• Title/Summary/Keyword: 엽록체 유전자

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Plastoglobule in chloroplast and its role in prenylquinone metabolism (엽록체 지질 소기관의 기능과 지질대사에서의 역할)

  • Kim, Hyun Uk;Kim, Eun-Ha;Lee, Kyeong-Ryeol;Jung, Su-Jin;Roh, Kyung Hee;Kim, Jong-Bum
    • Journal of Plant Biotechnology
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    • v.40 no.3
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    • pp.125-134
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    • 2013
  • Lipid droplets called plastoglobules are present in all plastid types. In chloroplasts, they are surrounded by the outer lipid monolayer from and connected to thylakoid membrane. The plastoglobule core contains the neutral lipids, which includes prenylquinones, triacylglycerols, and carotenoids. During stress and various developmental stages such as senescence, the size and number of plastoglobules increase due to the accumulation of lipids. Plastoglobules proteome revealed the presence of metabolic enzymes as well as structural proteins, plastoglobulins/fibrillins. Among the metabolic enzymes, the tocopherol cyclase, VTE1 and the NADPH quinine dehydrogenase, NDC1 have demonstrated that these participate in isoprenoid lipid metabolic pathways at the plastoglobule, notably in the metabolism of prenylquinones (tocopherol, plastoquinol and phylloquinone).

No Trace of Introduced cpDNA of Pinus thunbergii in Pinus densiflor for. erecta Postulated as an Introgressive Hybrid between Pinus densiflora and Pinus Thunbergii (소나무와 곰솔간 이입교잡종(移入交雜種)으로 추정(推定)되어온 금강송(金剛松)에 있어서 곰솔 cpDNA 의 부재(不在))

  • Hong, Yong-Pyo;Kim, Kyu-Sik;Noh, Eui-Rae;Shin, Eun-Myeong;Kim, Zin-Suh
    • Journal of Korean Society of Forest Science
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    • v.87 no.4
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    • pp.543-548
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    • 1998
  • Portions of chloroplast genes(psbD and rbcL) were amplified from Pinus thunbergii(Japanese black pine : black pine) and Pinus densiflora(Japanese red pine : red pine) by PCR and digested by a restriction enzyme, HaeIII, respectively. Two species specific cpDNA markers were identified. With the observed cpDNA markers, paternal inheritance of cpDNA in pine hybrids was verified in an artificial hybrid family between black pine(Chollanam 37) and red pine(Chungchongbuk 3). On the basis of paternal inheritance of chloroplast genome in a hybrid, 2 portions of cpDNA amplified from 115 individuals of Pinus densiflora for. erecta were screened to detect any traces of black pine specific cpDNA markers in P. densiflora for. erecta which has been postulated as an introgressive hybrid between red pine and black pine(Hyun el al., 1967). All the analyzed individuals of Pinus densiflora for. erects revealed the identical profiles of HaeIII digested psbD and rbcL genes to red pine. This result suggests that there is no introduced chloroplast genome of black pine in Pinus densiflora for. erecta and that there is no concrete evidence of treating P. densiflora for, erecta as an introgressive hybrid between red pine(♀) and black pine(♂).

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Phylogenetic relationships of Korean campanulaceae based on chloroplast DNA sequences (엽록체 DNA 염기서열 분석을 이용한 한국산 초롱꽃과 (Campanulaceae)의 계통유연관계)

  • Kim, Kyung-Ah;Yoo, Ki-Oug
    • Korean Journal of Plant Taxonomy
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    • v.42 no.4
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    • pp.282-293
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    • 2012
  • Phylogenetic studies were conducted to evaluate the taxonomic relationships among 28 taxa, including 2 outgroups of Korean Campanulaceae, using atpB, atpB-rbcL, atpF-H, matK, rbcL, rpl16, rpoC1 and trnL-F regions sequences in chloroplast DNA. The combined analyses of eight chloroplast DNA regions suggest that Codonopsis and Platycodon basally branches within the phylogenetic tree; Wahlenbergia distinguished an independent clade; Campanula forms a clade; Peracarpa and Asyneuma clade is a sister to the Adenophora-Hanabusaya clade; Hanabusaya is placed within the section Remotiflorae of Adenophora; Adenophora form a clade. Our present results support the generic level, although discordance remained at the infrageneric groups such as section and series based on morphological characteristics in the genus Adenophora.

Construction of a Plant Chloroplast Transformation Vector to Produce the Antimicrobial Peptide Stomoxyn (대장균에서 항균 펩타이드 stomoxyn을 생산하기 위한 형질전환 벡터 제작)

  • Jin Gyu Go;Hyeon Ho Gil;Soon Young Kim
    • Journal of Life Science
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    • v.34 no.7
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    • pp.493-499
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    • 2024
  • Antimicrobial peptides are antimicrobial substances inherent in animals and plants, with strong antibacterial activity even in small amounts and with various other functions such as antiviral and antioxidant actions. Plants can be grown with just water and sunlight, allowing for their mass production at low costs. However, transforming a chloroplast into one that produces antimicrobial peptides, rather than growing plants, increases the amount of protein expression and minimizes contamination of the ecosystem because gene transfer by pollen does not occur. In that context, using transgenic plant chloroplasts to produce recombinant proteins increases protein degradation and reduces the solubility of proteins. To solve this problem, we fused SUMO, a fusion protein, with a recombinant protein. We also used a 6xHis tag to purify the fusion protein. The antimicrobial peptide stomoxyn is an antibacterial substance found in stable flies. Stomoxyn has an α-helix structure and is amphiphilic, which allows it to dissolve bacterial cell membranes. In this study, we constructed a transformation vector to express stomoxyn in both plant chloroplasts and Escherichia coli and used this vector to confirm the expression of stomoxyn in E. coli. The expression of the protein was then confirmed in E. coli using a transformation vector. The expressed stomoxyn was purified by nickel column and SUMOase treatment, and its antibacterial activity was confirmed using an agar diffusion assay. The EGFP gene was used to ensure that the transformed vector was inserted into the chloroplast.

Analysis of Populus cpDNA by Restriction Fragment Length Polymorphism(RFLP) Technique (RFLP기법(技法)을 이용(利用)한 포플러 엽록체(葉綠體) DNA의 분석(分析))

  • Lee, J.S.;Noh, E.W.;Lee, S.K.;Kwon, K.W.
    • Journal of Korean Society of Forest Science
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    • v.83 no.1
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    • pp.20-24
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    • 1994
  • In woody species with a long life span, the studies on inheritance of any trait may be very time consuming and laborious. Chloroplast DNA(cpDNA) has been a valuable tool in such studies since it has several unique features such as limited genome size and cytoplasmic inheritance. In the present study, cpDNAs from five different species of Populus(P. alba, P. glandulosa, P. alba${\times}$P. glandulosa, P. davidiana, and P. nigra), and Nicotiana tabacum were compared with regard to restriction fragment length polymophism. The results showed that cpDNAs among the species were very conserved, although some polymorphisms were observed when the DNAs were digested with restriction enzyme EcoRI or KphI. The other enzymes (Bgl II, and PstI) tested produced identical restriction fragmentation pattern among the species. However, cpDNAs from all the five Populus species showed different restriction fragmentation pattern from that of tobacco with the four restriction enzymes tested. Southern hybridization with tobacco rbcL gene fragment as a probe also produced identical pattern among Populus species. The results indicate that cpDNAs in the genus are very well conserved during evolution.

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Development of PCR-based markers specific to Solanum brevicaule by using the complete chloroplast genome sequences of Solanum species (엽록체 전장유전체 비교를 통한 PCR 기반의 Solanum brevicaule 특이적 분자마커 개발)

  • Park, Tae-Ho
    • Journal of Plant Biotechnology
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    • v.49 no.1
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    • pp.30-38
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    • 2022
  • Solanum brevicaule is one of the tuber-bearing wild Solanum species. Because of its resistance to several important pathogens infecting potatoes during cultivation, it can be used for potato breeding. However, the fact that S. brevicaule used in this study has an EBN value of two causes the sexual reproduction barriers between the species and cultivated potatoes. In this study, specific markers for discriminating S. brevicaule from other Solanum species were developed on the basis of the results of sequence alignments with the whole chloroplast genomes of S. brevicaule and seven other Solanum species. The chloroplast genome of S. brevicaule was completed by next-generation sequencing technology described in other recent studies. The total sequence length of the chloroplast genome of S. brevicaule is 155,531 bp. Its structure and gene composition are similar to those of other Solanum species. Phylogenetic analysis revealed that S. brevicaule was closely grouped with other Solanum species. BLASTN search showed that its genome sequence had 99.99% and 99.89% identity with those of S. spegazzinii (MH021562) and S. kurtzianum (MH021495), respectively. Sequence alignment identified 27 SNPs that were specific to S. brevicaule. Thus, three PCR-based CAPS markers specific to S. brevicaule were developed on the basis of these SNPs. This study will facilitate in further studies on evolutionary and breeding aspects in Solanum species.

Chloroplast genome sequence and PCR-based markers for S. cardiophyllum (감자 근연야생종 Solanum cardiophyllum의 엽록체 전장유전체 구명 및 이를 이용한 S. cardiophyllum 특이적 분자마커의 개발)

  • Tae-Ho Park
    • Journal of Plant Biotechnology
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    • v.50
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    • pp.45-55
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    • 2023
  • The diploid Solanum cardiophyllum, a wild tuberbearing species from Mexico is one of the relatives to potato, S. tuberosum. It has been identified as a source of resistance to crucial pathogens and insects such as Phytophthora infestans, Potato virus Y, Colorado potato beetle, etc. and is widely used for potato breeding. However, the sexual hybridization between S. cardiophyllum and S. tuberosum is limited due to their incompatibility. Therefore, somatic hybridization can introduce beneficial traits from this wild species into the potato. After somatic hybridization, selecting fusion products using molecular markers is essential. In the current study, the chloroplast genome of S. cardiophyllum was sequenced by next-generation sequencing technology and compared with those of other Solanum species to develop S. cardiophyllum-specific markers. The total length of the S. cardiophyllum chloroplast genome was 155,570 bp and its size, gene content, order and orientation were similar to those of the other Solanum species. Phylogenic analysis with 32 other Solanaceae species revealed that S. cardiophyllum was expectedly grouped with other Solanum species and most closely located with S. bulbocastanum. Through detailed comparisons of the chloroplast genome sequences of eight Solanum species, we identified 13 SNPs specific to S. cardiophyllum. Further, four SNP-specific PCR markers were developed for discriminating S. cardiophyllum from other Solanum species. The results obtained in this study would help to explore the evolutionary aspects of Solanum species and accelerate breeding using S. cardiophyllum.

Phylogenetic Relationships of Korean Viola (Violaceae) Based on matK and atpB-rbcL Sequence Data of Chloroplast DNA (엽록체 DNA의 matK와 aptB-rbcL 염기서열 분석에 의한 제비꽃속(Viola)의 계통유연관계)

  • Yoo, Ki-Oug;Jang, Su-Kil;Lee, Woo-Tchul
    • Korean Journal of Plant Taxonomy
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    • v.37 no.1
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    • pp.1-15
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    • 2007
  • Phylogenetic studies were conducted for 42 populations of Korean viola based on matK gene and atpB-rbcL intergenic spacer region of chloroplast DNA. In the matK tree, section Chamaemelanium and Dischidium were formed as a distinct group. Five subsections of section Nomimium were paraphyletic. In atpB-rbcL intergenic spacer region analysis, two species of sect. Chamaemelanium were monophyletic, and section Dischidium was placed sister to subsection patellares clade except for V. keiskei. Five subsections of section Nomimium were also paraphyletic as matK tree. the separate data analyses were incongruent in the relationships among 42 populations, especially for the position of section Dischidium and V. keiskei. The combined analyses of two chloroplast regions showed three major clades; section Chamaemelanium and Dischidium (x=6) formed a sister to subsections Hypocarpae and Trigonocarpae (x=10) clade; subsections Bilobatae and vaginatae (x=10 or 12) formed a clade with V. keiskei; and 19 populations of subsection patellares (x=12) except for V. keiskei were recognized as an independent clade within section Nomimium. Although combined data suggest three major clades of Korean viola, the origins of each clade from outgroup were discordance with previous ITS and trnL-F data.

Phylogenetic position of Neofinetia and Sedirea (Orchidaceae) and their species identification using the chloroplast matK and the nuclear ITS sequences (엽록체 matK 와 핵 ITS 염기서열을 이용한 나도풍란속 및 풍란속의 계통과 종동정)

  • Kim, Young-Kee;Jo, Sang Jin;Kim, Ki-Joong
    • Korean Journal of Plant Taxonomy
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    • v.44 no.1
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    • pp.39-50
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    • 2014
  • Phylogenetic positions of Sedirea and Neofinetia were addressed using the chloroplast matK and the nuclear ITS sequences. We also evaluate the usefulness of the makers for the identification of species and localities. Sedirea and Neofinetia form an independent monophyletic genus, respectively, in both matK and nuclear ITS trees. The sister genus of the Neofinetia was Vanda in both trees. In addition, our trees support the separate recognition of the Neofinetia from Vanda rather than the inclusion of Neofinetia into Vanda. The sister group of the Sedirea was (Dimorphorchis(Pteroceras(Saccolabiun+Phalaeonopsis))) clade. The Dimorphorchis was one of the most probable sister genus to the Sedirea. The sister group relationship between Sedirea and Aerides was suggested by their similar morphology, but not supported in molecular trees. The identification of species and localities of Neofinetia was possible using our two molecular markers. However, several pseudo-gene sequences are discovered from the public data base. In addition, the horizontal gene transfer of chloroplast genomes is frequent events in orchid hybrids. Therefore, we need a careful evaluation for the data prior to systematic use. Generation of sequence data from multiple accessions of a species may helpful to reduce these types of error.

Characterization of Transgenic Tall Fescue Plants Expressing Two Antioxidant Genes in Response to Environmental Stresses (두 가지 항산화유전자를 동시에 발현시킨 형질전환 톨 페스큐 식물체의 환경스트레스에 대한 내성 특성 해명)

  • Lee, Sang-Hoon;Lee, Ki-Won;Kim, Ki-Yong;Choi, Gi-Jun;Seo, Sung;Kwak, Sang-Soo;Kwon, Suk-Yoon;Yun, Dae-Jin;Lee, Byung-Hyun
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.27 no.2
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    • pp.109-116
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    • 2007
  • Environmental stress is the major limiting factor in plant productivity. As an effort to solve the global food and environmental problems using the plant biotechnology, we have developed transgenic tall fescue (Festuca arundinacea Schreb.) plants via Agrobacterium-mediated gene transfer method. To develop transgenic tall fescue plants with enhanced tolerance to the environmental stresses, both CuZn superoxide dismutase (CuZnSOD) and ascorbate peroxidase (APX) genes were incorporated in a pIG121 binary vector and the both of the genes were controlled separately by an oxidative stress-inducible sweet potato peroxidase 2 (SWPA2) premoter expressed in chloroplasts. Leaf discs of transgenic plants showed 10-30% less damage compared to the wild-type when they exposed to a wide range of environmental stresses including methyl viologen (MV), $H_2O_2$ and heavy metals. In addition, when $200{\mu}M$ MV was sprayed onto the whole plants, transgenic plants showed a significant reduction of visible damage compared to wild-type plants that were almost damaged. These results suggest that over expression of CuZnSOD and APX genes in transgenic plants might be a useful strategy to protect the crops against a wide range of environmental stresses.