• Title/Summary/Keyword: Leaf nutrient

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Cnidoscolus aconitifolius leaf pellet can manipulate rumen fermentation characteristics and nutrient degradability

  • Totakul, Pajaree;Matra, Maharach;Sommai, Sukruthai;Wanapat, Metha
    • Animal Bioscience
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    • v.34 no.10
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    • pp.1607-1615
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    • 2021
  • Objective: Chaya (Cnidoscolus aconitifolius) leaf has been found to be an important source of protein, vitamins, minerals, as well as phytonutrients. The present study aimed to evaluate the effect of Chaya leaf pellet (CHYP) with various level of crude protein (CP) in the concentrate on rumen fermentation characteristics and nutrient degradability in in vitro gas production technique. Methods: In an in vitro rumen fermentation study the dietary treatments were arranged according to a 3×5 factorial arrangement in a completely randomized design, consisting of Factor A: three levels of CP of concentrate mixtures (14%, 16%, and 18% CP, respectively) and Factor B: five levels of CHYP supplementation (at 0%, 2%, 4%, 6%, and 8% of dry matter substrates). Results: The gas production kinetics, fraction (a) and fraction (b) were lower (p<0.05) with an increasing CHYP addition. Additionally, the fraction (a+b) was found to yield a significant interaction (p<0.05) while the fraction (c) was not impacted by CHYP addition. However, in vitro DM degradability was enhanced and interactive (p<0.05), using 16% CP of concentrate with 6% and 8% CHYP, when compared with 18% CP in the non-addition. Additionally, the treatment with higher CP of the concentrate was higher in NH3-N concentration (p<0.001) and by CHYP supplementation group (p<0.05). Nevertheless, protozoal counts in the rumen were remarkably decreased (p<0.05) with increasing level of CHYP supplementation. Furthermore, rumen C2 concentration was lower (p<0.05) in the treatments with CHYP supplementation, while C3 was significantly increased and interactive (p<0.05) between levels of CP and CHYP supplementation especially at 8% CHYP supplementation. Conclusion: Based on this study, the results revealed CHYP as a promising feed supplement to enhance rumen fermentation and to mitigate methane production. However, in vivo feeding experiments should be subsequently conducted to elucidate the effect of CHYP supplementation on rumen fermentation, as well as ruminant production efficiency.

Hydroponic Nutrient Solution and Light Quality Influence on Lettuce (Lactuca sativa L.) Growth from the Artificial Light Type of Plant Factory System (인공광 식물공장에서 수경배양액 및 광질 조절이 상추 실생묘 생장에 미치는 영향)

  • Heo, Jeong-Wook;Park, Kyeong-Hun;Hong, Seung-Gil;Lee, Jae-Su;Baek, Jeong-Hyun
    • Korean Journal of Environmental Agriculture
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    • v.38 no.4
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    • pp.225-236
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    • 2019
  • BACKGROUND: Hydroponics is one of the methods for evaluating plant production using the inorganic nutrient solutions, which is applied under the artificial light conditions of plant factory system. However, the application of the conventional inorganic nutrients for hydroponics caused several environmental problems: waste from culture mediums and high nitrate concentration in plants. Organic nutrients are generally irrigated as a supplementary fertilizer for plant growth promotion under field or greenhouse conditions. Hydroponic culture using organic nutrients derived from the agricultural by-products such as dumped stems, leaves or immature fruits is rarely considered in plant factory system. Effect of organic or conventional inorganic nutrient solutions on the growth and nutrient absorption pattern of green and red leaf lettuces was investigated in this experiment under fluorescent lamps (FL) and mixture Light-Emitting Diodes (LEDs). METHODS AND RESULTS: Single solution of tomatoes (TJ) and kales (K) deriving from agricultural by-products including leaves or stems and its mixed solution (mixture ration 1:1) with conventional inorganic Yamazaki (Y) were supplied for hydroponics under the plant factory system. The Yamazaki solution was considered as a control. 'Jeockchima' and 'Cheongchima' lettuce seedlings (Lactuca sativa L.) were used as plant materials. The seedlings which developed 2~3 true leaves were grown under the light qualities of FL and mixed LED lights of blue plus red plus white of 1:2:1 mixture in energy ratio for 35 days. Light intensity of the light sources was controlled at 180 μmol/㎡/s on the culture bed. The single and mixture nutrient solutions of organic and/or inorganic components which controlled at 1.5 dS/m EC and 5.8 pH were regularly irrigated by the deep flow technique (DFT) system on the culture gutters. Number of unfolded leaves of the seedlings grown under the single or mixed nutrient solutions were significantly increased compared to the conventional Y treatment. Leaf extension of 'Jeockchima' under the mixture LED radiation condition was not affected by Y and YK or YTJ mixture treatments. SPAD value in 'Jeockchima' leaves exposed by FL under the YK mixture medium was approximately 45 % higher than under conventional Y treatment. Otherwise, the maximum SPAD value in the leaves of 'Cheongchima' seedlings was shown in YK treatment under the mixture LED lights. NO3-N contents in Y treatment treated with inorganic nutrient at the end of the experiment were up to 75% declined rather than increased over 60 % in the K and TJ organic treatment. CONCLUSION: Growth of the seedlings was affected by the mixture treatments of the organic and inorganic solutions, although similar or lower dry weight was recorded than in the inorganic treatment Y under the plant factory system. Treatment Y containing the highest NO3-N content among the considered nutrients influenced growth increment of the seedlings comparing to the other nutrients. However effect of the higher NO3-N content in the seedling growth was different according to the light qualities considered in the experiment as shown in leaf expansion, pigmentation or dry weight promotion under the single or mixed nutrients.

Litterfall and Nutrient Input via Litterfall in Pinus densiflora Forest at Mt. Worak National Park (월악산 소나무림의 낙엽생산과 낙엽을 통한 영양염류 이입량)

  • NamGung, Jeong;Mun, Hyeong-Tae
    • Korean Journal of Environmental Biology
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    • v.27 no.3
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    • pp.261-265
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    • 2009
  • Litter production, nutrient concentration of each component of litterfall and amount of nutrients input to forest floor via litterfall were investigated for three years from May 2005 through April 2008 in Pinus densiflora forest at Mt. Worak National Park. Amount of litterfall in 2005, 2006, 2007 were 3.070, 3.066, 3.099 ton $ha^{-1}yr^{-1}$, respectively. Average amount of litterfall for three years was $3.078{\pm}0.018\;ton\;ha^{-1}yr^{-1}$. Average percentage of leaf litter, branch and bark, reproductive organ and the miscellaneous for three years were 61.9, 10.4, 5.2, 22.5%, respectively. Average amount of N, P, K, Ca and Mg returned to forest floor via litterfall for three years in this P. densiflora forest were 18.014, 0.878, 4.240, 7.349 and 2.172 kg $ha^{-1}yr^{-1}$, respectively.

Effects of pH Level and Electrical Conductivity on Growth, Nutrient Absorption, Transpiration and $CO_2$ assimilation of Leaf Lettuce in Hydroponics (잎상추 수경재배에서 근권 pH와 EC가 무기이온흡수, 광합성, 증산량 및 생육에 미치는 영향)

  • 박미희;심미영;이용범
    • Journal of Bio-Environment Control
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    • v.8 no.2
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    • pp.115-124
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    • 1999
  • This study was conducted to determine the optimum root zone environment condition and proper nutrient management system for lettuce in hydroponics. For the root zone environment condition, several level of pH and electrical conductivity (EC) were treated respectively. Though all the level of pH 4 to pH 8, except pH 3, performed better growth without any visible physiological disorder, the optimum pH of the nutrient solution for lettuce production was pH 5.5 to 6.0. The optimum ionic strength of the solution was EC 1.2 to 1.6 mS $cm^{-1}$ / because higher nutrient level caused tip burn symptom by calcium deficiency. Considering the above results, it is concluded that lettuce can be efficiently mass-produced through the optimum root zone environment.

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Effect of Immediate Setting with Lateral Branch Cuttings on Growth and Yield of Cherry Tomatoes in Soilless Culture (삽수 직접정식이 방울토마토 양액재배에 있어서 생육 및 수량에 미치는 영향)

  • 장전익;박용봉;지성한;양희준
    • Journal of Bio-Environment Control
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    • v.5 no.1
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    • pp.79-88
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    • 1996
  • The purpose of this research was to develop labor-saving cultural practices of cherry tomatoes in the deep flow technique (DFT) by omitting the process of raising seedling. Three cultivars, ‘Pepe’, ‘Pico’ and ‘Koko’ were propagated by the immediate setting of cuttings(lateral shoots) to the culture bed and by setting seedlings obtained by raising cuttings for 15 days, and grown in the standard and half - strength solution. 1. The immediate setting resulted in higher plants, larger number of leaves and larger leaf area during the early growth stage. And the harvest time was hastened by six days in the direct setting than that in the seedling setting. It was also earlier in ‘Pepe’, but not significant by different between two strengths of nutrient solution. 2. The average fruit weight was affected only by cultivars, but not by the type of cutting and the strength of nutrient solution. The highest yields were obtained from the immediate setting of ‘Pepe’ in other cultivars grown in the nutrient solution of standard strength. 3. Brix degree of treated cherry tomato juice was higher in ‘Pepe’ tomato cultured by immediate setting than others.

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Effect of Temperture and Light on Growth of Leaf Lettuce(Lactuca sativa L. var. crispa cv. Cheongchima) in Hydroponics (배양액 온도 및 차광정도가 청치마 상추의 생육에 미치는 영향)

  • 남상용;권용웅
    • Journal of Bio-Environment Control
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    • v.6 no.4
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    • pp.270-276
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    • 1997
  • This experiment was conducted to develop a practical method to growth in hydroponics conditions. For this purpose, leaf lettuce (Lactuca sativa L., cv. 'Cheongchima') was cultivated under different temperature and light conditions in experimental fields of Sahmyook university from March, 1991 to May, 1996. The visual quality score(VQS), a quantitative parameter to evaluate harvested leaf lettuce quality. The leaf lettuce cultivated at $25^{\circ}C$ solution temperature showed the highest fresh weight pe, plant (59.7g/plant), but lowest visual quality score (5.2), while leaf lettuce cultivated at 15$^{\circ}C$ solution temperature showed lower fresh weight per plant (25.2g/plant) but highest visual quality score (7.2). In general, growth of leaf lettuce was retarded by low solution temperature, but quality was higher than those of other solution temperature. Different day/night temperature of nutrient solutions 20/2$0^{\circ}C$ and 25/2$0^{\circ}C$ was highest in yield, but leaf type was grow longer, and visual quality are inferior to low temperature. Yield was decreased as 10 and 25% at 60 and 80% shading treatment, respectively. Chlorophyll content was decreased by shading. but plant height and root length were increased of leaf lettuce growth with hydroponics.

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Response of Growth and photosynthesis to NaCl stress in Soybean(Glysine max L.) Seedlings (NaCl stress에 의한 몇가지 콩 품종들의 생육과 광합성 반응)

  • Cho, Jin-Woong;Kim, Choong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.19 no.2
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    • pp.166-170
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    • 2000
  • This study was conducted in to elucidate the changes of growth characteristics and photosynthesis in three soybean (Glycine max L. cv. Danwonkong, Hwangkeumkong and Kwangankong) 30 day old seedlings to 100mM NaCl concentration containing 1/2 Hoagland's nutrient solution in sand culture. The main stem height and number of main stem node were decreased. thus, leaf area and dry matter were decreased with 100mM NaCl. Growth reduction was less little in Hwangkeumkong than other cultivars. The stem growth rate was affected less than other parts as root or leaf, by NaCl treatment. The specific leaf area (SLA), shoot : root ratio and leaf : root ratio decreased with NaCl solution except for those of Hwangkeumkong. There is no general tendency in leaf thickness by leaf position of three cultivars. The chlorophyll content (SPAD) of the primary and 2nd leaf slightly decreased under NaCl solution but rapidly increased in non-NaCl solution at 15 days after treatments. The photosynthesis, stomatal conductance and transpiration of 2nd leaf positions reduced by NaCl and there were a sigificant correlation between photosynthesis and stomatal conductance or transpiration.

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Studies on Uptake by Crops of Lead and Reduction of It's Damage -I. Effects of the Lead Uptake and Yield of the Rice Plant Related to Concentration of Lead in Sandy Liquid Culture (농작물(農作物)에 대(對)한 납(pb)의 흡수(吸收) 및 피해경감(被害輕減)에 관(關)한 연구(硏究) -I. 사경용액중(砂耕溶液中) 납(pb)농도(濃度)가 수도체흡수(水稻體吸收) 및 수량(收量)에 미치는 영향(影響))

  • Kim, Bok-Young;Kim, Kyu-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.19 no.2
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    • pp.147-151
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    • 1986
  • A study was carried out to investigate yield, yield components, and change of chemical components in rice plants grown under different concentration of lead compound in nutrient solution of sandy culture. The results obtained are as follows. 1. Increasing lead concentration in culture solutions, pb content in the plant was increased and crop yields were decreased. 2. The critical pb concentration at which yield was declined, was 13.6 ppm. 3. As adding higher concentration of lead in nutrient solutions, concentration of lead in rice plant was significantly increased on leaf blade, and brown rice in pb. 4. Yield loss was closely related to pb content in leaf blade.

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Weight Loss and Nutrient Dynamics during Leaf Litter Decomposition of Quercus mongolica in Mt. Worak National Park

  • Mun, Hyeong-Tae
    • Journal of Ecology and Environment
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    • v.32 no.2
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    • pp.123-127
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    • 2009
  • Weight loss and nutrient dynamics of Quercus mongolica leaf litter during decomposition were investigated from December 2005 through August 2008 in Mt. Worak National Park as a part of National Long-Term Ecological Research Program in Korea. The decay constant (k) of Q. mongolica litter was 0.26. After 33 months decomposition, remaining weight of Q. mongolica litter was 49.3$\pm$4.4%. Initial C/N and C/P ratios of Q. mongolica litter were 43.3 and 2,032, respectively. C/N ratio in decomposing litter decreased rapidly from the beginning to nine months decomposition, and then showed more or less constant. C/P ratio increased to 2,407 after three months decomposition, and then decreased steadily thereafter. N and P concentration increased significantly during decomposition. N immobilization occurred from the beginning through 18 months decomposition, and mineralization occurred afterwards in decomposing litter. P immobilized significantly from fifteen months during decomposition. K concentration decreased rapidly from the beginning to six months decomposition. However it showed an increasing pattern during later stage of decomposition. Remaining K decreased rapidly during early stage of decomposition. There was no net K immobilization. Ca concentration increased from the beginning to twelve months decomposition, and then decreased rapidly till twenty one months elapsed. However, it increased again thereafter. Ca mineralization occurred from fifteen months. Mg concentration increased during decomposition. There was no Mg immobilization during litter decomposition. After 33 months decomposition, remaining N, P, K, Ca and Mg in Q. mongolica litter were 79.2, 110.9, 36.2, 52.7 and 74.4%, respectively.

Nutritional Effect of Carbonized Tobacco Leaf Debris Neutralized by Nitric and Phosphoric Acid on Nursery Seedlings (연초가공부산물(煙草加工副産物)의 탄화정도(炭化程度)에 따른 질산중화능력(窒酸中和能力)과 비효(肥效))

  • Lee, Yun-Hwan;Hong, Soon-Dal
    • Korean Journal of Soil Science and Fertilizer
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    • v.18 no.1
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    • pp.89-93
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    • 1985
  • In order to develop the nutrient material for growing plants, tobacco leaf debris (T.L.D) that is a residual product of cigarette processing was carbonated at about 50% of its weight and neutralized its alkalinity by nitric and phosphoric acid. This material ($T.L.D+3N-HNO_3+1N-H_3PO_4$ (10:1:1), as a consequence, contained 4.1% of nitrogen, 2.1% of phosphte, and 6.6% of potassium in value of about pH 7. It was very effective on seedling growth to apply 1 Kg of nutrient material per 110 1 of bed soil as basic dressing because of containing not only quick-acting nitrate but also slow-releasing organo-nitrogen and sufficient potassium.

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