• Title/Summary/Keyword: Bt

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Bacillus thuringiensis as a Specific, Safe, and Effective Tool for Insect Pest Control

  • Roh, Jong-Yul;Choi, Jae-Young;Li, Ming-Sung;Jin, Byung-Rae;Je, Yeon-Ho
    • Journal of Microbiology and Biotechnology
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    • v.17 no.4
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    • pp.547-559
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    • 2007
  • Bacillus thuringiensis (Bt) was first described by Berliner [10] when he isolated a Bacillus species from the Mediterranean flour moth, Anagasta kuehniella, and named it after the province Thuringia in Germany where the infected moth was found. Although this was the first description under the name B. thuringiensis, it was not the first isolation. In 1901, a Japanese biologist, Ishiwata Shigetane, discovered a previously undescribed bacterium as the causative agent of a disease afflicting silkworms. Bt was originally considered a risk for silkworm rearing but it has become the heart of microbial insect control. The earliest commercial production began in France in 1938, under the name Sporeine [72]. A resurgence of interest in Bt has been attributed to Edward Steinhaus [105], who obtained a culture in 1942 and attracted attention to the potential of Bt through his subsequent studies. In 1956, T. Angus [3] demonstrated that the crystalline protein inclusions formed in the course of sporulation were responsible for the insecticidal action of Bt. By the early 1980's, Gonzalez et al. [48] revealed that the genes coding for crystal proteins were localized on transmissible plasmids, using a plasmid curing technique, and Schnepf and Whiteley [103] first cloned and characterized the genes coding for crystal proteins that had toxicity to larvae of the tobacco hornworm, from plasmid DNA of Bt subsp. kurstaki HD-1. This first cloning was followed quickly by the cloning of many other cry genes and eventually led to the development of Bt transgenic plants. In the 1980s, several scientists successively demonstrated that plants can be genetically engineered, and finally, Bt cotton reached the market in 1996 [104].

Enhanced Insecticidal Activity of Bacillus thuringiensis against the Diamondback Moth, Plutella xylostella, Using an Immunosuppressive Effect of Juvenile Hormone Analogue, Pyriproxyfen, Formulation (유약호르몬 유사체인 피리프록시펜 제제의 배추좀나방(Plutella xylostella) 면역 억제 효과와 이를 이용한 Bacillus thuringiensis 살충력 제고 기술)

  • Kim, Geun-Seob;Kim, Yong-Gyun
    • The Korean Journal of Pesticide Science
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    • v.13 no.2
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    • pp.111-116
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    • 2009
  • Juvenile hormone (JH) is an insect hormone mediating immature metamorphosis and adult reproduction. It also mediates immune responses to suppress hemocyte behavior, which is, however, activated by ecdysteroid. This study investigated an effect of a commercial pyriproxyfen (a JH agonist) formulation on a cellular immune response of the diamondback moth, Plutella xylostella, and analysed its mixture with Bacillus thuringiensis (Bt) in insecticidal potency. The commercial pyriproxyfen formulation significantly suppressed hemocyte-spreading behavior at low doses as did in pyriproxyfen technical grade. When the commercial pyriproxyfen formulation was mixed with Bt, Bt toxicity was significantly increased against P. xylostella larvae in laboratory. The mixture effect was then confirmed in field cultivating cabbage infested with P. xylostella larvae. The mixture showed a significantly enhanced mortality and reduced effective lethal time, compared to only Bt treatment.

An Educational Simulator for Operational Strategies of the Block Train Services (블록 트레인 서비스 운영 전략 학습 시뮬레이터 개발)

  • Jung, Jae Un;Kim, Hyun Soo
    • Journal of Digital Convergence
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    • v.10 no.11
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    • pp.197-202
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    • 2012
  • Block Train Services(BTS) are actively studied in many countries for higher productivity and eco-friendly systems of inland freight distribution. However it is difficult for an ordinary student or researcher to approach for understanding and studying BTS because rail transport is operated monopolistically by Korea government and most freight information in each company belongs to its business secret due to the industrial characteristics. For such reasons, the study aimed to develop a BTS simulation model that it supports understanding and strategic decision required for BT operation. To build the result, expert depth-interviews were conducted with analysis of relative references through the domestic representative BT operating company K. The simulator refers to the Busan NewPort-Uiwang section and functionally, it supports scenario generation and analysis on BT operation. It makes a contribution to study a new type's technological application for learning and strategic analysis of BTS.

A Cellulolytic and Xylanolytic Enzyme Complex from an Alkalothermoanaerobacterium, Tepidimicrobium xylanilyticum BT14

  • Phitsuwan, Paripok;Tachaapaikoon, Chakrit;Kosugi, Akihiko;Mori, Yutaka;Kyu, Khin Lay;Ratanakhanokchai, Khanok
    • Journal of Microbiology and Biotechnology
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    • v.20 no.5
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    • pp.893-903
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    • 2010
  • A cellulolytic and xylanolytic enzyme complex-producing alkalothermoanaerobacterium strain, Tepidimicrobium xylanilyticum BT14, is described. The cell was Grampositive, rod-shaped, and endospore-forming. Based on 16S rRNA gene analysis and various lines of biochemical and physiological properties, the strain BT14 is a new member of the genus Tepidimicrobium. The strain BT14 cells had the ability to bind to Avicel, xylan, and corn hull. The pH and temperature optima for growth were 9.0 and $60^{\circ}C$, respectively. The strain BT14 was able to use a variety of carbon sources. When the bacterium was grown on corn hulls under an anaerobic condition, a cellulolytic and xylanolytic enzyme complex was produced. Crude enzyme containing cellulase and xylanase of the strain BT14 was active in broad ranges of pH and temperature. The optimum conditions for cellulase and xylanase activities were pH 8.0 and 9.0 at $60^{\circ}C$, respectively. The crude enzyme had the ability to bind to Avicel and xylan. The analysis of native-PAGE and native-zymograms indicated the cellulosebinding protein showing both cellulase and xylanase activities, whereas SDS-PAGE zymograms showed 4 bands of cellulases and 5 bands of xylanases. Evidence of a cohesinlike amino acid sequence seemed to indicate that the protein complex shared a direct relationship with the cellulosome of Clostridium thermocellum. The crude enzyme from the strain BT14 showed effective degradation of plant biomass. When grown on corn hulls at pH 9.0 and $60^{\circ}C$ under anaerobic conditions, the strain BT14 produced ethanol and acetate as the main fermentation products.

The Effects of Bangpungtongsungsan Extract to the Skin Damage on Mice Model after Atopic Dermatitis Elicitation (방풍통성산(防風通聖散)이 아토피 피부염을 유발한 동물모델의 피부 손상에 미치는 영향)

  • Son, Jung-Min;Hong, Seung-Ug
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.20 no.1 s.32
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    • pp.99-114
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    • 2007
  • Objectives : Atopic dermatitis has a close relationship with damage of skin barrier function. To investigate the effects of Bangpungtongsungsan(BT) extract to the skin damage on mice model after atopic dermatitis elicitation, this study was done through forcing injury to mice's skin. Methods : The BALB/c mice were distributed into three groups: control(CON) group, atopic dermatitis(AD)-elicited group, Bangpungtongsungsan(BT)-treated group. AD-elicited and BT-treated group were caused AD according to the method of Christophers E., Mrowietz and Minehiro. The BT extract was administered for 48 hours to BT-treated group. We observed changes of external dermal formation, eosinophils in vasculature, lipid formation in stratum corneum, distribution of ceramide, distribution of capillary, $I{\kappa}B$ kinase(IKK) and induce nitric oxide synthase(iNOS) mRNA expression. We used the statistical methods of student t-test(p<0.05). Results : After dispensing BT extract into the AD-elicited group, the number of eosinophil as an atopic index in mice noticeably decreased and dermal injury decreased. Also the decrease of hyperplasia, degranulated mast cells, angiogenesis and substance P were shown. The lipid lamellae, lipid protect formation, were repaired and the distribution of ceramide which inhibit protein kinase C(PKC) activation increased, and the PKC caused inhibition of nuclear $factor(NF)-{\kappa}B$ activation. As a result of inhibition of $NF-{\kappa}B$ activation, iNOS production were inhibited and apoptotic cell were increased. Moreover the decrease of IKK and iNOS mRNA expression in BT-treated RAW 264.7 cell were noted. Conclusion : BT mitigated skin damage on mice model after atopic dermatitis elicitation through recovering skin barrier function and inhibiting nuclear $factor(NF)-{\kappa}B$ activation.

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Immunosuppressive Activity of an Entomopathogenic Bacteria, Xenorhabdus ehlersii KSY, and Its Application to Enhance Insecticidal Activity of Bacillus thuringiensis (곤충병원세균(Xenorhabdus ehlersii KSY)의 곤충면역 억제 능력과 이를 이용한 Bacillus thuringiensis 의 살충력 증가 효과)

  • Kim, Hyoil;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.58 no.2
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    • pp.101-109
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    • 2019
  • An entomopathogenic bacterium, Xenorhabdus ehlersii KSY, is symbiotic to a nematode, Steinernema longicaudum, and exhibits high entomopathogenic virulence against lepidopteran insects. This study showed that the bacterial pathogenicity is induced by its inhibitory activity against eicosanoid biosynthesis of target insects, resulting in immunosuppression. To be applied for insect pest control, the bacteria should be infected to insect hemocoel. To deliver X. ehlersii to inset hemocoel, Bacillus thuringiensis (Bt) was mixed with the bacteria to breakdown the physical barrier (= midgut epithelium) from midgut lumen to hemocoel. The bacterial mixture significantly enhanced insecticidal activity of Bt only against larvae of Plutella xylostella and Maruca vitrata. For formulation, X. ehlersii cells were freeze-dried and mixed with sporulated Bt cells. The formulated bacterial mixture was applied to semi-field cultivating cabbage crop infested by P. xylostella. The bacterial mixture treatment showed over 95% control efficacy, while Bt alone gave 80% control efficacy. These results suggest that X. ehlersii can be applied to develop a novel insect control agent.

Effect of insect-resistant genetically engineered (Bt-T) rice and conventional cultivars on the brown planthopper (Nilaparvata lugens Stål)

  • Sung-Dug, Oh;Eun Ji, Bae;Kijong, Lee;Soo-Yun, Park;Myung-Ho, Lim;Doh-Won, Yun;Seong-Kon, Lee;Gang-Seob, Lee;Soon Ki, Park;Jae Kwang, Kim;Sang Jae, Suh
    • Korean Journal of Agricultural Science
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    • v.49 no.3
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    • pp.511-520
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    • 2022
  • Insect-resistant transgenic rice (Bt-T) expresses a toxic protein (mcry1Ac1) derived from the soil bacterium Bacillus thuringiensis found in the rice cultivar Dongjin with an insecticidal property against rice leaf roller (Cnaphalocrocis medinalis). In this study, to investigate the impact of Bt-T on non-target organisms, the feed and oviposition preferences and biological parameters of brown planthopper (Nilaparvata lugens Stål) were comparatively analyzed in four rice cultivars: Dongjin (parent variety), Ilmi (reference cultivar), Chinnong (brown planthopper resistant cultivar) and Bt-T. In the Bt-T and Dongjin cultivars, the feed preferences were 32.4 ± 8.3 and 34.1 ± 6.8%, and the oviposition preferences were 32.5 ± 5.1 and 30.0 ± 5.3% respectively, and there was no statistical significance between these rices. Additionally, in the Bt-T and Dongjin cultivars, the total lifespans from egg to adult were 39.5 ± 6.9 and 40.0 ± 5.8 days, and the weights of adult females were 1.78 ± 0.14 and 1.72 ± 0.16 mg, respectively. Therefore, there was no statistical difference in the biological parameters between these two varieties. Overall, the results indicate that the insect-resistant transgenic rice (Bt-T) did not negatively affect the reproduction and life cycle of brown planthopper, a non-target organism.

Effects of Blended TIPS-pentacene:ph-BTBT-10 Organic Semiconductors on the Photoresponse Characteristics of Organic Field-effect Transistors (TIPS-pentacene:ph-BTBT-10 혼합 유기반도체가 유기전계효과트랜지스터 광반응 특성에 미치는 영향)

  • Chae Min Park;Eun Kwang Lee
    • Clean Technology
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    • v.30 no.1
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    • pp.13-22
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    • 2024
  • In this study, blended 6,13-Bis(triisopropylsilylethynyl)pentacene (TP):2-Decyl-7-phenyl[1]benzothieno[3,2-b][1] benzothiophene (BT):Poly styrene (PS) TFT at different ratios were explored for their potential application as light absorption sensors. Due to the mixing of BT, both off current reduction and on/off ratio improvement were achieved at the same time. In particular, the TP:BT:PS (1:0.25:1 w/w) sample showed excellent light absorption characteristics, which proved that it is possible to manufacture a high-performance light absorption device. Through analysis of the crystal structure and electrical properties of the various mixing ratios, it was confirmed that the TP:BT:PS (1:0.25:1 w/w) sample was optimal. The results of this study outline the expected effects of this innovation not only for the development of light absorption devices but also for the development of mixed organic semiconductor (OSC) optoelectronic systems. Through this study, the potential to create a multipurpose platform that overcomes the limitations of using a single OSC and the potential to fabricate a high-performance OSC TFT with a fine-tuned optical response were confirmed.

BT-IT(BIT) 융합기술

  • Kim, Sang-Gyu;Jeong, Bong-Hyeon
    • Information and Communications Magazine
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    • v.25 no.6
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    • pp.33-39
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    • 2008
  • 본고에서는 최신 과학기술 분야의 화두가 되고 있는 생명공학(BT)과 정보통신(IT)의 융합기술에 대해서 소개한다. 대표적인 기술로 바이오인포매틱스, 바이오칩, 바이오센서, 그리고 이들의 총체적인 기술인 유비쿼터스 헬스케어 시스템에 대해서 알아본다. BT, IT 융합기술을 통해 과학기술 분야에 새로운 연구분야와 효율적인 분석 기술을 제공해줌으로써, 인류의 건강에 큰 도움을 줄 것으로 기대된다.

Focus on - IT.BT 융합부품 산업동향

  • Lee, Min-Yeong
    • IT SoC Magazine
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    • s.16
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    • pp.51-54
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    • 2006
  • 융합기술이 향후 미래를 이끌 핵심 기술로 떠오르고 있다. 특히 IT.BT 융합기술은 향후 새로운 기술혁명을 주도할 수 있는, 사회 전반에 파급효과가 큰, 세계경제의 신성장동력으로 주목받고 있다. IT.BT융합 기술은 바이오인포매틱스, 바이오전자, 생체정보인터페이스, 생체정보보호, 바이오컴퓨터 등으로 구분할 수 있고 그 영역이 매우 광범위하다. 여기에서는 바이오전자 가운데 융합 부품으로 구분할 수 있는 바이오칩과 바이오센서 분야의 사업동향을 살펴보고자 한다.

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