• Title/Summary/Keyword: Leaf N content

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Physiological Response of Rice Plant under Environmental Stress -I. Nutritional disorder under soil reduction in paddy fields (환경장애(環境障碍)에 대(對)한 수도(水稻)의 생리반응(生理反應) -I. 농가포장(農家圃場)의 토양환원(土壤還元)에 의(依)한 영향장해(營養障害))

  • Park, Hoon;Mok, Sung Kyun;Kwon, Hang Gwang;Park, Chon Suh
    • Korean Journal of Soil Science and Fertilizer
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    • v.6 no.2
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    • pp.115-127
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    • 1973
  • Leaf discoloration of IR667 lines (tropical) and leading locals (temperate) in fields was classified according to the probable causes and nutritional disorder due to soil reduction in 1972 was investigated. 1. The causes of leaf discoloration in IR667 were low air temperature, soil reduction, seed born, insect bite, nitrogen depression, overdose pesticide, strong wind, early senescence and unknown one. 2. Leaf discoloration due to soil reduction which has been called Sageumbyeong by famers, was caused by the heavy application of $Ca(OH)_2$, compost and poor drainage followed by Zn and K deficiency and Fe toxicity. 3. About 30 days after transplanting deficiency concentration of K and Zn in leaf blade appears to be less than 2.0% and 20ppm respectively, and greater than 200ppm, 500ppm, and 1.0% respectively for toxicity or excess of Fe, Mn and Ca. and in the shoot 2.4% for K, 30ppm for Zn and 800ppm for Fe. The value of K/Ca should be greaterthan 2.0 for health. 4. When plants were damaged by soil reduction the contents of N, P, Ca, Mg, Fe, Mn, Na in shoot were increased and those of K, Zn, Si were decreased. 5. IR667 lines show in shoot higher content of N, P, Ca, Mg, Si, Na, and lower content K, Zn, Fe, Mn and lower root activity than local leading varietles in either healthy or disieased case, indicating IR667 lines are likely more suseptible to soil reduction damage. 6. Normal soil was less than 6.5 of pH and greater than -50 mv of Eh, but pH of problem soil was ranged from 6.7 to 7.4 and Eh from -100 to -190. 7. The root activity (${\alpha}$-naphthylamine oxidation) decreased at early stage of soil redudtion damage, then increased with severity and at the end it decreased again, but IR667 lines showed always lower root activity than local ones.

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Physicochemical changes and plant growth effect on composting of spent mushroom substrates (버섯수확후배지의 퇴비화에 따른 물리 화학적 변화 및 식물 생육 효과)

  • Song, Ji-Min;Phong, Nguyen Hong;Kim, Ja-Yoon;Kang, Dae-Sun;Yu, Jeong-Yeon;Kang, Hee-Wan
    • Journal of Mushroom
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    • v.18 no.3
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    • pp.268-273
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    • 2020
  • This study aimed to assess the feasibility of composting spent mushroom substrate (SMS) materials of Lentinula edodes (Le), Hericium erinaceus (He), and Pleurotus ostreatus (Po). The different SMSs were composted for 7 to 10 days at high temperatures over 50℃; the composting procedure was completed in 30 days. A maturity test was conducted using the radish seed germination index and CoMMe-100. The composted SMS (CSMS) from Le and He showed gemination indices of 130% and 81%, respectively, that satisfied the criteria of maturity standard (gemination index over 70%) and the CoMMe-100 analysis. The physicochemical changes of CSMSs included an increase in the pH range from 4-5 to 6-7, slight reduction in the EC to 1-1.4 dS/m, and an organic content of 36.9% in LeCSMS. In LeCSMS, the contents of N, P, and K were 1.2%, 2.3%, and 0.77%, respectively, and heavy metals were detected below the standard value in all CSMSs; the Ca and Mg contents in the CSMSs were increased from 30% to 60% when compared to those in the SMSs. The C/N ratio (from 26-33) in LeSMS and HeSMS decreased to 15.3-15.9 in CSMSs. The growth effect of LeCSMS treatment on pepper seedlings was 60% higher than that in the control groups, one of which was treated with commercial organic compost; the former showed a superior growth effect on the leaf width, leaf length, and leaf number compared to other control groups. In conclusion, LeCSMS and HeCSMS could be utilized as compost resources capable of efficient soil amendment and plant growth promotion.

Effect of Submergence and Air Exposure of the Shoot on Growth, Nutrient Uptake and Photosynthesis in Monochoria vaginalis Presl. (물달개비 경엽(莖葉)의 침수여부(沈水與否)에 따른 생장(生長), 양분흡수(養分吸收) 및 광합성(光合成) 비교(比較))

  • Soh, C.H.;Yang, K.S.;Kwon, Y.W.
    • Korean Journal of Weed Science
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    • v.16 no.1
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    • pp.14-20
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    • 1996
  • Growth, nutrient uptake and photosynthesis as affected by submersion of shoot in pickerel weed (Monochoria vaginalis Presl.) were determined. The shoots of pickerel weeds in hydroponic culture were subjected to the submerged or emerged condition at 3- or 5-leaf stage for 8 or 10 days. Under submerged condition, growth in plant height was enhanced, but leaf number, leaf area, fresh and dry weight were reduced compared to those under the emerged condition. Similar responses in growth to submergence were obtained with the pickerel weeds rooted in the soil. Under submergence, chlorophyll content increased during the first 2 days, but thereafter remarkably decreased at 3-leaf stage and after the first 4 days at 5-leaf stage. Compared to the emerged condition, uptakes of $NH_4\;^+$-N, $NO_3\;^-$-N, $P_2O_5$ and $K^+$ were reduced, but uptakes of $Ca^{++}$ and $Mg^{++}$ increased under the submerged condition. Photosynthetic rate of shoot under water, measured by $CO_2$electrode, showed the maximum by 210 ${\mu}$moles $HCO_3\;^-$/g F.W. at the 8th day after submergence(DAS) at 3-leaf stage and 320 ${\mu}$moles $HCO_3\;^-$/g F. W. at 6 DAS at 5-leaf stage. These results indicate that pickerel weeds grow much better when the shoot is air-exposed and are less tolerable to submergence at 3 leaf-stage than at 5-leaf stage.

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Effect of Waste Nutrient Solution and Fertigation Nutrient Solution on the Growth and Qualities of Tomato Grown by Fertigation (관비재배시 토마토 생육과 품질에 미치는 폐양액과 기존 비료의 효과)

  • Zhang, Cheng Hao;Xu, Zhihao;Kang, Ho-Min;Kim, Il-Seop
    • Horticultural Science & Technology
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    • v.28 no.4
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    • pp.574-579
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    • 2010
  • Waste nutrient solution (WNS) that was the drained nutrient solution of Horticultural Research Institute of Japan for culture tomato in perlite hydroponics showed $1.9-2.4dS{\cdot}m^{-1}$ of EC and 5.7-7.1 pH from April to July. Although ${NH_4}^+-N$ concentration of WNS decreased remarkably, the other nutrients did not change significantly, as compared with supplied solution. There were no significant differences in plant height, stem diameter, and the other growth characteristics of tomato plants grown by 2 fertigation nutrient solutions; BHF (Bountiful Harvest Fertilizer, 10% of N, 13% of $PO_4$, 13% of K, 0.05% of B, 0.05% of Zn, and 0.0023% of Cu that made in Korea) and Megasol (11% of N, 8% of $PO_4$, 34% of K, 0.032% of Mn, 0.002% of B, 0.048% of Fe, 0.0122% of Zn, and 0.0023% of Cu that made in Belgium.); however, the chlorophyll content of tomato leaf was highest in WNS. The fresh and dry weight of tomato plants were higher in 3 fertigation treatments than irrigation of tap water, while there were no significant differences in fresh and dry weight among the 3 fertigation treatments. The mineral content of tomato leaf also did not show any differences among the 3 fertigation treatments and any regular tendency in all minerals. Total yield, fruit weight and fruit numbers of tomato were higher in WNS, followed by Megasol, BHF and control, although there were not any difference among the 3 fertigation nutrient solution treatments. BER(blossom-end rot)of tomato fruits decreased in fertigation treatments, especially, fruits grown in WNS and BHF showed lower BER. However, the transpiration rate of leaf was higher in control, followed by BHF, WNS and Megasol, The fruit size and soluble solids content was higher in 3 fertigation nutrient treatments than control. These results suggest that WNS can be used for fertigation solution in tomato because yield and quality of tomato fruit grown in WNS fertigation treatment were similar to those in 2 fertigation nutrient solutions treatments(BHF, Megasol).

Effects of Water Soluble Potassium Silicate by Soil Drenching Application on Watermelon (Citrullus lanatus var. lanatus) (시설수박에 대한 수용성 규산칼륨 토양관주 효과)

  • Kim, Young-Sang;Kang, Hyo-Jung;Kim, Tae-Il;Jeong, Taek-Gu;Han, Jong-Woo;Kim, Ik-Jei;Nam, Sang-Young;Kim, Ki-In
    • Journal of Bio-Environment Control
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    • v.24 no.3
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    • pp.235-242
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    • 2015
  • The objective of this study was to determine the effects of soluble potassium silicate by soil drenching application on watermelon growth, yield, and nutrient uptake. The potassium silicate rates were control (No potassium silicate), 1.63mM, 3.25mM, 6.50mM. The potassium silicate were treated 6 times (twice before fruit forming and 4 times after fruit forming per 7 day. Soil chemical properties, such as soil pH, EC, available phosphorus and silicate, exchangeable K, nitrate-N levels were increased after potassium silicate treatment, while the concentrations of soil organic matter, exchangeable Ca and Mg were similar to control. The growth characteristics of watermelon, such as stem diameter, fresh and dry weight of watermelon at harvest were thicker and heavier for increased potassium silicate treatment than the control, while number of node, and plant length were same for all treatments. With increased potassium silicate treatment, nutrient concentrations, such as P and K in the watermelon leaf at harvest were increased, N concentration in the leaf was decreased, and Ca and Mg concentrations in the leaf were same. Chlorophyll content was increased with increased potassium silicate application. The occurrence of powdery mildew was lower for the potassium silicate treatments than the control. Fresh watermelon weight for the potassium silicate treatments was 0.1 to 0.5kg per watermelon heavier than the control, sugar content was 0.5 to $0.6^{\circ}Brix$ higher than control, and merchantable watermelon was 2 to 4% increased compared to the control. These results suggest that potassium silicate application by soil drenching method in the greenhouse can improve watermelon nutrient uptake, merchantable watermelon and suppress the occurrence of powdery mildew.

Xanthine and Aldehyde Oxidase Inhibitory Activities, and Antihyperuricemic Effects of Fermented Smilax china L. Leaf Extracts and Fractions (발효 청미래덩굴잎 용매 추출물 및 분획물의 xanthine 및 aldehyde oxidase 저해활성과 항고요산혈증 효과)

  • Lee, Sang-Il;Lee, Ye-Kyung;Kim, Soon-Dong;Cheng, Jinhua;Yang, Seung Hwan;Suh, Joo-Won
    • Journal of Applied Biological Chemistry
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    • v.57 no.1
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    • pp.53-59
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    • 2014
  • To evaluate the inhibitory effect of xanthine oxidase (XO) and aldehyde oxidase (AO), and antihyperuricemic effect by Aspergillus oryzae fermented Smilax china L. leaf extracts and fractions, we observed extracted yield by each solvent, the content of total polyphenol and total flavonoid (TF), the activities of XO and AO, and serum uric acid level. Extracted yield (g/kg) by 80% ethanol (EtOH) was 13.56, those of n-hexane, dichloromethane (DICM), ethylacetate (EtOAc) and n-butanol fraction (BuOH) were 1.35-3.33. Furthermore, total polyphenol content (mg/g-extract) of EtOAc fraction, BuOH fraction, DICM fraction and EtOH fraction is 478.07-501.26, 259.49-289.02, 165.03-232.27, 134.02-196.54, respectively. Those of fermented EtOAc and DICM fraction was 4.85 and 40.74% higher than that of non-fermented fraction, respectively, while the other fermented fractions were lower than those of non-fermented fractions. And total flavonoid content (mg/g-extract) of EtOAc fraction was higher than those of other fractions. Additionally, TF of fermented EtOAc and BuOH fraction is 10.56 and 60.17% higher, than that of fermented fraction, respectively, although those of the other fermented fractions was lower than that of non-fermented fractions. On the other hand, XO inhibitory activities of all fermented fractions was significantly higher than that of all non-fermented fraction, while those of fermented EtOAc (75.02%) and BuOH fraction (65.59%) was markedly higher than that of non-fermented fraction (39.42 and 5.34%), respectively. In addition, AO inhibitory activities of DICM and EtOAc fraction was 81.82 and 77.93% higher, respectively, than those of the other fractions, and those of fermented fractions as with XO were significantly higher than that of non-fermented fractions. Meanwhile, serum uric acid level (SU) of hyperuricemic control mice (HC, 6.98 mg/dL) was 1.83 folds higher than that of normal control (NC, 3.82 mg/dL). Furthermore, SU in the group treated with EtOAc fraction decreased in a dose dependent manner compared with the allopurinol control group, although those of fermented fractions were significantly lower than those of non-fermented fractions. This study suggests that fermented Smilax china L. leaf extracts may regulate the XO and AO inhibitory activities and antihyperuricemic effect due to aglycone components from glycoside form flavonoids by fermentation of A. oryzae.

Antioxidant Activities of Bamboo (Sasa Borealis) Leaf Extract according to Extraction Solvent (추출용매에 따른 조릿대 잎 추출물의 항산화활성)

  • Park, Yeon-Ok;Lim, Hyeon-Sook
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.38 no.12
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    • pp.1640-1648
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    • 2009
  • This study was carried out to investigate the antioxidant activity of bamboo (Sasa borealis) leaf extract by measuring electron donating ability, superoxide dismutase (SOD)-like activity, reducing power, and lipid peroxidation inhibitory activity. Two crude extracts by water or 70% EtOH and five fractions of n-hexane, chloroform, ethyl acetate, n-butanol, and aqueous from the crude extract of 70% EtOH were prepared for this study. The crude extracts of water and 70% EtOH yielded 8.5% and 11.4%, respectively and the yields of n-hexane, chloroform, ethyl acetate, n-butanol, and aqueous fractions were 5.1% to 0.6%. Total polyphenol contents of the water and the 70% EtOH crude extracts were not significantly different; however, their total flavonoid contents were significantly greater in the 70% EtOH than in the water crude extract. Total polyphenol contents were the highest in chloroform fraction followed by ethyl acetate and n-butanol fractions and total flavonoid contents were the highest in ethyl acetate fraction followed by chloroform and n-hexane fractions. The two crude extracts as well as the five fractions showed election donating ability, SOD-like ability, reducing power, and lipid peroxidation inhibitory activity. Most of the antioxidant activities of each crude extract or fractions increased proportionally with the concentration. These results indicate that bamboo (Sasa borealis) leaf extracts show antioxidant activities due to its substantial content of polyphenol including flavonoid. Thus, it could be concluded that crude extracts by water or 70% EtOH and the fractions from the 70% EtOH extract, especially chloroform, ethyl acetate and n-butanol, would be useful as natural antioxidant substances.

Melanogenesis-Inhibitory Effects of Ethyl Acetate Fraction from Diospyros lotus L. Leaf Extract (고욤(Diospyros lotus L.)잎 Ethyl Acetate 분획물의 멜라닌형성 억제 효과)

  • Choi, Byung-Min;Jeon, In Hwa;Kim, Sang Jun;Yu, Kang-Yeol;Jang, Seon Il
    • Korean Journal of Pharmacognosy
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    • v.45 no.3
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    • pp.220-226
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    • 2014
  • Diospyros lotus has been cultivated for its edible fruits and leaves which are considered for its medicinal importance. The aim of this study was to evaluate the anti-melanogenesis of ethyl acetate (EA) fractions from D. lotus leaves in B16 cells. The order of the total polyphenol content with regard to the different solvent fractions from D. lotus leaves was EA>butanol>metahanol>chloroform>n-hexane. The major compounds of EA fraction from D. lotus leaves by HPLC analysis were myricitrin and myricetin. Cellular TYR activity and melanin content in response to treatment with 100 mg/mL of EA fraction was inhibited more strongly than group treated with arbutin. Further, EA fraction exhibited significant anti-melanogenesis effects by reducing the levels of microphthalima-associated transcription factor (MITE), inhibiting the synthesis of TYR, tyrosinase-related protein-1 (TRP-1) and TRP-2. Therefore, EA fractions from D. lotus leaves may be a good source of skin-whitening agents in the future development of medicine-based trouble skin therapy.

Effects of Application Rates with Swine Liquid Manure on Rice Yield and Quality in Cheorwon Region (철원지역에서 가축분뇨 발효액비 시용수준이 벼의 수량과 품질에 미치는 영향)

  • Ryo, J.W.;Lee, B.O.
    • Journal of Animal Environmental Science
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    • v.15 no.1
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    • pp.75-84
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    • 2009
  • This study was carried out to determine the effect of swine liquid manure on the rice growth and yield in 2006. Field experiment was conducted under variable application rates; 100%, 120%, 150%, 180% N level of slurry based on 11 kg N 10a recommended amount of nitrogen. The experimental sites were located at Cheorwon in Gangwondo area. The results were summerized as follows; In the plot treated with swine liquid manure of 150% and 180% N levels, the plant height and tillers were higher, and the color of leaf was darker than that of 100% N level of swine liquid manure. Rice yield in the plot applied with 120% N slurry level was increased at 11%, but those of 150%, 180% N-level application plots were reduced 10, 19% compared to 100% N level, respectively. Rice quality of the 100 and 120% application plots of swine liquid manure was significantly better than those of 150 and 180% levels of application plots. Total nitrogen content in rice plant after harvesting was increased with increasing levels of swine liquid manure. The content of K in the soil was accumulated in plot treated with 150%, 180% slurry compared to control plot. The heavy metal contents in soils were not increased treated with swine liquid manure. The density of bacteria was low in the application plot of 180%N of liquid swine manure. The bacteria/fungi ratio was highest in 120% N level of liquid manure treatment.

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Spectral Sensing for Plant Stress Assessment - A Review -

  • Kim, Y.;Reid, J.F.
    • Agricultural and Biosystems Engineering
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    • v.7 no.1
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    • pp.27-41
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    • 2006
  • Assessment of nitrogen and chlorophyll content from crop leaves can help growers adjust N fertilizer rates to meet the demands of the crop. Numerous researchers have presented their studies about spectral signature of plant leaves to characterize the plant features. However, interrelational review and summary were limited and a communication gap exists between the plant science and optical engineering. Understanding the mechanism of leaf interaction to electromagnetic radiation and factors affecting spectrophotometric measurements can enhance the foundation of optical remote sensing technologies. This paper provides extensive review of previous works in optical sensing and explains the basics of plant optics, spectral measurements for plant stress, factors that affect sensitivity to spectral analysis, and applications that deploy optical remote sensing technologies.

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