• 제목/요약/키워드: Plant nutrition

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What is on plates for school meals: focusing on animal- vs. plant-based protein foods

  • So-Young Kim;Meeyoung Kim
    • Nutrition Research and Practice
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    • 제17권5호
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    • pp.1028-1041
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    • 2023
  • BACKGROUND/OBJECTIVES: This study aimed to analyze the potential of school meals in South Korea as a sustainable tool to reduce carbon emissions by focusing on animal- vs. plant-based protein foods. MATERIALS/METHODS: By using a stratified proportional allocation method, 536 out of the 11,082 schools nationwide were selected including 21 kindergartens, 287 elementary-, 120 middle- and 108 high schools. A total of 2,680 meals served for 5 consecutive days (June 21-25, 2021) were collected. We analyzed the average serving amounts of protein foods (animal- vs. plant-based) per meal and then, calculated the estimated average amounts of carbon emission equivalents per meal by applying the conversion coefficients. The t-test and analysis of variance were used for statistical analyses (α = 0.05). RESULTS: The average serving amount of animal-based protein foods per meal was 12.5 g, which was approximately 3 times higher than that of plant-based ones (3.8 g) (P < 0.001); the Meat-group had the highest average amount of 17.0 g, followed by Egg-group (9.6 g), Fish-group (7.6 g), and Beans-and-Nuts-group (3.8 g) (P < 0.05). Specifically, pork (25.1 g) was ranked first, followed by poultry (19.6 g), processed meat products (18.0 g). The estimated average amount of carbon emission equivalents of animal-based protein foods per meal was 80.1 g CO2e, which was approximately 31 times higher than that of plant-based ones (2.6 g CO2e) (P < 0.001); the Meat-group had the highest average amount of 120.3 g CO2e, followed by Fish-group (44.5 g CO2e), Egg-group (25.9 g CO2e), and Beans-and-Nuts-group (2.6 g CO2e) (P < 0.05). Specifically, processed meat products (270.8 g CO2e) were ranked first, followed by pork (91.7 g CO2e), and processed fish products (86.6 g CO2e). CONCLUSIONS: The results implied that school meals with plant-based alternatives could be a sustainable tool to improve carbon footprint.

식물세포벽 가수분해효소 중 펙틴계효소에 대한 고찰 (Respection of Pectic Enzymes Among the Hydrolysis Enzymes of Plant Cell Wall)

  • 최동원;김인규
    • 한국식품영양학회지
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    • 제9권1호
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    • pp.92-98
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    • 1996
  • Pectic materials, which are widely spread in the plant cell wall as plant carbohydrates, plays a great role in food Industry that acts as a softening agent of fruits and vegetables, and gel forming agents. To study physiochemical properties and industrial applications of pectic enzymes that hydrolyzes pectin, classification, assay method and Industrial application are reviewed based on previous results.

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땅콩의 초형별 화학성분 조성 비교 (Chemical Compositions in the Various Plant Types of Peanut (Arachis Hypogaea L.))

  • 조규성
    • 한국식품영양과학회지
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    • 제22권5호
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    • pp.576-580
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    • 1993
  • An attempt was made to investigate the chemical compositions of the three plant types such as runner type(Yeoju landrace), semi-Spanish type(Suweon 15ho) and Spanish type(Wasedairu) of peanut. The proximate compositions were lipid 44.25~46.48% and protein 22.54~25.42% in various plant types of peanut, respectively. And the contents of purified free and bond lipids were 43.71~45.44% and 1.74~3.12%, respectively. The predominant fatty acids were oleic, linoleic, palmitic and arachidic acid in the free lipid, and linoleic, oleic and palmitic acid in t도 bond lipid. Pattern of 16 amino acid compositions in three plant types of peanut was shown to be similarity. Major amino acid were glutamic acid(75.30~104.66mg/g), arginine(57.30~74.27mg/g), aspartic acid(41.44~63.05mg/g) and leucine(30.80~39.00mg/g). The richest mineral contained in three plant types of peanut was noticed to be K and followed by Mg, Ca and Na. The lead content was below the authorized tolerance limits.

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Effects of Sulfur Fertilizer on the Expression of 11S and 7S Seed Storage Proteins of Soybean

  • El-Shemy Hany A.;Nguyen Nguyen Tran;Ahmed Sherif H.;Fujita Kounosuke
    • Journal of Plant Biotechnology
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    • 제8권1호
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    • pp.1-8
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    • 2006
  • The differential response of soybean cultivars with or without sulfur (S) application was observed under fold conditions. Plant biomass decreased by sulfur deficiency but the reduction was less in Bragg variety about 26 % relative to the control than other ones over 45%, probably due to less reduction in loaves and pods. The photosynthetic rate of Bragg cultivar was also unaffected by the absence of sulfur application while it depressed in other lines. Soybean cultivars were compared in terms of storage protein, protein quality and biomass production by application of sulfur nutrition. The storage protein concentration tended to decrease without sulfur application in all the cultivars, however the differential response of protein quality only by 11S/7S ratio to sulfur nutrition status was observed: For instance, Bragg cultivar had higher biomass and protein production but protein quality decreased at sulfur deficiency. On the other hand, biomass and protein production in other cultivars remained louver at sulfur deficiency but protein quality differed genetically in spite of sulfur nutrition status. These results suggest that the response of soybean to sulfur nutrition is controlled by genotypic difference and sulfur supply status.

Changes in Chemical Composition of Sorghum as Influenced by Growth Stage and Cultivar

  • Firdous, Rafia;Gilani, Abrar Hussain
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권7호
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    • pp.935-940
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    • 2001
  • To determine the effect of different growth stages and cultivars on the chemical composition of sorghum plant and its morphological fractions, samples of whole plant, leaf and stem of J.S-263, J.S-88 and Hegari cultivars, harvested at various growth stages were drawn for analysis. All the samples were analysed for their dry matter contents and various cell wall components such as NDF, ADF. hemicellulose, cellulose, lignin, cutin and silica. Significant increase in DM contents of whole sorghum plant, leaf and stem was observed with advancing stage of growth. The highest DM content was recorded in leaf fraction of the plant. All the cell wall constituents increased significantly in whole sorghum plant, leaf and stem as the plant matured. The maximum NDF, ADF, cellulose and lignin contents were observed in stem fraction, followed by whole plant. However, the hemicellulose, cutin and silica contents were higher in leaf fraction of the plant. The cultivars were found to have some effect on the chemical composition of whole plant, leaf and stem fractions. The results indicated that plant maturity had a much greater effect on the chemical composition of sorghum plant, whereas it was little affected by cultivars.

Response of colchicine for the efficient chromosome doubling in Codonopsis lanceolata

  • Kwon, Soo-Jeong;Lee, Ui Gun;Moon, Young Ja;Cho, Gab Yeon;Boo, Hee Ock;Lee, Moon Soon;Woo, Sun Hee;Kim, Hag Hyun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.273-273
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    • 2017
  • Polyploidy has opened a new horizon for selection to sculpt a variety of new gene functions, traits, and lineages. The aim of this study was to investigate the efficacy of the colchicine concentration, temporal changes, and suitable material for inducing effective tetraploid plants of Codonopsis lanceolata. A total of 180 individuals from 16 treatment groups were germinated, and exposed to different concentrations of Colchicine. The plant height of the diploid (18.1 cm) was slightly shorter than that of the tetraploid (13.4 cm). The fresh weight of the main root in the diploid (0.5 g) was 4-fold higher than the tetraploid (2.2 g). The colchicine-treated plant regeneration rate in C. lanceolata was decreased at the elevated concentration of colchicine. A total of 126 individual plants were regenerated in the entire treatment group and tetraploid (2n=4x=32) plants were obtained. In particular, 5 individuals of the tetraploid plant were induced in the 0.05% colchicine for 6h, which is a higher rate (29.4%) than other regenerated plants. As in the seed treatment result, the plant height of the diploid was significantly higher (10.4 cm) than tetraploid. The root length of the tetraploid (10.1 cm) was longer than the diploid, and the root was also thicker. Taken together, the results obtained from the present study may be helpful for the efficient recovery of such polyploid plants through the in vitro application of colchicine, and may improve the productivity and breeding of C. lanceolata.

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