• Title/Summary/Keyword: stomata.

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Anatomy and Artificial Seed Propagation in Anti -cancer Plant Orostachys japonicus A. Berger (항암식물 와송의 해부 형태적 관찰과 대량 증식에 의한 인공재배연구)

  • 신동영;이영만;김학진
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.39 no.2
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    • pp.146-157
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    • 1994
  • Wasong(Orostachys japonicus A. Berger) has been used as anti-cancer medicinal plants from ancient time. This experiment was conducted to obtain some fundamental informations concerning anatomical study, germination test, soil analysis of indigenious districks, adaptaion of soil for wasong. The leaf of wasong was xerotype with spine, mesophyl chloroplast is dense surrounded vascular bundle, with a many large water storage tissue without chloroplast, and was bifacial stomata leaf type. The stem of wasong was amphicribral vascular bundle, central cylinder was cylinder type and protostele. Root was polarch type, potoxylem of it's was arranged in ring shape of annulation and metaxylem. The structure of flower was cymose, was caylyx of 5 sepals, corolla of 5 petals, roecium of 10 stames, ovules of five, placentation parietal, ovary superior, axile placenta. The optimum temperature for seed germination was $25^{\circ}C$ under light and germination percentage was 22.5%. Dormancy breaking was effective for 6-8 days at 5$^{\circ}C$ and at 100 ppm level of $GA_3$ The soil analysis of wasong local districks, content of available $P_2O_5$, Ca were higer than optimal level of upland and C.E.C., exchangeable k was not significantly different of that, but exchangeable magnesium was very low. The growth of wasong was affected draining regardless soil combination treatment.

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Studies on the Effects of Ozone Gas in Paddy Rice 3. Biochemical effects of ozone gas on rice plant (수도생육(水稻生育)에 대(對)한 Ozone가스의 영향(影響)에 관(關)한 연구(硏究) 3. Ozone가스에 의(依)한 수도엽의(水稻葉) 생화학적(生化學的) 변화(變化))

  • Kim, Bok-Young;Cho, Jae-Kyu;Lee, Suk-Hee
    • Korean Journal of Environmental Agriculture
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    • v.5 no.2
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    • pp.106-112
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    • 1986
  • Biochemical and histological effects of ozone gas (0.3 ppm) on rice plant were discussed. After ozone expoure, damage symptom, percentages of destroyed leaves, activities of peroxidase and polyphenoloxidase, and the contents of flavonoid, protein and sugar were examined on two rice varieties (Seokwangbyeo, Jinjubyeo), on tillering stage, and at different exposure time (0, 1, 3, 5 hr). The result were as followed. 1. The ozone-injured cell adjoining stomata become pigmented red-brown. 2. The percentage of injured leaves in Jinjubyeo was higher than that in Seokwangbyeo. 3. The activities of peroxidase and polyphenoloxidase increased on ozone-injured leaves. 4. The peroxidase activity increased with time in Jinjubyeo compared to Seokwangbyeo. 5. Peroxidase isozyme spectrum was altered after ozone exposure. 6. The content of flavonoid and reducing sugar in the rice leaves was increased, but the contents of protein was reduced.

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Relationships between Airborne Droplet and Impression Diameters in Small Droplets (작은 분무입자(噴霧粒子)에 있어서 원형분무입자(原形噴霧粒子) 직경(直徑)과 살포(撒布)된 입자직경(粒子直徑)의 관계(關係))

  • Lee, Sang-Woo
    • Korean Journal of Agricultural Science
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    • v.6 no.2
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    • pp.192-197
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    • 1979
  • Spread factors were tried to determine the diameter of airborne droplet emitted: from the sprayer by the measurements of airborne droplet diameter emitted from the uniform size droplet producer and impression diameter on Kromekote card or Eucalypt's leaf in the different dilute concentration with Geigy Red Herbicide Dye from 0.5% to 2% by weight. The results abtained were as follows; The general form of the equation in the relationship between airborne droplet and impression diameter on Kromekote card or Eucalypt's leaf was an exponential equation as follows; $$Y=aX^b$$ which gave a linear relation on log-log graph paper. The spread factor seemed to be larger in the thin dilute concentration than in the thick dilute concentration. The spread factor was remarkably smaller on Eucalypt's leaf than on Kromekote card due to the penetration of liquid into the leaf and the stomata of the epidermis. The calculated equation of the mean depth of the droplet sprayed on Eucalypt's leaf was the same form as $Y=aX^b$, which implied that the spray liquid was distributed in surplus in accordance with the diameter of the droplet larger than the optimum size droplet to control insect and disease.

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Eco-physiological Responses of Two Populus deltoides Clones to Ozone

  • Yun, Sung-Chul;Kim, Pan-Ki;Hur, Jae-Seoun;Lee, Jae-Cheon;Park, Eun-Woo
    • The Korean Journal of Ecology
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    • v.24 no.2
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    • pp.93-100
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    • 2001
  • One-year-old cottonwood (Populus deltoides Bartr.) clones, which were classified as sensitive or tolerant, were exposed to 150 n1/1 ozone (O$_3$) over 8 days for 8 hours each day under glass chamber conditions with natural sunlight. The leaves of the sensitive clone had black stipple and bifacial necrosis after $O_3$ treatment. Photosynthesis and stomatal conductance were measured before, during, and after the $O_3$ treatment. The photosynthetic rates due to $O_3$ treatment were decreased 51 percent and 34 percent on the sensitive and tolerant clone, respectively. The stomatal conductance of the sensitive clone was more than 40 percent higher than that of the tolerant clone regardless of the $O_3$ treatment. As light intensity increased, the $O_3$ effect on photosynthesis was clear. Compared to the previous growth chamber studies, our natural light exposure system was able to maintain a stable photosynthetic responses of the control treatment throughout the fumigation period. In addition, changes in assimilation versus intercellular $CO_2$ concentration (A/C curves) showed that $O_3$ decreased the slope and asymptote of the curves for the sensitive clone. This indicates that $O_3$ decreases the biochemical capacity of photosynthesis on the sensitive clone. Chlorophyll contents and fluorescence of the two clones were analyzed to examine the $O_3$ effects on photosystem 11, but $O_3$ did not impact these variables on either clone. Although the tolerant clone did not show any foliar injury, we could not find any ecophysiological defensive responses to $O_3$ treated. Stomatal conductance of the tolerant clone was originally much lower than that of the sensitive one. Thus, the mechanisms of the tolerant clone in this system are to narrowly open stomata and efficiently maintain photosynthesis with a more durable biochemical apparatus of photosynthesis under $O_3$ stress. The sensitive clone has higher photosynthetic capacity and more efficient light reaction activity than the tolerant one under charcoal filtered condition, but is not as resilient under stress.

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Air Pollution Tolerance Index (APTI) of Main Street Trees Following Ozone Exposure (주요 가로수 묘목의 오존노출에 따른 대기오염내성지수 비교)

  • Cho, Su Bin;Lee, Hyung Sup;Lee, Jong Kyu;Park, Sang Hee;Kim, Han Dong;Kwak, Myeong Ja;Lee, Keum Ah;Lim, Yea Ji;Woo, Su Young
    • Journal of Korean Society of Forest Science
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    • v.109 no.1
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    • pp.50-61
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    • 2020
  • Street trees are very important to urban environments as they can alleviate air pollution. However, when ozone is absorbed through the stomata, it can induce the formation of free radicals inside the tree, negatively affecting the vegetation. The present study investigated the Air Pollution Tolerance Index (APTI) of four major street tree species: Prunus yedoensis, Zelkova serrata, Chionanthus retusus, and Pinus densiflora. Two-year-old seedlings were placed in a phytotron and fumigated with 100 nL·L-1 (ppb) ozone for 4 weeks, following which the ascorbic acid contents, chlorophyll contents, leaf pHs, and relative water contents were measured. There was no significant difference in the APTI of Prunus yedoensis and Zelkova serrata between the ozone and control treatments. By contrast, the ozone treatment caused the APTI of Chionanthus retusus to increase and that of Pinus densiflora to decrease compared with the respective controls. These results suggest that the APTI of these tree species exhibit very different responses to ozone. Therefore, more detailed research should be conducted on a range of species in the future.

Potential for Application of Microhistological Analysis in Diet Plants of Korean Water Deer($Hydropotes$ $inermis$) (한국에 서식하는 고라니($Hydropotes$ $inermis$) 먹이식물의 미세조직분석법 적용 가능성 연구)

  • Kim, Eui-Kyeong;Park, Yung-Chul;Kim, Won-Myeong;Kim, Jong-Kuk
    • Korean Journal of Environment and Ecology
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    • v.26 no.2
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    • pp.192-199
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    • 2012
  • This study was to evaluate the application of microhistological analysis to collect information on food materials of korean water deer from september to October 2006. For microhistological analysis we extracted type-materials of 4 plant species ($Ipomoea$ $batatas$, $Rubus$ $coreanus$, $Glycine$ $max$, and $Pueraria$ $thunbergiana$) from fecal pellets of korean water deer ($Hydropotes$ $inermis$) and then made preparations of the fecal materials for microscopic analysis. The fecal preparations were compared with reference preparation under the microscope. In microscopic analysis of fecal preparations, we could identify the four plant species by the followings: tip shape and morphology of trichomes, epidermal cell, morphological composition and shape of stomatal apparatus, arrangement of long-cell, and distribution of crystals in cells. According to the comparisons of the preparations, the morphology of trichome, epidermal cell and stomata are similar between both preparations of the fecal pellets and the references, respectively. This methodology will contribute to understanding feeding behavior and behavioural ecology by climate change of other hervibores as well as korean water deers.

Photosynthesis and Regrowth of Leaf in Sorghum-Sudangrass Hybrid, Pearl Millet, and Barnyard Millet after 2nd Cutting (청예용 수수-수단 그라스 잡종, 진주조, 사료용 피의 후기 생육에서 재생엽의 생장과 광합성)

  • 이호진;김태훈
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.38 no.5
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    • pp.466-476
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    • 1993
  • Field experiment was carried out to study the new and old leaf development and photosynthesis of sorghum-sudangrass hybrid 855F, pearl millet Suwon No.6 and barnyard millet in cutting and non-cutting plots from the 2nd cutting day(September, 17th). Leaf regrowth of sorghum-sudangrass hybrid and pearl millet begun after the 2nd cutting day, except barnyard millet. Photosynthetic rate of new leaf blades in cutting plots reached to higher level than old leaf at 12th to 20th day after cutting(DAC). Stomatal density of leaf blade of each crop in non-cutting plot was observed higher pearl millet and sorghum-sudangrass hybrid than barnyard millet. New leaf blade of each crop in cutting plot was showed complete development in stomata size, form and vascular bundles in 12th DAC. Non-structural carbohydrates(NSC) contents of stembase in sorghum-sudan hybrid which had 17 %, the highest among three forages decreased daily into 8th DAC and begun to increase from 20th DAC. But, those of pearl millet and barnyard millet in cutting plots were about 10 % at cutting day and inclined to decrease continuously into the 20th DAC and reached about 3~4% in 32nd DAC. These results showed that regrowth energy of sorghum-sudangrass hybrid was mainly dependent on non-structural carbohydrates of stembase until 12th DAC, but pearl millet had active lower leaves supported its regrowth by concurrent photosynthesis. As barnyard millet which did not reserve enough NSC, its regrowth fail to survive under low temperature. Also, late regrowth of rest two forage crops was delayed with decreasing daily temperature after mid-September.

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Pink Pigmented Facultative Methylotrophic Bacteria(PPFMs): Introduction to Current Concepts (분홍색 색소를 형성하는 methylotrophic acteria(PPFMs): 최근 경향소개)

  • Munusamy, Madhaiyan;Sa, Tongmin;Kim, Jai-Joung
    • Korean Journal of Soil Science and Fertilizer
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    • v.37 no.4
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    • pp.266-287
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    • 2004
  • The non infecting, plant associated bacteria have attracted increased attention for stimulating plant growth and as environmental friendly plant protecting agents. Pink-pigmented facultatively methylotrophic bacteria (PPFMs), classified as Methylobacterium spp., are persistent colonizers of plant leaf surfaces. As the leaves of most or all plants harbor PPFMs that utilize leaf methanol as their sole source of carbon and energy, which is a specific attribute of the genus Methylobacterium. Although they are not well known, these bacteria are co-evolved, interacting partners in plant metabolism. This claim is supported, for example, by the following observations: (1) PPFMs are seed-transmitted, (2) PPFMs are frequently found in putatively axenic cell cultures, (3) Low numbers of seed-borne PPFMs correlate with low germinability, (4) Plants with reduced numbers of PPFM show elevated shoot/root ratios, (5) Foliar application of PPFMs to soybean during pod fill enhances seed set and yield, (6) Liverwort tissue in culture requires PPFM-produced vitamin B12 for growth, (7) treated plants to suppress or decrease disease incidence of sheath blight caused by Rhizoctonia solani in rice, and (8) the PPFM inoculation induced number of stomata, chlorophyll concentration and malic acid content, they led to increased photosynthetic activity. Methylobacterium spp. are bacterial symbionts of plants, shown previously to participate in plant metabolism by consuming plant waste products and producing metabolites useful to the plant. There are reports that inform about the beneficial interactions between this group of bacteria and plants. Screening of such kind of bacteria having immense plant growth promoting activities like nitrogen fixation, phytohormone production, alleviating water stress to the plants can be successfully isolated and characterized and integration of such kind of organism in crop production will lead to increased productivity.

Effects of Long-term Exposure to Black Carbon Particles on Growth and Gas Exchange Rates of Fagus crenata, Castanopsis sieboldii, Larix kaempferi and Cryptomeria japonica Seedlings

  • Yamaguchi, Masahiro;Otani, Yoko;Takeda, Kenta;Lenggoro, I. Wuled;Ishida, Atsushi;Yazaki, Kenichi;Noguchi, Kyotaro;Sase, Hiroyuki;Murao, Naoto;Nakaba, Satoshi;Yamane, Kenichi;Kuroda, Katsushi;Sano, Yuzou;Funada, Ryo;Izuta, Takeshi
    • Asian Journal of Atmospheric Environment
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    • v.6 no.4
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    • pp.259-267
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    • 2012
  • To clarify the effects of black carbon (BC) particles on growth and gas exchange rates of Asian forest tree species, the seedlings of Fagus crenata, Castanopsis sieboldii, Larix kaempferi and Cryptomeria japonica were exposed to BC particles with sub-micron size for two growing seasons from 1 June 2009 to 11 November 2010. The BC particles deposited after the exposure to BC were observed on the foliar surface of the 4 tree species. At the end of the experiment, the amount of BC accumulated on the foliar surface after the exposure to BC aerosols were 0.13, 0.69, 0.32 and 0.58 mg C $m^{-2}$ total leaf area in F. crenata, C. sieboldii, L. kaempferi and C. japonica seedlings, respectively. In August 2010, the exposure to BC particles did not significantly affect net photosynthetic rate under any light intensity, stomatal diffusive conductance to water vapour ($g_s$), stomatal limitation of photosynthesis, response of $g_s$ to increase in vapour pressure deficit and leaf temperature under light saturated condition in the leaves or needles of the seedlings. These results suggest that the BC particles deposited on the foliar surface did not reduce net photosynthesis by shading, did not increase leaf temperature by absorption of irradiation light, and did not induce plugging of stomata in the leaves or needles of the seedlings. There were no significant effects of BC particles on the increments of plant height and stem base diameter during the experimental period and the whole-plant dry mass at the end of the experiment. These results indicate that the exposure to BC particles with sub-micron size for two growing seasons did not significantly affect the growth and leaf or needle gas exchange rates of F. crenata, C. sieboldii, L. kaempferi and C. japonica seedlings.

Deposition Process of Sulfate and Elemental Carbon in Japanese and Thai Forests

  • Sase, Hiroyuki;Matsuda, Kazuhide;Visaratana, Thiti;Garivait, Hathairatana;Yamashita, Naoyuki;Kietvuttinon, Bopit;Hongthong, Bundit;Luangjame, Jesada;Khummongkol, Pojanie;Shindo, Junko;Endo, Tomomi;Sato, Keiichi;Uchiyama, Shigeki;Miyazawa, Masamitsu;Nakata, Makoto;Lenggoro, I. Wuled
    • Asian Journal of Atmospheric Environment
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    • v.6 no.4
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    • pp.246-258
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    • 2012
  • Particulate matter deposited on leaf surfaces may cause erosion/abrasion of epicuticular wax and the malfunction of stomata. However, the deposition processes of particulate matter, such as elemental carbon (EC), has not been studied sufficiently in Asian forest ecosystems. Deposition processes for particulate ${SO_4}^{2-}$ and EC were studied in a Japanese cedar forest in Kajikawa, Niigata Prefecture, Japan, and in a dry evergreen forest and a dry deciduous forest in Sakaerat, Nakhon Ratchasima province, Thailand. The ${SO_4}^{2-}$ fluxes attributed to rainfall outside the forest canopy (RF), throughfall (TF), and stemflow (SF) showed distinct seasonalities at both sites, increasing from November to February at the Kajikawa site and in March/April at the Sakaerat site. Seasonal west/northwest winds in winter may transport sulfur compounds across the Sea of Japan to the Kajikawa site. At the Sakaerat site, pollutants suspended in the air or dry deposits from the dry season might have been washed away by the first precipitations of the wet season. The EC fluxes from RF and TF showed similar variations by season at the Kajikawa site, while the flux from TF was frequently lower than that from RF at the Sakaerat site. Particulate matter strongly adsorbed onto leaf surfaces is not washed away by rainfall and contributes to the EC flux. At the Kajikawa site, Japanese cedar leaf surfaces accumulated the highest levels of particulate matter and could not be neglected when calculating the total flux. When such leaf-surface particles were considered, the contribution of dry deposition to the total EC flux was estimated to be 67%, 77%, and 82% at the Kajikawa site, and at the evergreen and deciduous forests of the Sakaerat site, respectively. Leaf-surface particles must be included when evaluating the dry and total fluxes of particulate matter, in particular for water-insoluble constituents such as EC.