• 제목/요약/키워드: chlorophyll protein

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Waterlogging induced oxidative stress and the mortality of the Antarctic plant, Deschampsia antarctica

  • Park, Jeong Soo;Lee, Eun Ju
    • Journal of Ecology and Environment
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    • 제43권3호
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    • pp.289-296
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    • 2019
  • We investigated the mortality and the oxidative damages of Deschampsia antarctica in response to waterlogging stress. In field, we compared the changes in the density of D. antarctica tuft at the two different sites over 3 years. The soil water content at site 2 was 6-fold higher than that of site 1, and the density of D. antarctica tuft decreased significantly by 55.4% at site 2 for 3 years, but there was no significant change at site 1. Experimental results in growth chamber showed that the $H_2O_2$ and malondialdehyde content increased under root-flooding treatment (hypoxic conditions-deficiency of $O_2$), but any significant change was not perceptible under the shoot-flooding treatment (anoxic condition-absence of $O_2$). However, total chlorophyll, soluble sugar, protein content, and phenolic compound decreased under the shoot-flooding treatment. In addition, the catalase activity increased significantly on the 1st day of flooding. These results indicate that hypoxic conditions may lead to the overproduction of reactive oxygen species, and anoxic conditions can deplete primary metabolites such as sugars and protein in the leaf tissues of D. antarctica. Under present warming trend in Antarctic Peninsula, D. antarctica tuft growing near the shoreline might more frequently experience flooding due to glacier melting and inundation of seawater, which can enhance the risk of this plant mortality.

주요작물의 한발저항성에 관한 연구 제1보 맥류 유묘기의 수분부족이 초장, 유묘건물종, 엽침소, 상대팽압도, 단백질 및 환원당에 미치는 영향 (Studies on the Drought-Resistance of Major Food Crops I. Effect of Water Stress on the Plant Height, Seedling Dry Weight, Relative Turgidity, Protein and Reducing Sugar in Barley and Wheat Seedling Stage)

  • 최원열;민경수;김용환
    • 한국작물학회지
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    • 제26권4호
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    • pp.304-310
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    • 1981
  • 맥류의 한발저항성 반응과 정도 그리고 생리학적 기작을 구명하기 위하여 발아 후 10일된 맥류 유묘기(본엽3매시)에 8일간 단수처리하여 초장 유묘건물중 엽녹소 상대팽압도 단백질 환원당의 변화를 조사분석하였던 바 그 결과는 다음과 같다. 1. 전품종의 평균 감소율은 초장 14%, 유묘건물중 24%, 엽녹소 31%, 엽상대팽엽도 27%, 단백질 28%였으며 유일하게 환원당만은 대조구에 비하여 단수구가 4배나 증가하였다. 2. 유묘건물중 감소율을 품종별로 보면 호맥이 가장 낮고, 백동, 목포5005, 이조대맥이 가장 높았으며 또한 맥종별로는 호맥<소맥<대맥<라맥<이조대맥의 순이었다. 3. 엽녹소의 감소율이 가장 낮은 품종은 호맥, 청계밀, 을밀이었고 가장 높은 것은 밀양1002, 방사006, 향맥, 사천004였다. 4. 엽상대팽엽도의 감소율이 가장 낮은 품종(22-25%)은 호맥, 청계밀, 동보리 001였고 가장 높은것(30-33%)은 백동과 이조대맥이었다. 맥종별로 보면 호맥<소맥<라맥<대맥ㆍ이조대맥의 순이었다. 5. 단백질의 감소율을 보면 후광, 그루밀, 동보리 001, 목포5005가 가장 낮은 품종(14~17%)들 이었고 이조대맥이(40%) 가장 심하였으며 맥종별로 보면 소맥<호맥ㆍ대맥<근맥<이조대맥의 순이었다. 6. 환원당의 증가비는 호맥과 소맥이 4~5배였고 이맥과 이조대맥이 약 2배 증가되었다. 맥종별 증가를 보면 호맥<소맥<대맥<라맥<이조대맥의 순이었다. 7 한발저항성 과정에서 생리적 대사작용의 관점에서 볼 때 호맥<소맥<대맥<라맥<이조대맥의 순으로 한발저항성이 강한 것으로 추정된다.

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옥수수 수염의 이화학적 특성과 변이 (Physicochemical Characteristics of Corn Silk)

  • 김선림;박철호;김이훈;허한순;손영구
    • 한국작물학회지
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    • 제45권6호
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    • pp.392-399
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    • 2000
  • 옥수수 수염의 일반적인 생육특성과 함유된 각종 일반성분 및 유리당, 유기산, 아미노산 및 향기성분에 관한 기초자료를 제공하기 위하여 본 시험을 수행하였으며 얻어진 결과를 요약하면 다음과 같다. 1. 옥수수의 수염은 출사 후 3일 이내에 수정이 완료되고 길이 신장이 정지되나 수정되지 않은 수염은 지속적으로 신장하여 출사 후 8일에 23-25cm였다. 2. 출사기에 옥수수 수염의 수분함량은 92-94%, 출사후 30일에는 70-75%였다. 3.옥수수 수염은 엽록소 b의 함량이 높고, 엽록소 a/b의 비율은 사료용 옥수수> 단옥수수> 초당옥수수> 찰옥수수 순이었다. 4. 유리당은 glucose와 fructose가 주종을 이루고, 그 구성비율은 glucose가 55% fructose가 42% 이었으며 sucrose 및 maltose는 4% 미만으로 낮았다. 5. 가용성 고형물 함량은 미수정 수염이 13.7-16.8 Brix %, 수정된 수염은 12.6-13.7 Brix %로 1.1-3.1 Brix % 차이가 있었다. 6. 옥수수 수염의 유기산은 phytic, oxalic, malic, shikimic, glutaric 및 acetic acid가 검출되었는데, 이중 phytic, oxalic 및 glutaric acid가 주요 유기산이었고 유기산의 함량은 사료용 옥수수> 초당옥수수> 찰옥수수> 단옥수수 순으로 높았다. 7. 단백질 함량은 3.36-4.17%로서 출사후 3일에 최대치를 나타내었고, 단백질 함량은 사료용 옥수수> 찰옥수수> 단옥수수> 초당옥수수 순으로 높았다. 8. 아미노산중 serine, glycine 및 threonine 3종은 10% 이상 함유되어있었으며 glycine의 구성비율이 12.3%로 가장 높았고 황(S)함유 아미노산인 methionine과 cystine 함량은 각각 2.1% 및 1.3%로 함량이 낮았다. 9. 향기성분으로 acetaldehyde, ethanol, acetone, DMS, isobutylaldehyde, cis-3-hexanol, 3-hexe-1-ol, acetate, trans-2-hexanol, pentanol 등이 검출되었고, 사료용의 주요 향기성분은 acetaldehyde와 DMS, 찰옥수수는 acetaldehyde, ethanol 및 DMS였다. 10. 옥수수 수염의 길이는 유기산 함량과 r=0.556, 아미노산 함량과는 r=-0.514로 유의성이 인정되었고, 유리당 함량은 유기산 함량과 r=0.703, flavonoid 함량과 r=0.544로 유의한 정의상관이 있었다. 특히, flavonoid 함량은 엽록소 함량과 정의 상관(r=0.523)이 인정되어 엽록소는 flavonoid 함량의 판단지표로 활용될 수 있을 것으로 사료되었다.

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HAND-HELD NIR SPECTROMETRY : STATUS, TRENDS AND FUTURISTIC PROSPECTS

  • McClure, W.F.
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1051-1051
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    • 2001
  • In 1989, at the 2nd ICNIRS Meeting in Tsukuba, I projected certain directions for NIR technology would take in the future. Among those projections were: (1) An inrush of companies producing FT-NIR instruments. (2) Hybrid NIR Systems (3) Hand-held NIR Technology. All three thrusts have resulted in numerous commercial offerings over the last 12 years Hand-held technology for all fields is growing at an astonishing rate. To date, NIR work at North Carolina State University has produced four (4) hand-held NIR units for: (1) Nicotine and Moisture in tobacco, (2) Vanillin and Moisture in Vanilla Beans, (3) Protein, Moisture and Nitrogen in plant tissue, (4) Chlorophyll and Moisture in Growing Plants: A NIR Spectrometer for Developing Countries. This paper will discuss these developments, including design and performance data.

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Presence of A Negative Light Regulatory Factors Binding to the cab3 Promoter of Arabidopsis Thaliana

  • Kang, Ku-Seong
    • Journal of Photoscience
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    • 제5권4호
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    • pp.149-152
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    • 1998
  • Expression of light-harvesting chlorophyll a/b-binding protein gene(cab) is repressed in the dark and activited by light. However, the detail of its regulatory mechanism is not characterized so far. To identify the interactions of cis-acting elements and trans-acting factors involvedin this regulation, nuclear extracts from the light-grown and dark-adapted Arabidopsis thaliana leaves were anlayzed for mobility shift assay against 134bp fragments had two retarded bands and one retardation band, respectively, both in light-grown and dark-adapted bands in the dark-adapted tissues. A new retardation the cab 3 expression in the dark. Several light regulatory motifs are scattered in the 146 bp region of cab 3 promoter. One of the light-regulatory motifs could be the binding site for the negative regulatory factor.

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황색편모조류(Isochrysis galbana)에 의한 생육저해물질의 생성 및 미세조류 생육에 미치는 영향 (The inhibitor formed by Isochrysis galbana and its effect on the growth of microalgae)

  • SUN, Yingying;WANG, Changhai;SUN, Liqin;CHEN, Jing
    • 한국식품저장유통학회:학술대회논문집
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    • 한국식품저장유통학회 2005년도 아시안 푸드의 기능성과 세계화 전략에 관한 국제심포지움
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    • pp.136-147
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    • 2005
  • The inhibitor, a kind of ethyl acetate crude extract, was isolated from the old culture liquid of I.galbana. Through measured the culture density, the contents of chlorophyll a. polysaccharide and protein in the cells, the inhibitory effect of the inhibitor on the growth of cells was investigated. The results showed that the inhibitor obviously inhibited the cell growth of three microalgae.

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History, Nutrition, and Advantages of Seaweed for Human Body

  • Rahmadi, Puji;Pangestuti, Ratih;Susanto, A.B.
    • 한국해양바이오학회지
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    • 제4권1호
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    • pp.15-23
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    • 2010
  • Seaweed has been consumed especially in the Asia since centuries ago as a vegetable (Matsukawa, 1997; Burtin, 2000; Raghavendran 2003). Seaweed has many valuable nutrients i.e. as a mineral resources, vitamin, and non-caloric fiber, also has potential antioxidant resources. Such of nutrition consists in the Seaweed is Chlorophyll, Carotene, Fucoxantine, Luteen and Zeaxantine, Polysaccharide and Diet Fiber, Mineral, Protein and Amino Acid, Fat and Fatty Acid, Vitamin, Polifenol, also Methanol. The benefits of some nutrition content on seaweed are as an antioxidant, slimmer agent, anti-diabetes, healthy for heart, eyes health, Iodium source, and some kind of vitamins functions. As a conclusion, developing research about seaweed we believe it would be a part of medicine material and food processing, also cosmetic industrial.

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빛에 의한 식물 유전자의 발현 (Light Regulated Plant Gene Expression)

  • 한태룡
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1987년도 식물생명공학 심포지움 논문집 Proceedings of Symposia on Plant Biotechnology
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    • pp.63-79
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    • 1987
  • Light regulates a variety of genes in higher plants. The expression of light-induced plant genes is regulated at the level of transcription via red- light photomorphogenic receptor, phytochrome, as well as unknown blue light photoreceptor(s). Ribulose-5-phosphate carboxylase/oxygenase (Rubisco) small subunit (SSB) and light harvesting chlorophyll a/b (Cab) protein are those of the best understood genes regulated by light. 5'-upstream flanking sequence (- -400) of Rubisco SSB and Cab genes sis known as a light responsive, enhance-like element. It responses to red and blue light in transgenic plant system as a tissue specific manner. Phytochrome gene is also regulated by light. In contrast to most of the light regulated plant genes, it is negatively controlled by red light. Search for the cis- and trans-acting factors responsible for the light signal is in progress to understant photomorphogenesis and development in higher plants.

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고율 조류 생세포체 배양지에서 조사 조건으로 본 조류 배양 특성 (Algae Culture Characteristics Viewed with Continuous and Cyclic Irradiation in High Rate Algae Biomass Culture Pond)

  • 공석기
    • 환경위생공학
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    • 제14권3호
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    • pp.123-129
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    • 1999
  • The utilization methods of algae biomass have been studied constantly in whole world. These are $\circled1$the wastewater treatment if waste stabilization pond and oxidation ditch etc. and $\circled2$the biosorption of heavy metals and recovery of strategic' precious metals and $\circled3$the single-celled protein production and the production of chemicals like coloring agent and $\circled4$the production of electric energy through methane gasification. The culture system also has been developed constantly in relation with such utilization method developments. In the result of experimental operation under continuous and cyclic irradiation of light, using high rate algae biomass culture pond(HRABCP), which had been made so as to be an association system with the various items which had been managed to have high efficiency for algae culture, the algae production of the 12 hours-irradiance pond was 41.48 Chlorophyll-a ${\mu}g/L$ only in spite of having the more chance of $CO_2$ synthesis to algae cell than the 24 hours-irradiance pond. This means that the energy supply required for dark-reaction of photosynthesis is very important like this. The difference of algae production between continuous and cyclc irradiation explains that the dark-reaction of photosynthesis acts on algae production as the biggest primary factor. The continuous irradiance on HRABCP made the good algae-production($1403.97{\;}{\mu}g$ Chlorophyll-a/mg) and the good oxygen-production(5.8 mg $O_2/L$) and the good solid-liquid seperation. especially, DO concentration through the oxygen-production was enough to fishes' survival.

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Characterization of MABIK Microalgae with Biotechnological Potentials

  • Jo, Seung-Woo;Kang, Nam Seon;Lee, Jung A;Kim, Eun Song;Kim, Kyeong Mi;Yoon, Moongeun;Hong, Ji Won;Yoon, Ho-Sung
    • 한국해양바이오학회지
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    • 제12권1호
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    • pp.40-49
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    • 2020
  • This article emphasized the physiological characteristics of the selected marine microalgal strains obtained from the culture collection of the National Marine Biodiversity Institute of Korea (MABIK). Therefore, in this study, 13 different marine microalgal strains belonging to the phylum Chlorophyta were analyzed for the composition of fatty acids, elements, photosynthetic pigments, and monosaccharides, as well as the lipid and protein contents. The results presented that the primary fatty acids were palmitic (C16:0), palmitoleic (C16:1 n-7), stearic (C18:0), oleic (C18:1 n-9), linoleic (C18:2 n-6), and α-linolenic (ALA, C18:3 n-3) acid in the evaluated microalgae. The lipid contents of heterotrophically grown strains ranged from 15.1% to 20.4%. The calorific values of the strains were between 17.4 MJ kg-1 and 21.3 MJ kg-1. The major monosaccharides were galactose, glucose, and mannose, while the primary photosynthetic pigments were chlorophyll-a (Chla), chlorophyll-b (Chlb), and lutein, respectively. Based on the results, the microalgal strains showed high potentials in the use of microalgae-based technologies to produce biochemicals, food, and renewable fuels as they are rich in sustainable sources of high-value bio-compounds, such as antioxidants, carbohydrates, and fatty acids.