• 제목/요약/키워드: Bacillus aryabhattai

검색결과 13건 처리시간 0.028초

퇴비에서 분리한 Bacillus aryabhattai K13의 유전체 염기서열 (Complete genome sequence of Bacillus aryabhattai K13 isolated from compost)

  • ;이승제;;전소현;채종찬
    • 미생물학회지
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    • 제53권4호
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    • pp.332-333
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    • 2017
  • 단일 탄소원과 에너지원으로 1% 리그닌을 사용하여 퇴비를 농축배양한 시료로부터 Bacillus aryabhattai K13 균주를 분리하였다. K13 균주의 유전체는 약 5.0 Mb 크기의 염색체와 139 kb와 78 kb 크기의 2개 플라스미드로 구성되어 있다. 본 연구에서 결정된 유전체의 분석은 리그닌 분해에 관여하는 유전자를 규명할 수 있는 정보를 제공할 것으로 판단된다.

Investigating Biochemical Properties of Bacillus aryabhattai DA2 from Diesel-Contaminated Soil

  • Kim, Sang-Jun;Adhikari, Arjun;Lee, Ko-Eun;Joo, Gil-Jae
    • 환경생물
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    • 제36권2호
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    • pp.199-205
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    • 2018
  • Petroleum energy is the major source of the world energy market, and its massive usage, and the corresponding extreme environmental pollution, imposes a serious threat on the ecological cycles. By screening oil-contaminated soil, we isolated, identified, and characterized a novel strain that represents a considerable diesel-degrading potentiality; the Bacillus aryabhattai DA2 strain is registered in the NCBI with the accession number MG571630, and it possesses an efficient tributyrin-degrading capacity. The optimal condition for diesel degradation by DA2 strain was observed at pH between 7-8 and at the temperature of $30^{\circ}C$. The strain is resistant to salt as well as the antibiotics like ampicillin and streptomycin. These results indicate B. aryabhattai is one of the potential candidates for the remediation of the diesel-contaminated sites.

Bacillus aryabhattai H19-1에 의한 양파 생육후기 건조피해 완화 효과 (Bacillus aryabhattai H19-1-Mediated Mitigation of Drought Stress in Onion Bulb Development and Maturation)

  • 문혜정;유성제;상미경
    • 식물병연구
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    • 제29권2호
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    • pp.200-203
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    • 2023
  • 양파 생육후기 중 가뭄에 의한 피해가 발생할 때 Bacillus aryabhattai H19-1를 관주처리할 경우, 양파의 수량이 대조구 대비 유의하게 증가하였고, 수확한 양파의 규격이 증가하여 상품성이 증가하였다. 또한, 수확한 양파에 함유되어 있는 아스코르브산과 카로티노이드 함량이 H19-1 처리 시 증가하여, 이에 따라 가뭄 스트레스에 의한 피해가 경감했을 가능성이 있음을 제시하였다. 따라서, 이후 연구에서는 H19-1의 건조피해 저감과 관련한 작용 기작에 대한 연구를 수행할 예정이다.

Application of Antifungal CFB to Increase the Durability of Cement Mortar

  • Park, Jong-Myong;Park, Sung-Jin;Kim, Wha-Jung;Ghim, Sa-Youl
    • Journal of Microbiology and Biotechnology
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    • 제22권7호
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    • pp.1015-1020
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    • 2012
  • Antifungal cement mortar or microbiological calcium carbonate precipitation on cement surface has been investigated as functional concrete research. However, these research concepts have never been fused with each other. In this study, we introduced the antifungal calcite-forming bacteria (CFB) Bacillus aryabhattai KNUC205, isolated from an urban tunnel (Daegu, South Korea). The major fungal deteriogens in urban tunnel, Cladosporium sphaerospermum KNUC253, was used as a sensitive fungal strain. B. aryabhattai KNUC205 showed $CaCO_3$ precipitation on B4 medium. Cracked cement mortar pastes were made and neutralized by modified methods. Subsequently, the mixture of B. aryabhattai KNUC205, conidiospore of C. sphaerospermum KNUC253, and B4 agar was applied to cement cracks and incubated at $18^{\circ}C$ for 16 days. B. aryabhattai KNUC205 showed fungal growth inhibition against C. sphaerospermum. Furthermore, B. aryabhattai KNUC205 showed crack remediation ability and water permeability reduction of cement mortar pastes. Taken together, these results suggest that the $CaCO_3$ precipitation and antifungal properties of B. aryabhattai KNUC205 could be used as an effective sealing or coating material that can also prevent deteriorative fungal growth. This study is the first application and evaluation research that incorporates calcite formation with antifungal capabilities of microorganisms for an environment-friendly and more effective protection of cement materials. In this research, the conception of microbial construction materials was expanded.

황토를 부착한 이불 면 원단의 원적외선 방출량 및 생균의 분리 동정 연구 (A Study on Far-infrared Radiation and Proliferation of Ocherous Cotton Quilt Fabrics)

  • 이구연;이형환;함석찬
    • 한국자연치유학회지
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    • 제8권2호
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    • pp.71-77
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    • 2019
  • 목적: 특허 받은 황토 면 원단의 원적외선 방사율 및 면 원단을 20회까지 세탁을 하였을 때에 어떠한 미생물이 존재하는지를 조사하여 분리 동정하는 것이 목적이었다. 방법: 원적외선 방사능 측정기와 미생물을 영양배지에 배양하여 증식하는 단일 콜로니를 이용하여 16S rRNA법으로 동정하였다. 결과: 황토이불 면의 원적외선의 방사율은 40℃에서 5~20 ㎛에서 0.902(90.2%)이었고, 방사에너지는 3.63 × 102 w/m2로 높게 나타났다. 황토 이불 면 원단에서 2.0 × 102 cells/ml의 생균수가 존재하였고, 그리고 일반 면 원단에서는 생균이 발견되지 않았다. 단일 콜로니로 분리된 B-2 균주의 16S rRNA의 염기서열은 1,419 bases이었고, A-4균주의 염기서열은 1,284 bases이었다. 이 두 균주의 16S rRNA의 염기서열은 Bacillus 속 세균들과 높은 상동성을 보이었다. B-2 균주는 B. aryabhattai EF114313의 16S rRNA 염기서열과 99.0% 그리고 A-4균주는 B. bingmayongensis AKCS01000011의 16S rRNA 염기서열과 99.0%의 높은 상동성이 나타났다. 상기의 결과들을 활용하여 16S rRNA을 이용하여 유연관계를 조사하여 콜로니 균주 B-2를 B. aryabhattai BJ-2 균주로, A-4를 B. bingmayongensis BJ-4 균주로 최종 동정하였다. 결론: 황토 이불 면 원단에서 두 종류의 간균을 발견하였고, 이불 면 원단이 높은 량의 원적외선 및 원적외선 방사에너지가 발산하므로 유용하게 이용될 수 있다고 본다.

Enhanced Tolerance of Chinese Cabbage Seedlings Mediated by Bacillus aryabhattai H26-2 and B. siamensis H30-3 against High Temperature Stress and Fungal Infections

  • Lee, Young Hee;Jang, Su Jeong;Han, Joon-Hee;Bae, Jin Su;Shin, Hyunsuk;Park, Hee Jin;Sang, Mee Kyung;Han, Song Hee;Kim, Kyoung Su;Han, Sang-Wook;Hong, Jeum Kyu
    • The Plant Pathology Journal
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    • 제34권6호
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    • pp.555-566
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    • 2018
  • Two rhizobacteria Bacillus aryabhattai H26-2 and B. siamensis H30-3 were evaluated whether they are involved in stress tolerance against drought and high temperature as well as fungal infections in Chinese cabbage plants. Chinese cabbage seedlings cv. Ryeokgwang (spring cultivar) has shown better growth compared to cv. Buram-3-ho (autumn cultivar) under high temperature conditions in a greenhouse, whilst there was no difference in drought stress tolerance of the two cultivars. In vitro growth of B. aryabhattai H26-2 and B. siamensis H30-3 were differentially regulated under PEG 6000-induced drought stress at different growing temperatures (30, 40 and $50^{\circ}C$). Pretreatment with B. aryabhattai H26-2 and B. siamensis H30-3 enhanced the tolerance of Chinese cabbage seedlings to high temperature, but not to drought stress. It turns out that only B. siamensis H30-3 showed in vitro antifungal activities and in planta crop protection against two fungal pathogens Alternaria brassicicola and Colletotrichum higginsianum causing black spots and anthracnose on Chinese cabbage plants cv. Ryeokgwang, respectively. B. siamensis H30-3 brings several genes involved in production of cyclic lipopeptides in its genome and secreted hydrolytic enzymes like chitinase, protease and cellulase. B. siamensis H30-3 was found to produce siderophore, a high affinity iron-chelating compound. Expressions of BrChi1 and BrGST1 genes were up-regulated in Chinese cabbage leaves by B. siamensis H30-3. These findings suggest that integration of B. aryabhattai H26-2 and B. siamensis H30-3 in Chinese cabbage production system may increase productivity through improved plant growth under high temperature and crop protection against fungal pathogens.

Induced Tolerance to Salinity Stress by Halotolerant Bacteria Bacillus aryabhattai H19-1 and B. mesonae H20-5 in Tomato Plants

  • Yoo, Sung-Je;Weon, Hang-Yeon;Song, Jaekyeong;Sang, Mee Kyung
    • Journal of Microbiology and Biotechnology
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    • 제29권7호
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    • pp.1124-1136
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    • 2019
  • Salinity is one of the major abiotic stresses that cause reduction of plant growth and crop productivity. It has been reported that plant growth-promoting bacteria (PGPB) could confer abiotic stress tolerance to plants. In a previous study, we screened bacterial strains capable of enhancing plant health under abiotic stresses and identified these strains based on 16s rRNA sequencing analysis. In this study, we investigated the effects of two selected strains, Bacillus aryabhattai H19-1 and B. mesonae H20-5, on responses of tomato plants against salinity stress. As a result, they alleviated decrease in plant growth and chlorophyll content; only strain H19-1 increased carotenoid content compared to that in untreated plants under salinity stress. Strains H19-1 and H20-5 significantly decreased electrolyte leakage, whereas they increased $Ca^{2+}$ content compared to that in the untreated control. Our results also indicated that H20-5-treated plants accumulated significantly higher levels of proline, abscisic acid (ABA), and antioxidant enzyme activities compared to untreated and H19-1-treated plants during salinity stress. Moreover, strain H20-5 upregulated 9-cisepoxycarotenoid dioxygenase 1 (NCED1) and abscisic acid-response element-binding proteins 1 (AREB1) genes, otherwise strain H19-1 downregulated AREB1 in tomato plants after the salinity challenge. These findings demonstrated that strains H19-1 and H20-5 induced ABA-independent and -dependent salinity tolerance, respectively, in tomato plants, therefore these strains can be used as effective bio-fertilizers for sustainable agriculture.

Effect of Bacillus aryabhattai H26-2 and B. siamensis H30-3 on Growth Promotion and Alleviation of Heat and Drought Stresses in Chinese Cabbage

  • Shin, Da Jeong;Yoo, Sung-Je;Hong, Jeum Kyu;Weon, Hang-Yeon;Song, Jaekyeong;Sang, Mee Kyung
    • The Plant Pathology Journal
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    • 제35권2호
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    • pp.178-187
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    • 2019
  • Plants are exposed to biotic stresses caused by pathogen attack and complex abiotic stresses including heat and drought by dynamic climate changes. To alleviate these stresses, we investigated two bacterial stains, H26-2 and H30-3 in two cultivars ('Ryeokkwang' and 'Buram-3-ho') of Chinese cabbage in plastic pots in a greenhouse. We evaluated effects of bacterial strains on plant growth-promotion and mitigation of heat and drought stresses; the role of exopolysaccharides as one of bacterial determinants on alleviating stresses; biocontrol activity against soft rot caused by Pectobacterium carotovorum subsp. carotovorum PCC21. Strains H26-2 and H30-3 significantly increased fresh weights compared to a $MgSO_4$ solution; reduced leaf wilting and promoted recovery after re-watering under heat and drought stresses. Chinese cabbages treated with H26-2 and H30-3 increased leaf abscisic acid (ABA) content and reduced stomatal opening after stresses treatments, in addition, these strains stably colonized and maintained their populations in rhizosphere during heat and drought stresses. As well as tested bacterial cells, exopolysaccharides (EPS) of H30-3 could be one of bacterial determinants for alleviation of tested stresses in Chinese cabbages, however, the effects were different to cultivars of Chinese cabbages. In addition to bacterial activity to abiotic stresses, H30-3 could suppress incidence (%) of soft rot in 'Buram-3-ho'. The tested strains were identified as Bacillus aryabhattai H26-2 and B. siamensis H30-3 based on 16S rRNA gene sequence analysis. Taken together, H26-2 and H30-3 could be candidates for both plant growth promotion and mitigation of heat and drought stresses in Chinese cabbage.

전통발효식품과 토양으로부터 분리된 혼합균주의 최적생육조건 및 음식물쓰레기 분해 효과 (Optimal Culture Conditions and Food Waste Decomposition Effects of Mixed Strains Separated from Traditional Fermented Food and Soils)

  • 김민선;김희정;정은선;박주용;채종찬;황권택;이승제
    • 한국키틴키토산학회지
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    • 제23권4호
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    • pp.285-292
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    • 2018
  • 음식물쓰레기 분해용 균주를 선발하기 위하여 전통발효식품과 토양으로부터 내염성, 내열성을 갖는 균주 분리를 시도하였으며, protease, amylase, cellulase 및 lipase의 효소활성도를 평가하였다. 5% NA 배지에서 분리된 균주는 212종이었으며, 전통발효식품의 경우 4가지 효소활성을 가지고, 토양의 경우 2가지 이상의 효소활성을 가지며, 억제환이 15 mm 이상의 크기를 지닌 79종의 균주를 우선 선발하였다. 선발된 균주를 대상으로 분자유전학적 동정을 진행한 결과, 중복성을 배제하여 11종의 균주를 최종적으로 선발하여 혼합균주로 사용하였다. 혼합균주의 최적 배양조건으로는 배양시간은 24시간, 배양온도는 $30^{\circ}C$ 그리고 pH의 최적 조건은 7.0 부근인 것으로 확인되었다. 최적배양된 혼합균주 처리에 따른 음식물쓰레기 분해능 평가 결과 멸균수 첨가군은 10 mesh ($2000{\mu}m$)에서 103 g, 혼합균주 첨가군은 10 mesh ($2000{\mu}m$)에서 18 g인 것으로 보아 혼합균주로 나타나 음식물의 고형분의 입자가 액상으로 분해되었음을 확인하였다.

Profiles of Bacillus spp. Isolated from the Rhizosphere of Suaeda glauca and Their Potential to Promote Plant Growth and Suppress Fungal Phytopathogens

  • Lu, Ping;Jiang, Ke;Hao, Ya-Qiao;Chu, Wan-Ying;Xu, Yu-Dong;Yang, Jia-Yao;Chen, Jia-Le;Zeng, Guo-Hong;Gu, Zhou-Hang;Zhao, Hong-Xin
    • Journal of Microbiology and Biotechnology
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    • 제31권9호
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    • pp.1231-1240
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    • 2021
  • Members of the genus Bacillus are known to play an important role in promoting plant growth and protecting plants against phytopathogenic microorganisms. In this study, 21 isolates of Bacillus spp. were obtained from the root micro-ecosystem of Suaeda glauca. Analysis of the 16S rRNA genes indicated that the isolates belong to the species Bacillus amyloliquefaciens, Bacillus velezensis, Bacillus subtilis, Bacillus pumilus, Bacillus aryabhattai and Brevibacterium frigoritolerans. One of the interesting findings of this study is that the four strains B1, B5, B16 and B21 are dominant in rhizosphere soil. Based on gyrA, gyrB, and rpoB gene analyses, B1, B5, and B21 were identified as B. amyloliquefaciens and B16 was identified as B. velezensis. Estimation of antifungal activity showed that the isolate B1 had a significant inhibitory effect on Fusarium verticillioides, B5 and B16 on Colletotrichum capsici (syd.) Butl, and B21 on Rhizoctonia cerealis van der Hoeven. The four strains grew well in medium with 1-10% NaCl, a pH value of 5-8, and promoted the growth of Arabidopsis thaliana. Our results indicate that these strains may be promising agents for the biocontrol and promotion of plant growth and further study of the relevant bacteria will provide a useful reference for the development of microbial resources.