• Title/Summary/Keyword: Hoagland solution

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Chitosan Stimulates Calcium Uptake and Enhances the Capability of Chinese Cabbage Plant to Resist Soft Rot Disease Caused by Pectobacterium carotovorum ssp. carotovorum

  • Jang, Eun-Jung;Gu, Eun-Hye;Hwang, Byoung-Ho;Lee, Chan;Kim, Jong-Kee
    • Horticultural Science & Technology
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    • v.30 no.2
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    • pp.137-143
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    • 2012
  • Chinese cabbage plant was grown hydroponically for 4 weeks in order to examine the temporal relationship of calcium concentration of the nutrient solution with calcium content in the leaf tissue and susceptibility of the tissue to soft rot disease by $Pectobacterium$ $carotovorum$ ssp. $carotovorum$ (Pcc). Calcium concentration from 0.5 to 32.0 mM was maintained for 1 week using Hoagland & Arnon solution. The calcium content of the leaf was proportionally increased to the concentration of the nutrient in the solution (r = 0.912). In contrast, the severity of soft rot symptom in the young leaves was inversely related with the amount of calcium supplied to the nutrient solution (r = 0.899). Water-soluble chitosan, prepared by hollow fiber filtration (> 100 kDa) was applied into the nutrient solution from 0.0 to 5,000 ppm. The chitosan of 10 ppm was the most effective to promote calcium uptake of the leaf, showing 155% of the control. The same chitosan solution prohibited most soft rot development of the leaf by Pcc, exhibiting only 53% of the control. Among different molecular weight fractions, chitosan fraction obtained from 30-100 kDa molecular weight cut-off promoted calcium uptake the most up to 163% of the control, and reduced the development of soft rot disease recording merely 36% of the control of the leaf tissue. The results obtained in the present study suggest that large scale production of water-soluble chitosan with an optimum molecular weight and its commercial application to Chinese cabbage production will be important to improve yield and quality of the crop.

Physiological Response of Barley to Water Stress and Salt Stress at Seedling Stage (보리 유묘기의 한해와 염해반응)

  • 최원열;박종환
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.42 no.6
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    • pp.693-698
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    • 1997
  • Drought resistance and salt resistance of seedlings were compared with the polyethylene glycol(P.E.G) and NaCl solutions of the same osmotic potential($\Psi_\pi$=-10 bar). Plant height, seedling dry weight, chlorophyll content and leaf water potential decreased while the free proline content increased more in the P.E.G. than in the NaCl solution. Free amino acids increased 2.6 times in the P.E.G. solution and 3.6 times in the NaCl solution more than in the untreated(Hoagland's solution). Free proline occupied 66% and 61% of the content of total amino acids under water stress and salt stress, respectively. Besides free proline, phenylalanine in the P.E.G. solution and phenylalanine, alanine and asparagine in the NaCl solution increased distinctly. In short, it was shown that water and salt stress responses in seedling stage were relatively similar.

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Studies on the Modeling of Controlled Environment in Leaf Vegetable Crops (엽채류의 환경제어 모델연구 III. 배지와 양액 종류에 따른 식물의 생육변화)

  • 박권우;신영주;원재희;이용범
    • Journal of Bio-Environment Control
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    • v.2 no.1
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    • pp.9-15
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    • 1993
  • Chinese white cabbage, Chinese flat cabbage, lettuce, garland chrysanthemum, and green perilla were grown in nutrient solution culture to investigate the effects of various media and nutrient solutions. The culture media were sand, mixed substrate(peatmoss : sand= 1 : 1), and non-media(deep-flow culture). The nutrient solutions were Cooper's, Hoagland's, and Yamazaki's solution. Plants were grown under different treatments for three weeks. Generally, the growth was greatest in non-media culture and followed mixed substrate culture, and poorest in sand culture. In non-media culture, the growth of Chinese white cabbage, Chinese flat cabbage, lettuce, and green perilla was good in Yamazaki's solution. And regardless of nutrient solution, garland chrysanthemum was good in non-media culture. Relative chlorophyll was not different among the treatments.

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The Effects of Abscisic Acid (ABA) on $Cd^{2+}$-induced Physiological Responses in Commelina communis L. (Abscisic acid가 $Cd^{2+}$에 의한 닭의장풀이 생리적 반응에 미치는 영향)

  • Lee Joon Sang
    • Korean Journal of Environmental Biology
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    • v.23 no.1
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    • pp.47-51
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    • 2005
  • Three-weeks old Commelina communis was transferred to Hoagland solution (Control, 100 μM Cd/sup 2+/, 100 μM Cd/sup 2+/ + 100 μM ABA, 100 μM Cd/sup 2+/+50 mM KCl) and grown for a week in the solution and then a number of physiological activities were investigated. In cases of Cd/sup 2+/ and Cd/sup 2+/ + ABA treatments, the growth of the plants was inhibited to 71 % and 81 %, respectively, when compared with the control, but there were no significant difference of plant growth between Cd/sup 2+/ and Cd/sup 2+/ + KCl- treated plants. In the treatments of Cd/sup 2+/, Cd/sup 2+/ + ABA and Cd/sup 2+/ + KCl total chlorophyll contents were reduced to 32%, 41% and 29%, respectively. In chlorophyll fluorescence experiments, Fv/Fm ratios were also reduced to 14∼20% and about 23%, respectively, according to the light intensity by Cd/sup 2+/ and Cd/sup 2+/+ABA-treated plants. Water stresses were increased by the treatment of Cd/sup 2+/, Cd/sup 2+/ + ABA and Cd/sup 2+/ + KCI. In Cd/sup 2+/ accumulation experiments Cd/sup 2+/ transport into the plant by ABA was not affected, but the accumulation of Cd/sup 2+/ into the roots was elevated to 13% when compared with the control. Cd/sup 2+/ transport into the root was markedly inhibited to 60% by KCl. Therefore, it could be concluded that ABA did not reduce the toxicities of Cd/sup 2+/, but enhanced Cd/sup 2+/ - induced toxicities and KCl showed no effect on Cd/sup 2+/ - induced toxicities.

Influence of Incorporation Rates of Sulfur on Reduction of the Bicarbonate Injury in Hydroponic Cultivation of 'Ssanta' Strawberry (유황 처리수준이 '싼타' 딸기의 중탄산 피해 경감에 미치는 영향)

  • Lee, Hee Su;Kim, Yun-Seob;Park, In Sook;Cheung, Jong Do;Choi, Jong Myung
    • Journal of Bio-Environment Control
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    • v.27 no.2
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    • pp.140-146
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    • 2018
  • This research was conducted to determine the influence of incorporation levels of sulfur into a coir dust+pine bark medium (1:1, v/v) on the changes in the bicarbonate ($HCO_3{^-}$) concentrations and pH of soil solution, crop growth, and nutrient uptake of 'Ssanta' strawberry. In the preparing of the mixed medium, sulfur powder was added with the rate of 0 (control), 0.23, 0.45, 0.90, and $1.80g{\cdot}L^{-1}$ and Hoagland nutrient solution containing $240mg{\cdot}L^{-1}$ $HCO_3{^-}$ was supplied during the crop cultivation. The growth measurements and tissue analysis for the determination of nutrient contents were carried out 140 days after solution application and the soil solution analysis was performed every two weeks. As the level of sulfur was elevated, the overall growth of mother plants became better showing that the growth indexes except chlorophyll contents were the lowest in control treatment but the statistical differences were not found among the three treatments of $0.45g{\cdot}L^{-1}$ or higher sulfur. The higher the levels of sulfur incorporation, the higher the occurrence of runners and the growth of daughter plants. The length of the runners and the number of daughter plants occurred per mother plants were higher in the treatments of 0.90 and $1.80g{\cdot}L^{-1}$ than the three treatments of 0, 0.23, and $0.45g{\cdot}L^{-1}$, but the statistical differences were not observed between the 0.90 and $1.80g{\cdot}L^{-1}$ treatments. The rose of pH and $HCO_3{^-}$ concentrations in soil solution of root media continued all the cropping period, but those decreased slightly in the treatments of $0.90g{\cdot}L^{-1}$ or higher. The soil solution concentrations of $K^+$ and $PO_4{^3-}$ in the treatments of 0.90 and $1.80g{\cdot}L^{-1}$ was lower than those in other treatments and the statistical differences in the $Ca^{2+}$ and $Mg^{2+}$ concentrations were not observed among all treatments. The nutrient contents in tissue analyzed in this experiment were the lowest in the control treatments and those increased as incorporation rates of sulfur were elevated. Above results indicated that when 'Ssanta' strawberry is grown hydroponically and the root medium is coir dust and the pine bark (5:5, v/v) mix, the sulfur incorporation rate as pre-planting fertilizer has to be higher than $0.9g{\cdot}L^{-1}$ root medium to reduce the $HCO_3{^-}$ injury.

Effect of NaCl Concentration on Photosynthesis and Mineral Content of Barley Seedlings under Solution Culture

  • Cho, Jin-Woong;Kim, Choong-Soo
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.43 no.3
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    • pp.152-156
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    • 1998
  • This study was conducted to elucidate the changes of photosynthetic ability and cation content in barley cultivar seedlings cultured for 10 and 30 days with different NaCl concentrations containing 1/4 Hoagland solutions. At the highest NaCl concentration, the weight of dry matter and the shoot/root ratio (S/R ratio) were decreased. Thus, shoots were affected more than roots by NaCl treatment. The S/R ratio decreased more in 'Neulssalbori' than in 'Bunong' by the NaCl treatment. The. internal $Na^+$ concentration increased greatly with the highest NaCl concentration, but $K^+$ concentration in plants decreased with the highest NaCl treatment. The $Ca^{2+}$ concentration had a small change with NaCl concentrations. Thus $Na^+$/$K^+$and $Na^+$/$Ca^{2+}$ratios increased with the highest concentration. The chlorophyll content (%/dry weight) of seedlings decreased at higher NaCl levels except for Bunong in 30 day old seedlings. The photosynthetic ability decreased only for Neulssalbori in the 10 days NaCl treatment. The stomatal conductance, and transpiration had decreased in the 10 day old seedlings, but not with 30 day old seedlings.

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Primary metabolic responses in the leaves and roots of bell pepper plants subjected to microelements-deficient conditions

  • Sung, Jwakyung;Lee, Yejin;Lee, Seulbi
    • Korean Journal of Agricultural Science
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    • v.48 no.1
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    • pp.179-189
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    • 2021
  • Plants need essential mineral elements to favorably develop and to complete their life cycle. Despite the irreplaceable roles of microelements, they are often ignored due to the relative importance of macroelements with their influence on crop growth and development. We focused on the changes in primary metabolites in the leaves and roots of bell pepper plants under 6 microelements-deficient conditions: Copper (Cu), Zinc (Zn), Iron (Fe), Manganese (Mn), Boron (B) and Molybdenum (Mo). Bell pepper plants were grown in hydroponic containers, and individual elements were adjusted to 1/10-strength of Hoagland nutrient solution. A remarkable perturbation in the abundance of the primary metabolites was observed for the Fe and B and the Mn and B deficiencies in the leaves and roots, respectively. The metabolites with up-accumulation in the Fe-deficient leaves were glucose, fructose, xylose, glutamine, asparagine and serine. In contrast, the Mn deficiency also resulted in a higher accumulation of glucose, fructose, xylose, galactose, serine, glycine, β-alanine, alanine and valine in the roots. The B deficiency noticeably accumulated alanine, valine and phenylalanine in the roots while it showed a substantial decrease in glucose, fructose and xylose. These results show that the primary metabolism could be seriously disturbed due to a microelement deficiency, and the alteration may be either the specific or adaptive responses of bell pepper plants.

The Effect of $Cd^{2+}$ on Stomatal Apertures of Epidermal Strips in Commelina communis L. ($Cd^{2+}$이 닭의장풀의 기공개폐에 미치는 영향)

  • 이준상
    • Korean Journal of Environmental Biology
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    • v.18 no.2
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    • pp.263-268
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    • 2000
  • The effect of $Cd^{2+}$ on stomatal apertures of epidermal strips and intact leaves in Commelina communis L. was investigated. Cadmium stimulated stomatal opening. The stomata, treated with 100 $\mu$M $Cd^{2+}$ opened to a degree of about 8.38 fm, but the stomata, treated with no cadmium opened to 3.74 ${\mu}{\textrm}{m}$. In order to show that there was no mechanical or osmotic impediment preventing the stomata in the epidermal strips, salicylic acid (SA) and abscisic acid (ABA) were used. The treatment of 100 $\mu$M SA and 1 $\mu$M ABA inhibited 14% and 28% of stomatal opening, respectively. Other heavy metals such as $Al^{3+} and Ag^{2+}$ were also used to investigate the effect of the stomatal apertures. The treatment of $Al^{3+} and Ag^{2+}$ also stimulated 19% and 41% of stomatal opening. To understand how cadmium open stomata, the effect of cadmium on the K+ influx into the epidermal strips was investigated. $Cd^{2+}$, SA, ABA inhibited 98%, 28%, 34% of K+ uptake respectively. 3-weeks old Commelina was transferred to and grown in Hoagland solution (0,5 mM $Cd^{2+}$, 10 mM $Cd^{2+}$) for 4 days and stomatal conductance were measured. The treatment of 5 mM $Cd^{2+}$ and 10 mM $Cd^{2+}$ showed about 51% and 70% inhibition of stomatal conductance, respectively Therefore, it could be concluded that stomata in epidermal strips and intact leaves behaved differently and cadmium- stimulated stomatal opening was due to the result of cadmium uptake into the epidermal strips instead of K+. [cadmium, stomata, stomatal conductance]

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The Effect of Salicylic Acid on the Accumulation of $Cd^{2+}$ and Nonprotein-SH Synthesis in Roots and Epidermal Strips of Commelina Communis L. (닭의장풀에 $Cd^{2+}$처리 시 $Cd^{2+}$ 흡수와 nonprotein-SH 합성에 미치는 살리실릭산의 영향)

  • 이준상
    • Korean Journal of Environmental Biology
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    • v.19 no.3
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    • pp.218-222
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    • 2001
  • Three weeks old Commelina was cultivated in Hoagland solution with or without $(\pm{100\mu{M}\;Cd^{2+}$ and with $100\mu{M}\;Cd^{2+}+100\mu{M\; SA)$ for 4 days. The contents of $Cd^{2+}$ and nonprotein-SH synthesis in roots and isolated epidermal strips were measured. In the treatment of $Cd^{2+}$, the concentration of $Cd^{2+}$ was $98\mu{M}\;Cd^{2+}$/g.fr.wt and it was 6 times higher than that of control. $Cd^{2+}$+SA increased 1.2 times higher concentration of $Cd^{2+}$ than that of the treatment ofTEX>$Cd^{2+}$ alone. In the treatment of TEX>$Cd^{2+}$, nonprotein-SH also increased 2 times higher than that of the control. TEX>$Cd^{2+}$ + SA increased 2 times higher concentration of nonprotein-SH than that of the treatment of TEX>$Cd^{2+}$ as well. In case of isolated epidermal strips, the response was similar with the roots. Therefore, it suggest that the effect of salicylic acid on the accumulation of TEX>$Cd^{2+}$ and nonprotein-SH synthesis in roots, and isolated epidermal strips was related with an increase of the membrane permeability by SA and that SA may be positively involved in the process of nonprotein- SH synthesis.

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Adaptations and Physiological Characteristics of Three Chenopodiaceae Species under Saline Environments (명아주과 3종 식물의 염 환경에 대한 적응특성의 비교)

  • 송승달;김진아;추연식;배정진;김인숙;추보혜;이인중
    • The Korean Journal of Ecology
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    • v.25 no.2
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    • pp.101-107
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    • 2002
  • Three species of Chenopodiaceae, i.e. Suaeda japonica, Salicomia herbacea, Beta vulgaris var. cicla, were investigated to compare the physiological characteristics through inoic balances and osmoregulations under different environmental salt gradients. Plats were harvested in two weeks from treatments with salt gradients (0, 50, 100, 200 and 400 mM NaCl) and mineral nutrition gradients(1/1, 1/5, 1/10 dilutions of Hoagland solution). Plants were analyzed for growth responses, ionic balances, osmolalities, conductivities, glycinebetaine and proline contents quantitatively. Three plants of Chenopodiaceae accumulated slats into tissues unlike some salt sensitive species, and showed unique adaptation patterns to overcome saline environments, i.e. strong growth stimulation for Salicomia herbacea, growth negative tolerance for Suaeda japonica, and growth positive tolerance for Beta vulgaris var. cicla. The absorption of inorganic Ca/sup 2+/ ions was inhibited remarkably due to the excess uptake of Na+ with increasing salinity. The K+ content in plants was significantly reduced with increasing salinity. Total nitrogen content was reduced as mineral nutritions and salinity increased. Conductivity and osmolality increased with increasing salinity regardless of mineral nutritions. The ranges of glycinebetaine and proline contents were 0.2∼2.5 μM/g plant water and 0.1∼0.6μM/g plant water, respectively.