• Title/Summary/Keyword: 식물흡수도

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Effect ofMunicipal Sludge on contents of Cadmium and Zinc in Crop Plants (도시하수(都市下水) Sludge 의 경작지(耕作地) 처리(處理)가 식물체(植物體)중 Cd 및 Zn 함량(含量)에 끼치는 영향(影響))

  • Kim, Seong-Jo;Baek, Seung-Hwa;Kim, Joo-Young;Yoo, Han-Chang
    • Korean Journal of Environmental Agriculture
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    • v.9 no.2
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    • pp.121-131
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    • 1990
  • Four crop plants, such as green onion(Allium ascalonicum L.), radish(Raphanus sativus L.), potato(Solanum tubersum L.) and chinese cabbage(Brassica pekinensis Rupr), were grown in greenhouses to determine the accumulations of Cd and Zn absorbed by the plants grown on soils treated with municipal sewage sludge of different levels of 0, 22.5, 45.0 and 90.0 ton $ha^{-1}$ as soil dry weight. The result was analyzed to be comparable to the heavy metal content in the plant tissues among the crop species and the statistical characteristics were investigated to determin a possible relationship between causes of increased contents of Cd and Zn in plants and in soils. The results were as follows : 1. The Cd and Zn content in experimental crop plants increased with increase in quantity of treatment sludge. 2. The Cd and Zn content in roots of all experimental plants increased with sludge treatment amount in soil, in the following order : green onion>potato>chinese cabbage>radish. 3. The Cd content in leaves of crop plants were high in this order : green onion>radish>potato>chinese cabbage, and the Zn content in leaves of crop plants was high in this order. : potato>radish>chinese cabbage>green onion. 4. Concentrations of Cd in potato tubers, radish roots and chinese cabbage leaves ranged from 0.03 to 0.12 ppm. 5. Concentrations of Cd and Zn in plant tissues grown in sludge treated soil of 90.0 ton $ha^{-1}$ were 1.2 to 10 times and 0.4 to 2.3 times higher as compared with those absorbed from sludge-free soil, respectively. 6. The accumulation rates of Cd and Zn in sludge-treated plant tissue were almost constant except for green onion roots.

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Mycorrhizae, mushrooms, and research trends in Korea (균근과 버섯 그리고 국내 연구동향)

  • An, Gi-Hong;Cho, Jae-Han;Han, Jae-Gu
    • Journal of Mushroom
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    • v.18 no.1
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    • pp.1-9
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    • 2020
  • Mycorrhiza refers to the association between a plant and a fungus colonizing the cortical tissue of the plant's roots during periods of active plant growth. The benefits afforded by plants from mycorrhizal symbioses can be characterized either agronomically, based on increased growth and yield, or ecologically, based on improved fitness (i.e., reproductive ability). In either case, the benefit accrues primarily because mycorrhizal fungi form a critical linkage between plant roots and the soil. The soilborne or extramatrical hyphae take up nutrients from the soil solution and transport them to the root. This mycorrhizae-mediated mechanism increases the effective absorptive surface area of the plant. There are seven major types of mycorrhizae along with mycoheterotrophy: endomycorrhizae (arbuscular mycorrhizae, AM), ectomycorrhizae (EM), ectendomycorrhizae, monotropoid, arbutoid, orchid, and ericoid. Endomycorrhizal fungi form arbuscules or highly branched structures within root cortical cells, giving rise to arbuscular mycorrhiza, which may produce extensive extramatrical hyphae and significantly increase phosphorus inflow rates in the plants they colonize. Ectomycorrhizal fungi may produce large quantities of hyphae on the root and in the soil; these hyphae play a role in absorption and translocation of inorganic nutrients and water, and also release nutrients from litter layers by producing enzymes involved in mineralization of organic matters. Over 4,000 fungal species, primarily belonging to Basidiomycotina and to a lesser extent Ascomycotina, are able to form ectomycorrhizae. Many of these fungi produce various mushrooms on the forest floor that are traded at a high price. In this paper, we discuss the benefits, nutrient cycles, and artificial cultivation of mycorrhizae in Korea.

Remediation of Polluted Soil by Plant (유용식물을 이용한 오염토양 정화기술 개발)

  • 이상환;이문용;현승훈;윤영만;김정규;임수길
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1997.05a
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    • pp.116-119
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    • 1997
  • 광산지 및 쓰레기매립지의 오염토양을 정화하는데 식물의 이용가능성을 평가하기 위하여 강원도, 경상북도 지역에 분포하는 17곳의 폐광산과 강원도에 분포하는 농촌형 일반 쓰레기매립지 6곳을 대상으로 광산지와 매립지의 토양 특성을 조사하고, 서식 식물종의 오염 물질 제거 능력과 개척종으로서의 가능성을 평가하였다. 광산지 토양의 경우 산성화가 진행된 곳이 많았고, 중금속함유량도 전국 토양의 평균함유량보다 훨씬 높게 나타났으나, 매립지의 경우 약알카리성 토양이 많았고, 광산지와 달리 중금속 오염의 우려는 없었다. 오염토양에 서식하는 쑥을 포함한 14종의 식물체중에서 오염토양정화기술에 이용 가능한 유용식물로 Aremisia princeps(쑥), Micanthus sinensis(억새), Oenanthera odorata(달맞이 꽃)등이 중금속의 흡수력과 지상부로의 이행력이 큰 식물종으로 나타나 phytoremediation에 있어서 개척종으로 이용가능할 것으로 판단되었다.

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Comparing Net CO2 Uptake of Schlumbergera truncata 'Pink Dew' Phylloclades in a Growth Chamber and a Greenhouse (생육상과 온실에서 게발선인장 '핑크듀'의 엽상경별 CO2 흡수율 비교)

  • Seo Hee Jung;Ah Ram Cho;Yoon Jin Kim
    • Journal of Bio-Environment Control
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    • v.32 no.1
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    • pp.64-71
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    • 2023
  • Crassulacean acid metabolism (CAM) plants use surplus CO2 generated by cooling and heating at night when ventilation is not needed in a greenhouse. Schlumbergera truncata 'Pink Dew' is a multi-flowering cactus that needs more phylloclades for high-quality production. This study examined photosynthetic characteristics by the phylloclade levels of S. truncata in a growth chamber and a greenhouse for use of night CO2 enrichment. The CO2 uptake rate of the S. truncata's top phylloclade in a growth chamber exhibited a C3 pattern, and the second phylloclade exhibited a C3-CAM pattern. The CO2 uptake rate of the top phylloclade in a greenhouse showed a negative value both day and night, but those of the second phylloclade exhibited a CAM pattern. The stomatal conductance and water-use efficiency (WUE) of S. truncata at both the top and second phylloclades were higher in a growth chamber than in a greenhouse. The WUE of S. truncata in a growth chamber and a greenhouse was higher at the second phylloclade, which is a CAM pattern compared with those of the top phylloclade. The daily total net CO2 uptake of S. truncata was higher in a growth chamber than in a greenhouse. The daily total net CO2 uptake of S. truncata at the second phylloclade had the highest value of 155 mmol·m-2·d-1 in a growth chamber. The night total CO2 uptake of S. truncate at the second phylloclade was 3-fold higher in a growth chamber than in a greenhouse. S. truncata's second phylloclade exhibited a CAM pattern that uptake CO2 at night, and the second phylloclade, was more mature than the top phylloclade. A multi-flowering cactus S. truncata 'Pink Dew' efficiently uptake night surplus CO2 in the proper environmental condition with matured phylloclade.

Studies on the Nutritional Physiology of Soybeans. -3. Relation between growth and phosphorus nutrition with the fertilizational period (대두(大豆)의 영양생리(榮養生理)에 관(關)한 연구(硏究) (제(第)3보(報)) - 시비(施肥) 시기(時期)에 따른 인(燐)의 영향(影響) -)

  • Kang, Y.H.
    • Korean Journal of Soil Science and Fertilizer
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    • v.2 no.1
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    • pp.45-48
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    • 1969
  • In an effort to determine the effect of the physiological function of phosphorus in higher plants, soybean have been used as samples in an attempt to compare them with rice on which there have been a number of reports of research. The absorptive and metabolic process phosphorus in each separate manuring period has been studied. It has iefluenced enhancement of vitality in the plants whether manuring is conducted earlier or later. These phenomena have greatly concerned with the absorption and transference of phosphorus in the process of growth are done more slowly than those of nitrogen and phosphorus from stems and leaves to pods.

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The Effect of Cd and Zn Elements Applied to Soil on the Growth and their Uptake of Corn Plant (토양중(土壤中) 중금속(重金屬)(Cd, Zn)의 처리(處理)가 옥수수의 생육(生育) 및 흡수(吸收)에 미치는 영향(影響))

  • Lee, Min-Hyo;Kim, Bok-Young
    • Korean Journal of Environmental Agriculture
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    • v.4 no.1
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    • pp.11-17
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    • 1985
  • A pot experiment was carried out to investigate the effect of Cd and Zn added to soil on the growth, peroxidase activity, chlorophyll content, inorganic components, and interaction between Cd and Zn in corn plant. The results obtained are as follows. Both Cd and Zn reduced dry weight and height of corn plant. Peroxidase activity of leaves increased in higher Cd content of shoot but adverse trend was shown with increasing Zn content of shoots. Chlorophyll contents were significantly decreased with increase of both Cd and Zn content of shoots. Higher soil Cd levels increased N content but decreased P, K, Ca, Mg and $SiO_2$ content in plant. Wherease higher Zn levels in soil increased P and $SiO_2$ content but decreased N, Ca, Mg content in plant. The total Cd and Zn uptake of shoot increased with time but the Cd and Zn content of shoot showed no tendency. Cadmium uptake by Zn application was reduced in higher Zn levels with time while Zn uptake by Cd application showed adverse trend.

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Effects of Dietary Protein Levels and Sources on Calcium and Phosphorus Metabolism in Young Korean Women (한국성인 여성의 단백질 섭취수준과 동.식물성 급원이 칼슘 및 인대사에 미치는 영향)

  • 구재옥
    • Journal of Nutrition and Health
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    • v.24 no.2
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    • pp.124-131
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    • 1991
  • This study was to examine the effects of dietary protein levels and the sources of protein(animal and plant) on calcium and phosphorus metabo lism in 10 healthy Korean female adults. The 26­d day study consisted of a 6-day adaptation period and lO-day moderate protein(109 N, 550mg Ca) a and IO-day high protein( 14g N, 570mg Ca) pe­r riod. During the experimental period, the subjects w were divided into two groups, either consuming a animal protein diet(75 % animal protein) or plant protein diet(75 % plant protein). Calcium(300 mg) was supplemented to two subjects of each d dict group for the last 4 days. Feces, urine and diet were analyzed nitrogen. calcium and phos­p phorus. The apparent absorption of calcium was significantly increased as the protein intake was inc­r reased from 60g to 90g in animal protein diet. A Average calcium absorption rate was 30% and 46 % from high and moderate levels of animal p protein diet Urinary calcium excretion was not affected by t the amount of the protein intake in both animal and plant protein diet. There was significantly higher urinary calcium excretion(I34mg) in high I level of animal protein diet than that( 83mg) in h high level of plant protein diet. Calcium balance was improved as the protein intake increased and c calcium was supplemented. Phosphorus absorp­t tion was more efficient in the high animal diet(77.81 %) than in the high plant diet(55-65%). The overall results indicate that an increase of protein and calcium supplement in moderate pro­ttein intake can improve calcium balance due to the increase of calcium absorption.

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Effect of external-phosphorus supply on the phosphorus status of soybean nodules and the P-uptake system of isolated bacteroids (인산공급이 대두근류의 인산형태와 bacteroid의 인산흡수에 미치는 영향)

  • Sa, Tong-Min;Israel, Daniel W.
    • Applied Biological Chemistry
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    • v.34 no.2
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    • pp.117-124
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    • 1991
  • Soybean plants inoculated with Bradyrhizobium japonicum MN 110 were supplied with nutrient solutions containing 1.0, 0.25 and 0.5.nM-P to characterize the effect of externaI-P supply on the phosphorus status of nodules and on the P-uptake system of isolated bacteroids from nodules. After 48 days of growth, whole plant dry mass in the 0.25 and 0.05 mM-P treatments decreased significantly. The Pi concentrations in nodules were 4.1, 2.5 and 2.0 mM for 1.0, 0.25 and 0.05 mM-P treatments, respectively. The external-P supply did not significantly affect the distribution of phosphorus among inorganic phosphate(Pi), soluble organic-phosphorus(SOP) and insoluble organic-phosphorus(TOP) fractions in nodules. The Pi concentrations in young leaves of 0.25 and 0.05 mM-P plants were 33% and 20% , respectively, of those in young leaves of 1.0 mM-P plants and Pi concentrations in old leaves were only 16% and 7%, respectively, of those in old leaves of 1.0 mM-P plants. Phosphorus deficiency decreased the percentage of total leaf phosphorus in the Pi fraction and increased the percentage of total leaf phosphorus in the IOP fraction. The bacteroid number ranged from 0.87 to $1.30{\times}10^{11}$ Per GFW nodule regardless of external-P supply to the host Plants and Plant age, The P-uptake rates were the same (15-16 pmoles /min./$10^8$ bacteroids) for the bacteroids isolated from nodules of 1.0 mM-P and 0.05 mM-P plants. These results indicate that Pi concentrations in nodules of phosphorus-deficient plants are sufficient for proliferation of bacteroids and that the P-uptake system of bacteroids is in a repressed state even when host plant growth is severely restricted by phosphorus-deficiency stress.

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Studies on nickel uptake in transgenic Arabidopsis thaliana introduced with TgMTP1 gene encoding metal tolerance protein (TgMTP1 과발현 애기장대에서 Nickel 흡수 연구)

  • Kim, Donggiun
    • Journal of Plant Biotechnology
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    • v.42 no.4
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    • pp.409-413
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    • 2015
  • To enhance phytoremediation, which removes heavy metal from soil, transgenic plants were applied to contaminated soil. We constructed a transformation vector expressing both $TgMTP_1$ (T. goesingense metal tolerance protein):HA and TgMTP:GFP genes. Transgenic plants were generated using an Agrobacterium-mediated transformation system that expressed the two vectors. Screening and analysis confirmed the incorporation of foreign genes into the Arabidopsis thaliana genome. Callus was induced in the 116 T3 line. These transgenic plants and calli were used for further analyses on the accumulation of Ni. The 116 T3-line plants and calli from selected lines were resistant to heavy metals and accumulated Ni in their leaves. The expression level of TgMTP RNA was equal in all leaves, but protein stability increased in the leaves with Ni treatment. According to these results, we suggest that $TgMTP_1$-overexpressing plants may be useful for phytoremediation of soil.

Characterization of a Heavy Metal-Resistant and Plant Growth-Promoting Rhizobacterium, Methylobacterium sp. SY-NiR1 (중금속 내성 및 식물 생장 향상 근권세균 Methylobacterium sp. SY-NiR1의 분리 및 특성)

  • Koo, So-Yeon;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.35 no.1
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    • pp.58-65
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    • 2007
  • The role of soil microorganisms, specifically rhizobacteria, in the development of rhizoremediation techniques is important to speed up the process and to increase the rate of mobilization or absorption of heavy metals to the plant. In this study, Methylobacterium sp. SY-NiR1 was isolated from the rhizosphere soils of plants in oil and heavy metal-contaminated soil. Based on its pink pigmented colony, rod-shape cells, and belonging in $\alpha-Proteobacteria$, Methylobacterium sp. SY-NiR1 is considered a pink-pigmented facultative methylotroph. SY-NiR1 had the ability to produce indole acetic acid which is one of phytohormones. This bacterium showed resistance against multiple heavy metals such as Cd, Cr, Cu, Pb, Ni, Zn, and the order of its resistance based on $EC_{50}$ was Zn > Ni > Cu > Pb > Cd > Cr. Therefore, Methylobacterium sp. SY-NiR1 can stimulate seed germination and plant growth in soil contaminated with heavy metals.