• Title/Summary/Keyword: genus Bacillus

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Isolation of Bacillus sp. SHL-3 from the Dry Soil and Evaluation of Plant Growth Promoting Ability

  • Hong, Sun Hwa;Kim, Ji Seul;Sim, Jun Gyu;Lee, Eun Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.48 no.1
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    • pp.36-43
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    • 2015
  • Excess use of chemical fertilizer causes soil acidification and accumulation of salt, and thus might bring to desertification of soil. To overcome this problem, it needs limited usage of chemical fertilizer and increased usage of natural fertilizer as an alternative. In this study, dry soil-borne Bacillus sp. SHL-3, which was isolated from arid and barren soil, with plant growth promoting activity was isolated for identification and to determine optimal culture condition. A bacterial strain SHL-3 had the IAA productivity ($5.16{\pm}0.10mg\;L^{-1}$), ACC deaminase activity ($0.36{\pm}0.09$ at 51 hours) and siderophore synthesis. It was identified as genus Bacillus sp.. Also, optimal culture condition of SHL-3 were $20^{\circ}C$ and pH 7 in LB medium. Bacillus sp. SHL-3 had up to 4% salt tolerance in the medium. We evaluated the plant growth promotion ability of SHL-3 using yam (Dioscorea japonica Thunb.). As a result, Bacillus sp. SHL-3 was effective on the increase of the shoot length (202.4% increase for 91 days). These results indicate that Bacillus sp. SHL-3 can serve as a promising microbial resource for the biofertilizers of soil.

Dominant-strains Variation of Soil Microbes by Temperate Change II (온도변화에 기인한 토양세균 우점종의 변화에 관한 연구 II)

  • Park, Kap-Joo;Lee, Byeong-Chol;Kim, Soo-Young;Park, Chan-Sun;Cho, Myung-Hwan
    • Korean Journal of Environmental Biology
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    • v.29 no.3
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    • pp.195-201
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    • 2011
  • Today, the weather is changing continually, due to the progress of global warming. As the weather changes, the habitats of different organisms will change as well. It cannot be predicted whether or not the weather will change with each passing day. In particular, the biological distribution of the areas climate change affects constitutes a major factor in determining the natural state of indigenous plants; additionally, plants are constantly exposed to rhizobacteria, which are bound to be sensitive to these changes. Interest has grown in the relationship between plants and rhizopheric microorganisms. As a result of this interest we elected to research and experiment further. We researched the dominant changes that occur between plants and rhizospheric organisms due to global warming. First, we used temperature as a variable. We employed four different temperatures and four different sites: room temperature ($27^{\circ}C$), $+2^{\circ}C$, $+4^{\circ}C$, and $+6^{\circ}C$. The four different sites we used were populated by the following strains: Pinus densiflora, Pinus koraiensis, Quercus acutissima. We counted colonies of these plants and divided them. Then, using 16S rRNA analysis we identified the microorganisms. In conclusion, we identified the following genera, which were as follows: 24 strains of Bacillus, 6 Paenibacillus strains, 1 Pseudomonas strains. Among these genera, the dominant strains in Pinus densiflora was discovered in the same genus. Additionally, those of Pinus koraiensis and Quercus acutissima changed in both genus and strains which changed into the Bacillus genus from the Paenibacillus genus at $33^{\circ}C$.

Structure and Characteristics of Bacterial Community on Biofilm of Food Wastewater Treatment System in Winter (식품폐수 처리 공정용 생물막의 겨울철 세균군집 구조와 특성)

  • Lee, Dong-Geun;Yoo, Ki-Hwan;Park, Seong-Joo
    • Journal of Environmental Health Sciences
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    • v.37 no.2
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    • pp.124-132
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    • 2011
  • Biofilm and aeration tank of pilot and full RABC (rotating activated Bacillus contactor) plant were analyzed to characterize and determine bacterial community structure in food wastewater treatment system at winter. Concentration of heterotrophic bacteria and Bacillus group was $10^7$ and $10^5$ CFU/ml, respectively, at biofilm of pilot-plant while others represented $10^6$ and $10^4$ CFU/ml, respectively. Five and eight phyla were detected at biofilm of pilot- and full-plant, respectively, by 16S rDNA sequencing. Biofilm of pilot-plant was dominated by ${\beta}$-Proteobacteria (38.8%), ${\gamma}$-Proteobacteria (22.4%), and Bacteroidetes (12.2%), and the most dominant genus was Zoogloeae genus (22.4%). Candidate division TM7 (12.5%) was only detected at biofilm of full-plant and it was dominated by Bacteroidetes (33.3%), ${\gamma}$-Proteobacteria (29.2%), and ${\beta}$-Proteobacteria (20.8%). Clostridium genus specific primer set enabled to detect the sequences of Clostridium genus. These suggested that anaerobic and aerobic bacteria were coexisted even from the initial period of biofilm formation and ${\beta}$-Proteobacteria, ${\gamma}$-Proteobacteria and Bacteroidetes were major phyla in biofilm of food wastewater treatment system at winter.

Effect on Livestock Manure Composting by the Enriched Microbial Population (미생물에 의한 축산 폐기물 퇴비화에 미치는 영향)

  • 신혜자
    • Journal of Life Science
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    • v.12 no.2
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    • pp.129-135
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    • 2002
  • Several kinds of thermophilic, aerobic microorganisms (Bacillus genus), metal leaching microorganisms (Thiobacillus, T. ferooxidans), and other nondegradable chemical-degrading microorganisms (Pseudomonas genus) were utilized to study the effect on composting livestock manure. Under the Carbon-Nitrogen ratio (C/N) of 35∼40 and water content of 50∼65% conditions, the composting in the cycling drum reactor showed slower composting and lower temperature increase than that of the manual reactor. Element analysis after composting indicated relatively high levels of mineral contents with the substitutional effect of chemical fertilizer. Metal analysis before and after composting showed lower As in all, Cr in pig, Pb in cow, Hg in chicken, and Cu in cow manure compost than the regulation values. Compost maturity was ascertained by the several maturity tests. Salmonella and E. cozi detection test by SS or EMB agar plate confirmed the safety from the pathogenic microorganisms. The results suggest that the inoculation of metal and some other chemical degrading microorganisms during composting might decrease metal contamination and increase composting rate.

Distribution and diversity of rhizosphere bacteria of mixed halophytes vegetation native to the Goraebul sand dune, Korea : Approaches to coastal dune conservation (한반도 고래불 해안사구에 자생하는 혼합 염생식물군락 근권세균의 분포 및 다양성 고찰 : 해안사구 보전을 위한 접근)

  • Jong Myong Park;Ji Won Hong;Ki-Eun Lee;Jong-Guk Kim;Young-Hyun You
    • Journal of Marine Bioscience and Biotechnology
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    • v.16 no.1
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    • pp.1-18
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    • 2024
  • Coastal dunes must be conserved. Their native halophytes support coastal geography while their symbiotic microorganisms help vegetation thrive. The Goraebul coast has the largest, well-conserved dune system on the East Sea of the Korean Peninsula due to a climax mixed halophyte (C. soldanella, C. kobomugi, and E. mollis) vegetation support. This study identified rhizobacteria and their diversity in mixed halophyte communities unique to Goraebul. Five phyla, 12 genera, and 21 species were identified based on 16S rDNA sequences from 65 isolates. The phylum Bacillota, class Bacillota, order Bacillales, and family Bacillaceae were identified, with Bacillus as the dominant genus (46.15%). The richness and Shannon's diversity were higher at the species than at the genus level due to the dominance of Bacillus; however, various Bacillus species (7) were identified. Therefore, the climax mixed vegetation adapted to the Goraebul coast may exert natural selection pressure in favor of the common characteristics of Bacillus. However, despite this advantage, the Shannon equitability (0.86), Simpson (0.08), and Shannon diversity (2.79) indexes indicate a stable rhizosphere cluster and the climax mixed vegetation is affected by symbiotic relationships between healthy rhizosphere microbiota.

Distribution of Marine Bacteria and Celluar Fatty Acid Composition of Dominated Genus in Suyeong Bay (수영만의 해양세균의 분포와 우점속의 균체 지방산 조성)

  • KANG Won-Bae;SEONG Hee-Kyung;MOON Chang-Ho;LEE Won-Jae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.4
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    • pp.640-651
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    • 1997
  • This study was performed to examine the distribution patterns, ecological characteristics and celluar fatty acid compositions of marine bacteria in Suyeong Bay. During study periods, total cell count (TC) and viable cell count (VC) were $10^7-10^8/m\ell\;and\;10^4-10^6\;cfu/m\ell$, respectively. The temporal variations of TC showed similar patterns between surface and bottom layer, but the VC at bottom decreased gradually from winter to summer. Among the 303 bacterial strains isolated in the study area, which belong to 10 genus types, Pseudomonas spp., $(32.3\%)$, Acinetobader sup. $(19.1\%)$, Vibrio spp. $(11.2\%)$, Flovobacterium spp. $(10.6\%)$ and Bacillus spp. $(7.9\%)$ were dominant. Thirty-one fatty acids were detected from Pseudomonas spp. and Bacillus spp., which were the most predominated among Gram positive and Gram negative bacteria. Celluar fatty acid compositions of Bacillus spp. were relatively simple compared to those of Pseudomonas spp.. Relatively high ratio of monounsaturated forms were detected in Pseudomonas spp. while branched types were dominant in those of Bacillus spp.. Hydroxy and cyclopropane fatty acid were detected only in the cellular fatty acid of Pseudomonas spp.. Cellular fatty acid compositions of Pseudomonas spp. revealed relatively high percentage of $C_{16:1},\;C_{17:1},\;C_{18:1}\;and\;C_{16:0}$, While Bacillus spp. predominated $C_{16:0}\;iso\;C_{16:0}\;anteiso,\;C_{17:0}\;anteiso\;and\;C_{16:1}$.

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Isolation and Characterization of Surfactin-producing Bacillus amyloliquefaciens YJ07 from Spent Mushroom (Pleurotus eryngii) Substrates (새송이버섯 수확 후 배지로부터 surfactin 생성 Bacillus amyloliquefaciens YJ07의 분리 및 특성)

  • Shin, Pyung Gyun;Yoo, Young Bok;Cho, Yong Un;Cho, Soo Jeong
    • Journal of Mushroom
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    • v.9 no.4
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    • pp.180-185
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    • 2011
  • Spent mushroom substrates (SMS) is a by-product remaining after a crop of mushrooms. About four surfactin-producing strains were isolated from SMS (Pleurotus eryngii). Among of them, one isolate, which designated to YJ07, potentially showed the antifungal activity against Aspergillus flavus and Aspergillus ochraceous producing mycotoxin on PDA medium. The biochemical characteristics of the strain YJ07 was similar with Bacillus subtilis and Bacillus amyloliquefaciens by Bacillus ID kit and VITEK 2 system. Comparative 16S rDNA gene sequence analysis of the strain YJ07 also showed that the strain YJ07 was most closely related to Bacillus amyloliquefaciens with sequence similarity of 99.5%. On the basis of their biochemical characteristics and phylogenetic distinctiveness, the strain YJ07 was classified within the genus Bacillus as Bacillus amyloliquefaciens YJ07. The antifungal compound from B. amyloliquefaciens YJ07 was similar to lipopeptide surfactin from Bacillus subtilis by TLC and HPLC analysis.

Isolation of Antifungal Bacterial Strain Bacillus sp. against Gray Mold infected in Kiwi Fruits and its Disease Control (참다래 잿빛곰팡이 병원균에 대한 길항균 Bacillus sp. 분리와 병해 억제 작용)

  • Cho, Jung-Il;Cho, Ja-Yong
    • Korean Journal of Organic Agriculture
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    • v.14 no.4
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    • pp.399-410
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    • 2006
  • This study was carried out to identity the effects of antifungal bacteria isolated from the soil grown kiwi fruit plants on the growth inhibition of Botrytis cinerea causing gray mold in kiwi fruit plants in the southern districts of Jeonnam. Two hundred and fifty antagonistic microorganisms were isolated and examined into the antifungal activity against Botrytis cinerea. We screened and isolated four bacterial strains which strongly inhibited Botrytis cinerea from the soil grown kiwi fruit plants. And the best antifungal bacterial strain which called CHO 163 was finally selected. Antagonistic microorganism CHO 163 was identified to be the genus Bacillus sp. based on the morphological and biochemical characterization. Bacillus sp. CHO 163 showed 86.9% of antifungal activity against Botrytis cinerea. By the bacterialization of culture broth and heated filtrates of culture broth, Bacillus sp. CHO 163 showed almost all of antagonistic activity against Botrytis cinerea. And we also confirmed that in vitro the treatment of Bacillus sp. CHO 163 cultured by SD+B+P broth efficiently controled the growth of Botrytis cinerea causing gray mold in kiwi fruit plants.

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Purification and Characterization of a Bacteriolytic Enzyme from Alkalophilic Bacillus sp.

  • Jung, Myeong-Ho;Kang, In-Soo;Bai, Dong-Hoon;Yu, Ju-Hyun
    • Journal of Microbiology and Biotechnology
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    • v.1 no.2
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    • pp.102-110
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    • 1991
  • Alkalophilic Bacillus sp. YJ-451, which was isolated from soil at several area in Korea, produced a novel type of bacteriolytic enzyme (cell wall peptidoglycan hydrolase) extracellulary. The cell wall hydrolytic activity was identified as a clear zone on sodium dodecyl sulfate polyacrylamide gel electrophoresis containing 0.2% (w/v) cell wall of Bacillus sp. as substrate. This enzyme was successively purified 66 fold with 3.2% yield in culture broth by ammonium sulfate precipitation, CM-cellulose column chromatography, and gel filtration, followed by hydroxylapatite column chromatography. The molecular weight of the purified enzyme was estimated to be 27,000 by sodium dodecyl sulfate polyacrylamide gel electrophoresis and gel filtration column chromatography. The optimum pH and temperature for the activity of the enzyme were pH 10.0 and $50^{\circ}C$, respectively. The enzyme was stable between pH 5.0 and 10.0 and up to $40^{\circ}C$. Among the microorganisms used in this experiment the enzyme was active against most of gram negative strains and the genus Bacillus such as B. megaterium, B. licheniformis, B. circulans, B. pumilus, B. macerans, B. polymyxa. The release of dinitrophenylglutamic acid but not reducing group from cell wall peptidoglycan digested by the enzyme suggested that the enzyme is a kind of peptidase which hydrolyzes the peptide bond at the amino group of D-glutamic acid in the peptidoglycan.

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Plant Growth-Promoting Activity Characteristics of Bacillus Strains in the Rhizosphere (근권에 존재하는 Bacillus 속 균주들의 식물 생장 촉진 활성 특성)

  • Oh, Ka-Yoon;Kim, Ji-Youn;Lee, Song Min;Kim, Hee Sook;Lee, Kwang Hui;Lee, Sang-Hyeon;Jang, Jeong Su
    • Microbiology and Biotechnology Letters
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    • v.49 no.3
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    • pp.403-412
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    • 2021
  • This study aimed to identify plant growth-promoting activity, phytopathogenic fungi growth inhibitory activity, mineral solubilization ability, and extracellular enzyme activity of the genus Bacillus in soil and the rhizosphere. With regards to antifungal activity against phytopathogenic fungi, DDP257 showed antifungal activity against all 10 pathogenic fungi tested. ANG20 showed the highest ability to produce indole-3-acetic acid, a plant growth-promoting factor (70.97 ㎍/ml). In addition, 10 species were identified to have 1-aminocyclopropane-1-carboxylate deaminase production ability, and most isolates showed nitrogen fixation and siderophore production abilities. Thereafter, the isolated strains' ability to solubilize minerals such as phosphate, calcite, and zinc was identified. With extracellular enzyme activity, the activity appeared in most enzymes. In particular, all the strains showed similar abilities for alkaline phosphatase, esterase (C4), acid phosphatase, and naphtol-AS-BI-phosphohydrolase production. This result was observed because the genus Bacillus secreted various organic substances, antibiotics, and extracellular enzymes. Therefore, through the results of this study, we suggest the possibility of using strains contributing to the improvement of the soil environment as microbial agents.