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Effect of Different Fertilizer Ratio and Planting Dates on Growth and Acanthoside D content of Acanthopanax divaricatus and Acanthopanax koreanum

  • Lee, Jung Jong;Lee, Sang Hyun;Park, Jae Sang;Park, Chung Berm;Ahn, Young Sub;Lee, Sang Chul
    • Current Research on Agriculture and Life Sciences
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    • v.31 no.2
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    • pp.88-93
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    • 2013
  • The cultivation methods of Acanthopanax in Korea need to be optimized. Hence, this study investigated the effect of different fertilizer ratios and planting dates on the growth and acanthoside D content of two (2) Acanthopanax species. The current recommended fertilizer rate of 10.5-8.5-8.5 $kg/ha^-$ ($N-P_2O_5-K_2O$, respectively) produced the best plant growth of Acanthopanax. For the first year, the acanthoside D content resulting from the 2P (2x phosphate) rate was higher than that from the other fertilizer ratios, yet there were no significant differences resulting from the various treatments for either Acanthopanax divaricatus or Acanthopanax koreanum. Similarly, for the second year, there were no significant differences in the acanthoside D content resulting from the various fertilizer ratios, although for both species the acanthoside D content resulting from the 2P rate was slightly higher than that from the other treatments. Therefore, the results indicated that doubling the amount of phosphate increased the acanthoside D content. Plus, the optimum planting date with respect to growth and productivity for Acanthopanax divaricatus was identified as April 15.

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Suppression of Bacterial Soft Rot on Chinese Cabbage by Calcium Fertilizer Treatment (칼슘비료 처리에 의한 배추 무름병 발생 억제)

  • Kim, Byung-Sup;Yeoung, Young-Rog
    • Research in Plant Disease
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    • v.10 no.1
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    • pp.82-85
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    • 2004
  • Bacterial soft rot by Erwinia carotovora subsp. carotovora is one of the diseases causing the biggest damages in Chinese cabbage cultivation. This study was conducted to evaluate on suppressive effect of calcium fertilizer to bacterial soft rot of Chinese cabbage. Seven calcium fertilizers were selected for evaluation. And screening was conducted to select effective agents for controlling bacterial soft rot. When applied by the nursery test condition using mineral oil inoculation method with Chinese cabbage, calcium hydroxide had more suppressive efficacy than any other calcium fertilizer, While nitrogen fertilizer was induced the disease, calcium hydroxide was suppressed soft rot disease in field test as well as seedling test. Treatment of calcium+nitrogen fertilizer as well as calcium only showed a significant control effect in the field experiment with Chinese cabbage 'Sanchon' in 2003.

Response of Rice Yield to Nitrogen Application Rate under Variable Soil Conditions

  • Ahn Nguyen Tuan;Shin Jin Chul;Lee Byun-Woo
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.50 no.4
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    • pp.247-255
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    • 2005
  • ice yield and plant growth response to nitrogen (N) fertilizer may vary within a field, probably due to spatially variable soil conditions. An experiment designed for studying the response of rice yield to different rates of N in combination with variable soil conditions was carried out at a field where spatial variation in soil properties, plant growth, and yield across the field was documented from our previous studies for two years. The field with area of 6,600 m2 was divided into six strips running east-west so that variable soil conditions could be included in each strip. Each strip was subjected to different N application level (six levels from 0 to 165kg/ha), and schematically divided into 12 grids $(10m \times10m\;for\;each\;grid)$ for sampling and measurement of plant growth and rice grain yield. Most of plant growth parameters and rice yield showed high variations even at the same N fertilizer level due to the spatially variable soil condition. However, the maximum plant growth and yield response to N fertilizer rate that was analyzed using boundary line analysis followed the Mitcherlich equation (negative exponential function), approaching a maximum value with increasing N fertilizer rate. Assuming the obtainable maximum rice yield is constrained by a limiting soil property, the following model to predict rice grain yield was obtained: $Y=10765{1-0.4704^*EXP(-0.0117^*FN)}^*MIN(I-{clay},\;I_{om},\;I_{cec},\;I_{TN},\; I_{Si})$ where FN is N fertilizer rate (kg/ha), I is index for subscripted soil properties, and MIN is an operator for selecting the minimum value. The observed and predicted yield was well fitted to 1:1 line (Y=X) with determination coefficient of 0.564. As this result was obtained in a very limited condition and did not explain the yield variability so high, this result may not be applied to practical N management. However, this approach has potential for quantifying the grain yield response to N fertilizer rate under variable soil conditions and formulating the site-specific N prescription for the management of spatial yield variability in a field if sufficient data set is acquired for boundary line analysis.

Evaluation through Photochemical Response Analysis on Growth Enhancing Effect of Decomposed Hatchery Waste Egg for Red Pepper (광화학적 반응 분석을 통한 부화장 폐달걀 분해 액비의 고추 생장촉진효과 평가)

  • Yoo, Sung Yung;Kang, Hong Gyu;Yoo, Jae Hong;Lee, Jeon Gyu;Shim, Myoung Yong
    • Korean Journal of Environmental Biology
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    • v.34 no.3
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    • pp.161-168
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    • 2016
  • In this study, growth enhancing effect of hatchery waste egg decomposed liquid fertilizer in pepper plant cultivation through chlorophyll fluorescence (O-J-I-P) analysis. In a whole growth period, egg decomposed fertilizer treated pepper grew well than non treated plant, though it was not statistically significantly different. Amount of chlorophyll fluorescence of non treated plant was higher thant that of fertilizer treated plant. It is determined that eventually lead to increased photosynthesis. In this study, six parameters, Fo, ABS/RC, RC/ABS, TRo/RC, DI0/RC, and DF Total ABS were the important factors represent efficiency of photochemical responses of pepper plant treated with hatchery waste egg decomposed fertilizer.

Effect of Controlled Release Fertilizer on the Growth and Flowering of Oncidium 'Sweet Sugar' (완효성비료 시비가 온시디움 생육과 개화에 미치는 영향)

  • Kim, Si Dong;Lee, Hee Doo;Kim, Ju Hyoung;Kim, Tae Jung
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.4
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    • pp.246-250
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    • 2009
  • This study was conducted to determine the effect of controlled-release fertilizer on growth of Oncidium. Leaf and pseudobulb length increased with controlled-release fertilizer from 2 g to 3 g treatment compared to hyponex and controlled-release fertilizer I g treatment, while leaf width and number of leaf was not significant among treatments. Plant weight increased with controlled-release fertilizer from 2 g to 3 g treatment compared to hyponex and controlled-release fertilizer I g treatment. Flowering date(bloomed October early) did not show significant difference among treatments. The number of flowers showed the most in controlled-release fertilizer 3 g treatment as 62.4 ea/plant, but was not different significantly among treatments. Flower stem length and width were also non-significant among treatments. Branching numbers increased in the controlled-release fertilizer 2 g and 3 g treatments. Mineral elements of shoot increased from 2 g to 3 g treatment rather than the controlled-release fertilizer 1g treatment. Especially, K content was higher compared to N and P content. Therefore, appropriate controlled-release fertilizer amount for Oncidium was recommended as 2 g.

Effects of Alum Sludge Application on the Growth of Forage Sorghum ( Sorghum bicolor X S. bicolor ) (사료용 수수 ( Sorghum bicolor X S. bicolor ) 생육에 대한 정수 슬러지 ( alum sludge ) 의 시용효과)

  • 김상덕;장기운;임재신;김영한
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.17 no.1
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    • pp.51-58
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    • 1997
  • An experiment of alum sludge application was carried out on a mountainous site, to know its effect on the growth of forage sorghum hybrid, Pioneer 93 1 (Sorghum bicolor x S. bicolor). When alum sludge with 80% water content was applied at the level of 133 ton per ha, the effect of the application on the growth of Pioneer 931 was much smaller than that of chemical fertilizer. But Eresh yield of the forage, with the sludge application, was greater than that without fertilizer when the soil is not fertile. But when the soil was comparatively fertile, the sludge application gave an adverse affect on the growth of the forage plant. The content of exchangeable K in the soil has a very close positive relation with the Eresh yield and plant height of the plant, while that of exchangeable Ca has a close negative relation with those growing factors. There was a tendency of yield decrease of the forage plant, when alum or compost was applied with NPK to the comparatively infertile soil especially for alum sludge. As a result, when soil is not fertile more attention will be necessary for applying alum sludge with chemical fertilizers. But to soil with better fertility, it is recommended to use alum sludge with chemical fertilizer to obtain more yield of the forage plant.

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Effects of Nitrogen Levels and Treatments on Agronomic Characteristics and Yield in Job's Tears(Coix lacryma-Jobi L.) (질소시비수준과 시비방법이 율무의 생육과 수량에 미치는 영향)

  • 권병선;박희진;성낙술
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.37 no.5
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    • pp.413-418
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    • 1992
  • The higher fertilizer application level and frequency of additional fertilizer increase the higher the growing characters of plant height, No. of leaves, No. of stem per plant, and No. of ears per main stem, etc., appeared. The yield characters of No. of grains per plant, percentage of threshing, weight of 1 $\ell$, weight of 100 grains and seed yield per 10a appeared high both in used N 14kg, 40% as the basic dressing, 30% as the 1st top dressing, 20% as the 2nd top dressing and 10% as the 3rd top dressing, and in used N 18kg as the total amount of basic dressing. Dispersion analysis showed the difference of significant level according to the interactions, among fertilizer application levels, among fertilizational methods, and between fertilizer application and fertilizational method.

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Effects of Cattle Manure Application on the Soil Properties , Yield Performance and Quality of Silage Corn Cultivated on Paddy land (전전환 논에서 우분시용이 토양화학성 및 Silage 옥수수의 수량과 품질에 미치는 영향)

  • 진현주;양종성;김정갑;정의수
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.16 no.1
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    • pp.81-86
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    • 1996
  • Silage wm(cv, Gwanganok) was cultivated during 1991-1994 on paddy land as a rotational cropping system of rice, to evaluate the effect of cattle manure application on the soil characteristics, yield performance and quality of com plant. The treatments used in this study were non-fertilizer, NPK standard in chemical fertilizer(N:$P_2O_5$ : $K_2O$= 200 : 150 : 150 kg/ha), cattle manure 20.40, 60 and 80 ton/ha Application of cattle manure improved soil pH, organic matter, available phosphate and exchangeable cations in the soils. During the experiment, soil pH was improved from 4.7 in the chemical fertilizer application(control) to 5.4-5.6 in the application of cattle manure, and available $P_2O_5$ wntent was increased from 72.2 ppm(contro1) to 340.2 ppm(cattle manure 80 ton/ha). Application of cattle manure increased plant growth, plant height and stalk diameter, and silage yields. Dry matter yields were produced 15.88 ton(chemical fertilizer), 20.11 ton(cattle manure 40 ton) and 21.22 ton/ha(cattle manure 80 ton/ha). However, no signicant yield differences were observed between cattle manure 40, 60 and 80 tonlha Productions of total digestible nutrients(TDN) and net energy for lactation(NEL) were also increased under cattle manure application. From the abobe results, the proper application amount of cattle manure was 40 tonha in this experiment.

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The effect of application time of fertilizer nitrogen on its uptake rate and distribution in rice plant (질소(窒素) 시용시기별(施用時期別) 질소흡수율(窒素吸收率)과 수도체내(水稻體內)의 분포(分布)에 관한 연구(硏究))

  • Shim, Sang Chil;Kim, Tai Soon;Song, Ki Joon
    • Korean Journal of Soil Science and Fertilizer
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    • v.7 no.2
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    • pp.113-118
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    • 1974
  • A study was carried out to investigate the effect of application time of fertilizer nitrogen on its rate of uptake and its distribution in rice plant. The rate of applied fertilizer was 100kg/ha, as a single application at transplanting time and four equal split applications of 25kg/ha was applied at transplanting time, 3 weeks after transplanting, 1 week before the primodial initiation stage of growth and at the flag leaf stage of growth, respectively. The ammonium sulfate was labelled with N-15, as 1% atom excess for single application and 4.4% atom excess for split applications. The results are sumarized as follows: 1. The effect of split application of nitrogen on yield was observed. The yield of brown rice of the single application at transplanting time was 3.1 ton/ha and the split application was 3.4 ton/ha. However, without nitrogen the yield was reduced to 1.9 ton/ha. 2. The number of grains per panicle and 1000 grains weight were increased as split application of nitrogen, but for the number of panicles per hill and maturing rate, the single application of nitrogen revealed favorable results. 3. The rate of uptake of applied fertilizer nitrogen showed a tendency that the efficiency of fertilizer nitrogen increased by top dressing. The rate of uptake of applied nitrogen as basal application, first top dressing, second top dressing and third top dressing was 28%, 33% 51% and 63%, respectively. 4. After shooting stage of the growth, nitrogen in straws transfered to grains. The nitrogen applied at flag leaf stage was absorbed by root and easily accumulated in grains rather than straw.

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Improvement of Nitrogen Efficiency by N Application at Early Tillering Stage in Direct-Seeded Rice

  • Seo Jun-Han;Lee Ho-Jin;Lee Seung-Hun
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.50 no.1
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    • pp.16-21
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    • 2005
  • This study was conducted to establish the elaborate nitrogen fertilization method to enhance N use efficiency in direct-seeded rice on flooded paddy. The nitrogen uptake by rice plants was insignificant until 25 days after seeding, and increased gradually thereafter. During this early growth stage, rice plants absorbed only the $4\%$ of basal applied N, while the $45\%$ of N fertilizer remained in the paddy soil. The absorption of basal N by rice plants was almost completed at 46 days after application. Nitrogen top-dressed at 5-leaf stage was well matched to crop nutrient demand, so it could be absorbed so actively in 8days after application. As a result, we could cut down the amount of N fertilizer to $36\%$ of the basal N level without significant difference in yield. Plant recoveries of fertilizer $^{15}N$ applied with different application timings were $7.8\%$ for basal, $9.4\%$ for 5-leaf stage, $17.1\%$ for tillering stage, and $23.4\%$ for panicle initiation stage, respectively. When urea was applied with nitrogen fertilization practice based on basal incorporation (BN), plant recovery of $^{15}N$ at harvest was $31.0\%$, which was originated from $13.7\%$ for grain, and $21.3\%$ of the fertilizer $^{15}N$ remained in the soil, and the rest could be uncounted. Plant recovery of fertilizer $^{15}N$ applied with nitrogen fertilization practice based on topdressing at 5-leaf stage (TN), where N rate was reduced by $18\%$ compared with BN, was $35.1\%$ (grain $15.6\%$), and $19.9\%$ of the fertilizer $^{15}N$ remained in the soil, and the rest could be uncounted. TN showed a higher $^{15}N$ recovery than BN because it was to apply N fertilizer at a time to well meet the demand of rice plant direct-seeded on flooded paddy. We concluded that TN would be the nitrogen fertilization method to enhance N use efficiency in direct-seeded rice on flooded paddy.