• 제목/요약/키워드: plant nutrients

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유가공품 중 칼슘 및 프락토올리고당 영양강화 함량 분석 (The Analysis for Calcium and Fructooligosaccharides Contents in Nutrients Fortified Dairy Products)

  • 박지성;박재우;조병훈;송성옥;위성환;오순민;김진만
    • 한국축산식품학회지
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    • 제33권6호
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    • pp.781-786
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    • 2013
  • 본 연구는 시중에서 유통중인 유가공품 중 칼슘과 프락토올리고당 영양소 강조 또는 함유 표시 제품에 대해 실제 함량을 분석하였다. 칼슘 강화 유제품에 대하여는 우유류, 발효유류, 치즈류 등 40개 제품을 수집하여 칼슘 함량을 조사하였다. 그 결과 우유류 12제품의 1회 제공량당 칼슘 함량 표시는 105~500 mg (1.1~2.5 mg/mL)이었으며, 분석값은 1.0~2.4 mg/mL로 표시값에 대한 분석값은 87~127%이었다. 발효유류 12제품의 1회 제공량당 칼슘 함량 표시는 30~110 mg (0.4~1.4 mg/g)이었으며, 분석값은 0.3~1.6 mg/g로 표시값에 대한 분석값은 89~131%이었다. 치즈류 16제품의 1회 제공량당 칼슘 함량 표시는 84~2000 mg (3.5~20 mg/g)이었으며, 분석값은 4.2~23.0 mg/g으로 표시값에 대한 분석값은 83~127%이었다. 분석대상 시료의 칼슘함량 표시 대비 실제 분석값은 모두 80% 이상으로 축산물의 표시기준을 충족하였다. 프락토올리고당 강화 유제품에 대하여는 시중 유통 24개 제품에 대하여 그 함량을 조사한 결과 발효유 4.2~30.8 mg/g, 농후발효유 8.7~10.6 mg/g, 유음료 18.5 mg/mL, 연성가공치즈 1.3 mg/g으로 나타났다. 축산물의 표시기준에서 프락토올리고당에 대해서는 표시내용과 실제 함량 사이의 인정범위를 규정하고 있지는 않으나, 이들 24개 제품 중 실제 4개 제품에서는 명확한 함량이 표시되었으며, 분석값은 9.1~18.9 mg/g으로 표시량 대비 83~154%의 결과를 나타내었다.

광원의 종류, 주기와 세기의 변화에 따른 '신홍쌈' 배추 내 글루코시놀레이트 함량 (Variation of glucosinolate contents of 'Sinhongssam' grown under various light sources, periods, and light intensities)

  • 이건령;김영진;천진혁;이민기;류동기;박수형;정선옥;박상언;임용표;김선주
    • 농업과학연구
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    • 제41권2호
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    • pp.125-133
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    • 2014
  • The variation of glucosinolates (GSLs) in Chinese cabbage ('Sinhongssam') (Brassica rapa L. spp. pekinensis) cultivated under lights to control plant growth conditions was evaluated at different development stages. Under experimental conditions in plant factory system, plant growth conditions including light, temperature, and nutrients were designed to enhance GSLs. The variation of glucosinolates (GSLs) in Chinese cabbage ('Sinhongssam') (Brassica rapa L. spp. pekinensis) cultivated under lights to control plant growth conditions was evaluated at different development stages. Under experimental conditions in plant factory system, plant growth conditions including light, temperature, and nutrients were designed to enhance GSLs. The contents of GSLs were quantified in Chinese cabbage according to different light sources (Red+White, RW; Red+Blue+White, RBW, Fluorescence lamp, FL) at development stages (28, 42, and 56 days after sowing, DAS) using HPLC. Nine GSLs including five aliphatic (progoitrin, sinigrin, glucoalyssin, gluconapin, and glucobrassicanapin) three indolyl (glucobrassicin, 4-methoxyglucobrassicin, and neoglucobrassicin), and one aromatic (gluconasturtiin) GSLs were identified based on peak retention time in previous results of our laboratory. GSL contents were higher in RBW (36.55) and lower in FL ($15.24{\mu}mol/g/\;DW$). Results revealed that GSL contents were higher under controlled photoperiods (20/4 h) ($58.35{\mu}mol/g\;DW$) and controlled light intensity ($160{\mu}mol/m^2/s$) ($34.02{\mu}mol/g\;DW$), respectively. Lower amount of progoitrin and comparatively higher amount of glucobrassicin and gluconasturtiin was noted in Chinese cabbage cultivated under FL light (2.38, 9.82, and 2.10) at 42 DAS, photoperiod 20/4 h (3.16, 2.52, and 1.30) at 28 DAS, and light intensity at $130{\mu}mol/m^2/s$ (2.28, 2.24, and $1.51{\mu}mol/g\;DW$) at 42 DAS. Therefore FL light, photoperiod (20/4 h), and light intensity ($130{\mu}mol/m^2/s$) were considered as most suitable for the enhancement of GSLs in Chinese cabbage.

벼 깨씨무늬병 발병정도에 따른 논토양, 벼알 및 볏짚에서의 무기성분 비교 (Comparisons of Inorganic Amounts in Paddy Field Soil, Rice Straw and Grain with Severity of Brown Spot Caused by Cochliobolus miyabeanus)

  • 예완해;박양호;김이열;탁정순;남영주;심홍식;김용기;연병렬
    • 식물병연구
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    • 제15권1호
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    • pp.41-45
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    • 2009
  • 벼 깨씨무늬병 발병정도가 토양의 무기성분과 어떠한 관계가 있는지를 구명하기 위하여 깨씨무늬병 발생이 많은 포장과 적은 포장의 식물체와 토양의 무기성분을 분석하였다. 깨씨무늬병이 많이 발생한 포장 토양은 적게 발생한 포장의 토양에 비하여 유효인산, 치환성칼륨, 칼슘, 마그네슘, 유효규산의 함량이 현저히 낮았다. 그러나 나트륨의 함량은 높았으며, pH 값이나 유기물함량은 거의 유사한 수준이었다. 병발생이 많은 포장의 볏짚은 적은 포장의 볏짚에 비하여 Fe, Cu, T-N 및 $P_{2}O_{5}$의 함량이 낮았다. 병 발생이 많은 포장의 벼알은 경미한 포장의 벼알에 비하여 Fe, MgO, Zn및 Mn의 함량이 적었다. 논유 형별 발병정도는 사질답, 염해답 순으로 발병이 많았으며, 미숙답이 가장 발병이 적었으며, 보통답과 배수불량 답은 중간수준이였다. 질소시비수준별 발병정도는 무질소구가 가장 발병이 심하였고, 토양검정량 1.5배량과 농가 관행구에서는 병발생이 유의한 수준으로 적었으며, 토양 검정량의 0.5배, 토양검정량의 1.0배, 표준시비량처리가 중간수준으로 병이 발생하였다. 이상의 결과를 종합적으로 고찰하면 사질답등 작토층이 얕고 척박한 토양에서는 질소, 인산, 가리, 철 등 무기성분이 부족되지 않도록 균형시비하고 간척지답 등에서는 염분의 농도가 증가되지 않도록 관리하는 것이 깨씨무늬병을 가장 효율적으로 방제할 수 있는 방안이라 사료되었다.

Damage Analysis of Rice Panicle Blast on Disease Occurrence Time and Severity

  • Shim, Hong-Sik;Hong, Sung-Jun;Yeh, Wan-Hae;Han, Seong-Sook;Sung, Jae-Mo
    • The Plant Pathology Journal
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    • 제21권2호
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    • pp.87-92
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    • 2005
  • The structural differences between healthy and diseasedpanicle necks caused by Pyricularia oryzae were observed using electron-microscope. In the diseased panicle neck, the infection hyphae of the rice blast pathogen grew through the sclerenchymatous fiber tissue and reached to the central internal lacuna. Since the pathogen grew through the sclerenchymatous fiber tissues, the vascular bundle composed with xylem and phloem had been destroyed and finally the nutrients from the leaf and stem were not able to be transported into the grains. Infection of panicle base by the blast pathogen until 20 days after heading caused more than 50% of yield loss in both Jinmibyeo and Chucheongbyeo. There was a positive correlation between incidence of the panicle blast and rice yield losses. The regression equations between incidence of the panicle blast and yield losses were y= -3.61+496.7 ($R^2$=0.70) in Jinmibyeoand y=-3.93+520.2 ($R^2$=0.82) in Juanbyeo. The panicleblast caused deterioration of grain quality. Healthy grain rate was reduced by increase of panicle blast infection.

Plant Analysis Methods for Evaluating Mineral Nutrient

  • Lee, Ye-Jin;Sung, Jwa-Kyung;Lee, Seul-Bi;Lim, Jung-Eun;Song, Yo-Sung;Lee, Deog-Bae;Hong, Suk-Young
    • 한국토양비료학회지
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    • 제50권2호
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    • pp.93-99
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    • 2017
  • Analysis of mineral nutrients in plant is required for evaluating diagnosis of plant nutritional status. Pretreatment procedure for the analysis of plant can be varied depending on elements to be analyzed. Wet-digestion is suitable for total nitrogen, phosphate and cations, however, digestion solution including nitric acid is not suitable for nitrogen analysis. Incineration procedure is required to analyze chloride, silicate and total sulfur. After digestion, total nitrogen is analyzed by Kjeldahl method, and phosphate is detected at 470nm by colorimetric analysis with ammonium meta vanadate. Cations and micro elements are determined by titration or colorimetry, also, these elements can be measured by Atomic absorption spectrometer (AAS) or Inductively coupled plasma spectrometer (ICP).

Oxalate Accumulation in Forage Plants: Some Agronomic, Climatic and Genetic Aspects

  • Rahman, M.M.;Kawamura, O.
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권3호
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    • pp.439-448
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    • 2011
  • Oxalic acid is synthesized by a wide range of plants. A few of them are forage plants that can cause oxalate poisoning in ruminants under certain conditions. In this paper, the role of some agronomic, climatic and genetic factors in minimizing oxalate accumulation in forage plants has been discussed. Research indicates that the content of oxalate in forage can be controlled by fertilizer application. For example, nitrate application resulted in higher contents of soluble and insoluble oxalates than ammonium application. With an increased rate of potassium application, soluble oxalate content showed an increasing trend and insoluble oxalate content showed a decreasing trend. With an increased rate of calcium application, soluble oxalate content showed a decreasing trend and insoluble oxalate content showed a reverse trend. Other agronomic factors such as growing season, harvesting practices, plant maturity, plant species, plant variety and plant parts can also have a large effect on oxalate accumulation. However, the potential benefits of the above approaches for improving forage quality have not been fully exploited. In addition, there is still insufficient information to fully utilize means (e.g. plant nutrients, season and soil moisture) to minimize oxalate accumulation in forage plants. Therefore, more research is required for a better understanding of the interactions between oxalate and the above-mentioned factors in forage plants.

Factors influencing somatic embryo maturation, high frequency germination and plantlet formation in Terminalia chebula Retz.

  • Anjaneyulu, C.;Giri, C.C.
    • Plant Biotechnology Reports
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    • 제2권2호
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    • pp.153-161
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    • 2008
  • The factors influencing somatic embryo maturation, high frequency somatic embryo germination, and plantlet formation were studied in Terminalia chebula Retz. Maturation of somatic embryo were influenced by a number of factors such as in vitro culture passage, concentrations of sucrose, levels of abscisic acid (ABA), basal media and media additive combinations. Maximum frequency of somatic embryo maturation ($57.22{\pm}2.02$), was obtained on MS medium supplemented with 50 g/l sucrose. Different factors such as strengths of MS nutrients, plant growth regulators, media additives and their combinations controlling somatic embryo germination and plantlet formation were studied. High frequency of germination and plantlet formation ($58.80{\pm}1.47$) were achieved by subsequent subculture of mature somatic embryos on MS medium containing 30 g/l sucrose and 0.5 mg/l benzyl-adenine (BA). However, although duration of in vitro passage of the callus tissue was critical, contribution of the combinations of plant growth regulators and media additives showed nugatory effect on somatic embryo maturation and germination as evident from variable responses.

Characteristics of lateral bud development, necrosis and genesis of flower primordium in 'Kyoho' grapevines

  • Park, Jun Young;Jung, Myung Hee;Kim, Bo Min;Park, Yo Sup;Kim, Jun Hyeok;Park, Hee-Seung
    • 농업과학연구
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    • 제47권4호
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    • pp.987-993
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    • 2020
  • This study investigated the effective harvest of 'Kyoho' grapevines by examining their characteristics including bud development, necrosis types and flower primordium formation. The size of the axillary bud did not show any difference in the 5th node or more, but it was smaller because it was closer to the base in the 4th node or less. In the 1st node, the rates of main bud necrosis (MBN), accessory bud necrosis (ABN), and whole bud necrosis (WBN) were high, and the rate of flower primordium formation was low, but there was no significant difference in the other nodes. Therefore, it was expected that using other nodes than the 1st node would be advantageous to secure production. Because the growth progresses after sprouting, the main bud necrosis rate increases, showing a very low flower primordium formation rate in March of the following year. Therefore, a method is needed to increase the storage nutrients in the winter and the rate of flower primordium formation after March. This study found that the thickness of the shoots should be less than 8.5 mm between the 3rd and 4th nodes, and the length should be less than 60 cm for nodes up to the 10th node.

영양소의 변천과 식물육종의 추이 (Changes in the Concept of Nutrients and Transition of Plant Breeding)

  • 한창열
    • Journal of Plant Biotechnology
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    • 제30권4호
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    • pp.387-397
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    • 2003
  • During the first half of twentieth century, even though the importance of non-calorie essential micronutrients of 13 vitamins and 17 minerals has been known to alleviate nutritional disorder; the primary objective of agriculture and plant breeding programs has been to increase the productivity and seed yields, and macronutrients of proteins, fats, and carbohydrates made up the bulk of foodstuff which were used primarily as an energy source. In the last decade it has been found that non-essential micronutrients encompass a vast group of phytochemicals including antioxidants that are not strictly required in the diet but when present at sufficient levels work as health-promoting chemicals. Nowadays agricultural crops are grown for health rather than for food or fiber, and modifying the nutritional compositions of plant foods has become an urgent health issue. To ensure an adequate intake of essential vitamins and minerals, and to increase the consumption of health-promoting phytochemicals, the researches on plant secondary metabolism have been made. The attempt to improve nutritional quality of crops has been blocked by a lack of basic knowledge of plant metabolism. The advent of genomics era enabled new approaches to make crossing regardless of species, family, or phylum barriers, and the accumulation in our basic knowledge on plant secondary metabolism during the coming decade would be tremendous. As the major staple crops contain insufficient amount of many micronutrients, fortification strategy will be a necessary practice. Elevated intake of specific vitamins, C, E, and $\beta$-carotene, mineral selenium, antioxidants, and phytochemicals significantly reduces the risk of chronic disease such as cancer, cardiovascular disorder, diabetis, and other degenerative disease associated with aging. As the attempt to improve the nutritional quality of crops requires the basic knowledges on plant metabolism, plant biochemistry, human physiology, and food chemistry, strong interdisplinary collaboration among plant biotechnologists, human nutritionists, and food scientists will be needed. Inhibition of cancer, cardiovascular disease, and other degenerative disorder may be the biggest goal facing nutritional plant breeders. But the assumption that simply increasing dietary level of any compound will necessarily improve human health is a dangerous idea because many plant secondary products and dietary contaminants have paradoxical (hermetic) effects. Before biotechnical manipulation is undertaken to elevate or reduce any individual constituent of crops, the contribution of the micronutrient to human health must first be investigated.

절화장미 토양재배시 미량 및 다량 원소의 양분 흡수량 (The Amount of Macro and Micro Elements Absorbed During Soil Cultivation of Cut-flower Roses (Rosa hybrida L.))

  • 이인복;임재현;최용문
    • 한국토양비료학회지
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    • 제34권5호
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    • pp.358-364
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    • 2001
  • 절화장미 시비량 연구를 위한 기초자료로 활용하고자 Gandgara, Nobless, Centina 품종을 각각 토양에 정식하고, 3요소의 표준시비량을 시용한 다음 10 kPa 수준에서 관수점을 제어하면서 연간 다량원소 및 미량원소의 흡수양상을 조사한 결과는 다음과 같다. 대형품종인 Grandgara와 Nobless의 생장량은 두 품종간 매우 유사하였으나, 소형품종인 Centina의 생장량은 대형품종의 63% 수준이었다. 계절별 장미 부위별 양분 흡수농도는 동계에서 높았고, 절화생산량이 증가하였던 봄철과 고온의 하계에서는 감소하는 경향이었다. 부위별 양분 흡수량은 Centina에서는 줄기<꽃<엽 순으로 증가한 반면, Grandgara와 Nobless에서는 꽃<줄기<엽 순으로 증가하였다. 원소별 흡수량은 모든 품종에서 질소와 칼리의 흡수가 높았으며, 인산의 흡수량은 마그네슘 수준으로서 그 요구도가 현저하게 낮았다. Nobless와 Centina의 질소/칼리 흡수량 비율은 각각 1.13과 1.28로서 칼리의 요구도가 높았으나 Grandgara는 1.68로서 다른 두 품종과 비교하여 칼리의 요구도가 상대적으로 낮았다. 질소, 인산, 칼리의 양분 이용율은 질소의 경우 39~64% 범위, 인산의 경우는 5~9% 범위, 칼리의 경우는 37~67% 범위로서 품종간 현저하게 상이한 결과를 보였으며, 3요소중 인산의 이용율은 극히 낮았다.

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