• Title/Summary/Keyword: 식물의 구조와 기능

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The Development of the Science Writing Program : Cultivating Middle School Students' Scientific Creativity (중학생의 과학창의성 신장을 위한 과학글쓰기 프로그램의 개발 및 적용)

  • Hwang, Shin-Young;Chung, Young-Lan
    • Journal of The Korean Association For Science Education
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    • v.33 no.4
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    • pp.751-762
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    • 2013
  • The purpose of the study is to develop a science writing program for middle school students and to analyze the effects of this program. The program consists of twenty-one 10-minute long sessions in 2 chapters (stimulus and response; the structure and function of plants) from the $2^{nd}$ year middle school textbooks. The team selected themes in science writing that can cultivate multiple facets of creativity in students: flexibility, originality and elaboration. The format of the science writing was diverse. The program was conducted through worksheets, and there was separate section within the worksheet for teacher to give feedback to students. The science writing program with teacher's feedback improved students' scientific creativity(p<.01). It seems like teacher's feedback is critical in checking students' concept and boosting students' creativity. The program is statistically effective in improving students' flexibility(p<.01), however it is not the case for improving on their originality and ability to elaborate(p>.05). We assumed that the relatively extensive portion of the writing was not suitable to improve students' ability to elaborate their ideas further as well as fostering originality. In order to improve the students' creativity and ability to elaborate, there is a need to adjust the amount of science writing, content, time.

Isolation and characterization of a monodehydroascorbate reductase gene in poplar (Populus alba × P. glandulosa) (현사시나무 monodehydroascorbate reductase (MDHAR) 유전자의 분리 및 발현특성)

  • Yoon, Seo-Kyung;Park, Eung-Jun;Bae, Eun-Kyung;Choi, Young-Im;Kim, Joon-Hyeok;Lee, Hyoshin
    • Journal of Plant Biotechnology
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    • v.41 no.4
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    • pp.194-200
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    • 2014
  • Monodehydroascorbate reductase (MDHAR) is an important enzyme that plays a role in the detoxification of reactive oxygen species (ROS) by maintaining reduced pool of ascorbate through recycling the oxidized form of ascorbate. In this study, we isolated a PagMDHAR1 gene from Populus alba ${\times}$ P. glandulosa, and investigated its expression characteristics. The PagMDHAR1 cDNA encodes a putative 434 amino acids containing FAD- and NAD(P)H-binding domains. Southern blot analysis indicated that a single nuclear gene encodes this enzyme. Northern hybridization analysis revealed that PagMDHAR1 is highly expressed in both suspension cells and flower tissues, while its expression levels were enhanced by drought, salt, cold, wounding and ABA. Therefore, PagMDHAR1 might be expressed in response to abiotic stress through the ABA-mediated signaling pathway in this poplar species, suggesting that the PagMDHAR1 plays an important role in the defense mechanisms against oxidative stress.

Variation in bioactive principles and bioactive compounds of Rosa rugosa fruit during ripening (해당화 열매 성숙단계에 따른 생리활성 및 기능성 물질 변화 분석)

  • Kwak, Minjeong;Eom, Seung Hee;Gil, Jinsu;Kim, Ju-Sung;Hyun, Tae Kyung
    • Journal of Plant Biotechnology
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    • v.46 no.3
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    • pp.236-245
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    • 2019
  • Fruit ripening is a genetically programmed process involving a number of biochemical and physiological processes assisted by variations in gene expression and enzyme activities. This process generally affects the phytochemical profile and the bioactive principles in fruits and vegetables. To appraise the variation in bioactive principles of fruits from Rosa rugosa during its ripening process, we analyzed the changes in antioxidant and anti-elastase activities and polyphenolic compounds during the four ripening stages of fruits. Overall, an extract of unripe fruits contained the highest levels of total phenolic and flavonoid contents, radical scavenging activity, reducing power, oxygen radical antioxidant capacity, and elastase inhibitory activity, compared with the extracts of fruits at other stages of ripening. Additionally, we found that the reduction of flavonoid content occurs because of decreased transcriptional levels of genes involved in flavonoid biosynthesis pathway during the ripening process. Based on HPLC analysis, we found that the extract of unripe fruits contained the highest amount of myricetin, caffeic acid, chlorogenic acid, syringic acid, and p-coumaric acid and suggested that the antioxidant and anti-elastase activities of the extract obtained from stage 1, should be mediated by the presence of these compounds. Additionally, we analyzed the interaction sites and patterns between these compounds and elastase using the structure-based molecular docking approach, and suggested that chlorogenic acid strongly interacted with elastase. Together, these findings suggest that the maturity of fruits has profound effects on the pharmaceutical value of R. rugosa.

Isolation of Bioactive Compounds from the Ethylacetate Fraction of Fermented Garlic Complex and their Tyrosinase Inhibition Activities (대산(大蒜)을 포함하는 복합발효물의 에틸아세테이트 분획으로부터 Tyrosinase 저해활성 성분의 분리 및 동정)

  • Song, Hyo-Nam;Baek, Nam-In
    • Korean Journal of Plant Resources
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    • v.33 no.2
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    • pp.63-72
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    • 2020
  • Fermented complex from garlic and nine medicinal plants were developed as a natural whitening material. Tyrosinase inhibition activity was determined and four active compounds were isolated. The nutritional components of fermented garlic complex (FGC) were analyzed to confirm the applicability as a functional food material. Tyrosinase inhibitory effect of FGC was 88.6%. Methanol extract was partitioned with EtOAc, n-BuOH and H2O. From the EtOAc fraction (47 g), which showed the highest yield, active fractions were separated by repeated TLC, silica gel and ODS column chromatography to isolate active compounds. The chemical structures of the isolated compounds were analyzed by NMR and MS spectra. Phenylpropanoid compounds of 2,4,5-trihydroxy-benzenepropanoic acid (1) (1.9 mg) and 2,3,5-trihydroxy-benzenepropanoic acid (2) were confirmed. In addition, 2,4-dihydroxy-hydrocinnamic acid (3) (3.3 mg) and (+)sesamin (4) (6.1 mg) were isolated. These compounds will be useful as index compounds or functional compounds in FGC.

Effect of Intestinal Function Enhancer (KTG075) on Mucin 2 Secretion (장기능개선제-신소재(KTG075)의 대장관 내 mucin 2 분비에 미치는 영향)

  • Lee, You-Hui;Baik, Soon-Ok;Kim, Hyun-Kyung;Ryu, Myung-Hyun
    • Korean Journal of Food Science and Technology
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    • v.36 no.6
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    • pp.991-994
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    • 2004
  • Effects of formulation KTG075 from edible plants on intestinal function, particularly on Mucin 2 secretion, were examined by loperamide-induced constipation method using Sprague Dawley rats (SD rats, male). Crypt epithelial cells containing more mucus and mucus layer stained with alcian blue were significantly thicker in KTG075 group than control group. When Biogenex AM358 of antibody against Mucin 2 was used, crypt epithelial cells secreted more Mucin 2 in KTG075 group than control group. The Mucus layer at fecal surface was thinner and less mucus was recovered from mucosal surface in constipated rats than in KTG075 group. Mucus production of crypt epithelial cells and mucus contents at fecal and mucosal surfaces were reduced by loperamide-induced constipation. These results indicate formula KTG075 accelerates evacuation and activates intestines.

ENZYMATIC STUDIES ON VITAMIN B6 METABOLISM

  • Kim, Young-Tae
    • Journal of fish pathology
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    • v.6 no.2
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    • pp.133-142
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    • 1993
  • Vitamin B6(pyridoxine, pyridoxamine. and pyridoxal) is a dietary requirement in relatively small quantities for growth, health, and function in animals and fish. The metabolically active B6 is pyridoxal-5-phosphate(PLP). It does function as a coenzyme in number of enzymes(PLP-dependent enzymes) in which amino acids are metabolized, including decarboxylases, aminotransferases, sulfhydrases, tryptophanase, and hydroxylases. Vitamin B6 requirement is higher for fish because fish are fed much higher protein diet than land animals. B6 is also involved in metabolism of carbohydrates and lipids and essential for the synthesis of heme and serotonin. Deficiency signs in fish develop quickly, in cluding nervous disorders, convulsions, poor swimming coordination, skin lesions, edema, exophthalmos, and tetany. The conversion of vitamin B6 to metabolically active form(PLP) is catalyzed by pyridoxal kinase and pridoxine(pyridoxamine) oxidase. In this review, we summarized in detail the enzymatic studies on vitamin B6 metabolism and about the mechanisms and properties of a PLP-dependent enzyme.

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Classification of Antimicrobial Peptides among the Innate Immune Modulators (선천성 면역조절자인 항생펩타이드 분류)

  • Lee, Jong-Hwan
    • Journal of Life Science
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    • v.25 no.7
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    • pp.833-838
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    • 2015
  • Multidrug-resistant super bacterial, fungal, viral, and parasitic infections are major health threaten pathogens. However, to overcome the present healthcare situation, among the leading alternatives to current drugs are antimicrobial peptides (AMPs), which are abundantly produced via various species in nature. AMPs, small host defense proteins, are in charge of the innate immunity for the protection of multicellular organisms such as fish, amphibian, reptile, plants and animals from infection. The number of AMPs identified per year has increased steadily since the 1980s. Over 2,000 natural AMPs from bacteria, protozoa, fungi, plants, and animals have been listed into the antimicrobial peptide database (APD). The majority of these AMPs (>86%) possess 11–50 amino acids with a net charge from 0 to +7 and hydrophobic percentages between 31–70%. This report classified AMP into several categories including biological source, biological functions, peptide properties, covalent bonding pattern, and 3D structure. AMP functions not only antimicrobial activity but facilitates cell biological activity such as chemotatic activity. In addition, fibroblastic reticular cell (FRC) originated from mouse lymph node stroma induced the expression of AMP in inflammatory condition. AMP induced from FRC contained whey acidic protein (WAP) domain. It suggests that the classification of AMP will be done by protein domain.

Stabilizing Soil Moisture and Indoor Air Quality Purification in a Wall-typed Botanical Biofiltration System Controlled by Humidifying Cycle (가습 주기에 따른 벽면형 식물바이오필터의 토양 수분 안정화 및 실내공기질 정화)

  • Lee, Chang Hee;Choi, Bom;Chun, Man Young
    • Horticultural Science & Technology
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    • v.33 no.4
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    • pp.605-617
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    • 2015
  • The ultimate goal of this research is to develop a botanical biofiltration system that combines a green interior, biofiltering, and automatic irrigation to purify indoor air pollutants according to indoor space and the size of biofilter. This study was performed to compare the stability of air flow characteristics and removal efficiency (RE) of fine dust within a wall-typed (vertical) botanical biofilter depending on humidifying cycle and to investigate RE of volatile organic compounds (VOCs) by the biofilter. The biofilter used in this experiment was designed as an integral form of water metering pump, water tank, blower, humidifier, and multi-level planting space in order to be suitable for indoor space utilization. As a result, relative humidity, air temperature, and soil moisture content (SMC) within the biofilter showed stable values regardless of three different humidifying cycles operated by the metering pump. In particular, SMCs were consistently maintained in the range of 27.1-29.7% during all humidifying cycles; moreover, a humidifying cycle of operating for 15 min and pausing for 45 min showed the best horizontal linear regression (y = 0.0008x + 29.09) on SMC ($29.0{\pm}0.2%$) during 120 hour. REs for number of fine dust (PM10) and ultra-fine dust (PM2.5) particles passed through the biofilter were in the range of 82.7-89.7% and 65.4-73.0%, respectively. RE for weight of PM10 passed through the biofilter was in the range of 58.1-78.9%, depending on humidifying cycle. REs of xylene, ethyl benzene, total VOCs (TVOCs), and toluene passed through the biofilter were in the range of 71.3-75.5%, while REs of benzene and formaldehyde (HCHO) passed through the biofilter were 39.7% and 44.9%, respectively. Hence, it was confirmed that the wall-typed botanical biofilter suitable for indoor plants was very effective for indoor air purification.

Comparison of Community Structure and Biodiversity of Arthropos between Coventional and Organic Red Pepper Fields (관행 고추밭과 유기농 고추밭에서 절지동물의 군집 구조와 생물다양성의 비교)

  • Lee, Sue-Yeon;Kim, Seung-Tae;Im, Jae-Seong;Jung, Jong-Kook;Lee, Joon-Ho
    • Korean Journal of Organic Agriculture
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    • v.21 no.4
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    • pp.601-615
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    • 2013
  • This study was conducted to compare the community structure and biodiversity of arthropods between conventional and organic red pepper fields. A total of 36 species of 24 families belonging to 10 orders from collected 28,718 arthropods; 6,901 individuals from conventional field and 21,871 individuals from organic field. A number of species comprising arthropod community was same in both fields as 32 species. Species richness of Diptera was the highest in conventional field and that of Hymenoptera and Colembolla was the highest in organic field. Abundance of Frankliniella intonsa was the highest regardless of farming method. Helicoverpa assulta was dominant in conventional field, and Homidia mediaseta, Diptera sp. 4 and Pardosa astrigera were dominant in organic field. Diversity of community on the ground was higher in organic field and statistically different. Similarity of arthropod community showed difference with 34.07% on the ground and 26.95% in the plant above ground. In the ecologically functional guild: species richness of general, pest and parasitoid of natural enemy groups in the plant above ground were statistically different and pest and parasitoid groups were higher in organic field, abundance of predator group of natural enemy on the ground was 2 times higher in organic field and statistically different and diversity of general and parasitoid groups in the plant above ground were statistically different. In the relative occupancy rate, pest group was the highest in conventional field and decomposer group was the highest in organic field. The results of present study is considered to provide useful information of arthropod community for developing efficient insect pest management in organic farming.

Yun Chi-Ho's Garden Plan for the Anglo-Korean School in Gaeseong (윤치호의 개성 한영서원 정원 계획)

  • Kim, Jung-Hwa
    • Journal of the Korean Institute of Landscape Architecture
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    • v.51 no.2
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    • pp.81-93
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    • 2023
  • The purpose of this study is to clarify the background of the plans and the spatial characteristics of the garden at the Anglo-Korean School, an educational institution established in Gaeseong in 1906 by Yun Chi-ho and the American Methodist Church. The time scope of the study is from 1906, when the school was opened, to the early 1920s, when the basic building structure of the school was completed. The spatial scope is the school complex, located in Gaeseong, and its affiliated facilities. The contents of the study include the planning background and purpose, spatial layout, and plants used in the school garden. This study reviewed Yun Ch'i-ho's papers and Warren A. Candler's papers at Emory University, documents, photos, and maps produced in the early 20th century. The results show that the school garden was first mentioned at the school's opening and that with a strong will, Yun Chi-ho insisted on establishing a school garden. The garden was located around the engineering department building and was divided into several sections and lots. Economic plants, such as fruit trees, comprised the garden and were sourced from the Methodist Church of the South, USA. This study reveals that the garden at the Anglo-Korean School functioned as a training ground for agriculture and horticulture education and was differentiated from Seowon, a traditional Korean academy that symbolically spaced Neo-Confucianism and that emphasized the views of the surrounding nature during the Joseon Dynasty.