• 제목/요약/키워드: Plant defense

검색결과 526건 처리시간 0.027초

Touch-induced gene (IbTCH1) from sweet potato [Ipomoea batatas (L.) Lam.]: molecular cloning and functional analysis

  • Seo, Sang-Gyu;Kim, Ji-Seong;Kang, Seung-Won;Shin, Mi-Rae;Yang, You-Sun;Lee, Gung-Pyo;Hong, Jin-Sung;Kim, Sun-Hyung
    • Plant Biotechnology Reports
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    • 제2권4호
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    • pp.253-258
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    • 2008
  • The cDNA of the touch-induced genes (TCH) of the sweet potato [Ipomoea batatas (L.) Lam.] has been cloned and analyzed. IbTCH1, which exists as at least two-copy genes in the genome of the sweet potato, encodes for 148-amino acid polypeptides, and harbors four conversed $Ca^{2+}-binding$ motif EF-hands. IbTCH1 was shown to be expressed in the flower, leaf, thick pigmented root, and particularly in the white fibrous root, but expressed only weakly in the petiole. IbTCH1 is upregulated upon exposure to environmental stresses, dehydration, and jasmonic acid. Furthermore, IbTCH1 is developmentally regulated in the leaf and root. These results strongly indicate that the gene performs functions in both plant development and in defense/stress-signaling pathways.

Manipulation of Antioxidative Mechanism in Chloroplasts

  • Kwon, Suk-Yoon;Lee, Haeng-Soon;Kwak, Sang-Soo
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1999년도 제13회 식물생명공학심포지움 New Approaches to Understand Gene Function in Plants and Application to Plant Biotechnology
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    • pp.79-84
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    • 1999
  • Oxidative stress is one of the major environmental stresses to plants. Reactive oxygen species (ROS) generated during metabolic processes damage cellular functions and consequently lead to cell death. Fortunately plants have in vivo defense system by which the ROS is scavenged by enzymes such as superoxide dismutase (SOD) and ascorbate peroxidase (APX). In attempts to understand the protection mechanism of plant against oxidative stress, we developed transgenic tobacco (Nicotiana tabacum cv. Xanthi) plansts thet expressed both SOD and APX in chloroplast using Agrobacterum-mediated transformation and evaluated their protection capabilities against methyl viologen (MV, paraquat) -mediated oxidative damage. Three double transformants (CAI, CA2, and CA3) expressed the chimeric CuZnSOD and chimeric APX in chloroplast, and one transformant (AM) expressed the chimeric APX and chimeric MnSOD in chloroplast. In addition, we obtained three lines of transformants (C/Al, C/A2, and A/C) that expressed the APX and SOD than control plants, and more resistant to oxidative stress caused by MV. TRansformants (C/A and A/C) overexpressing MnSOD, CuZnSOD and APX at the same time showed the highest resistance to MV-mediated oxidative stress among the transformants.

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Disease-resistant Transgenic Arabidopsis Carrying the expI Gene from Pectobacterium carotovorum subsp. carotovorum SL940

  • Lee, Joo-Hee;Hong, Ja-Bin;Hong, Sang-Bin;Choi, Min-Seon;Jeong, Ki-Yong;Park, Hyoung-Joon;Hwang, Duk-Ju;Lee, Seung-Don;Ra, Dong-Soo;Heu, Sung-Gi
    • The Plant Pathology Journal
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    • 제24권2호
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    • pp.183-190
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    • 2008
  • Plant-cell-wall-degrading enzymes (PCWDEs) of Pectobacterium carotovorum subsp. carotovorum are the key virulence factor in pathogenesis of soft rot disease of vegetables. The production of PCWDEs is controlled in a cell density dependent manner to avoid the premature production of PCWDEs and subsequent activation of plant defense. N-oxoacyl-homoserine lactone (OHL) is essential for quorum sensing in the soft rot pathogen and the expI gene is responsible for OHL production. The ExpI homolog isolated from P. carotovorum subsp. carotovorum SL940 had 94% identity with ExpI of E. carotovora subsp. carotovora scc3193 and 74% identity with Carl of E. carotovora subsp. atroseptica. The transgenic plants that express exp I uner the control of CaMV35S promoter were able to produce diffusible OHL. Transgenic plants producing OHL were very resistant to the infection of P. carotovorum subsp. carotovorum. Since the PR1 gene was strongly induced and NPR1 and NPR4 were induced weakly in transgenic plants compared to the wild type, salicylic acid-dependent pathways is likely involved in the resistance to the soft rot pathogen P. carotovorum subsp. carotovorum in ExpI transgenic plants.

Expression of BrD1, a Plant Defensin from Brassica rapa, Confers Resistance against Brown Planthopper (Nilaparvata lugens) in Transgenic Rices

  • Choi, Man-Soo;Kim, Yul-Ho;Park, Hyang-Mi;Seo, Bo-Yoon;Jung, Jin-Kyo;Kim, Sun-Tae;Kim, Min-Chul;Shin, Dong-Bum;Yun, Hong-Tai;Choi, Im-Soo;Kim, Chung-Kon;Lee, Jang-Yong
    • Molecules and Cells
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    • 제28권2호
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    • pp.131-137
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    • 2009
  • Plant defensins are small (5-10 kDa) basic peptides thought to be an important component of the defense pathway against fungal and/or bacterial pathogens. To understand the role of plant defensins in protecting plants against the brown planthopper, a type of insect herbivore, we isolated the Brassica rapa Defensin 1 (BrD1) gene and introduced it into rice (Oryza sativa L.) to produce stable transgenic plants. The BrD1 protein is homologous to other plant defensins and contains both an N-terminal endoplasmic reticulum signal sequence and a defensin domain, which are highly conserved in all plant defensins. Based on a phylogenetic analysis of the defensin domain of various plant defensins, we established that BrD1 belongs to a distinct subgroup of plant defensins. Relative to the wild type, transgenic rices expressing BrD1 exhibit strong resistance to brown planthopper nymphs and female adults. These results suggest that BrD1 exhibits insecticidal activity, and might be useful for developing cereal crop plants resistant to sap-sucking insects, such as the brown planthopper.

Gene Expression Analysis in Cucumber Leaves Primed by Root Colonization of Pseudomonas chlororaphis O6 upon Challenge-inoculation with Corynespora cassiicola.

  • Kim, M.;Kim, Y. C.;B. H. Cho
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.90.1-90
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    • 2003
  • Colonization of Pseudomonas chlororaphis O6, a nonpathogenic rhizobacterium, on the roots induced systemic resistance in cucumber plants against tai-get leaf spot, a foliar disease caused by Corynespora cassiicola. A cDNA library was constructed using mRNA extracted from the cucumber leaves 12 h after inoculation with C. cassiicola, which roots had been previously treated with O6. To identify the genes involved in the O6-mediated induced systemic resistance (ISR), we employed a subtractive hybridization method using mRNAs extracted from C cassiicola-inoculated cucumber leaves with and without previous O6 treatment on the plant roots. Differential screening of the cDNA library led to the isolation of 5 distinct genesencoding a GTP-binding protein, a putative senescence-associated protein, a galactinol synthase, a hypersensitive-induced reaction protein, and a putative aquaporin. Expressions of these genes are not induced by O6 colonization alone. Before challenge inoculation, no increase in the gene transcriptions could be detected in previously O6-treated and untreated plants but, upon subsequent inoculation with the pathogenic fungus, transcription levels in O6-treated plants rose significantly faster and stronger than in untreated plants. Therefore, the O6-mediated ISR may be associated with an enhanced capacity for the rapid and effective activation of cellular defense responses which becomes apparent only after challenge inoculation on the distal, untreated plant parts, as suggested by Conrath et al. (2002). This work was supported by a grant R11-2001-092-02006-0 from the Korea Science and Engineering Foundation through the Agricultural Plant Stress Research Center at Chonnam National University.

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플랜트 및 건설수출 입찰의 성공 및 실패모델에 관한 연구 (A Study on the Regression Models of Success and Failure of Tenders for Plant and Construction Exports)

  • 유규열
    • 한국국방경영분석학회지
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    • 제29권1호
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    • pp.88-111
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    • 2003
  • This paper is to suggest strategic options for improving the export performance of the plant and construction industry. The overall objective of this study is to explore the feasibility of a sustained export performance in the plant and overseas construction industry by an analysis of its international competitiveness and technological competence. The empirical work of this study relates to a chosen sample of Korean and non-Korean firms in the plant and construction industry sector. Primary data was collected through a comprehensive questionnaire survey administered to plant and construction firms in twelve countries, including Korea. The actual number of firms for which full information at a sufficient level of disaggregation was obtained was 62, a response rate of 44.6%. Of these, 42 firms were drawn from Korean plant and construction firms and the remaining 20 firms from 11 other countries. The structure of responding firms by industry shows a total of 29 plant exporters and 33 construction firms. Data analysis was carried out using SPSS statistical technique such as Multiple Regression in order to examine the linear relationship among variables. The findings of the study indicate that export success and failure in plant and construction export markets is determined by firm size and by various qualitative variables. The high export volume (export success) of Plant and construction exporters is more strongly influenced by mutual economic cooperation and number of employees than by sales volume and competent knowledge of the plant and construction markets. It was also found that weak political and diplomatic relation between countries, low sales volume and lack of bid experience have an adverse effect and represent serious barriers to exports.

Induction of Systemic Resistance against Bacterial Leaf Streak Disease and Growth Promotion in Rice Plant by Streptomyces shenzhenesis TKSC3 and Streptomyces sp. SS8

  • Hata, Erneeza Mohd;Yusof, Mohd Termizi;Zulperi, Dzarifah
    • The Plant Pathology Journal
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    • 제37권2호
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    • pp.173-181
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    • 2021
  • The genus Streptomyces demonstrates enormous promise in promoting plant growth and protecting plants against various pathogens. Single and consortium treatments of two selected Streptomyces strains (Streptomyces shenzhenensis TKSC3 and Streptomyces sp. SS8) were evaluated for their growth-promoting potential on rice, and biocontrol efficiency through induced systemic resistance (ISR) mediation against Xanthomonas oryzae pv. oryzicola (Xoc), the causal agent of rice bacterial leaf streak (BLS) disease. Seed bacterization by Streptomyces strains improved seed germination and vigor, relative to the untreated seed. Under greenhouse conditions, seed bacterization with consortium treatment TKSC3 + SS8 increased seed germination, root length, and dry weight by 20%, 23%, and 33%, respectively. Single and consortium Streptomyces treatments also successfully suppressed Xoc infection. The result was consistent with defense-related enzyme quantification wherein single and consortium Streptomyces treatments increased peroxidase (POX), polyphenol oxidase, phenylalanine ammonia-lyase, and β,1-3 glucanase (GLU) accumulation compared to untreated plant. Within all Streptomyces treatments, consortium treatment TKSC3 + SS8 showed the highest disease suppression efficiency (81.02%) and the lowest area under the disease progress curve value (95.79), making it the best to control BLS disease. Consortium treatment TKSC3 + SS8 induced the highest POX and GLU enzyme activities at 114.32 µmol/min/mg protein and 260.32 abs/min/mg protein, respectively, with both enzymes responsible for plant cell wall reinforcement and resistant interaction. Our results revealed that in addition to promoting plant growth, these Streptomyces strains also mediated ISR in rice plants, thereby, ensuring protection from BLS disease.

대두 칼모듈린 단백질, GmCaM-4를 발현하는 형질전환 감자의 무름병 저항성 확인 (Identification of disease resistance to soft rot in transgenic potato plants that overexpress the soybean calmodulin-4 gene (GmCaM-4))

  • 박형철;전현진;김민철;이신우;정우식
    • Journal of Plant Biotechnology
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    • 제47권2호
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    • pp.157-163
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    • 2020
  • 급속한 산업화와 인구증가에 따른 심각한 환경과 식량문제는 인류의 생존을 위협하는 가장 중요한 현안문제로 대두되고 있다. 또한, 인구 증가에 따른 식량부족을 해결하기 위하여 농약과 화학비료의 무분별한 사용으로 인하여 농토는 산성화되어 황폐화가 되고 있고 먹이사슬 및 자연생태계의 파괴는 더 많은 농약의 사용을 필요하고 있다. 과다한 농약 사용으로 경제적인 부담의 가중과 잔류 농약으로 인한 소비자의 건강을 위협하고 있다. 또한, 증가된 화석연료의 사용은 공기중의 이산화탄소를 증가시켜 지구 온도의 상승을 초래하고 있으며, 결과적으로 기상이변, 지구온난화 및 사막화 등의 심각한 환경문제를 초래했다. 특히, 서늘한 기온에서 잘 자라는 배추, 무우, 감자 등의 고령지 농작물의 질적인 저하를 초래하여 피해가 증가하고 있지만, 최근들어 감자와 같은 알카리성 건강식품의 붐으로 수요가 증가되고 있다. 본 연구에서 환경스트레스에 관여하는 대두의 특이적인 칼모듈린, GmCaM-4 유전자를 감자에 과발현 시켜서 PR 유전자들의 발현이 지속적으로 유지되어 식물방어 기작이 활성화 되었음을 확인하였다. 또한, 그 형질전환 식물체는 초민감성 세포사멸 현상을 보였고, 무름병을 일으키는 병원균인 Erwinia carotovora subsp. Carotovora (Ecc)를 이용하여 GmCaM-4가 과발현된 감자에서 병 저항성이 증가하는 것을 확인 하였다. 최종적으로 지금까지 많이 연구되고 보고된 유전자원인 대두의 GmCaM-4 유전자를 활용하여 주요 식량자원인 감자에서 과발현 형질전환 식물체를 확보하여 다양한 병 저항성 증가를 통한 작물 생산성 향상에 매우 우수한 기술로 기대되는 바이다.

식물성 오일 기반 바이오항공유 제조공정에서 수소첨가 업그레이딩을 위한 운전조건에 따른 탄화수소화합물의 특성 (Reaction characteristics of hydrocarbon fuels under various operation conditions of hydro-upgrading process for vegetable oil-based bio-jet fuel production)

  • 곽연수;장정희;김성탁;안민회;이은실;한기보;정병훈;한정식;전철환
    • 한국응용과학기술학회지
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    • 제35권3호
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    • pp.731-743
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    • 2018
  • 바이오항공유 제조 공정 내 수첨업그레이딩 공정의 운전조건 선정은 반응물로부터 얻고자 하는 주생성물인 탄화수소 화합물에 대하여 바이오항공유로서 원하는 탄소수 분포의 물성을 갖도록 하기위한 중요한 인자이다. 본 연구에서는 식물성 오일 유래 노말 파라핀계 탄화수소 화합물에 대한 수첨 업그레이딩 반응이 0.5 wt.% Pt/Zeolite 촉매 하에서 수행되었으며, 이를 통해 크래킹 반응과 이성질화 반응이 동반됨으로써 바이오항공유로서 물성을 갖는 탄소수 분포인 $C_8-C_{16}$에 해당하는 노말 파라핀계와 이소 파라핀계가 혼합된 탄화수소류 화합물이 제조되었다. 반응온도, 반응압력, 반응물 몰비와 공간속도를 변화하여 얻어진 생성물의 수율 및 조성을 분석하였다. 상기 공정 조건에 대한 정보는 수첨 업그레이딩 반응특성의 이해뿐 아니라 향후 증류를 통한 바이오항공유 제조에 도움을 줄 수 있다.

이산화탄소 포집 시스템 개념설계 개발을 위한 시스템 엔지니어링 기반 접근방법 (Systems Engineering-based Approach In Developing Concept Design Of Carbon Capture System)

  • 이창환;홍대근;윤수철;서석환;서활원
    • 시스템엔지니어링학술지
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    • 제9권2호
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    • pp.23-36
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    • 2013
  • Plant industry is one of technology-intensive and most prosperous industries in Korea because of its recent prosperity and promising outlook in export. However, no Korean EPC company has yet been well prepared in lifting their capacity sufficient enough to get the upstream conceptual or basic design and engineering orders for sizable plant projects which are known as the more value-added. If systems engineering, a methodology which developed complex systems such as airplanes and has been justified its effectiveness in Defense and NASA projects, can be integrated with plant engineering which should be developed and applied based on the requirements of so many stakeholders, conditions, lifecycle concepts, and constraints of the projects, huge synergic effect is expected particularly in developing a specific upstream design, which is a conceptual or basic design. The notion of integration with each other between systems engineering and plant engineering can be really the crux of EPC's success in any plant projects. This paper suggests an approach showing a methodology how to dig out, analyze, evaluate, verify and implement the stakeholders' requirements into a plant design in conceptual phase using the theory and skills of systems engineering. ISO/IEC 15288 well known systems engineering standards is used. Carbon capture system is used for a case study, for it is an emerging technology in reducing emissions of carbon dioxide causing global warming from flue gas after combustion. Here systems engineering was proven to play a substantial role in enhancing the capability of designers in developing a conceptual design of whole plant or certain part of crucial plant systems.