486-1494
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    • 2013
  • A high protease-producing strain was isolated and identified from the digestive tract of octopus vulgaris by detecting a hydrolysis circle of protease and its activity. The strain was identified by morphology observation, biochemical experiments, and 16S rRNA sequence analysis. The protease obtained from the strain was purified by a three-step process involving ammonium sulfate precipitation, carboxy methyl-cellulose (CM-52) cation-exchange chromatography, and DEAE-Sephadex A50 anion-exchange chromatography. The properties of protease were characterized as well. The strain Bacillus sp. QDV-3, which produced the highest activity of protease, was isolated. On the basis of the phenotypic and biochemical characterization and 16S rRNA gene-sequencing studies, the isolate was identified as follows: domain: Bacteria; phylum: Firmicutes; class: Bacilli; order: Bacillales; family: Bacillaceae; and genus: Bacillus. The isolate was shown to have a 99.2% similarity with Bacillus flexus. A high active protease designated as QDV-E, with a molecular weight of 61.6 kDa, was obtained. The enzyme was found to be active in the pH range of 9.0-9.5 and its optimum temperature was $40^{\circ}C$. The protease activity retained more than 96% at the temperature of $50^{\circ}C$ for 60 min. Phenylmethylsulfonyl fluoride (PMSF) inhibited the enzyme activity, thus confirming that this protease isolated from Bacillus sp. QDV-3 is an alkaline serine protease. Metal ions, $Mn^{2+}$ and $Mg^{2+}$, were determined to enhance the protease activity, whereas $Ba^{2+}$, $Zn^{2+}$, and $Cu^{2+}$ were found to inactivate the enzyme.

Characterization of Streptococcosis Occurrence and Molecular Identification of the Pathogens of Cultured Flounder in Jeju Island (제주지역 양식넙치의 연쇄구균증 발생동향 및 원인균에 대한 분자적 동정)

  • Jeong, Yong-Uk;Kang, Chul-Young;Kim, Min-Ju;Heo, Moon-Soo;Oh, Duck-Chul;Kang, Bong-Jo
    • Korean Journal of Microbiology
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    • v.42 no.3
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    • pp.199-204
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    • 2006
  • Streptococcosis of olive flounder(Paralichthys olivaceus) is an important bacterial disease in Jeju island. In this study, we investigated monthly infection pattern of this disease in different size of the flounder fish. Even though the disease occurred throughout the year, the infection ratio was relatively higher in the months with warm water season. The infection was more prevalent in adult flounder over 30 cm total length compare to these of small size fish. Two infectious species of streptococcosis pathogens were detected by multiplex PCR assay. Detection ratios of Streptococcus iniae and S. parauberis reached up to 46% and 54%, respectively, from June 2003 to May 2005 in Jeju island. S. iniae occurred intensively from September to October, whereas S. parauberis reported from March to May. S. iniae and S. parauberis infections of cultured flounder share some common features, but clinical findings showed considerable differences between two diseases. Distended abdomen, protruded anus and ascitic fluid in the peritoneal cavity are evident lesions detected in S. iniae infection, whereas, flounders infected by S. parauberis showed prominent lesions such as darkened surface and haemorrhaging in the non-ocular side. Both streptococcosis pathogens were sensitive to antibiotics, such as ampicillin and amoxicillin. However, S. iniae strains were more sensitive to doxycycline, erythromycin and oxytetracycline than S. parauberis strains.