• 제목/요약/키워드: plants as bioreactors

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The Pragmatic Introduction and Expression of Microbial Transgenes in Plants

  • Ali, Sajid;Park, Soon-Ki;Kim, Won-Chan
    • Journal of Microbiology and Biotechnology
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    • 제28권12호
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    • pp.1955-1970
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    • 2018
  • Several genetic strategies have been proposed for the successful transformation and expression of microbial transgenes in model and crop plants. Here, we bring into focus the prominent applications of microbial transgenes in plants for the development of disease resistance; mitigation of stress conditions; augmentation of food quality; and use of plants as "bioreactors" for the production of recombinant proteins, industrially important enzymes, vaccines, antimicrobial compounds, and other valuable secondary metabolites. We discuss the applicable and cost-effective approaches of transgenesis in different plants, as well as the limitations thereof. We subsequently present the contemporary developments in targeted genome editing systems that have facilitated the process of genetic modification and manifested stable and consumer-friendly, genetically modified plants and their products. Finally, this article presents the different approaches and demonstrates the introduction and expression of microbial transgenes for the improvement of plant resistance to pathogens and abiotic stress conditions and the production of valuable compounds, together with the promising research progress in targeted genome editing technology. We include a special discussion on the highly efficient CRISPR-Cas system helpful in microbial transgene editing in plants.

Pigment and Saikosoponin Production Through Bioreactor Culture of Carthamus tinctorius and Bupleurum falcatum

  • Wenyuan Gao;Lei Fan;Hahn, Eun-Joo;Paek, Kee-Yoeup
    • Journal of Plant Biotechnology
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    • 제3권1호
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    • pp.1-5
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    • 2001
  • Traditional culture technology of medicinal plants mainly depends on the field culture, which has many problems. With progress of modern culture technology, it has become possible to produce valuable secondary metabolites from medicinal plants. In this paper, we discuss about the pigment and saikosaponin production from too medicinal plants, Carthamus tinctorius and Bupleurum falcatum, through bioreactor culture system. A two-stage bioreactor culture system was established for the production of yellow and red pigments and saikosaponins by cell suspension cultures of Carthamus tinctorius and Bupleurum falcatum. In Carthamus tinctorius, balloon type airlift bioreactors and column type airlift bioreactors were employed for the tell culture and for the pigment production, respectively. The greatest pigment production was obtained on White medium supplemented with 4 mg/L kinetin, high levels of sucrose concentration and photosynthetic photon flux. In Bupleurum falcatum, adventitious roots were cultured in balloon type airlift bioreactors and the root growth was greatest on SH medium containing 5 mg/L IBA and 0.2 mg/L kinetin. HPLC analysis showed that the contents of main active saikosaponins a, c, and d in adventitious roots were almost the same as those in field cultured root.

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Effects of in vitro culture types on regeneration and acclimatization of yellow poplar (Liriodendron tulipifera L.) from somatic embryos

  • An, Chan Hoon;Kim, Yong Wook;Moon, Heung Kyu;Yi, Jae Seon
    • Journal of Plant Biotechnology
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    • 제43권1호
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    • pp.110-118
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    • 2016
  • We compared germination efficiency for somatic embryos (SE) of Liriodendron tulipifera using semi-solid (SS), temporary immersion bioreactors (TIB), and continuous immersion bioreactors (CIB) to produce vigorous plants. The bioreactors were designed to be immersed in liquid media with plantlets with an adjustable immersion time. TIB and CIB improved germination rates up to 80.86% and 95.21%, respectively, however, CIB produced more hyperhydric plantlets than TIB. The height of plantlets in TIB was significantly higher than for those in CIB. Fresh weights of plantlets grown in CIB of were significantly lower than for those grown in TIB. The lowest chlorophyll concentration was found in in vitro plantlets from CIB. We examined abnormally developed leaves, stems, and apical zones of in vitro plantlets that were produced in CIB. Among the three types, SS showed the highest stomatal density and the shortest stomatal length in in vitro plantlets. After acclimatization, plants from CIB exhibited the lowest values in biomass, such as height, root collar diameter, leaf fresh weight, leaf length, leaf width, petiole length, petiole diameter, and leaf area. Photosynthesis and transpiration rates of ex vitro plants were not significantly different among the three culture types, but stomatal conductance was higher in TIB than in the SS and CIB. Therefore, the results suggest that TIB is the preferable bioreactor to improve in vitro plantlet regeneration of L. tulipifera. TIB-originated plants showed higher growth rate than SS and CIB after transferring to soil.

실규모 하수처리 생물반응기에서 발견되는 암모니아산화균 군집조성 및 특징 (Characterization and Composition of Ammonia-Oxidizing Bacterial Community in Full- Scale Wastewater Treatment Bioreactors)

  • 박희등
    • 미생물학회지
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    • 제45권2호
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    • pp.112-118
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    • 2009
  • 질소제거 하수고도처리공정에서 암모니아산화균은 질소제거에 핵심 역할을 하는 독립영양세균이다. 하수처리 생물반응기에는 다양한 암모니아산화균이 서식하며 군집조성도 시간에 따라 변화한다. 본 연구에서는 생물반응기의 운전인자 및 환경조건이 암모니아산화균 군집구조의 조성과 다양성에 영향을 미친다는 가설을 설정하였다. 이 가설을 검증하기 위해 질산화 반응이 활발한 포항, Palo Alto, Nine Springs, Marshall 하수처리장 활성슬러지 생물반응기로부터 암모니아산화균의 ammonia monooxygenase subunit A 유전자 clone library를 제작하였다. 하수처리 생물반응기에는 Nitrosomonas europaea, N. oligotropha, N.-like, Nitrosospira lineage에 속하는 암모니아산화균이 주로 발견되었으며, N. communis, N. marina, N. cryotolerans lineage에 속하는 암모니아산화균은 주종을 이루지 못했다. 암모니아산화균 군집조성은 하수처리장별로 차이를 보였는데, 포항, Palo Alto, Marshall 하수처리장에서는 N. oligotropha lineage에 속하는 암모니아산화균이 가장 빈번히 발견되었고, Nine Springs 하수처리장에서는 N. europaea lineage에 속하는 암모니아산화균이 주종을 이루었다. 한편, 암모니아산화균 군집조성과 생물반응기 운전인자(HRT, SRT, MLSS) 및 환경조건(온도, pH, COD, $NH_3$, $NO_3{^-}$)의 연관성은 다변수 통계분석법인 Redundancy Analysis 방법을 이용하여 분석하였다. 그 결과, 생물반응조의 COD와 $NO_3{^-}$ 농도가 하수처리 생물반응기에서 암모니아산화균 군집구조를 결정하는 통계학적으로 유의한 변수로 나타났다.

Production of Recombinant Anti-Cancer Vaccines in Plants

  • Lee, Jeong Hwan;Ko, Kisung
    • Biomolecules & Therapeutics
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    • 제25권4호
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    • pp.345-353
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    • 2017
  • Plant expression systems have been developed to produce anti-cancer vaccines. Plants have several advantages as bioreactors for the production of subunit vaccines: they are considered safe, and may be used to produce recombinant proteins at low production cost. However, several technical issues hinder large-scale production of anti-cancer vaccines in plants. The present review covers design strategies to enhance the immunogenicity and therapeutic potency of anti-cancer vaccines, methods to increase vaccine-expressing plant biomass, and challenges facing the production of anti-cancer vaccines in plants. Specifically, the issues such as low expression levels and plant-specific glycosylation are described, along with their potential solutions.

In Vitro Propagation of Commonly Used Medicinal Trees in Korea

  • An, Chanhoon
    • Journal of Forest and Environmental Science
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    • 제35권4호
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    • pp.272-280
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    • 2019
  • Forest medicinal resources, which constitute one of the non-timber forest products, have been regarded as healthy and highly valued products. To meet the increasing demand of the medicinal resources, it is necessary to improve the propagation methods of medicinal plants. In vitro propagation not only allows an opportunity for propagating plants in large numbers but also allows for enhancing the quality and quantity of the desired functional component of a plant by altering the growth factors, such as medium, carbon source, and plant growth regulators influence plant. There have been several studies of in vitro propagation methods, such as axillary bud culture, shooting, and embryogenesis, on Kalopanax septemlobus, Eleutherococcus sessiliflorus, Hovenia dulcis, and Schisandra chinensis in Korea between from 2000 through 2010. Furthermore, there have been attempts to proliferate callus and plantlets for producing useful natural compounds by using bioreactors. Here, we provide an account of the in vitro propagation methods of medicinal trees in Korea based on a review of several micropropagation studies.

분자농업의 현황 및 전망 (Current status in molecular farming)

  • 김태금;양문식
    • Journal of Plant Biotechnology
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    • 제37권3호
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    • pp.243-249
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    • 2010
  • Molecular farming is production of pharmaceutically and industrially important proteins in plants. Plants and plant cell culture systems have been used as bio-factory to produce recombinant proteins such as monoclonal antibodies, enzymes, vaccines, hormones, interleukins, commercial enzymes and etc. The terms molecular farming, biofarming, molecular pharming, phytomanufacturing, recombinant or plant-made industrials, planta-pharma, plant bioreactors, plant biofactory, and pharmaceutical gardening are used interchangeably. Molecular farming can provide safe and inexpensive pharmaceutical proteins as well as commercial ones. In spite of several advantages of molecular farming such as safety and inexpensive cost, there are also a couple of drawbacks in the existing technology. One of them is low expression level of target gene in plants, which has been improved by optimizing gene-based codon usage, screening of strong promoters, expression of transcription factors, subcellular targeting of target proteins, chloroplast transformation, and transient expression using viral expression system (magnifection). Some plant-based commercial proteins have already been in markets and more than twenty plant-based pharmaceuticals have been in clinical trials, from that we can expect that several plant-based pharmaceutical proteins will be seen in the markets in the near future.

고등식물의 엽록체 형질전환: 원핵생물과 진맥생물의 조우 (Chloroplast Genetic Transformation in Higher Plants: An Encounter Between Prokaryote and Eukaryote)

  • 정화지;서영배;정원중;민성란;유장렬
    • Journal of Plant Biotechnology
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    • 제33권3호
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    • pp.185-194
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    • 2006
  • 엽록체는 숙주세포에 잡아먹힌 (식균작용) 남세균이 숙주세포와 공생관계를 형성하여 온 것으로 간주된다. 엽록체 게놈은 정적이라고 이해하고 있지만 형질전환을 통하여 상동염기가 도입되면 이와는 반대로 intramolecular homologous recombination에 의해 subgenomic circle을 만드는 등 매우 다이나믹하다는 것이 최근에 증명되고 있다. 고등식물의 엽록체 형질전환은 핵 형질전환에서 기대할 수 없는 여러 이점을 제공한다. 예컨대, transgene의 발현율을 높일 수 있고, transgene들을 polycistronic하게 발현할 수 있으며, 도입된 transgene이 모계유전을 하게 된다는 것 등이다. 담배는 엽록체 형질전환의 모델 식물로 사용되어 왔으나 최근에는 벼, 대두, 면화 등 다른 주요 작물의 형질전환도 가능하게 되었다. 엽록체 형질전환된 작물은 미생물을 이용하여 고부가가치 단백질을 생산하는 생물반응기를 향후 대체할 수 있게 될 것이다.

소화탈리액 대상 오존 전처리와 Ultra Violet-Advanced Oxidation Process 연계 처리를 통한 유기물질 지표 개선 (Improvement of Organic Substances Indicators by Linked Ultra Violet-Advanced Oxidation Process After Ozonation for Anaerobic Digested Wastewater)

  • 이재엽;제스민아터;김일호
    • 상하수도학회지
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    • 제37권5호
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    • pp.253-259
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    • 2023
  • Bioreactors are devices used by sewage treatment plants to process sewage and which produce active sludge, and sediments separated by solid-liquid are treated in anaerobic digestion tanks. In anaerobic digestion tanks, the volume of active sludge deposits is reduced and biogas is produced. After dehydrating the digestive sludge generated after anaerobic digestion, anaerobic digested wastewater, which features a high concentration of organic matters, is generated. In this study, the decomposition of organic carbon and nitrogen was studied by advanced oxidation process. Ozone-microbubble flotation process was used for oxidation pretreatment. During ozonation, the TOC decreased by 11.6%. After ozone treatment, the TOC decreased and the removal rate reached 80.4% as a result of the Ultra Violet-Advanced Oxidation Process (UV-AOP). The results with regard to organic substances before and after treatment differed depending on the organic carbon index, such as CODMn, CODCr, and TOC. Those indexes did not change significantly in ozone treatment, but decreased significantly after the UV-AOP process as the linkage treatment, and were removed by up to 39.1%, 15.2%, and 80.4%, respectively. It was confirmed that biodegradability was improved according to the ratio of CODMn to TOC. As for the nitrogen component, the ammonia nitrogen component showed a level of 3.2×102 mg/L or more, and the content was maintained at 80% even after treatment. Since most of the contaminants are removed from the treated water and its transparency is high, this water can be utilized as a resource that contains high concentrations of nitrogen.

Quorum Quenching Bacteria Isolated from the Sludge of a Wastewater Treatment Plant and Their Application for Controlling Biofilm Formation

  • Kim, A-Leum;Park, Son-Young;Lee, Chi-Ho;Lee, Chung-Hak;Lee, Jung-Kee
    • Journal of Microbiology and Biotechnology
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    • 제24권11호
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    • pp.1574-1582
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    • 2014
  • Bacteria recognize changes in their population density by sensing the concentration of signal molecules, N-acyl-homoserine lactones (AHLs). AHL-mediated quorum sensing (QS) plays a key role in biofilm formation, so the interference of QS, referred to as quorum quenching (QQ), has received a great deal of attention. A QQ strategy can be applied to membrane bioreactors (MBRs) for advanced wastewater treatment to control biofouling. To isolate QQ bacteria that can inhibit biofilm formation, we isolated diverse AHL-degrading bacteria from a laboratory-scale MBR and sludge from real wastewater treatment plants. A total of 225 AHL-degrading bacteria were isolated from the sludge sample by enrichment culture. Afipia sp., Acinetobacter sp. and Streptococcus sp. strains produced the intracellular QQ enzyme, whereas Pseudomonas sp., Micrococcus sp. and Staphylococcus sp. produced the extracellular QQ enzyme. In case of Microbacterium sp. and Rhodococcus sp., AHL-degrading activities were detected in the whole-cell assay and Rhodococcus sp. showed AHL-degrading activity in cell-free lysate as well. There has been no report for AHL-degrading capability in the case of Streptococcus sp. and Afipia sp. strains. Finally, inhibition of biofilm formation by isolated QQ bacteria or enzymes was observed on glass slides and 96-well microtiter plates using crystal violet staining. QQ strains or enzymes not only inhibited initial biofilm development but also reduced established biofilms.