• Title/Summary/Keyword: Hoagland solution

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The Possible Participation of the Mesophyll on Stomatal Opening

  • Lee, Joon-Sang
    • Korean Journal of Environmental Biology
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    • v.19 no.1
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    • pp.1-6
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    • 2001
  • Many researchers have been studied with guard cell protoplasts and detached epidermis as they think that properly stabilized protoplasts and detached epidermis retain many of the properties of intact guard cells. However, some studies have shown that stomata in detached epidermis behave differently, both quantitatively and qualitatively, from those in the intact leaf. Stomata in the intact leaf are very sensitive to environmental factors such as light, $CO_2$ and osmotic stress, but stomata in detached epidermis are less sensitive to these factors than those in the intact leaf. The clearest evidence to suggest the different response between detached epidermis and intact leaf obtained from the experiments with heavy metal, cadmium. 3-weeks old Commelina. communis was transferred to and grown in Hoagland solution in the presence or absence of 5 mM $Cd^{2+}$ for 4 days. The application of $Cd^{2+}$ showed about 70% inhibition of stomatal conductance when measured at various light intensity (100-1,000 $\mu$mole $m^{-2}s^{-1}). However, stomata in detached epidermis floated on an incubation medium containing 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 ${\mu}{\textrm}{m}$. These results were unexpected as the intact leaf grown in a Hoagland solution containing cadmium showed very negative physiological responses. These results showed that stomata in detached epidermis and in the intact leaf could respond reversely. Therefore, it is possible that we now misunderstand how stomata open in real natural condition.

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The Effect of Salicylic Acid (SA) on the Photosynthetic Activity in Commelina communis L. (Salicylic acid가 닭의장풀의 광합성에 미치는 영향)

  • 이준상
    • Korean Journal of Environmental Biology
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    • v.17 no.3
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    • pp.359-364
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    • 1999
  • The effect of Salicylic acid (SA) on the leaf growth, chlorophyll content, photosynthesis, stomatal conductance in Commelina communis L. was investigated. C. communis which was grown in Hoagland solution containing 1 mM SA during 3 weeks resulted in a significant reduction of leaf length, width and area. 1 mM SA reduced about 10% of the leaf area at 1 week and 2 weeks, but inhibited 22% of the leaf area at 3 weeks. SA also showed great effect on the reduction of chlorophyll content. SA reduced 47% and 53% of chlorophyll content each at 2 weeks and 3 weeks when it was compared with the control. Chlorophyll a/b ratio in SA treated sample was increased at 3 weeks representing that SA was sensitive to chlorophyll b. The treatment of SA did not inhibit the activity of PSII+PSI, PSII and PSI. This result indicates that SA did not show direct effect oil the photosynthetic electron transport activity. However, when C. communis was grown in Hoagland solution containing I mM SA fer long period, SA showed clear inhibition of photosyhthesis in intact leaves. The treatment of SA for 3 weeks showed about 23~65% inhibition of photosynthetic activity at various light intensity (100~1000$\mu$mo1 m­$^2$$^1$). Similar effect was found on stomatal conductance. The treatment of SA caused an almost closure of stomata. Similar effects of stomatal conductance at various light intensity indicate a loss of normal control on stomatal mechanism. These results indicate that the effect of SA on photo-synthetic activity was not by SA itself but by indirect metabolic pathway.

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Studies on the Precipitation of Lead Ion and the Inhibition of Plant Growth (연(Pb) 이온의 침전과 식물생장의 억제에 관한 연구)

  • 성민웅
    • Journal of Plant Biology
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    • v.19 no.1
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    • pp.1-6
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    • 1976
  • This study was carried out to investigate the formation of precipitates between lead ion and the essential anions of plants, the effects of lead concentration on seed germination and plant growth in water and soil culture, and the germinating and growing recovery of inhibited seed germination and plant growth by lead. Four kinds of the seeds (Glycine max M., Triticum vulgare V., Setaria viridis (L) P. De Beauvois, and Digitoria sanguinalis (L) Scopoli var) were germinated and growth in water and soil culture included the different concentrations of lead for five days. The seeds and plants inhibited germination and growth by lead were transferred to lead free Hoagland solution and the growing recovery was observed. The precipitates of lead ion were observed in the solution of both acidity and alkalinity included each anion of $H_2PO_4^-, HPO_4^{2-}, PO_4^{3-}, SO_4^{2-} and MoO_4^{2-}$ in a room temperature, whereas the precipitates between lead ion and other anions were observed largely in the solution of alkalinity, so that it seemed that lead could be remained in the state of non-soluble in plant and soil. The inhibition of germination and growth in the water culture was observed in 100ppm of lead, whereas the inhibition in the case of the soil culture was observed in 10000ppm of lead. The difference of the effected concentration between water and soil culture in germination and the growth was 100 times. When the seed and plant inhibited the growth in 5000ppm or 10000ppm of lead for five days were transferred to lead free Hoagland solution, the recovery of germination and growth was observed in three days. This growing recovery was different according to the kinds of plant and concentrations of lead. It seemed that plant growth could be inhibited by the inhibition of the metabolism concerned with the precipitates between lead iion and other anions.

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Effects of Nitrogen Form of Nutrient Solution on the Growth of Aster tataricus, Chrysanthemum boreale, and Farfugium japonicum (개미취, 감국 및 털머위 생육에 미치는 양액내 질소원의 영향)

  • Cho, Yeon-Hee;Park, Eun-Ah;Chiang, Mae-Hee
    • Horticultural Science & Technology
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    • v.18 no.1
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    • pp.14-17
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    • 2000
  • This experiment was carried out to investigate the effect of nitrogen form in the Hoagland nutrient solution on the growth of Farfugium japonicum, Aster tataricus and Chrysanthemum boreale. The nitrogen form of Hoagland nutrient solution was modified to $NH_4{^+}(100%),\;NO_3{^-}(100%),\;and\;NH_4{^+}+NO_3{^-}(50%+5%)$ for this study. In the treatment of $NO_3{^-}\;and\;NH_4{^+}+NO_3{^-}(1:1)$, F. japonicum showed the best growth, especially in fresh weight. With the treatment of $NO_3{^-}$, shoot and root fresh weight of A. tataricus and C. boreale were increased. The activity of nitrate reductase and the concentration of chlorophyll and nitrate were increased with $NO_3{^-}$ treatment in all these plants.

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The Effect of IAA on $Colocasia$ $esculenta$'s Growth and Morphogenesis (IAA가 토란의 생장 및 형태 발생에 미치는 영향)

  • Kim, Young-Eun;Lee, Joon-Sang
    • Korean Journal of Environmental Biology
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    • v.29 no.2
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    • pp.92-97
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    • 2011
  • Morphological and physiological differences of $Colocasia$ $esculenta$ were investigated in the cultivation of hydorphonic and soil culture. $C.$ $esculenta$ grown in Hoa.+IAA (indole-acetic acid) showed higher growth activity representing 9%, 32%, 38% and 60% than those of the cultivation of vermiculate, Hoagland solution, soil and water, respectively. In case of $F_v/F_m$ ratio experiments, the value $F_v/F_m$ of $C.$ $esculenta$ cultivated in the water showed 0.55 after 6 weeks. $F_v/F_m$ values of $C.$ $esculenta$ cultivated in Hoagland+IAA, vermiculate and soil were between 0.84 and 0.80 indicating $F_v/F_m$ values were about 45% higher than that of $C.$ $esculenta$ cultivated in the water. Diffusion resistance was 45~35% lower in $C.$ $esculenta$ grown in Hoa.+IAA solution than that of $C.$ $esculenta$ grown in water only after 5 and 6 weeks. Therefore, the high standing levels of the growth rate, fluorescence activity and transpiration rate were Hoa.+IAA, vermiculate, Hoagland, soil and water. The distinct morphological differences of $C.$ $esculenta$ cultivated in hydorphonic and soil culture were the appearance of the seed corm and root hair. The development of seed corm was well established in soil culture but the corm in hydorphonic was slowly hydrolyzed and then disappeared. The fibrous root systems of hydorphonic were very well distinguishable compared with that in soil culture. Outstanding results of this experiment were appeared in $C.$ $esculenta$ which was cultivated in the field provided with enough mineral nutrition, organic fertilizers and compound fertilizers. The most height taros were almost 2m and the numbers of seed corm were 30~40 after 7 months.

Influence of N-P-K Nutrient Levels on Ozone Susceptibility of Tomato Plants (N-P-K 양분 수준이 토마토의 오존 감수성에 미치는 영향)

  • Ahn, Joo-Won;Ku, Ja-Hyeong
    • Korean Journal of Environmental Agriculture
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    • v.17 no.4
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    • pp.352-357
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    • 1998
  • This experiment was conducted to find out the effects of major nutrient levels(N, P, K) on ozone susceptibility of tomato plants(Lycopersicon esculentum Mill, cv. Pink Glory). Plants were grown in water culture system. A half-strength of Hoagland's nutrient solution was considered as a standard formulation($N_{100}$ $P_{100}$ $K_{100}$). The levels of major nutrients were adjusted through addition or removal of several fertilizer salts from the standard solution. Top growth was significantly decreased at the low nitrogen level or phosphorus removal condition. P- and K-contents of leaves were greatly decreased by removal of salts containing P and K from the nutrient solution. The rate of ozone injury was significantly increased when potassium was removed. However, the influence of nitrogen and phosphorus levels or high potassium level on injury occurrence did not show statistical significance compared to the standard solution. Ozone exposure resulted in reduction of chlorophyll, and increase of ethylene production, electrolyte leakage and malondialdehyde(MDA) contents. These changes were much more enhanced in plants grown at the potassium removal solution. Whereas the activity of superoxide dismutase(SOD) was low at the potassium removal treatment and this tendency remained after ozone exposure. These results indicated that potassium nutrient level in tomato plants is closely associated with the susceptibility to ozone injury.

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Growth and Nutrient Uptake of 'Seolhyang' Strawberry (Fragaria × ananassa Duch) Responded to Elevated Nitrogen Concentrations in Nutrient Solution (질소 시비농도가 '설향' 딸기(Fragaria × ananassa Duch)의 생장과 무기원소 흡수에 미치는 영향)

  • Choi, Jong-Myung;Latigui, Ahmed;Yoon, Moo-Kyung
    • Horticultural Science & Technology
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    • v.28 no.5
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    • pp.777-782
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    • 2010
  • This research tested five modified Hoagland solutions for proper fertility management of nitrogen in 'Seolhyang' strawberry cultivations. The changes of nutrient solutions were in total nitrogen concentrations ($meq{\cdot}L^{-1}$) such as 0 (${NO^-}_3$), 2.5 (${NO_3}^-$), 5 (${NO_3}^-$), 10 ($7.5{NO_3}^-$ + $2.5{NH_4}^+$) and 15 ($10{NO_3}^-$ + $5{NH_4}^+$). The fresh weight and $NO_3$-N concentrations in petiole sap responded to the elevated nitrogen concentrations in fertilizer solution in quadratic (y=7.10+2.668x-$0.115x^2$, $R^2=0.7983^{***}$) and linear (y=26.14+5.245x, $R^2=0.6083^{***}$), respectively. The dry weight and N content of the above ground plant tissue responded to the elevated nitrogen in quadratic (y=2.140+0.492x-$0.022x^2$, $R^2=0.6110^{***}$) and linear (y=0.569+0.033x, $R^2=0.6952^{***}$), respectively. In our experiment the solution with $5meq{\cdot}L^{-1}$ of ${NO_3}^-$ showed positive results in both dry and fresh weight productions. However, a future research about modification of this solution and growth and nutrient uptake response is necessary to achieve better growth of 'Seolhyang' strawberry.

The Distribution of $Cd^2+$ and its Physiological Toxicity in Commelina communis L. (닭의장풀 내 $Cd^2+$의 분포와 생리적 독성)

  • 이준상
    • Korean Journal of Environmental Biology
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    • v.18 no.1
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    • pp.63-67
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    • 2000
  • The effect of $Cd^2+$ on chlorophyll content, water potentials, ion transport, photosynthesis, stomatal apertures and $Cd^2+$ accumulation of organs in Commelina communis was investigated. 3-weeks old Commelina. communis was transferred to and grown in Hoagland solution in the presence or absence of 5 mM $Cd^2+$ for 4 days. $Cd^2+$ was accumulated in all parts of the organs including leaves, roots and stem. The proximity from the root and the age of leaf were significant factors responsible for the distribution of cadmium. Most of $Cd^2+$ was accumulated in the first leaf which was the nearest from the root. $Cd^2+$) accumulation in the leaves led to significant reductions in a series of physiological metabolism. $Cd^2+$ reduced total chlorophyll content up to 70%, and changed chlorophyll a/b ratio to 2. $Cd^2+$ also reduced about 20% of water potential. The treatment of $Cd^2+$ showed about 60% inhibition of photosynthetic activity when measured at various light intensity (100-1,000 $\mu$mol $Em^-2s^-1$). Similar effect was found in terms of stomatal conductance. Therefore, it could be concluded that the treatment of $Cd^2+$ decrease or block various physiological activities. [Cadmium, Photosynthesis, Stomatal conductance].

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Effects of Some Heavy Metals(Al, Cd, Hg, and Pb) on ATP Content in Plant Leaves (식물엽의 ATP함량에 미치는 중금속(Al, Cd, Hg 및 Pb)의 영향)

  • 성민웅
    • Journal of Plant Biology
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    • v.22 no.4
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    • pp.107-113
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    • 1979
  • The present study was carried out to estimate the comparative effects of hydroponic heavy metals (Al, Cd, Hg, and Pb) on ATP content in plant leaves grown with Hoagland solution under green house condition. The two plants, kidneybean(Phaseolus vulgaris L.) and buckwheat(Fagopyrum esculentum M nch), showed similar inhibitory effect of heavy metals on ATP content in order of Hg, Cd, Pb, and Al. But the overall inhibitory effect was greater in kidneybean than in buckwheat. The affinity of heavy metals, in vitro, toward the enzyme (luciferin-luciferase) is in order of Hg, Al, Cd, and Pb, similar to that toward ATP. The results showed that the inhibitory effect of heavy metals on ATP hydrolysis is mainly due to the coordination of heavy metals with enzyme than ATP.

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Fluctuation of ATP Content in Soybean and Mungbean Seeds with Germinating Time (콩(Glycine max Merrill) 및 녹두(Phaseolus radiatus L.) 종자의 발아일별 ATP 함량변화)

  • 성민웅
    • Journal of Plant Biology
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    • v.23 no.1
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    • pp.11-15
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    • 1980
  • ATP contents of soybean(Glycine max Merrill) and mungbean (Phaseolus radiatus L.) seeds being germinated with Hoagland solution at $30^{\circ}C$ for 6 days were determined. In pregerminated seed, ATP contents in soybean and mumgbean were 11.4 and 63.0$\mu$g/g fresh seed respectively. During germination, the highest ATP content of soybean seeds was 550% of initial content on 2nd day and that of mungbean was 480% on 1st day after germination. ATP content in cotyledon of soybean and mungbean were increased up to 4th and 1st day after germination respectively, thereafter both were decreased, but those in the root, including the hypocotyl, of both seeds were continuously increased with germination progress.

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