• Title/Summary/Keyword: subtilis

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Bacillus subtilis improves antioxidant capacity and optimizes inflammatory state in broilers

  • Yu Zhang;Junyan Zhou;Linbao Ji;Lian Zhang;Liying Zhao;Yubing Guo;Haitao Wei;Lin Lu
    • Animal Bioscience
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    • v.37 no.6
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    • pp.1041-1052
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    • 2024
  • Objective: Bacillus subtilis, a kind of probiotic with broad-spectrum antibacterial function, was commonly used in livestock and poultry production. Recent research suggested that Bacillus subtilis may have antioxidant properties and improve immune response. This study aimed to verify the probiotic function of Bacillus subtilis in the production of broiler chickens. Methods: A total of 324 (1-day-old) Arbor Acres broilers were selected and randomly divided into three groups: basal diet group (Ctr Group), basal diet + antibiotic growth promoter group (Ctr + AGP) and basal diet + 0.5% Bacillus subtilis preparation group (Ctr + Bac). The experiment lasted for 42 days. Muscle, serum and liver samples were collected at 42 days for determination. Results: The results showed that Bacillus subtilis could decrease malondialdehyde content in the serum and liver (p<0.05) and increase superoxide dismutase 1 mRNA expression (p<0.01) and total superoxide dismutase (p<0.05) in the liver. In addition, compared with AGP supplementation, Bacillus subtilis supplementation increased interleukin-10 (IL-10) and decreased tumor necrosis factor-α and IL-1β level in the serum (p<0.05). At 45 minutes after slaughter Ctr + Bac presented a higher a* value of breast muscle than Ctr Group (p<0.05), while significant change in leg muscle was not identified. Moreover, there was no difference in weight, shear force, cooking loss and drip loss of breast and leg muscle between treatments. Conclusion: Our results demonstrate that Bacillus subtilis in diet can enhance antioxidant capacity and optimize immune response of broilers.

생물방제균 Bfacillus subtilis YB-70의 외부 Urease 유전자 도입과 길항력 증강

  • Choi, Jong-Kyu;Kim, Yong-Su;Lee, Eun-Tag;Kim, Sang-Dal
    • Microbiology and Biotechnology Letters
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    • v.25 no.1
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    • pp.30-36
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    • 1997
  • To genetically breed powerful multifunctional antagonistic bacteria, the urease gene of alkalophilic Bacillus pasteurii was transferred into Bacillus subtilis YB-70 which had been selected as a powerful biocontrol agent against root-rotting fungus Fusarium solani. Urease gene was inserted into the HindIII site of pGB215-110 and designated pGU266. The plasmid pGU266 containing urease gene was introduced into the B. subtilis YB-70 by alkali cation transformation system and the urease gene was very stably expressed in the transformant of B. subtilis YB-70(pGU266). The optimal conditions for the transfomation were also evaluated. From the in vitro antibiosis tests against F. solani, the antifungal activity of B. subtilis YB-70 containing urease gene was much efficient than that of the non-transformed strain. Genetic improvement of B. subtilis YB-70 by transfer of urease gene for the efficient control seemed to be responsible for enhanced plant growth and biocontrol efficacy by combining its astibiotic action and ammonia producing ability.

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생물방제균 Bacillus subtilis YB-70이 생산하는 항진균성 항생물질의 분리 및 구조결정

  • Kim, Yong-Su;Son, Jong-Keun;Moon, Dong-Chul;Kim, Sang-Dal
    • Microbiology and Biotechnology Letters
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    • v.25 no.1
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    • pp.62-67
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    • 1997
  • A potential biocontrol bacterium, YB-70 was isolated from a rhizosphere in suppressive soil and identified as a strain of Bacillus subtilis. In several biochemical and in vitro antibiosis tests on Fusarium solani with the culture filterates from B. subtilis YB-70, we found that antifungal mechanism of B. subtilis YB-70 was mediated by antibiotic substances produced from the bacterium. These antifungal substances were appeared to be hear-resistant, micromolecular, and ethy alcohol soluble. Antifungal agents produced by B. subtilis YB-70 showed strong inhibified against root-rotting fungi F. solani in in vivo pot test. An antifungal substance. YBS-1s, was purified from the culture broth of B. subtilis YB-70 by isoelectronic precipitation, silica gel column chromatography and Sephadex LH-20 column chromatography analysis by Fab-MASS, $^{1}$H-NMR, $^{13}$C-NMR, DEPT, and amino acid analyzer revealed that the YBS-1A was a peptide antibiotics of iturin class containing seven amino acids from five different groups, and the other(YBS-1B) was an analogue of iturin group composed of 11 amino acids with larher molecular weight of about 1, 500 dalton, which was lager than that of iturin A.

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Genotoxicological Safety Evaluation of Crude Antifungal Compounds Produced by Bacillus subtilis SN7 (Bacillus subtilis SN7이 생성한 조항균 물질의 유전독성학적 안정성평가)

  • Chang, Hae-Choon;Koh, Sang-Bum;Lee, Jae-Joon
    • The Korean Journal of Community Living Science
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    • v.28 no.1
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    • pp.131-141
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    • 2017
  • This study was carried out to perform genotoxicological safety evaluation of crude antifungal compounds produced by Bacillus subtilis SN7 (B. subtilis SN7) isolated from meju. Bacterial reverse mutation assay with Salmonella typhimurium TA98, TA100, TA1535, and TA1537 or Escherichia coli WP2uvrA in the presence and absence of the S9 metabolic activation system was carried out, and the crude antifungal compounds produced by B. subtilis SN7 showed no significant increase in the number of revertant colonies. In the chromosomal aberration tests using Chinese hamster lung (CHL) cells, sample treatment groups showed no increase in the frequency of chromosome aberrations compared to the negative control group. Furthermore, in the micronucleus formation test, the crude antifungal compounds showed no significance increase in the frequency of polychromatic erythrocytes with micronuclei. These results suggest that the crude antifungal compounds produced by B. subtilis SN7 isolated from meju showed no harmful genotoxic effects.

Proteome Analysis of Bacillus subtilis When Overproducing Secretory Protein

  • Jang Mi;Park Byoung-Chul;Lee Do-Hee;Kho Chang-Won;Cho Sa-Yeon;Lee Baek-Rak;Park Sung-Goo
    • Journal of Microbiology and Biotechnology
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    • v.16 no.3
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    • pp.368-373
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    • 2006
  • Bacillus subtilis and related Bacillus species are frequently used as hosts for the mass production of recombinant proteins. Accordingly, this study examined the cellular response of B. subtilis to the overexpression of a soluble secretory protein. As such, the lichenase derived from B. cereus was overexpressed in B. subtilis, initially localized in the cytoplasm as a mature form and then secreted into the medium. Thereafter, the proteome of B. subtilis was analyzed using 2D electrophoresis and MALDI-TOF mass spectrometry. The expression of several heat-shock proteins, such as dnaK and groEL, was increased under this condition. In addition, manganese superoxide dismutase and NADH dehydrogenase were also upregulated in the lichenase-secreting B. subtilis. Therefore, it was concluded that the transient accumulation of a secreted protein in B. subtilis before secretion acted as a stress on the cell, which in turn induced the expression of various protective proteins.

An Unusual Bioconjugate of Glycerol and Poly(${\gamma}$-Glutamic Acid) Produced by Bacillus subtilis C1

  • SHIH ING-LUNG;WU JANE-YII;WU PEI-JEN;SHEN MING-HAU
    • Journal of Microbiology and Biotechnology
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    • v.15 no.5
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    • pp.919-923
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    • 2005
  • A bacterium capable of poly(${\gamma}$-glutamic acid) production was isolated from nonpasteurized soy sauce. It was judged to be a variety of Bacillus subtilis and designated as B. subtilis C1. B. subtilis C1 produced ${\gamma}$-PGA in the absence of exogenous glutamic acid; therefore, it is a de novo PGA­producing bacterium. The product produced by B. subtilis C1 was characterized by amino acid analysis to be composed of solely glutamic acid. However, the $H^1-NMR$ spectra showed chemical shifts of glycerol protons in addition to those of authentic ${\gamma}$-PGA, indicating that the product is in fact a bioconjugate of ${\gamma}$-PGA. The finding is unique, because the microbial production of ${\gamma}$-PGA bioconjugate has never been reported before. The molecular mass of the product was over 10,000 kDa as determined by GPC, and $97\%$ of the product was D-glutamate, indicating that L-glutamate was converted to its D-form counterpart by B. subtilis C1.

Properties of Promoters Transferred to the Donor Strain, Alkali-tolerant Bacillus sp. YA-14. (공여 균주인 알카리 내성 Bacillus속에 도입된 Promoter 의 특성)

  • 유주현;구본탁;정용준
    • Microbiology and Biotechnology Letters
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    • v.17 no.3
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    • pp.188-192
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    • 1989
  • The promoters from akali-tolerant Bacillus sp. YA-14 chromosomal DMA cloned in B. subtilis using pPL703 were stably transferred to the donor strain. In alkali-tolerant Bacillus sp., the promoters revealed similiar properties with in B. subtilis but were preyed to be more efficient than in B. subtilis comparing with pPL708. Alkali-tolerant Bacillus sp. harboring the recombinant plasmid, p-l2Bl, was abnormally more inducible with chloramphenicol than B. subtilis haying the plasmid. Therefore the host-vector system using this recombinant plasmid and alkali-tolerant Bacillus sp. was expected to be more available.

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A Bacteriocin of 5-kDa in Size Secreted by Bacillus subtilis 168 (Bacillus subtilis 168 균주가 분비하는 5 kDa 크기의 Bacteriocin)

  • Kwon, Gun-Hee;Lee, Hwang-A;Kim, Jeong-Hwan
    • Microbiology and Biotechnology Letters
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    • v.38 no.2
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    • pp.163-167
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    • 2010
  • Bacillus subtilis 168 secreted antimicrobial substance(s) into culture medium and culture supernatant inhibited growth of some Gram positive bacteria. B. cereus and Listeria monocytogenes were the most sensitive organisms. The antimicrobial activity was destroyed when culture supernatant was treated by protease and proteinase K, indicating the proteinous nature of the substance (bacteriocin). The molecular weight of the bacteriocin was estimated to be 5 kDa by Tricine SDS-PAGE. B. cereus ATCC 14579 cells were killed when exposed to the bacteriocin, indicating that the mode of inhibition was bacteriocidal. These results show that B. subtilis 168 could be useful as a starter for fermented foods such as cheonggukjang where B. cereus contamination is a major concern.

Fermentation and Quality Characteristics of Cheonggukjang Fermented with Bacillus subtilis BC-P1 (Bacillus subtilis BC-P1 균주를 이용하여 제조한 청국장의 발효 및 품질 특성분석)

  • Park, Sung-Yong;Bang, Mi-Ae;Oh, Boung-Jun;Park, Jeong-Hoon;Song, Won-Seob;Choi, Kyung-Min;Choung, Eui-Su;Boo, Hee-Ock;Cho, Seung-Sik
    • Korean Journal of Microbiology
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    • v.49 no.3
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    • pp.262-269
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    • 2013
  • The object of this study was to improve the quality of Cheonggukjang with new starter, Bacillus subtilis BC-P1. Twenty strains were isolated from the commercial cheonggukjang and 1 Bacillus strain (BC-P1) with protease activity was selected. The 16S rRNA gene sequence revealed that the BC-P1 was closely related to B. subtilis with 99% homology. The quality characteristics of chunggukjang fermented with B. subtilis BC-P1, Bacillus nato (PC) and commercial chunggukjang (NC) were investigated. The characteristics of fermentation were determined by protease, lipase, xylanase, chitinase, and fibrinolytic activities, reducing sugar, nutrient composition and amino acid contents of cheonggukjang sample. Cheonggukjang fermented with B. subtilis BC-P1 showed the strongest fibrinolytic, xylanase, and chitinase activities. Reducung sugar contents of Cheonggukjang samples were $30.16{\pm}2.11$ mg/g (NC), $28.56{\pm}1.52$ mg/g (PC), $32.39{\pm}1.87$ mg/g (BC-P1). And their total amino acid contents were 338.99 mg% (NC), 445.19 mg% (PC), 741.35 mg% (BC-P1). These results suggested that B. subtilis BC-P1 was suitable to be used as a starter to enhance the quality and effects of cheonggukjang.

Isolation and Identification of Low Molecular Weight Compounds Produced by Bacillus subtilis HJ927 and Their Biocontrol Effect on the Late Blight of Pepper (Capsicum annuum L.) (Bacillus subtilis HJ927에 의해 생성된 화합물의 분리, 동정 및 고추(Capsicum annum L.) 역병방제 효과)

  • Lee, Hyun-Jin;Park, Keun-Hyung;Shim, Jae-Han;Park, Ro-Dong;Kim, Yong-Woong;Hwang-Bo, Hoon;Cho, Jeung-Yong;Kim, Young-Cheol;Kim, Kil-Yong
    • Korean Journal of Soil Science and Fertilizer
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    • v.38 no.1
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    • pp.25-31
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    • 2005
  • A soil bacterium, Bacillus subtilis HJ927, exhibiting strong antagonistic property against pathogenic fungi was isolated from pepper fields infested with Phytophthora capsici. Pepper plants inoculated with P. capsici revealed severe root mortality while plants co-inoculated with B. subtilis HJ927 and P. capsici showed drastically reduced root mortality. Low molecular weight substances released by B. subtilis HJ927 mediated the plant protective effect. The anti-fungal compounds released by B. subtilis HJ927 were identified as 3-methylbutyric acid, 2-methylbutyric acid, and methyl 2-hydroxy, 3-phenylpropanoate by high-performance liquid chromatography and gas chromatography-mass spectrometry. In addition to these compounds, B. subtilis HJ927 also produced ${\beta}$-1,3-glucanase, a hydrolytic enzyme implicated in antifungal activity.