• Title/Summary/Keyword: cry1

검색결과 171건 처리시간 0.024초

A Novel Negative Regulatory Factor for Nematicidal Cry Protein Gene Expression in Bacillus thuringiensis

  • Yu, Ziquan;Bai, Peisheng;Ye, Weixing;Zhang, Fengjuan;Ruan, Lifang;Yu, Ziniu;Sun, Ming
    • Journal of Microbiology and Biotechnology
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    • 제18권6호
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    • pp.1033-1039
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    • 2008
  • A 3-kb HindIII fragment bearing the cry6Aa2 gene and the adjacent and intergenic regions was cloned from Bacillus thuringiensis strain YBT-1518. Two open reading frames (ORFs), namely, orf1 (termed cry6Aa2) and orf2 that were separated by an inverted-repeat sequence were identified. orf1 encoded a 54-kDa protein that exhibited high toxicity to the plant-parasitic nematode Meloidogyne hapla. The orf2 expression product was not detected by SDS-PAGE, but its mRNA was detected by RT-PCR. The orf2 coexpressed with orf1 at a high level in the absence of the inverted-repeat sequence, whereas, the expression level of otfl was decreased. When orf2 was mutated, the level of orf1 expression was enhanced obviously. In conclusion, the inverted-repeat sequence disturbs orf2 expression, and the orf2 downregulates orf1 expression. This is an example of novel negative regulation in B. thuringiensis and a potential method for enhancing the expression level of cry genes.

Characterization of Crystal Proteins of Bacillus thuringiensis NT0423 Isolate from Korean Sericultural Farms

  • Kim, Ho-San;Li, Ming-Shun;Roh, Jong-Yul
    • International Journal of Industrial Entomology and Biomaterials
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    • 제1권2호
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    • pp.115-122
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    • 2000
  • A Bacillus thuringiensis designated NT0423, belonging to B. thuringiensis subsp. aizawai (H 7), was isolated from samples of dust and soil of sericultural farms. B. thuringiensis NT0423 having dualspecificity against Lepidoptera and Diptera produced bipyramidal inclusions consisting of two major polypeptides of approximately 130- and 70-kDa. Proteolytic processing by trypsin and gut juice of Bombyx mori yielded predominant proteins with molecular masses of about 66-kDa. The whole crystal protein of B. thuringiensis NT0423 immunologically was related to that of B. thuringiensis subsp. aizawai. PCR analysis showed that B. thuringiensis NT0423 has at least five crystal protein genes including cryIA(a), cryIA(b), cryIC, cryID and cryIIA, and southern blot was determined the location of each gene on intact and enzyme-digested plasmid DNA fragments. Except for cryIA(a) gene on the high molecular weight plasmid of 165-kb, all of four genes were located on the plasmid of 66-kb. The production of $\beta$-exotoxin from B. thuringiensis NT0423 was identified by the HPLC analysis. In addition, the $\beta$-exotoxin showed its ability to prevent pupation of treated larvae of house flies (Musca domestica) from developing into normal adults.

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Construction of a Novel Recombinant Baculovirus Producing Polyhedra with a Bacillus thuringiensis Cry1Ac Crystal Protein

  • Je, Yeon-Ho;Jin, Byung-Rae;Roh, Jong-Yul;Chang, Jin-Hee;Kang, Seok-Kwon
    • 대한바이러스학회지
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    • 제29권3호
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    • pp.145-153
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    • 1999
  • We have now constructed a novel recombinant baculovirus Autographa californica nuclear polyhedrosis virus (AcNPV) producing polyhedra with Bacillus thuringiensis (Bt) CryIAc crystal protein. The recombinant polyhedra produced by the recombinant baculovirus, Btrus, in insect cells was characterized. The recombinant baculovirus has two independent transcription units in opposite orientations with two promoters, p10 or polyhedrin gene promoter each initiating transcription of either native polyhedrin or fusion protein with polyhedrin and Bt Cry1Ac crystal protein. Surprisingly, this recombinant baculovirus stably produced recombinant polyhedra which were nearly similar to those of wild-type AcNPV. The immunogold staining experiment showed that the recombinant polyhedra were assembled with polyhedrin and Bt Cry1Ac crystal protein, and contained virus particles. Insecticidal toxicity of recombinant polyhedra of Btrus to the fall webworm, Hyphantria cunea, was strikingly improved in comparison with the wild-type AcNPV.

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수용액중 염산카로베린의 용해성 및 안정성 (Solubility and Physicochemical Stability of Caroverine Hydrochloride in Aqueous Solution)

  • 곽혜선;이동수;전인구
    • Journal of Pharmaceutical Investigation
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    • 제28권2호
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    • pp.121-126
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    • 1998
  • The solubility and physicochemical stability of caroverine hydrochloride (CRV), an antispasmodic, in buffered aqueous solutions were studied using a reverse phase high performance liquid chromatography. The solubilty of the drug at pH 2.76-5.40 was similar at the range 31.9-36.2 mg/ml $(34^{circ}C)$, but, at the pH higher than 6.0, markedly decreased. The use of polyethylene glycol 400 as a cosolvent did not increase the solubility at any compositions examined. Moreover. increasing molar concentration of aqueous phosphate buffer from 0 to 0.5 M remarkably decreased the solubility. The degradation of CRY followed the apparent first-order kinetics. The degradation was accelerated with decreasing pH and increasing storage temperature. The half-lives for the degradation of CRY (1.0 mg/ml) at pH 1.28. 4.01 and 5.93 $(45^{\circ}C)$ were 2.8, 31.4 and 124 hr. respectively. The pHs of incubated solutions were to some extent lowered perhaps due to the formation of acidic degradation products. The addition of disodium edetate (0.01%) to the CRY solution (pH 4.95) retarded 2.5 times the degradation rate at $45^{\circ}C$, but the use of sodium bisulfite (0.1%) accelerated 2.9 times the rate. The activation energy for the CRY solution (20 mg/ml. pH 5.4) containing 0.01% EDTA was calculated to be 5.98 kcal/mole. When the solution was stored under nitrogen displacement in ampoule, there was no significant degradation even after 3 months at $40^{\circ}C$, indicating that protection from oxidation by air (oxygen) is essential for the complete stabilization of CRY solution.

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Bacillus thuringiensis serovar. kurstaki HD73균과 분리균 KBS722의 곤충치사 내독소 단백질의 Gene localization에 관한 연구 (Entomocidal Protein Gene Localization of Bacillus thuringiensis serovar. kurstaki HD73 and Isolates KBS722)

  • 오상수;박영남;구본성;박유신;윤상홍
    • 한국미생물·생명공학회지
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    • 제17권2호
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    • pp.142-147
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    • 1989
  • 나비목 유충에 독성이 강한 균으로 알려진 Bacillus thuringiensis serovar. kurstaki HD73 을 ethidium bromide(0.02$\mu\textrm{g}$/$m\ell$)처리와 자연적 curing에 의한 내독소 유전자의 위치를 확인하여 변이주간 내독소 생성능을 간이 선별할 수 있는 배지를 선발한 다음 국내 토양에서 분리한 KBS722 균주에 적응하여 그 내독소 단백질 유전자의 위치를 확인한 결과를 요약하면 다음과 같다. HD73-NRRL과 Dul-mage박사로 분양 받은 균주는 약 7.4, 7.1, 8.1, 11. 3, 75kb 및 크기가 75kb와 비슷하고 copy수가 적은 또 하나의 plasmid로 전부 6개의 plasmid를 보유하고 있었으며 IPL 균주는 약 4.0과 70kb plasmid를 더 보유하는 것으로 나타났다. 상기 HD 73 균주들의 내독소 단백질 크기는 모두 133KD 정도였고 HD73의 내독소 유전자는 변이주간 내독소의 현미경 검경과, immunoblotting plasmid DNA 의 전기영동결과 75kb상에 있는 것으로 나타났다. 이들 변이주들을 potato dextrose agar, starch agar, spizizen casamino acid glucose 와 nutrient agar 평판배지에 접종하여 균형태를 관찰하였을 때 내독소 비형성균(Cry-)은 starch agar 배지에서만 반투명하고 균 군락의 색깔이 엷은 회색을 띄었다. 한편 국내 분리균 KBS722를 novobiocin(3$\mu\textrm{g}$/$m\ell$)으로 plasmid를 curing시켜 상기 4가지 배지에 도달했을때 nutrient agar배지에서만 Cry 변이주가 반투명하고 엷은 회색을 나타내었다. KBS722의 내독소유전자는 약 225kb의 plasmid상에 있는 것으로 나타났으며 in vitro에서 쉽게 Cry$^+$주와 Cry$^-$주의 판별이 가능하였다.

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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.

Function of Global Regulator CodY in Bacillus thuringiensis BMB171 by Comparative Proteomic Analysis

  • Qi, Mingxia;Mei, Fei;Wang, Hui;Sun, Ming;Wang, Gejiao;Yu, Ziniu;Je, Yeonho;Li, Mingshun
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.152-161
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    • 2015
  • CodY is a highly conserved protein in low G+C gram-positive bacteria that regulates genes involved in sporulation and stationary-phase adaptation. Bacillus thuringiensis is a grampositive bacterium that forms spores and parasporal crystals during the stationary phase. To our knowledge, the regulatory mechanism of CodY in B. thuringiensis is unknown. To study the function of CodY protein in B. thuringiensis, BMB171codY- was constructed in a BMB171 strain. A shuttle vector containing the ORF of cry1Ac10 was transformed into BMB171 and BMB171codY-, named BMB171cry1Ac and BMB171codY-cry1Ac, respectively. Some morphological and physiological changes of codY mutant BMB171codY-cry1Ac were observed. A comparative proteomic analysis was conducted for both BMB171codY-cry1Ac and BMB171cry1Ac through two-dimensional gel electrophoresis and MALDI-TOF-MS/MS analysis. The results showed that the proteins regulated by CodY are involved in microbial metabolism, including branched-chain amino acid metabolism, carbohydrate metabolism, fatty acid metabolism, and energy metabolism. Furthermore, we found CodY to be involved in sporulation, biosynthesis of poly-β-hydroxybutyrate, growth, genetic competence, and translation. According to the analysis of differentially expressed proteins, and physiological characterization of the codY mutant, we performed bacterial one-hybrid and electrophoretic mobility shift assay experiments and confirmed the direct regulation of genes by CodY, specifically those involved in metabolism of branched-chain amino acids, ribosomal recycling factor FRR, and the late competence protein ComER. Our data establish the foundation for in-depth study of the regulation of CodY in B. thuringiensis, and also offer a potential biocatalyst for functions of CodY in other bacteria.

Molecular characterization of lepidopteran pest-resistant transgenic rice events expressing synthetic Cry1Ac

  • Lee, Kyeong-Ryeol;Shin, Kong Sik;Suh, Seok Cheol;Kim, Ki Young;Jeon, Yong Hee;Park, Beom Seok;Kim, Ju-Kon;Kweon, Soon-Jong;Lee, Yeon-Hee
    • Plant Biotechnology Reports
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    • 제3권4호
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    • pp.317-324
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    • 2009
  • The insecticidal toxin gene of Bacillus thuringiensis (Bt) is one of the most commonly used in the development of genetically modified (GM) crops. In this research, we analyzed Bt rice showing lepidopteran pest-resistance. The Bt gene is a synthetic Cry1Ac composed of optimal codons for plants, and the Bt protein is targeted to the chloroplast by a transit peptide. Three Cry1Ac rice events (C103-3, C127-1, and C7-1) were analyzed for molecular characterization. C103-3 contains two copies of T-DNA where the left border (LB) region is truncated. Both C7-1 and C127-1 have a single copy of T-DNA, but a part of the vector backbone DNA is inserted into the genome of C127-1; thus, only C7-1 had intact T-DNA. Progenies of C7-1 crossed with the original cultivar, Nakdong, and double-haploid lines from anther culture of lines crossed with the elite cultivar, Dongjin, were analyzed for T-DNA flanking genomic DNA and genotyping. Results showed that an intact T-DNA region without the vector backbone was inserted into the genome and was stably inherited through generations. The C7-1 homozygous event could be used as breeding material to develop GM rice with pest resistance.

MET1-Dependent DNA Methylation Represses Light Signaling and Influences Plant Regeneration in Arabidopsis

  • Shim, Sangrea;Lee, Hong Gil;Seo, Pil Joon
    • Molecules and Cells
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    • 제44권10호
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    • pp.746-757
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    • 2021
  • Plant somatic cells can be reprogrammed into a pluripotent cell mass, called callus, which can be subsequently used for de novo shoot regeneration through a two-step in vitro tissue culture method. MET1-dependent CG methylation has been implicated in plant regeneration in Arabidopsis, because the met1-3 mutant exhibits increased shoot regeneration compared with the wild-type. To understand the role of MET1 in de novo shoot regeneration, we compared the genome-wide DNA methylomes and transcriptomes of wildtype and met1-3 callus and leaf. The CG methylation patterns were largely unchanged during leaf-to-callus transition, suggesting that the altered regeneration phenotype of met1-3 was caused by the constitutively hypomethylated genes, independent of the tissue type. In particular, MET1-dependent CG methylation was observed at the blue light receptor genes, CRYPTOCHROME 1 (CRY1) and CRY2, which reduced their expression. Coexpression network analysis revealed that the CRY1 gene was closely linked to cytokinin signaling genes. Consistently, functional enrichment analysis of differentially expressed genes in met1-3 showed that gene ontology terms related to light and hormone signaling were overrepresented. Overall, our findings indicate that MET1-dependent repression of light and cytokinin signaling influences plant regeneration capacity and shoot identity establishment.