• Title/Summary/Keyword: Paenibacillus

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Diversity of Paenibacillus spp. in the Rhizosphere of Four Sorghum(Sorghum bicolor) Cultivars Sown with Two Contrasting Levels of Nitrogen Fertilizer Assessed by rpoB-Based PCR-DGGE and Sequencing Analysis

  • Coelho, Marcia Reed Rodrigues;Mota, Fabio Faria Da;Carneiro, Newton Portilho;Marriel, Ivanildo Evodio;Paiva, Edilson;Rosado, Alexandre Soares;Seldin, Lucy
    • Journal of Microbiology and Biotechnology
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    • v.17 no.5
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    • pp.753-760
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    • 2007
  • The diversity of Paenibacillus species was assessed in the rhizospheres of four cultivars of sorghum sown in Cerrado soil amended with two levels of nitrogen fertilizer(12 and 120 kg/ha). Two cultivars(IS 5322-C and IS 6320) demanded the higher amount of nitrogen to grow, whereas the other two(FBS 8701-9 and IPA 1011) did not. Using the DNA extracted from the rhizospheres, a Paenibacillus-specific PCR system based on the RNA polymerase gene(rpoB) was chosen for the molecular analyses. The resulting PCR products were separated into community fingerprints by DGGE and the results showed a clear distinction between cultivars. In addition, clone libraries were generated from the rpoB fragments of two cultivars(IPA 1011 and IS 5322-C) using both fertilization conditions, and 318 selected clones were sequenced. Analyzed sequences were grouped into 14 Paenibacillus species. A greater diversity of Paenibacillus species was observed in cultivar IPA 1011 compared with cultivar IS 5322-C. Moreover, statistical analyses of the sequences showed that the bacterial diversity was more influenced by cultivar type than nitrogen fertilization, corroborating the DGGE results. Thus, the sorghum cultivar type was the overriding determinative factor that influenced the community structures of the Paenibacillus communities in the habitats investigated.

Regulation of β-xylosidase biosynthesis in Paenibacillus sp. DG-22 (Paenibacillus sp. DG-22에서의 β-xylosidase 생합성 조절)

  • Lee, Tae-Hyeong;Lim, Pyung-Ok;Lee, Yong-Eok
    • Journal of Life Science
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    • v.17 no.3 s.83
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    • pp.407-411
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    • 2007
  • Regulation of ${\beta}-xylosidase$ synthesis in Paenibacillus sp. DC-22 was studied to optimize the enzyme production. ${\beta}-Xylosidase$ synthesis of the Paenibacillus sp. DG-22 was observed to be regulated by carbon sources present in culture media. The synthesis of ${\beta}-xylosidase$ was induced by xylan and methyl ${\beta}-D-xylopyranoside$ (${\beta}MeXyl$) but slightly repressed by readily metabolizable monosaccharides. ${\beta}MeXyl$ was found to be the best substrate for the induction of ${\beta}$-xylosidase and the most effective induction was obtained at a concentration of 10 mg/ml. ${\beta}-Xylosidase$ production showed a cell growth associated profile with the maximum amount formed during the late exponential phase of growth. The presence of glucose and xylose decreased the level of ${\beta}-xylosidase$ activity indicating that its production was subjected to a form of carbon catabolite repression. SDS-PAGE and zymogram techniques demonstrated the induction by ${\beta}MeXyl$ and revealed the presence of one ${\beta}-xylosidase$ of approximately 80 kDa.

Isolation and Characterization of Thermostable Xylanase-producing Paenibacillus sp. DG-22. (내열성 Xylanase를 생산하는 Paenibacillus sp. DG-22 균주의 분리 및 효소 특성)

    • Microbiology and Biotechnology Letters
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    • v.32 no.1
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    • pp.22-28
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    • 2004
  • A new moderate thermophilic bacterial strain DG-22 which produces thermostable xylanase was isolated from a timber yard soil in Kyungju, Korea. On the basis of morphological, biochemical and phylogenetic studies the new isolate was identified as a Paenibacillus species. Production of xylanase in this strain was strongly induced by adding xylan to the growth medium and repressed by glucose or xylose. No cellulase activity was detected. The temperature and pH for optimum activity were 8$0^{\circ}C$ and 5.0-5.5, respectively. The crude xylanase was stable at $60^{\circ}C$ and retained 60% of initial activity after 2h at $70^{\circ}C$. Zymogram analysis of the culture supernatant showed two xylanase active bands with molecular masses of 22 and 30 kDa.

Complete genome sequence of Paenibacillus swuensis DY6T, a bacterium isolated from gamma-ray irradiated soil (감마선 조사된 토양에서 분리된 박테리아 Paenibacillus swuensis DY6T의 완전한 게놈 서열)

  • Kim, Myung Kyum;Lee, Seung-Yeol;Jung, Hee-Young;Srinivasan, Sathiyaraj
    • Korean Journal of Microbiology
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    • v.52 no.4
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    • pp.500-502
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    • 2016
  • Several bacterial species have been reported to be surviving after the ionizing radiation treatment due to the presence of sophisticated enzymes systems and some endospores producing bacterial strains can also resist, due to the presence of thick spore coat. In this study, we report the complete genome sequence of a bacterium Paenibacillus swuensis $DY6^T$, isolated from an irradiated soil sample. The genome comprised of 5,012,599 bp with the G+C content of 49.93%, the genome included 4,463 protein coding genes and 133 RNA genes.

Paenibacillus kimchicus sp. nov., an antimicrobial bacterium isolated from Kimchi (김치로부터 분리된 항균 활성 세균 Paenibacillus kimchicus sp. nov.)

  • Park, A-rum;Oh, Ji-Sung;Roh, Dong-Hyun
    • Korean Journal of Microbiology
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    • v.52 no.3
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    • pp.319-326
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    • 2016
  • An antimicrobial bacterium to pathogenic microorganisms, strain $W5-1^T$ was isolated from Korean fermented-food Kimchi. The isolate was Gram-staining-variable, strictly aerobic, rod-shaped, endospore-forming, and motile with peritrichous flagella. It grew at $15-40^{\circ}C$, at pH 6.0-10.0, and in the presence of 0-4% NaCl. Strain $W5-1^T$ could hydrolyze esculin and xylan, and assimilate $\small{D}$-mannose, but not $\small{D}$-mannitol. Strain $W5-1^T$ showed antimicrobial activity against Listeria monocytogens, Pseudomonas aeruginosa, Staphylococcus aureus, and Salmonella typhi. The G+C content of the DNA of strains $W5-1^T$ was 52.6 mol%. The predominant respiratory quinone was menaquinone-7 (MK-7) and the major cellular fatty acids were $C_{16:0}$, antieiso-$C_{15:0}$, $C_{18:0}$, and $C_{12:0}$. The strain contained meso-diaminopimelic acid in cell-wall peptidoglycan. On the basis of 16S rRNA gene sequence and phylogenetic analysis, the strain W5-1 was shown to belong to the family Paenibacillaceae and was most closely related to Paenibacillus pinihumi $S23^T$ (98.4% similarity) and Paenibacillus tarimensis $SA-7-6^T$ (96.4%). The DNA-DNA relatedness between the isolate and Paenibacillus pinihumi $S23^T$ was 8.5%, indicating that strain $W5-1^T$ represented a species in the genus Paenibacillus. On the basis of the evidence from this polyphasic study, it is proposed that strain $W5-1^T$ is considered to represent a novel species of the genus Paenibacillus, for which the name Paenibacillus kimchicus sp. nov. is proposed. The type strain is $W5-1^T$ (=KACC $15046^T$ = $LMG 25970^T$).

Biocontrol of Fusarium Crown and Root Rot and Promotion of Growth of Tomato by Paenibacillus Strains Isolated from Soil

  • Xu, Sheng Jun;Kim, Byung Sup
    • Mycobiology
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    • v.42 no.2
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    • pp.158-166
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    • 2014
  • In this study, bacterial strains were isolated from soils from 30 locations of Samcheok, Gangwon province. Of the isolated strains, seven showed potential plant growth promoting and antagonistic activities. Based on cultural and morphological characterization, and 16S rRNA gene sequencing, these strains were identified as Paenibacillus species. All seven strains produced ammonia, cellulase, hydrocyanic acid, indole-3-acetic acid, protease, phosphatase, and siderophores. They also inhibited the mycelial growth of Fusarium oxysporum f. sp. radicis-lycopersici in vitro. The seven Paenibacillus strains enhanced a range of growth parameters in tomato plants under greenhouse conditions, in comparison with non-inoculated control plants. Notably, treatment of tomato plants with one identified strain, P. polymyxa SC09-21, resulted in 80.0% suppression of fusarium crown and root rot under greenhouse conditions. The plant growth promoting and antifungal activity of P. polymyxa SC09-21 identified in this study highlight its potential suitability as a bioinoculant.

Purification and Identification of Paenibacillus sp., Isolated from Diseased Larvae of Allomyrina dichotoma (Linnaeus, 1771) (Coleoptera: Scarabaeidae) in Insect Farms

  • Kang, Tae Hwa;Han, Sang Hoon;Weon, Hang Yeon;Lee, Young Bo;Kim, Namjung;Nam, Sung Hee;Park, Hae Chul
    • International Journal of Industrial Entomology and Biomaterials
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    • v.25 no.2
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    • pp.195-203
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    • 2012
  • In reared populations of Allomyrina dichotoma, commercial insects, the skin of last instar larvae was changed softer with opaque white, and infested grubs eventually died. To clarify the cause of the symptom, we collected the larvae of A. dichotoma from five farms and examined their intestinal bacterial florae using pyrosequencing technique. From those results, a member of Paenibacillus was found only in the larvae showing the symptom of disease. Through PCR analysis using a Paenibacillus specific primer set, we obtained the partial 16S rRNA gene sequence and confirmed the microbe as Paenibacillus sp. For clear identification, a whole guts was extracted from each larva showing the sign of the disease and incubated at $70^{\circ}C$ for 15 min to isolate spore forming bacteria. After then, each content of guts was cultured on $MYPGP_{NAL}$ agar medium($12.5{\mu}g/ml$ of nalidixic acid) at $30^{\circ}C$. The 16S rRNA gene sequence analysis for the isolated bacteria showed that they were closely related to P. rigui(97.9% similarity), to P. chinjuensis(96.1% similarity), and to P. soli(95.3% similarity). Additional tests including API test and cellular fatty acid composition analysis were performed, but the strain couldn't be identified at species level, suggesting it may represent novel species of the genus Paenibacillus.

Paenibacillus donghaensis sp. nov., a Xylan-degrading and Nitrogen-fixing Bacterium Isolated from East Sea Sediment

  • Choi, Jeong-Hwa;Im, Wan-Taek;Yoo, Jae-Soo;Lee, Sang-Mahn;Moon, Deok-Soo;Kim, Hyeon-Ju;Rhee, Sung-Keun;Roh, Dong-Hyun
    • Journal of Microbiology and Biotechnology
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    • v.18 no.2
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    • pp.189-193
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    • 2008
  • A Gram-positive and endospore-forming strain, $JH8^T$, was isolated from deep-sea sediment and identified as a member of the genus Paenibacillus on the basis of 16S rRNA gene sequence and phenotypic analyses. According to a phylogenetic analysis, the most closely related species was Paenibacillus wynnii LMG $22176^T$ (96.9%). Strain $JH8^T$ was also facultatively anaerobic and grew optimally at $20-25^{\circ}C$. The major cellular fatty acid was anteiso-$C_{15:0}$, and the DNA G+C content was 53.1mol%. The DNA-DNA relatedness between the isolate and Paenibacillus wynnii LMG $22176^T$ was 7.6%, indicating that strain $JH8^T$ and P. wynnii belong to different species. Based on the phylogenetic, phenotypic, and chemotaxonomic characteristics, strain $JH8^T$ would appear to belong to a novel species, for which the name Paenibacillus donghaensis sp. novo is proposed (type strain=KCTC $13049^T=LMG\;237S0^T$).

Cloning and Characterization of Xylanase Gene from Paenibacillus woosongensis (Paenibacillus woosongensis의 Xylanase 유전자 클로닝과 특성분석)

  • Yoon, Ki-Hong
    • Korean Journal of Microbiology
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    • v.48 no.2
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    • pp.141-146
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    • 2012
  • A gene encoding the xylanase (XynA) predicted from partial genomic sequence of Paenibacillus woosongensis was cloned into Escherichia coli by PCR. This xynA gene consisted of 633 nucleotides, encoding a polypeptide of 211 amino acid residues. The deduced amino acid sequence exhibited 85-89% identity with those of several Paenibacillus xylanases, belonging to the glycosyl hydrolase family 11. As a results of expression of the structural gene by T7 promoter of a pET23a(+) expression vector, xylanase activity was higher in cell-free extract than culture filtrate of a recombinant Escherichia coli BL21(DE3) CodonPlus. However, the expression level of xylanase was not sufficient be detected by SDS-PAGE. The cell-free extract showed maximal xylanase activity at $60^{\circ}C$ and pH 5.5. The predominant products resulting from xylan and xylooligosaccharide hydrolysis were xylose and xylotriose. The enzyme could hydrolyze xylooligosaccharides larger than xylbiose.