• 제목/요약/키워드: Chloroplast proteins

검색결과 43건 처리시간 0.026초

고려인삼 Chlorophyll a/b Binding Protein(Cab) 유전자의 동정 및 분자적인 특성분석 (Molecular Characterization of a cDNA Encoding Chlorophyll a/b Binding Protein (Cab) from Panax ginseng C. A. Meyer)

  • 인준교;이범수;윤재호;손화;김세영;양덕춘
    • 한국자원식물학회지
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    • 제18권3호
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    • pp.441-449
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    • 2005
  • 광계II(PSII)는 고등식물의 chloroplast에서 두 개의 광합성 반응중심 중의 하나이다. Chlorophyll a/b 광수확 복합체는 광계II를 위한 안테나 역할을 수행한다. 본 연구에서는 인삼의 잎조직을 제작한 cDNA library로부터 chlorophyll a/b-binding protein (Cab) 유전자를 분리하였다. 인삼 Cab유전자는 935 bp의 염기와 265개의 아미노산 잔기(pI 5.63)로 구성된 한 개의 ORF를 포함하고 있으며, 단백질의 분자량은 28.6 kDa으로 추정되었다. 인삼에서 분리한 Cab 유전자는 기존에 식물에서 보고된 유전자들과 유사성을 나타내었으며, 유사도는 $68-92\%$로 나타났다. 아미노산 서열을 비교하여 유연관계를 분석한 결과 인삼의 Cab 유전자는 비교된 P. persica (AAC34983), A.thaliana (AAD28771), G. hirsutum (CAA38025), G. max (AAL29886), V. radiata (AAF89205) 등과 동일한 그룹으로 분리되었다.

논 토양 조건에서 팥 유묘기의 생육특성과 단백질 발현 양상 (Growth Characteristics and Comparative Proteome Analysis of Adzuki Bean Leaves at the Early Vegetative Stage under Waterlogging Stress)

  • 정해룡;권수정;윤성현;박민영;부희옥;김학현;이문순;우선희
    • 한국작물학회지
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    • 제67권4호
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    • pp.211-221
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    • 2022
  • 논 토양 조건에서 팥의 생육기 중 초기 생육 단계에 해당되는 유묘기에 과습 스트레스 처리 후 생육특성 변화 및 팥잎의 단백질 발현 양상을 조사한 결과는 다음과 같다. 1. 아라리(밀양 8호)를 공시 품종으로 과습 스트레스 실험을 진행하였다. 3일간 과습 처리하는 동안 팥의 초장과 생체중(잎, 줄기)은 통계적으로 유의하지는 않았으나 생체중(뿌리)와 SPAD value 값은 통계적으로 유의한 결과가 나왔다. 2. 과습 처리 3일 후 잎의 단백질 발현 양상을 확인한 결과 21개의 차별 발현된 단백질 중 과습 스트레스 처리에 의해 9개의 단백질들이 up-regulated 되었고, 12개의 단백질들이 down-regulated 되었다. 단백질을 기능별로 분류한 결과 Biological Process에서 carbohydrate metabolic process와 관련된 단백질들이 가장 많이 나왔고 Cellular Component에서는 Chloroplast에서 가장 많이 존재하였다. 3. Regulatory protein과 관련된 Maturase K 단백질은 처리구에서 대조구보다 발현양이 증가한 것으로 나타났다. 4. Carbohydrate metabolic process와 관련된 Malate dehydrogenase 단백질과 Glyceraldehyde-3-phosphate dehydrogenase 단백질은 과습 스트레스를 받았을 경우 단백질 발현양이 증가하였다. 5. Photosynthesis와 관련된 Carbonic anhydrase (CA)는 처리구보다 대조구에서 단백질 발현량이 더 증가한 것을 확인할 수 있었다. 스트레스와 관련된 단백질 Superoxide dismutase는 처리구에서 대조구보다 단백질 발현양이 증가한 것을 확인할 수 있었다.

Molecular Cloning and Characterization of Expression Patterns of a Plastid ω-3 Fatty Acid Desaturase cDNA from Perilla frutescens

  • Lee, Seong-Kon;Kim, Kyung-Hwan;Kwon, Moo-Sik;Hwang, Young-Soo
    • Journal of Applied Biological Chemistry
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    • 제44권1호
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    • pp.6-11
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    • 2001
  • An ${\omega}-3$ fatty acid desaturase gene which is involved in de novo synthesis of -Iinolenate was isolated from cDNA library of Perilla frutescens. A cDNA library was constructed with mRNA extracted from perilla seeds of 12 DAF. The cDNA clone consisting of 1317-bp open reading frame encoding 438 amino acids with a relative MW of 50kDa, was isolated and showed 65-83% similarities to other known genes. This cDNA is deduced to encode a plastidal ${\omega}-3$ fatty acid desaturase based on the fact that it has higher homology to plastidal ones than to microsomal ones and its N-terminal sequence shares several characteristics of transit peptides of chloroplast proteins. Southern blot analysis of genomic DNA indicated that more than one gene or alleles for ${\omega}-3$ fatty acid desaturase are present in the genome of perilla. Northern blot analysis showed that the ${\omega}-3$ fatty acid desaturase gene is mainly revealed in early developing seeds and has different expression patterns depending on tissue types compared to the microsomal ones.

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국립공원 북한산의 환경평가에 관하여 - 도봉산지역 일대를 중심으로-

  • 박봉규
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1985년도 워크샵 및 심포지엄 북한산국립공원의 식생
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    • pp.35-48
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    • 1985
  • Plastids, which are organelles unique to plant cells, bear their own genome that is organized into DNA-protein complexes (nucleoids). Regulation of gene expression in the plastid has been extensively investigated because this organelle plays an important role in photosynthesis. Few attempts, however, have been made to characterize the regulation of plastid gene expression at the chromosomal structure, using plastid nucleoids. In this report, we summarize the recent progress in the characterization of DNA-binding proteins in plastids, with special emphasis on CND41, a DNA binding protein, which we recently identified in the choloroplast nucleoids from photomixotrophically cultured tobacco cells. CND41 is a protein of 502 amino acids which consisted of a transit peptide of 120 amino acids and a mature protein of 382 amino acids. The N-terminal of the 'mature' protein has lysine-rich region which is essential for DNA-binding. CNA41 also showed significant identities to some aspartyl proteases. Protease activity of purified CND41 has been recently confirmed and characterized. On the other hand, characterization of accumulation of CND41 both in wild type and transgenic tobacco with reduced amount of CND41 suggests that CND41 is a negative regulator in chloroplast gene expression. Further investigation indicated that gene expression of CND41 is cell-specifically and developmentally regulated as well as sugar-induced expression. The reduction of CND41 expression in transgenic tobacco also brought the stunted plant growth due to the reduced cell length in stem. GA3 treatment on apical meristem reversed the dwarf phenotype in the transformants. Effects of CND41 expression on GA biosynthesis will be discussed

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Transgenic Strategy to Improve Stress Resistance of Crop Plants

  • Horvath, Gabor V.;Oberschall, Attila;Deak, Maria;Sass, Laszlo;Vass, Imre;Barna, Balazs;Kiraly, Zoltan;Hideg, Eva;Feher, Attila
    • Journal of Plant Biotechnology
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    • 제1권1호
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    • pp.61-68
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    • 1999
  • Rapid accumulation of reactive oxygen species (ROS) and their toxic reaction products with lipids and proteins significantly contributes to the damage of crop plants under biotic and abiotic stresses. We have identified several stress activated alfalfa genes, including the gene of the alfalfa ferritin and a novel NADPH-dependent aldose/aldehyde reductase enzyme. Transgenic tobacco plants that synthesize alfalfa ferritin in vegetative tissues-either in its processed form in chloroplast or in the cytoplasmic non-processed form-retained photosynthetic function upon free radical toxicity generated by paraquat treatment and exhibited tolerance to necrotic damage caused by viral and fungal infections. We propose that by sequestering intracellular iron involved in generation of the very reactive hydroxyl radicals through a Fenton reaction, ferritin protects plant cells from oxidative damage. Our preliminary results with the other stress-inducable alfalfa gene (a NADPH-dependent aldo-keto reductase) indicate, that the encoded enzyme may play role in the stress response of the plant cells. These studies reveal new pathways in plants that can contribute to the increased stress resistance with a potential use in crop improvement.

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A Rice Gene Homologous to Arabidopsis AGD2-LIKE DEFENSE1 Participates in Disease Resistance Response against Infection with Magnaporthe oryzae

  • Jung, Ga Young;Park, Ju Yeon;Choi, Hyo Ju;Yoo, Sung-Je;Park, Jung-Kwon;Jung, Ho Won
    • The Plant Pathology Journal
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    • 제32권4호
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    • pp.357-362
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    • 2016
  • ALD1 (ABERRANT GROWTH AND DEATH2 [AGD2]-LIKE DEFENSE1) is one of the key defense regulators in Arabidopsis thaliana and Nicotiana benthamiana. In these model plants, ALD1 is responsible for triggering basal defense response and systemic resistance against bacterial infection. As well ALD1 is involved in the production of pipecolic acid and an unidentified compound(s) for systemic resistance and priming syndrome, respectively. These previous studies proposed that ALD1 is a potential candidate for developing genetically modified (GM) plants that may be resistant to pathogen infection. Here we introduce a role of ALD1-LIKE gene of Oryza sativa, named as OsALD1, during plant immunity. OsALD1 mRNA was strongly transcribed in the infected leaves of rice plants by Magnaporthe oryzae, the rice blast fungus. OsALD1 proteins predominantly localized at the chloroplast in the plant cells. GM rice plants over-expressing OsALD1 were resistant to the fungal infection. The stable expression of OsALD1 also triggered strong mRNA expression of PATHOGENESIS-RELATED PROTEIN1 genes in the leaves of rice plants during infection. Taken together, we conclude that OsALD1 plays a role in disease resistance response of rice against the infection with rice blast fungus.

Inhibitory Effects of The Flower from Abeliophyllum distichum cv. Okhwang 1 on Melanogenesis in B16 F10 Cells

  • Mi-Ji Noh;Hye-Jeong Park;So-Yeon Han;Jeong-Yong Park;Seo-Hyun Yun;Soo-Yeon Kim;Tae-Won Jang;Jae-Ho Park
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2021년도 춘계학술대회
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    • pp.53-53
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    • 2021
  • Abeliophyllum distichum Nakai (A. distichum), endemic species of Korea, is classified according to the petals and calyx colors. Recently, A. distichum cv. Okhwang 1, which has the golden flower, designated the first official cultivar improved from A. distichum species. The study on the chloroplast genome of A. distichum cv. Okhwang 1 have been reported, but no studies on bioactivity such as antioxidant, anti-inflammatory, and anti-cancer have been progressed. This study was conducted to evaluate the inhibition on melanogenesis of the flower from A. distichum cv. Okhwang 1 (FAO). Antioxidant activity was measured using DPPH and ABTS radical scavenging assays. Inhibition effects on melanogenesis of FAO were confirmed by expression of tyrosinase-related proteins and mRNAs using immunoblotting and RT-qPCR. Tyrosinase is an enzyme that regulates both stimulation and inhibition of melanogenesis. Stimulated MITF in cellular levels increases the expressions of tyrosinase, TRP-1, and TRP-2 to induce melanogenesis. As a result, FAO inhibited the expression of MITF, followed by down-regulated tyrosinase, TRP-1, and TRP-2, which lead to inhibit melanin overproduction. In conclusion, these results indicated that FAO reduced reactive oxygen species (ROS) and markedly inhibited the expression of melanin-related factors. The present study suggested providing that FAO has the potential for development as a functional cosmetic material derived from natural.

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종자내 아미노산 합성 조절 유전자에 관한 연구 (Amino Acid Biosynthesis and Gene Regulation in Seed)

  • 임용표;서미정;조수진;이정희;이효연
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1996년도 제10회 식물생명공학심포지움 고등식물 발생생물학의 최근 진보
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    • pp.61-74
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    • 1996
  • Human and monogastric animals can not synthesize 10 out of the 20 amino asids and therefor need to obtain these from their diet. The plant seed is a major source of dietary protein. It is particular important in their study to increase nutritional quality of the seed storage proteins. The low contents of lysine, asparagine and threonenein various cereal seeds and of cystein and methionine. In legume seeds is due to the low proportions of these amino acids in the major storage proteins, we have tried to apply the three strategies; (1) mutagenesis and selection of specific amino acid analogue resistance, (2) cloning and expression study of lysine biosynthesis related gene, (3) transfomation of lysine rich soybean glycinin gene. The 5-methyltryptophan (5MT) resistant cell lines, SAR1, SAR2 and SAR3 were selected from anther derived callus of rice (Oryza sativa L. "Sasanishiki"). Among these selected cell lines, two (SAR1 and SAR3) were able to grow stably at 200 mg/L of 5MT. Analysis of the freed amino acids in callus shows that 5MT resistant cells (SAR3) accumulated free tryptophan at least up to 50 times higher than those that of the higher than of SAS. These results indicated that the 5MT resistant cell lines are useful in studies of amino acid biosynthesis. Tr75, a rice (Oryza sativa L., var. Sasanishiki) mutant resistant to 5MT was segregated from the progenies of its initial mutant line, TR1. The 5MT resistant of TR75 was inherited in the M8 generations as a single dominant nuclear gene. The content of free amino acids in the TR75 homozygous seeds increased approximately 1.5 to 2.0 fold compared to wild-type seeds. Especially, the contents of tryptophan, phenylalanine and aspartic acid were 5.0, 5.3 and 2.7 times higher than those of wild-type seeds, respectively. The content of lysine is significantly low in rice. The lysine is synthesized by a complex pathway that is predominantly regulated by feedback inhibition of several enzymes including asparginase, aspatate kinase, dihydrodipicolinat synthase, etc. For understanding the regulation mechanism of lysine synthesis in rice, we try to clone the lysine biosynthetic metabolism related gene, DHPS and asparaginase, from rice. We have isolated a rice DHPS genomic clone which contains an ORF of 1044 nucleotides (347 amino acids, Mr. 38, 381 daltons), an intron of 587 nucleotides and 5'and 3'-flanking regions by screening of rice genomic DNA library. Deduced amino acid sequence of mature peptide domain of GDHPS clone is highly conserved in monocot and dicot plants whereas that of transit peptide domain is extremely different depending on plant specie. Southern blot analysis indicated that GDHPS is located two copy gene in rice genome. The transcripts of a rice GDHPS were expressed in leaves and roots but not detected in callus tissues. The transcription level of GDHPS is much higher in leaves indicating enormous chloroplast development than roots. Genomic DNA clones for asparaginase genes were screened from the rice genomic library by using plaque hybridization technique. Twelve different genomic clones were isolated from first and second screening, and 8 of 12 clones were analyzed by restriction patterns and identified by Southern Blotting, Restriction enzyme digestion patterns and Southern blot analysis of 8 clones show the different pattern for asparaginase gene. Genomic Southern blot analysis from rice were done. It is estimated that rice has at least 2-3 copy of asparaginase gene. One of 8 positive clones was subcloned into the pBluescript SK(+) vector, and was constructed the physical map. For transformation of lysine rich storage protein into tobacco, soybean glycinin genes are transformed into tobacco. To examine whether glycinin could be stably accumulated in endosperm tissue, the glycinin cDNA was transcriptionally fused to an endosperm-specific promotor of the rice storage protein glutelin gene and then introduced into tobacco genomic via Agrobacterium-mediated transformation. Consequently the glycinin gene was expressed in a seed-and developmentally-specific manner in transgenic tobacco seeds. Glycinin were targeted to vacuole-derived protein bodies in the endosperm tissue and highly accumulated in the matrix region of many transgenic plant (1-4% of total seed proteins). Synthesized glycinin was processed into mature form, and assembled into a hexamer in a similar manner as the glycinin in soybean seed. Modified glycinin, in which 4 contiguous methionine residues were inserted at the variable regions corresponding to the C - teminal regions of the acidic and basic polypeptides, were also found to be accumulated similarly as in the normal glycinin. There was no apparent difference in the expression level, processing and targeting to protein bodies, or accumulation level between normal and modified glycinin. glycinin.

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꼼치, Liparis tanakae에서 특이하게 발현되는 새로운 유전인자의 검색 (Molecular Cloning of Novel Genes Specifically Expressed in Snailfish, Liparis tanakae)

  • 송인선;이석근;손진기
    • 한국발생생물학회지:발생과생식
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    • 제4권1호
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    • pp.67-77
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    • 2000
  • 심해에서 서식하며 특이한 조직형태를 갖고 있는 꼼치조직에서 cDNA를 제작하여 클로닝을 통해서, 꼼치에서 특이하게 발현하는 유전인자를 검색하였다. 그 결과 62례의 클론이 알려진 유전자에 동질성이 있었는데 이들은 thioesterase가 9례, myosin이 8례, creatine kinase가 7례, skeletal alpha-actin이 6례, parvalbumin b와 ribosomal protein이 각각 5례, type I collagen과 muscle troponin이 각각 3례, dopamine receptor, histatin, 그리고 heat shock protein이 각각 2례, cystatin, lectin, statherin, secretory carrier membrane protein, keratin type I, desmin, chloroplast, muscle tropomyosin, reticulum calcium ATPase, ribonucleoprotein이 각각 1례로 나타났다. 나머지 클론은 동질성이 낮거나 비반복성으로 나타났으며, 이 중 in situ hybridization으로 조직에서 특이하게 발현되는 5종류의 클론을 선택하여 분석하였으며, C 말단 단백질 구조와 특색(motif)을 분석하였다. 5종류의 클론에서 C9O-77은 약 5000bp 크기로 상피조직, 점액조직, 섬유조직 그리고 교원질 조직에서 강한 양성반응을 보이는 세포의 기질단백질로 예상되었다. C9O-116은 약 1500bp 크기로 섬유조직, 상피조직 그리고 점액조직에서 약한 양성반응을 보였고, 근육 다발 주변 부위 세포에서 매우 강한 양성반응을 보이는 막투과성 단백질로 예상되었다. C9O-130은 약 1200bp 크기로 상피조직, 근육조직 그리고 점액조직에서 양성반응을 나타냈으며, 특히 상피조직에서 강한 양성반응을 나타내는 세포내 단백질로 예상되었다. C9O-161은 약 2000bp 크기로 상피조직 과 근육조직 그리고 점액성 섬유조직에서 약한 양성반응을 보였고, 상피세포에서 강한 양성반응을 보였으며, 근육다발을 둘러싸는 섬유성 세포에서도 강한 양성반응을 보이는 세포외 기질단백질로 추측되었다. C9O-171은 약 1000bp크기로 상피조직, 근육조직 그리고 섬유기질 조직에 널리 강한 양성반응을 나타냈으며 교원띠조직에서도 양성반응을 보이는 전사인자로 추측되었다.

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

  • 김현욱;김은하;이경렬;정수진;노경희;김종범
    • Journal of Plant Biotechnology
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    • 제40권3호
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    • pp.125-134
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    • 2013
  • 최근 연구에서 엽록체의 미지의 소기관으로 알려졌던 플라스토글로뷸이 지질 대사에서 중요한 역할을 함이 제시되고 있다. 애기장대 플라스토글로뷸의 프로테옴 단백질 분석은 플라스토글로뷸이 단순히 지질 저장 기관으로써의 기능 뿐아니라 지질 합성 대사에 능동적으로 관여하는 소기관임을 제시하고 있다. 애기장대 플라스토글로뷸에서 34개의 단백질이 발견되었다. 이들을 세 그룹으로 나누어 보면 구조단백질인 플라스토글로불린과 엽록체 대사에 관여하는 효소, 그리고 기능이 미확인된 단백질로 구분 된다. 이들 단백질 유전자의 돌연변이체와 리피도믹스 분석으로 이들 단백질의 기능 규명 연구가 필요하다. 토코페롤 합성의 마지막 단계에 관여하는 VTE1과 VTE4는 엽록체에서 각기 다른 위치에 존재하여 VTE1은 플라스토글로뷸에 존재하나 VTE4는 엽록체 내막에 존재한다. 이 같은 사실은 프레닐퀴논 대사물질이 엽록체 내에서 이동할 가능성을 시사한다. 플라스토글로뷸이 엽록체의 기능을 유지하는데 있어 필수적인지에 대한 유전학 연구가 앞으로 진행되어야 한다. 다양한 스트레스와 발달단계에 따른 플라스토글로뷸의 프로테옴 분석은 지질대사에서 중요한 기능을 하는 신규 단백질을 발견하는데 도움을 줄 것이다. 지금까지 결과로는 플라스토글로뷸은 프레릴퀴논 대사에 있어서 교차로 역할을 함을 제안하고 있다.