• 제목/요약/키워드: vegetable structure

검색결과 75건 처리시간 0.029초

온도와 $CO_{2}C$ 농도에 따른 배추의 광합성특성 및 세포조직의 변화 (Photosynthetic Characteristics and Cellular Tissue of Chinese Cabbage are Affected by Temperature and $CO_{2}C$ Concentration)

  • 이상규;문지혜;장윤아;이우문;조일환;김승유;고관달
    • 생물환경조절학회지
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    • 제18권2호
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    • pp.148-152
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    • 2009
  • 본 연구는 배추 재배시 기후변화에 대비하여 고온과 고농도의 이산화탄소 조건에서 생육반응과 세포조직의 변화를 알아보고자 수행하였다. 처리는 '대기중 온도+대기중 $CO_{2}$ 농도(Control)', '대기중 온도+대기보다 $CO_{2}$ 2배 상승(Elevated $CO_{2}$)' '(대기온도보다 4$^{\circ}C$ 상승+대기중 $CO_{2}$ 농도(Elevated temp.)', '대기온도보다 4$^{\circ}C$ 상승+대기보다 $CO_{2}$ 2배 상승(Elevated temp.+$CO_{2}$)'의 4가지 조건으로 처리하였다. 그 결과, 대기조건보다 온도만 높아지게 되면 배추의 생체중이 현저하게 저하되어 수량이 떨어지는 것으로 나타났고, 온도가 높아지고 $CO_{2}$ 농도가 동시에 올라가게 되면 생육이 어느정도 회복되는 것으로 나타났다. 또한 칼륨과 인산함량은 처리별로 차이가 없었지만 칼슘과 총질소함량은 온도만 높인 처리에서 높았고, 마그네슘 함량은 온도와 $CO_{2}$ 농도를 동시에 높인 처리에서 높게 나타났다. 배추잎의 세포 관찰결과 $CO_{2}$ 농도를 2배 정도 높인 처리에서 잎내의 전분함량이 증가하는 것으로 나타났고, 온도만 높인 처리에서 전분 함량이 가장 낮았다.

Genetic Diversity and Population Structure of the Xanthomonas campestris pv. campestris Strains Affecting Cabbages in China Revealed by MLST and Rep-PCR Based Genotyping

  • Chen, Guo;Kong, Congcong;Yang, Limei;Zhuang, Mu;Zhang, Yangyong;Wang, Yong;Ji, Jialei;Fang, Zhiyuan;Lv, Honghao
    • The Plant Pathology Journal
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    • 제37권5호
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    • pp.476-488
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    • 2021
  • Xanthomonas campestris pv. campestris (Xcc) is the causal agent of black rot for cruciferous vegetables worldwide, especially for the cole crops such as cabbage and cauliflower. Due to the lack of resistant cabbage cultivars, black rot has brought about considerable yield losses in recent years in China. Understanding of the pathogen features is a key step for disease prevention, however, the pathogen diversity, population structure, and virulence are largely unknown. In this study, we studied 50 Xcc strains including 39 Xcc isolates collected from cabbage in 20 regions across China, using multilocus sequence genotyping (MLST), repetitive DNA sequence-based PCR (rep-PCR), and pathogenicity tests. For MLST analysis, a total of 12 allelic profiles (AP) were generated, among which the largest AP was AP1 containing 32 strains. Further cluster analysis of rep-PCR divided all strains into 14 DNA groups, with the largest group DNA I comprising of 34 strains, most of which also belonged to AP1. Inoculation tests showed that the representative Xcc strains collected from diverse regions performed differential virulence against three brassica hosts compared with races 1 and 4. Interestingly, these results indicated that AP1/DNA I was not only the main pathotype in China, but also a novel group that differed from the previously reported type races in both genotype and virulence. To our knowledge, this is the first extensive genetic diversity survey for Xcc strains in China, which provides evidence for cabbage resistance breeding and opens the gate for further cabbage-Xcc interaction studies.

Genomic Structure of the Cu/Zn Superoxide Dismutase(SOD1) Gene from the Entomopathogenic Fungus, Cordyceps pruinosa

  • Park, Nam Sook;Jin, Byung Rae;Lee, Sang Mong
    • International Journal of Industrial Entomology and Biomaterials
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    • 제39권2호
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    • pp.67-73
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    • 2019
  • The genomic structure of the Cu/Zn superoxide dismutase (SOD1) gene from the entomopathogenic fungus, Cordyceps pruinosa was characterized. The SOD1 gene of C. pruinosa spans 947 nucleotides and consisted of four exons encoding for 154 amino acids and three introns. Four exons of the SOD1 gene are composed of 13, 331, 97 and 20 nucleotides respectively. Homology search of amino acid sequences of the SOD1 gene of C. pruinosa with another 13 fungi species showed higher sequence similarity of 69% ~ 95% and had the most highest sequence identity of 95% with Beauveria bassiana and Cordyceps militaris, which can easely infect domesticated Bombyx mori and another wild lepidopteran species in artificial or natual manner of infection. This SOD1 gene sequence showed copper, zinc and beta-barrel fold sites. Homology search showed that the Cu/Zn SOD1 gene from the entomopathogenic fungus, C. pruinosa is an orthologous gene homolog present in different species of organism whose ancestor predates the split between the relating species. In addition, C. pruinosa SOD1 gene is placed together within the ascomycetes group of fungal clade. From these results it is concluded that C. pruinosa SOD1 gene is orthologous gene having the same or very similar functions with a common evolutionary ancestor.

Modulation of Biotransformation Enzymes by Phytochemicals: Impact of Genotypes

  • Lampe Johanna W.
    • 한국식품영양과학회:학술대회논문집
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    • 한국식품영양과학회 2004년도 Annual Meeting and International Symposium
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    • pp.65-70
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    • 2004
  • Modulation of biotransformation enzymes is one mechanism by which a diet high in fruits and vegetable may influence cancer risk. Inhibition of cytochrome P450s (CYP) and concomitant induction of conjugating enzymes are hypothesized to reduce the impact of carcinogens in humans. Thus, exposure to types and amounts of phytochemicals may influence disease risk. Like other xenobiotics, many classes of phytochemicals are rapodly conjugated with glutathione, glucuronide, and sulfate moieties and excreted in urine and bile. In humans, circulating phytochemical levels very widely among individuals even in response to controlled dietary interventions. Polymorphisms in biotransformation enzymes, such as the glutathione S-transferases (GST), UDP-glucuronosyltransferases (UGT), and sulfotransferases (SULT), may ocntribute to the variability in phytochemical clearance and efficacy; polymorphic enzymes with lower enzyme activity prolong the half-lives of phytochmicals in vivo. Isothiocyanates (ITC) in cruciferous vegetables are catalyzed by the four major human GSTs: however reaction velocities of the enzymes differ greatly. In some observational studies of cancer, polymorphisms in the GSTMI and GSTTI genes that result in complete lack of GSTM1-1 protein, respectively, confer greater protection from cruciferous vegetable in individuals with these genotypes. Similarly, we have shown in a controlled dietary trial that levels of GST-alpha-induced by ITC-are higher in GSTMI-null individuals exposed to cruciferous vegetablse. The selectivity of glucuronosyl conjugation of flavonoids is dependent both on flavonoid structure as well as on the UGI isozyme involved in its conjuagtion. The effects of UGI polymorphisms on flavonoid clearnace have not been examind; but polymorphisms affect glucuronidation of several drugs. Given the strong interest in the chemopreventive effects of flavonoids, systematic evaluation of these polymorphic UGTs and flavonoid pharmacokinetics are warranted. Overall, these studies suggest that for phytochemicals that are metabolized by, and affect activity of, biotransformation enzymes, interactions between genetic polymorphisms in the enzymes and intake of the compounds should be considered in studies of cancer risk. Genetic polymorphisms in biotransformation enzymes may account in prat for individual variation in metabolism of a wide range of phytochemicals and their ultimate impact on health.

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캠방식 채소 정식기의 작동 특성 및 식부장치 작동 메커니즘 분석 (Operational Characteristics of a Cam-type Vegetable Transplanter and Mechanism of a Transplanting Device)

  • 박정현;황석준;남주석
    • 농업생명과학연구
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    • 제53권4호
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    • pp.113-124
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    • 2019
  • 본 연구에서는 국내 밭작물 재배농가에서 주로 사용되는 캠방식 채소 정식기를 대상으로 작동특성 및 식부장치 작동 메커니즘 분석을 수행하였다. 정식기의 주요 구성요소 및 동력전달경로를 파악하였으며, 주행속도 및 주간거리 단수 변화에 따른 최대 및 최소 작동주기를 도출하였다. 이를 바탕으로 3D모델링 및 시뮬레이션을 수행하여 식부호퍼 극하단점의 궤적 및 조건별 주간거리를 도출하였으며 필드시험을 통해 실제 주간거리와 비교 검증하였다. 주요 결과로써, 식부장치는 13개의 링크와 17개의 회전 조인트 및 1개의 하프 조인트로 구성된 1 자유도의 기구이며, 각 부분들은 캠과 링크장치들의 복합구조를 갖는다. 식부장치 요소들의 연속적이고 반복적인 운동에 의해 식부호퍼는 지면과 연직인 자세를 유지하며 묘를 안정적으로 정식한다. 동력은 엔진과 변속기를 통해 주행부 및 식부장치로 전달되었으며 식부장치의 최대 및 최소 주간거리는 각각 약 900 mm 및 350 mm이다.

선박디젤기관에서 바이오디젤연료의 연소특성에 대한 실험적 연구 (An Experimental Study on Combustion Characteristics of Biodiesel Fuel in Marine Diesel Engine)

  • 조상곤
    • 동력기계공학회지
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    • 제19권3호
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    • pp.29-35
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    • 2015
  • Environmental pollution is produced by consumption of fossil fuel, therefore alternative fuels is interested for development of new energy resources and reduction of exhaust emissions for air pollution prevention. Biofuels are produced from new vegetable oil and animal fat, may be used as fuel without change of engine structure in diesel engine. In this paper, the test results on specific fuel consumption, combustion characteristics of neat diesel oil and biodiesel blends(10 vol.% biodiesel and 20 vol.% biodiesel) were presented using four stroke, direct injection diesel engine, especially this biodiesel was produced from biodiesel fuel at our laboratory by ourselves. This study showed that specific fuel consumption is increased slightly, on the other hand cylinder pressure, rate of pressure rise, rate of heat release and soot were decreased slightly in the case of biodiesel blends than neat diesel oil.

오존산화 처리한 콩기름을 이용한 변성 pMDI 접착제의 화학 구조 및 접착력 변화 (Effects of Ozonized Soybean Oil to Changes of Chemical Structures and Bond Strength of pMD)

  • 유영삼;이현종;이택준;박헌
    • Journal of the Korean Wood Science and Technology
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    • 제36권4호
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    • pp.37-43
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    • 2008
  • 본 연구의 목적은 천연자원이며 보속적인 생산이 가능한 식물성기름(콩기름)을 오존 산화 처리에 의한 구조적인 변성을 시도하여 이를 바탕으로 친환경 목재 접착제를 개발하는 것이다. 식용 콩기름을 사용하여 시간당 약 7.13 g의 오존을 발생시켜 15분, 30분, 60분, 120분간 오존산화 처리한 후 화학적 변화를 알아보기 위하여 FT-IR을 측정하였으며 오존 산화 처리된 콩기름/pMDI를 중량비로 1:1로 혼합하여 접착제를 제조하여 상태, 준내수 및 내수 인장전단 접착력을 평가하였다. FT-IR 측정 결과, 콩기름은 $3010cm^{-1}$ 부근에 불포화 이중결합에 기인하는 흡수를 나타내었으며 오존산화가 진행될수록 $3010cm^{-1}$ 부근의 흡수가 사라지고 $1700cm^{-1}$ 부근의 카르복실기 또는 알데히드의 흡수가 크게 나타났다. 인장전단 접착력의 경우 상태, 준내수 접착력 시험 결과 모든 오존 산화 처리 시간에서 KS 합판 접착성 기준인 $7.0kgf/cm^2$를 안정적으로 상회하였으며 오존산화 처리 반응시간이 증가함에 따라 접착력도 증가하여 60분 처리에서 최대의 접착력을 보이다 120분 처리에서는 감소하는 경향을 나타내었다. 내수 접착력의 경우 30분, 60분, 120분 처리에서는 접착 기준을 만족 시키는 것을 확인할 수 있었다.

오존산화 콩기름의 구조분석 및 이를 이용한 변성 pMDI 접착제의 중량비에 따른 접착력 변화 (Studies on Chemical Strutures and Adhesion Performance of pMDI Adhesives Modified by Ozonized Soybean Oil with Different Mixing Ratios)

  • 유영삼;이현종;이택준;박헌
    • Journal of the Korean Wood Science and Technology
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    • 제37권1호
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    • pp.56-64
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    • 2009
  • 본 연구의 목적은 콩기름을 오존 산화 처리하여 기능기를 도입하고 이를 바탕으로 친환경 목재 접착제를 개발하는 것이다. 시판용 콩기름을 시간당 약 7.13 g의 오존을 발생시켜 15분, 30분, 60분, 120분간 오존산화 처리한 후 FT-IR, $^1H$-NMR, MALDI-TOF MS, GC/MS 측정하여 구조변화를 분석하였다. 기기분석 결과 오존산화처리에 의하여 콩기름의 불포화 이중결합이 개열되어 카르복실기 또는 알데하이드기가 생성됨을 확인하였다. 오존산화콩기름 변성 pMDI 접착제의 접착력은 오존처리 정도와 pMDI의 혼합비율에 따라 달라지며, KS F 3101 보통합판기준 내수 접착강도를 안정적으로 만족 시키는 조건은 오존산화 처리시간 30분~60분, pMDI와 1:1로 혼합한 경우이며, 준내수 접착강도를 만족시키는 범위는 오존산화 처리시간 30분~60분, pMDI의 혼합비 0.5이상, 상태접착강도를 만족시키는 범위는 오존산화 처리시간 15분~60분, pMDI의 혼합비 0.25 이상임을 알 수 있었다. 위의 실험결과를 종합하여 볼 때, 오존산화 처리한 식용유는 오존처리시간 및 pMDI의 혼합비율을 조절하면 상태접착력 뿐만 아니라 내수접착력이 요구되는 목질복합재료 제조용 접착제 제조가 가능함을 확인할 수 있었다.

Green Tea Extract is an Effective Antioxidant for Retarding Rancidity of Yukwa (Rice Snacks) Fried in Soybean and Rice Bran Oils

  • Park, Jae-Hee;Kim, Chang-Soon
    • Preventive Nutrition and Food Science
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    • 제7권3호
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    • pp.255-260
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    • 2002
  • Yukwa is a popular Korean traditional fried rice snack. The high fat content and porous structure of Yukwa cause it to rapidly become rancid, presenting difficult challenges for commercial distribution. In this study, an-tioxidant activities of green tea extracts (GTE) were evaluated in Yukwa fried in soybean oil (SBO), rice bran oil (RBO) and winterized rice bran oil (WRBO) during storage at 4$0^{\circ}C$ for 12 weeks. Lipid oxidation of Yukwa was determined by acid value (AV), peroxide value (POV), p-anisidine value(AnV), totox value and sensory evaluation. The addition of GTE to the oils reduced the increases in AV, POV, AnV, and totox. Totox increased most vapidly in Yukwa fried in SBO, fellowed by RBO>WRBO>SBO+200 ppm GTE>RBO+200 ppm GTE > WRBO + 200 ppm GTE (p<0.05). Sensory evaluation revealed that the addition of 200 ppm GTE delays rancidity in Yukwa by 7~8 weeks; providing compelling evidence that GTE is an effective antioxidant for Yukwa.

Color Removal from Dyeing Effluent using Activated Carbons Produced from Various Indigenous Biomass

  • Islam, Md. Shahidul;Das, Ajoy Kumar;Kim, In-Kyo;Yeum, Jeong-Hyun
    • 한국염색가공학회지
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    • 제22권2호
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    • pp.94-100
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    • 2010
  • Colored compounds adsorption from the textile dyeing effluents on activated carbons produced from various indigenous vegetable sources by zinc chloride activation is studied. The most important parameters in chemical activation were found to be the chemical ratio of $ZnCl_2$ to feed (3:1), carbonization temperature (460-470 $^{\circ}C$) and time of activation (75 min). The absorbance at 511 nm (red effluent) and 615 nm (blue effluent) are used for estimation of color. It is established that at optimum temperature ($50^{\circ}C$), time of contact (30-40 min) and adsorbent loading (2 g/L), activated carbons developed from rain tree (Samanea saman) saw dust and blackberry (Randia formosa) tree saw dust showed great capability to remove color materials from the effluents. It is observed that adsorption of reactive dyes by all types of activated carbons is more than that of disperse dyes. It is explained that because of its acidic nature the activated carbon can adsorb better reactive dye particles containing large number of nitrogen sites and $-SO_3Na$ group in their structure. The use of activated carbons from the indigenous biomass would be economical, because saw dusts are readily available waste worldwide.