• Title/Summary/Keyword: soybean soil

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Study on the Standards of Proper Effective Rooting Depth for Upland Crops

  • Zhang, Yongseon;Han, Kyunghwa;Jung, Kangho;Cho, Heerae;Seo, Mijin;Sonn, Yeonkyu
    • Korean Journal of Soil Science and Fertilizer
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    • v.50 no.1
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    • pp.21-30
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    • 2017
  • The study was performed to determine effective soil depth with crop type. Lysimeters, filled with three types of soils (sandy loam, loam and clay loam), were used. Effective soil depths for 25 cm, 50 cm, 75 cm, and 100 cm were considered for each soil. Six crops were investigated for plant height and yield, and rooting depths: Chinese cabbage, maize, lettuce, potato, red pepper, and soybean. Experiment was conducted at the National Institute of Agricultural Sciences in Suwon from 2012 to 2014. Effective rooting depth including 70% of root ranged from 19 cm to 29 cm for Chinese cabbage, from 24 cm to 38 cm for maize, from 17 cm to 24 cm for lettuce, from 27 cm to 32 cm for soybean, and around 50 cm and 30 cm for potato and red pepper. The maximum depth was 60 cm for soybean, 50 cm for Chinese cabbage, lettuce, and potato, and 75 cm for maize and red pepper. Each crop showed high yield in the treatment with soil depth over maximum rooting depth under all soils.

Effect of Pre-cultivation of Cassia tora on Soil Nematode Population and Soybean Growth (결명재배가 토양선충밀도와 콩의 생육에 미치는 영향)

  • Kwang-Ho Kim
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.36 no.3
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    • pp.220-225
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    • 1991
  • Four cropping systems, soybean mono-cropping, Cassia tora mono-cropping, soybean-C. tora companion cropping and soybean-C. tora intercropping, were compared for number of soil nematodes and soybean growth in upland field in 1986. Soybean was cultivated as an after-crop of four different cropping systems from 1987 to 1989, and observations were continued. Soil nematode was not found in C. tora mono-cropping plot from mid growing season of C. tora while many nematodes were found in soybean mono-cropping plot in 1986. A few nematodes were found for 3 years in soybean field after one season cultivation of C. tora in 1986. Number of nematodes was lower in soybean-C. tora companion and inter-cropping plots compared with soybean mono-cropping, and was also lower for 3 years in soybean field after one season companion and inter-cropping culture in 1986 compared with continuous soybean cultivation plot. No root nodule was formed on C. tora root, but number of root nodules of soybean plant grown in C. tora companion and inter-cropping plots was not different with soybean mono-cropping plot. Number of pods. number of seeds and seed weight per soybean plant grown in C. tora companion and inter-cropping plots were almost same with soybean mono-cropping plot. When soybean was cultivated in field after one season C. tora mono, companion or inter-cropping, pod and seed number, and seed weight per plant were higher than continuous soybean cultivation field.

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Effects of Ridge Height in Dry Paddy Field on Growth and Seed Yield of Soybean Cultivars

  • Seong, Rak-Chun;Park, Sei-Joon;Shim, Sang-In
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.45 no.2
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    • pp.88-92
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    • 2000
  • Excessive soil water in paddy field induces growth losses during the vegetative stages of soybean plants. Our objectives were to know growth responses of soybean as affected by the level of ridge heights. A field experiment was conducted at the Research Farm of Korea University near Seoul in 1996. Ten cultivars of soybean (Glycine max (L.) Merrill) were planted at the ridge heights of 10, 30, and 50cm in paddy soil on 27 June. Total dry matter accumulation at the 10cm ridge height was severely decreased until the growth stage of R5 as compared to the ridge heights of 30 and 50cm, and this decrement was mainly due to both reduced leaf and stem dry weights. However, seed dry weight was not significantly decreased at the lower ridge height with the increment of harvest index. Cultivar differences were found on seed dry weight, crop growth rate from R1 to R5, and leaf/stem ratio of R5. From the above results, soybean growth responses to excessive soil water in paddy field were different between seed filling stage and late vegetative to early reproductive growth stages.

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Effect of P Application on Soybean with the Different Soil Moisture Content (토양수분건조(土壤水分條件)에 따른 대두(大豆)에 대한 인산(燐酸)의 시비효과(施肥效果))

  • Shin, Cheol-Woo;Yoon, Jung-Hui;Hur, Beom-Lyang;Kim, Jeong-Je
    • Korean Journal of Soil Science and Fertilizer
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    • v.17 no.1
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    • pp.30-34
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    • 1984
  • A pot experiment was conducted to investigate the dry matter weight of soybean plant, fertilization efficiency, and the changes of p uptake with different p application levels in cultivated and uncultivated soils controlling the soil moisture content to 2 levels. 1. The effect of irrigation was higher in cultivated soil than in uncultivated soil, and was higher in larger amount of p application than in small amount of p. 2. Efficiency of phosphate fertilization for soybean growth was higher in cultivated soil compared with uncultivated soil, and increased by irrigation to optimum soil moisture content for crop growth. 3. Adjustment of soil moisture content to optimum level for soybean growth increased the concentration of phosphate in plant and decreased the content of phosphate in soil. Therefore, it was obvious that soybean plant absorbed the high amount of p in the optimum soil moisture level and in large amount of p application.

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Effect of ion Chip and Yellow Soil on Growth and Physicochemical Characteristics of Soybean Sprouts (Ion Chip과 황토 처리가 콩나물의 생육 및 물리화학적 특성에 미치는 영향)

  • Kim In-Suk;Choi Sun-Young;Chung Mi-Ja;Kim Tae-Hoon;Sung Nak-Ju
    • The Korean Journal of Food And Nutrition
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    • v.18 no.4
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    • pp.316-324
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    • 2005
  • The objectives of this study were to examine effect of ion chip and yellow soil on the growth and physicochemical characteristics of soybean sprouts. The weight and length increased rapidly in soybean sprouts cultivated for 4 days and then the increases slowed. Ascorbic acid increased rapidly after day 6 in soybean sprouts cultivated with ionized water (I.W), $1.0\%$ yellow soil in tap water (T.W+l.0) and $1.0\%$ yellow soil in ionized water (I.W+l.0). The detected content of minerals such as Mg, Ca, K and Fe in soybean sprouts was higher than other minerals. Iron content was the highest in soybean sprouts cultivated by I.W+1.0. The detected levels of glutamic acid in soybean sprouts cultivated for 4 days with ionized water was higher than in those grown with tap water. In all soybean sprouts, nucleotides such as UMP, CMP, AMP, Hx and soluble free sugars like sucrose, raffinose, stachylose were detected, and the levels of UMP were found to be the highest among nucleotides and sucrose among free sugars.

Amount of Maximum Compost Application on the Long-term Application with Different Organic Material Sources in Upland Soil (유기물원이 다른 퇴비연용시 퇴비시용 한계량 연구)

  • Kim, Jong-Gu;Jung, Kwang-Yong
    • Korean Journal of Soil Science and Fertilizer
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    • v.33 no.3
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    • pp.182-192
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    • 2000
  • The objective of this study was to determine the effects of various kinds of composts on the amount of maximum composts in upland soils. Field experiments were conducted in the loam and sandy loam soils. Various kinds of composts such as poultry manure compost(PMC), cow manure compost(CMC), human excrement sludge(HES), and food industrial sludge compost(FISC) were applied annually at rates of 0, 40, and $80Mg\;ha^{-1}$ to soils grown with soybean and maize plants for 4 years during 1994 to 1997. The results of this study were as follows : Maize dry matter production was related linearly positively with application amount of compost, but soybean dry matter production was showed an apex at $60Mg\;ha^{-1}$, maize produced 4.7 times dry matter as compared to soybean. Rate of nitrogen utilization of maize were 21~31% and that of soybean were 8~19%, rate of phosphorous utilization of maize were 5~7% and that of soybean were l~2%. On the basis of biomass maximum application rates of poultry manure compost were $39{\sim}47Mg\;ha^{-1}$ for maize cultivation and $8{\sim}13Mg\;ha^{-1}$ for soybean cultivation. On the other hand those amounts estimated by nitrogen requirement of crops were 39~47 and $8{\sim}13Mg\;ha^{-1}$ for maize and soybean cultivation, respectively. Based on phosphorous requirement of crops those were 29 and $14Mg\;ha^{-1}$ for maize and soybean cultivation, respectively. Considering the upper limit of the base saturation percentage to be 80%, maximum application rates were 63~93 and $49{\sim}69Mg\;ha^{-1}$ in loam and sandy loam soil, respectively.

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Yield Performance and Nutritional Quality of 'Agakong' Soybean Harvested in Drained-Paddy and Upland Fields

  • Eun, Jhong-Ho;Rico, Cyren M.;Kim, Man-Keun;Souvandouane, Souliya;Son, Tae-Kwon;Shin, Dong-Il;Chung, Il-Kyung;Lee, Sang-Chul
    • Korean Journal of Plant Resources
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    • v.20 no.3
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    • pp.258-262
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    • 2007
  • The study was conducted to evaluate the performance of the popular isoflavone-rich soybean 'agakong' in upland and in drained-paddy fields. Analysis revealed no significant variation in terms of plant height, number of seeds per pod, number of nodes, and 100-seed weight between the two cropping system. Number of pods was significantly higher in paddy field(234.2kg 10a$^{-1}$) compared to those harvested in the upland field, which was later manifested on the yield where paddy soybeans obtained 278.1kg 10a$^{-1}$ whereas upland only obtained 179.3kg 10a$^{-1}$. This observed difference in yield was attributed to the observed higher amount of N in the paddy soil (0.907%) as compared to the upland soil (0.458%). In terms of nutritional content, protein and phytic acid contents were the only parameters that showed significant differences while oil, sugar, reducing power and fatty acids were all comparable in paddy and filed condition. Protein content was higher in upland soil (47.4%) than that of the paddy (44.9%) soil. On the opposite, phytic acid was higher in paddy (2.90%) than in upland (1.09%). This study showed that the yield of soybean is generally a factor of soil N, drained-paddy field production of soybean is comparable to upland-filed production with the benefit of increasing phytic acid content while maintaining its nutritional value.

The Effect of Phosphate Fertilizers on Soybean Growth and Lime Application in the Korean Hilly Land Soil (양산개간지 토양에서 인산비종에 따른 대두생육 및 석회시용효과에 관한 연구)

  • Heung-Bae Kim;Jung-Heui Yoon;In-Soo Ryu;Chon-Suh Park
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.19
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    • pp.59-68
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    • 1975
  • A soybean variety KWANG KYO was planted on the hilly land and fertile soil, and concentrated superphosphate and fused phosphate were applied on calcium hydroxide treated soil at level of 2.5%, 5% and 7.5% of phosphate absorbtion coefficient of soil. Application of phosphate fertilizer and lime caused higher grain yield in hilly land soil than fertile soil. The effect of fused phosphate on soybean yield was superior to concentrated superphosphate, and the effect of lime on fused phosphate availability was not significant. When the two phosphate sources were compared at equal $P_2O_5$ basis, fused phosphate required higher amount than concentrated super-phosphate. Negative correlation was obtained between potassium content and Ca + Mg in soybean leaf and in soil respectively.

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Discussion of Cropping Management Factor for Estimating Soil Loss (토양유선량(土壤流先量) 예측(豫測)을 위(爲)한 작부인자(作付因子) 검토(檢討))

  • Jung, Pil Kyun;Ko, Mun-Hwan;Um, Ki-Tae
    • Korean Journal of Soil Science and Fertilizer
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    • v.18 no.1
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    • pp.7-13
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    • 1985
  • The cropping management factor, C, in the Universal Soil Loss Equation (USLE) has been measured on a newly reclaimed Yesan sandy loam of 20% slope under various cropping system. Soil losses measured from lysimeter were 12.9, 5.4, 3.1, and 1.2 ton/10a for clean tilled, corn, barley-soybean, and grass, respectively. The values of C to be utilized in Soil-Loss Equation was obtained as fallows; corn 0.47, upland rice 0.34, barley-soybean 0.18, barley-sweet potato 0.10, grass 0.08, barley-corn 0.34, wheat-soybean 0.25, barley-corn (Soybean) 0.42, barley-corn (sweet potato) 0.37, wheat-sesame 0.20, barley-red pepper 0.18, red pepper 0.32, sesame 0.28, potato-soybean 0.26, respectively. According to the comparisons between the actual soil loss measured by lysimeter and the soil loss predicted by the USLE, the smallest difference of both method came from barley-soybean while the largest came from corn.

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Uptake of the Residues of the Herbicide Bentazon in Soil by Soybean and Radish (토양중(土壤中) 제초제(除草劑) Bentazon 잔류물(殘留物)의 콩과 무우에 의한 흡수(吸收))

  • Lee, Jae-Koo;Cheon, Sam-Yeong;Kyung, Kee-Sung
    • Korean Journal of Environmental Agriculture
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    • v.7 no.1
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    • pp.1-7
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    • 1988
  • In order to clarify how much of the residues of Bentazon could be taken up by crops, soybean and radish were grown for 28 days in soils containing freshly treated $^{14}C-Bentazon$ and non-extractable soil-hound residues of $^{14}C-Bentazon.$ The results obtained are summarized as follows. 1. $^{14}CO_2$ evolution from $^{14}C$-Bentazon during the 6-month pre-incubation in soil was 14.79% relative to the applied radioactivity. 2. Mineralization of ^$^{14}C$-Bentazon in soil to $^{14}CO_2$ during 28 days of crop growing was much higher in the freshly treated soil than in the bound soil, and much higher in radish than in soybean. 3. The amounts of $^{14}C-Bentazon$ and its metabolites absorbed by soybean and radish were 45.41 and 21.48%, respectively, in freshly treated soil, whereas those were 3.92 and 1.23% in bound soil, respectively. The translocation ratios of radioactivity .from the root to the shoot were much higher in radish than in soybean, remarkably. 4. The uptake ratios of the freshly treated $^{14}C-Bentazon$ to the bound $^{14}C-Bentazon$ by soybean and radish were 12 : 1 and 17 : 1, respectively. 5. It was well verified that the presence of crops enhanced the mineralization to $^{14}CO_2$ and the transformation to polar metabolites of Bentazon.

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