• 제목/요약/키워드: Biotechnology (BT)

검색결과 243건 처리시간 0.03초

Detection of Transgenic Rice Containing CrylAc Gene Derived from Bacillus thuringiensis by PCR

  • Kim, Jae-Hwan;Jee, Sang-Mi;Park, Cheon-Seok;Kim, Hae-Yeong
    • Food Science and Biotechnology
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    • 제15권4호
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    • pp.625-630
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    • 2006
  • Polymerase chain reaction (PCR) method was developed for the specific detection of insect-resistant rice containing cry1Ac gene derived from Bacillus thuringiensis (Bt). Primers were designed from the 35S promoter, NOS terminator, cry1Ac gene, and sucrose phosphate synthase (SPS) for general screening of Bt rice. By sequencing the PCR products from the two putative kinds of Bt rice, we designed a specific primer from the junction region between the cry1Ac gene and the NOS terminator that had been inserted into Bt rice. The construct-specific primer was employed to amplify a 147 bp product in the two lines of Bt rice. No amplified products were observed from the other Bt crops with various Bt genes introduced. In qualitative PCR analysis, the limit of detection was 0.005 ng from genomic DNA of Bt rice. In addition, PCR analysis was performed on 64 kinds of rice presently available in the Korean market, and no Bt rice was detected. This method presented in this paper can be used as a highly sensitive and specific detection method of Bt rice.

Expression and Synergistic Effect of Bacillus thuringiensis CrylAc in Lepidopteran Toxic Strain to Plutella xylostella

  • Kang, Joong-Nam;Roh, Jong-Yul;Shin, Sang-Chul;Ko, Sang-Hyun;Chung, Yeong-Jin;Kim, Yang-Su;Wang, Yong;Choi, Hee-Kyu;Li, Ming-Shun;Choi, Jae-Young;Je, Yeon-Ho
    • International Journal of Industrial Entomology and Biomaterials
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    • 제14권1호
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    • pp.33-36
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    • 2007
  • To improve insecticidal activity of B. thuringiensis 2385-1 (Bt 2385-1), a recombinant plasmid, pHT1K-1Ac, was introduced into lepidopteran toxic Bt 2385-1 by electroporation. The presence of the recombinant plasmid in Bt 2385-1 after electroporation was confirmed by PCR. Bt 2385-1 transformant was named as Bt pHT1K-1Ac/2385-1 (1K-1Ac/2385-1). The 1K-1Ac/2385-1 transformant produced bipyramidal-shaped parasporal inclusion as like the wild-type strain, Bt 2385-1, and showed an 130 kDa band of Cry1Ac protein. The insecticidal activity of 1K-lAc/2385-1 against S. exigua was similar to that of Bt 2385-1 but the $LC_{50}$ value of transformant against P. xylostella was 1.8 times lower. Through these bioassay results, it was confirmed that toxicity of Bt 2385-1 transformant showed synergistic effect by introducing Cry1Ac. These results suggested that the multiple expressions of Cry proteins in a promising Bt strain may interact synergistically in insect midgut, resulting in increase of toxicity and expansion of host spectrum.

Isolation and Characterization of Bacillus thuringiensis Strain BT-209 producing Cuboidal $\delta$ -endotoxin crystals

  • Jung, Yong-Chul;Kim, Sung-uk;Son, Kwang-Hee;Lee, Hyung-Hoan;Bok, Song-Hae
    • Journal of Microbiology and Biotechnology
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    • 제5권3호
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    • pp.138-142
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    • 1995
  • Bacillus thuringiensis strain BT-209 was isolated from a soybean grain dust sample in Korea. The strain BT-209 produced two different sizes of cuboidal crystals and one spore in the cell. In the biochemical characterization, the strain BT-209 showed negative reactions on the production of urease, and the utilization of citrate and sucrose. Examination of its antibiotic resistance revealed that while the strain BT-209 showed higher sensitivity than B. thuringiensis subsp. kurstaki HD-1 to ampicillin, bacitracin, chlortetracycline, gentamycin, neomycin, penicillin G, tetracycline and tobramycin, it was more resistant to methicillin than B. thuringiensis subsp. kurstaki HD-1. The $\delta$-endotoxin crystal of strain BT-209 consisted of three proteins with apparent molecular weights of appoximately 148, 135 and 62 kDa on a 10% SDS-PAGE. The strain BT-209 had at least eight different plasmids with sizes of 4.1, 5.2, 6.3, 8.6, 14.6, 24.5, 67.6 and 77.6 Kb. The strain BT-209 showed strong lethalities of 70% and 87% against Bombyx mori and Hyphantria cunea larvae. at 72 h, respectively.

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Effects of N-/C-Terminal Extra Tags on the Optimal Reaction Conditions, Activity, and Quaternary Structure of Bacillus thuringiensis Glucose 1-Dehydrogenase

  • Hyun, Jeongwoo;Abigail, Maria;Choo, Jin Woo;Ryu, Jin;Kim, Hyung Kwoun
    • Journal of Microbiology and Biotechnology
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    • 제26권10호
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    • pp.1708-1716
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    • 2016
  • Glucose dehydrogenase (GDH) is an oxidoreductase enzyme and is used as a biocatalyst to regenerate NAD(P)H in reductase-mediated chiral synthesis reactions. In this study, the glucose 1-dehydrogenase B gene (gdhB) was cloned from Bacillus thuringiensis subsp. kurstaki, and wild-type (GDH-BTWT) and His-tagged (GDH-BTN-His, GDH-BTC-His) enzymes were produced in Escherichia coli BL21 (DE3). All enzymes were produced in the soluble forms from E. coli. GDH-BTWT and GDH-BTN-His showed high specific enzymatic activities of 6.6 U/mg and 5.5 U/mg, respectively, whereas GDH-BTC-His showed a very low specific enzymatic activity of 0.020 U/mg. These results suggest that the intact C-terminal carboxyl group is important for GDH-BT activity. GDH-BTWT was stable up to 65℃, whereas GDH-BTN-His and GDH-BTC-His were stable up to 45℃. Gel permeation chromatography showed that GDH-BTWT is a dimer, whereas GDH-BTN-His and GDH-BTC-His are monomeric. These results suggest that the intact N- and C-termini are required for GDH-BT to maintain thermostability and to form its dimer structure. The homology model of the GDH-BTWT single subunit was constructed based on the crystal structure of Bacillus megaterium GDH (PDB ID 3AY6), showing that GDH-BTWT has a Rossmann fold structure with its N- and C-termini located on the subunit surface, which suggests that His-tagging affected the native dimer structure. GDH-BTWT and GDH-BTN-His regenerated NADPH in a yeast reductase-mediated chiral synthesis reaction, suggesting that these enzymes can be used as catalysts in fine-chemical and pharmaceutical industries.

Biotechnology 연구실을 위한 지식 경영시스템의 개발에 관한 연구 (A Study on the Development of Knowledge Management System for Biotechnology Laboratory)

  • 배진;양여주;노재정
    • 한국지능정보시스템학회:학술대회논문집
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    • 한국지능정보시스템학회 2002년도 춘계학술대회 논문집
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    • pp.273-283
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    • 2002
  • 2000년 7월 인간게놈프로젝트 (Human Genome Project)가 완성되면서 Biotechnology(BT)산업에 대하여 많은 관심이 집중되고 있다. BT산업은 기술집약적·지식집약적인 산업 특성을 가지고 있고 R&D 활동의 중요성이 두드러진다. 이에 따라 방대한 데이터와 지식에 대한 효율적인 관리 등 R&D 전 과정에 걸쳐 생성되는 지식들에 대한 체계적인 관리가 요구된다 본 연구에서는 BT산업의 기초 조직인 BT연구실의 효과적이며 효율적인 업무 수행을 지원하기 위하여 기존의 지식경영시스템(Knowledge Management System, KMS)에 실험실정보관리시스템(Laboratory Information Management System, LIMS)이 통합된 BT실험실의 지식경영시스템 모델을 제시하였다. 이를 위해 BT연구실에서 생성되는 지식들의 체계를 분류하고 지식경영시스템 구축에 있어서의 핵심성공요인을 분석하였으며, 분석 결과를 바탕으로 모델을 개발하여 대학교 유전자 연구실에 실제 적용하였다.

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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
    • 농업과학연구
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    • 제49권3호
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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.

Molecular biological analysis of Bt-transgenic (Bt-9) rice and its effect on Daphnia magna feeding

  • Oh, Sung-Dug;Yun, Doh-Won;Chang, Ancheol;Lee, Yu-jin;Lim, Myung-Ho
    • 농업과학연구
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    • 제46권1호
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    • pp.113-124
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    • 2019
  • Insect-resistant transgenic (Bt-9) rice was generated by inserting mCry1Ac1, a modified gene from the soil bacterium Bacillus thuringiensis, into the genome of a conventional variety of rice (Ilmi). With regard to potential problems such as safety, an evaluation of non-target organisms is necessary as an essential element of an environmental risk assessment of genetically modified (GM) crops. We studied the effects of the Bt-9 rice on the survival of cantor Daphnia magna, a commonly used model organism in ecotoxicological studies. D. magna fed on the Bt-transgenic rice (Bt-9) and its near non-GM counterparts (Ilmi) grown in the same environment (a 100% ground rice suspension). The Bt-9 rice was confirmed to have the inserted T-DNA and protein expression evident by the PCR and ELISA analyses. The feeding study showed a similar cumulative immobility and abnormal response of the Daphnia magna between the Bt-9 rice and Ilmi. Additionally, the 48 h-EC50 values of the Bt-9 and Ilmi rice were 4,400 mg/L (95% confidence limits: 3861.01 - 5015.01 mg/L) and 5,564 mg/L (95% confidence limits: 4780.03 - 6476.93 mg/L), respectively. The rice NOEC (No observed effect concentration) value for D. magna was suggested to be 1,620 mg/L. We conclude that the tested Bt-9 and Ilmi have a similar cumulative immobility for D. magna, a widely used model organism, and the growth of Bt-9 did not affect non-target insects.

벼물바구미 (Lissorhoptrus oryzophilus) 내충성 GM 벼에서 T-DNA와 게놈의 인접부위 분석 (Analysis of junction site between T-DNA and plant genome in Lissorhoptrus oryzophilus resistance GM rice)

  • 이진형;신공식;서석철;임성렬;임명호;우희종;친양;권순종;박순기
    • Journal of Plant Biotechnology
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    • 제41권3호
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    • pp.127-133
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    • 2014
  • Bacillus thuringiensis 균주로부터 분리한 cry3A 유전자는 딱정벌레목 해충에 살충성을 가지고 있어서 효율적으로 딱정벌레목 해충을 방제 할 수 있다고 알려져 있다. 국립농업과학원에서는 cry3A 유전자 형질전환벼를 육성하였고, GMO 포장 생물검정 연구를 통해 벼물바구미에 대한 내충성을 확인하였다. 본 연구에서는 벼물바구미 내충성 벼 4 계통에 대한 도입유전자 특성을 분자생물학적 방법으로 검정하여 유전자의 도입 사본 수와 도입유전자의 염기서열 등의 분석결과를 제시하였다. BT12R1 계통은 염색체 10번의 exon 부위에 도입유전자가 단일 사본으로 삽입되었으며, BT12R2 계통은 두 개의 사본으로 삽입되었고, BT12R3 계통은 LB 인근의 염기서열만 확인되었다. BT12R4 계통의 경우 단일 사본의 도입유전자가 염색체 5번의 24,516,607 ~ 24,516,636 위치에 30개의 염색체 염기서열이 결실된 상태로 삽입되었다. 이 도입위치는 벼의 내재 유전자가 발현하지 않는 intergenic 부위로 판명되었으며, 도입유전자 이외의 벡터 염기서열이 삽입되지 않음을 확인하였다. 이러한 벼물바구미 내충성벼 BT12R4 계통에 대한 분자생물학적 분석 결과는 차후 GM 작물 실용화의 환경 위해성 및 안전성 평가에 대한 기초자료로 활용할 수 있을 것으로 생각된다.

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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    • 제17권4호
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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].

Risk assessment of genetically engineered rice Bt-9 resistant to Cnaphalocrocis medinalis: influence on above-ground arthropods in Korea

  • Oh, Sung-Dug;Bae, Eun Ji;Park, Soo-Yun;Lee, Bumkyu;Yun, Do Won;Suh, Sang Jae
    • 농업과학연구
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    • 제46권4호
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    • pp.827-841
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    • 2019
  • The effect of genetically engineered rice Bt-9 on the diversity and abundance of plant-dwelling insects and spiders was tested under field conditions. Genetically engineered rice Bt-9, expressing mCry1Ac1 from Bacillus thuringiensis, confers resistance to rice leaf roller (Cnaphalocrocis medinalis) and provides tolerance to the herbicide glufosinate (PPT). The study compared Bt-9 and two non-GM reference varieties, Ilmi-byeo and Dongjin-byeo, at LMO isolated fields in Gunwi (Kyungpook National University) and Jeonju (National Institute Agricultural Sciences) in Southern Korea in 2016 - 2017. A total of 40,817 individuals from 62 families and 11 orders were collected from the two living modified organism (LMO) isolated fields. From the three types of rice fields, a total of 13,982, 14,105, and 12,730 individuals from the Bt-9, Ilmi-byeo and Dongjin-byeo were collected, respectively. Throughout the study, the analysis of variance indicated no significant differences (p < 0.05). Multivariate analysis showed that the abundance and diversity of plant dwelling insects were similar. The data on insect species population densities were subjected to principal component analysis (PCA), which did not distinguish among the three varieties, Bt-9 and the non-GM, reference cultivars, during the cultivation years. However, the results of the PCA analysis were completely divided into four groups based on the yearly survey areas. Therefore, there was no evidence for a negative impact of Bt-9 on the above-ground insects and spiders.