• Title/Summary/Keyword: Leaf morphology

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Chlorophyll α fluorescence as an indicator of establishment of Zostera marina transplants on the southern coast of Korea

  • Li, Wen-Tao;Park, Jung-Im;Park, Sang-Rul;Zhang, Xiu-Mei;Lee, Kun-Seop
    • ALGAE
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    • v.25 no.2
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    • pp.89-97
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    • 2010
  • To test the feasibility of using chlorophyll ${\alpha}$ fluorescence to assess the establishment success of seagrass transplants, photosynthetic characteristics of eelgrass Zostera marina transplants were measured using a Diving-pulsed amplitude modulation fluorometer in Jindong Bay on the southern coast of Korea. Maximum quantum yield ($F_v/F_m$), photosynthetic efficiency ($\alpha$), saturating irradiance ($E_k$) and maximum electron transport rate ($ETR_{max}$) of transplants and reference plants in a nearby transplant site were measured using the fluorometer for 5 months. Additionally, shoot morphology, individual shoot weight and productivity of transplants and reference plants were also monitored. Shoot height, leaf weight and productivity of transplants were significantly reduced during the first two or three months after transplantation compared to those of reference plants, and then increased to the levels of reference plants Characteristics of chlorophyll a fluorescence, including $F_v/F_m$, $\alpha$, $E_k$ and $ETR_{max}$ of transplants were also significantly reduced in the initial period, but recovered slightly sooner than shoot morphology or leaf productivity. These results indicated that after transplantation, Z. marina transplant photosynthesis recovered faster than shoot morphology, biomass or productivity. Thus, chlorophyll a fluorescence can be used as an indicator for early assessment of the status of eelgrass transplants without destructive sampling.

Characteristics of the Leaf Fiber Plants Cultivated in Korea (국내 재배 엽맥섬유의 특성에 관한 연구)

  • Lee, Hye-Ja;Kim, Nam-Eun;Yoo, Hye-Ja;Han, Young-Sook
    • Journal of the Korean Society of Clothing and Textiles
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    • v.33 no.5
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    • pp.711-720
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    • 2009
  • Leaf fibers have many good properties; they are strong, long, cheap, abundant and bio-degradable. Since they, however, contain a great quantity of non-cellulose components, they have been used for the materials of mats, ropes, bags and nets rather than those of clothing. In this study, we investigated the characteristics of leaf fibers in order to promote the use of leaf fibers for the materials of clothing as well as develop the high value-added textile fibers. Leaf fiber plants including New Zealand Flax, Henequen and Banana plant, which have various nature and shape, were used. New Zealand Flax and Henequen leaves were cut from lower part of plants. Banana leaves and pseudo-stems were peeled and cut from the stem of Banana plants. First, the thin outer skins like film of leaves, veins and stems were removed before retting. The chemical retting had been processed for 1hour, at 100 in 0.4% $H_2SO_4$ aqueous solution(liquid ratio 50:1). Then, the retted leaf fibers had been soaked for 1hour, at room temperature in 0.5% NaClO solution(v/v) to remove the miscellaneous materials. We investigated the physical characteristics of three leaf fibers including the transversal and longitudinal morphology, the contents(%) of pectin, lignin and hemicellulose, the length and diameter of fibers, the tensile strength of the fiber bundles, and the fiber crystallinity and the moisture regain(%). The lengths of fiber from three leaf fibers were similar to their leaf lengths. The fiber bundles were composed of the cellulose paralleled to the fiber axis and the non-cellulose intersecting at right angle with the fiber axis. The diameters of New Zealand Flax, Henequen and Banana fibers were $25.13{\mu}m$, $18.16{\mu}m$ and $14.01{\mu}m$, respectively and their tensile strengths were 19.40 Mpa, 32.16 Mpa and 8.45 Mpa, respective. The non-cellulose contents of three leaf fibers were relatively as high as 40%. If the non-cellulose contents of leaf fibers might be controlled, leaf fibers could be used for the materials of textile fiber, non-wovens and Korean traditional paper, Hanjee.

Morphological diversities of leaf in Korean Native Orostachys Species (자생 바위솔속(Orostachys) 엽의 형태적 다양성)

  • 이병애;김학현;이철희
    • Korean Journal of Plant Resources
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    • v.14 no.2
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    • pp.157-162
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    • 2001
  • Korean native Orostachys species collected from 22 regions investigated morphological characters.O. japonicus species(No.3∼No.9) were similar leaf morphology and characterized by lanceolate leaves, cuspidate leaf apex.O. malacophyllus species(No.12∼No. 17) were morphologically characterized by obovate leaves and acute leaf apex. This species could be differentiate from other species by no thorn and leaf outlines formed by densely populated red dots.O. iwarenge species(No.18∼No.22) were diversified, such as obovate and elliptical leaves with acute, obtuse and round leaf apices. However, this species could be differentiate from other species bl'no thorn and grey powdery green colored leaves. Species collected from Maemuldo(No. 10) and Pocheon(No. 11) was assumed that these 2 species could be the new species which were not named classified.

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Site Environment and Morphology Characteristics of Native Bermudagrass (Cynodon spp.) Ecotypes in Korea (국내에서 수집된 버뮤다그래스의 입자환경 및 형태적 특성)

  • Bae, Eun-Ji;Lee, Kwang-Su;Park, Nam-Chang;Lee, Sang-Myung;Shin, Hyun-Cheol;Yang, Geun-Mo
    • Asian Journal of Turfgrass Science
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    • v.25 no.1
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    • pp.11-16
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    • 2011
  • This study was conducted to identify the morphological characteristics and variations level by site environment of native bermudagrass (Cynodon spp.) from costal and island region in South Korea. Soil chemical properties and morphological characteristics were investigated. There were significant differences in plant height, leaf width, leaf length, cotton on leaf blade, stolon, and number of seed per spike depending on where they were collected from natural habitat. We have discovered a variety of variation among the investigated traits in Korean native bermudagrass ecotypes. There were broad leaf and fine leaf types of native bermudgarass in S. Korea. Adaptability was in very high on inadequate environment in bermudagrass with broad leaf types, it has also been suggested that management worth in terms of use. These results may provide basic information for bermudagrass breeding development and the collected types during this investigation would be worth being preserved as genetic resources for further breeding purposes.

Investigation of the lotus leaf effect using the scanning probe microscopes (나노 측정기를 이용한 연잎효과 규명)

  • Lee, Ju-Hee;Lee, Dong-Yeon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.9
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    • pp.5756-5762
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    • 2015
  • This paper has studied the lotus effect of the biomimetic engineering that is inspired from the nature. The biomimetic engineering has been improved with the nanotechnology. This paper has observed the hydrophobic property of the surface of the lotus leaf by using the scanning electron microscope (SEM) and atomic force microscope (AFM). The nano-scale of the hydrophobic lotus leaves are maximized the surface tension of water. The general grass leaf has been compared with the lotus leaf through the SEM and AFM - in the viewpoint of the 2D and 3D morphology. Also, The pre-existing of the hydrophobic theory was investigated and compared with the experimental observations for the lotus leaf.

Evaluation of leaf morphology for distinguishing Prunus (Rosaceae) from Jeju, Korea (제주도산 벚나무속 잎 형질의 분류학적 검토)

  • Kim, Chan-Soo;Moon, Myung-Ok;Cheong, Eun Ju;Byun, Gwang Ok
    • Korean Journal of Plant Taxonomy
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    • v.35 no.2
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    • pp.81-98
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    • 2005
  • Leaf morphology was examined for Prunus species from Jeju Island. Analyzed were the leaf blade length, petiole length, width of blade, number of veins and angle of the base to the mid-vein as quantitative characters and the distribution of trichome, position of glandsand leaf features qualitative characters. A total of 25 OTU were phenetically analyzed by UPGMA. The resuling phenograms slightly differ from the currently recognized taxonomic system in two points. Prunus mume was clustered with P. padus and P. buergeriana. Prunu spendula and P. yedoensis were separated from the cluster of P. jaamasakura, P. speciosa, P. sargentii and P. jamasakura var. quelpaertensis. Except for the members of subgenus Cerasus, subgenera Padus (P. buergeriana and P. padus), Microcerasus (P. japonica) and Amygdalus were well defined. Some morphological characters of leaves such as the ratio of blade length to width, the length of blade to petiole, number of veins, the distance between the gland and base, the angle of base to mid-vein, and the distribution of trichome were useful as diagnostic features for Prunus from Jeju Island.

Characteristics of Leaf Morphology and Genetic Variation of the Rare Woody Plant, Berchemia racemosa var. magna (희귀수종 먹넌출 엽의 형태적 특성과 유전변이)

  • Song, Jeong-Ho;Lim, Hyo-In;Jang, Kyung-Hwan;Han, Jingyu
    • Korean Journal of Plant Resources
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    • v.26 no.5
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    • pp.613-618
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    • 2013
  • This study was conducted to investigate the morphological characteristics of leaf and the genetic diversity of Berchemia racemosa var. magna which is only found in Anmyeon Island of South Korea. ANOVA test showed that there were significant differences among individuals within population in all 10 leaf characteristics. Average characteristics of 39 individuals were 11.8 cm in leaf length, 7.1 cm in leaf width, 1.67 in leaf index, 5.4 cm in upper 1/3 width, 6.2 cm in lower 1/3 width, 3.6 cm in petiole length, 0.19 mm in leaf thickness, 11.5 ea. in number of veins (left), 11.4 ea. in number of veins (right) and 61.7 $cm^2$ in leaf area, respectively. Except for leaf thickness (18.8%), petiole length (21.7%) and leaf area (22.0%), the coefficients of variation of most leaf characteristics were relatively low (<15.0%). A total of 50 bands was generated from 8 selected I-SSR primers. The estimates of genetic variation were 1.719 in effective number of alleles ($A_e$), 26.0% in proportion of polymorphic bands (P), 0.410 in expected heterozygosity ($H_e$) and 0.598 in Shannon's diversity index (S.I.), respectively. In spite of the small number and the limited distribution, the B. racemosa var. magna population in Anmyeon Island showed high genetic diversity.

Pharmacognostical Studies on the 'Ggeong Yi Da Ri' (꿩의다리의 생약학적 연구)

  • Park, Jong-Hee;Park, Seong-Su
    • Korean Journal of Pharmacognosy
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    • v.30 no.2
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    • pp.182-191
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    • 1999
  • Korean folk medicine 'Ggeong Yi Da Ri' has been used mainly as remedies for stomach trouble, bruise and neuralgia. The botanical origin of the crude drug has not been studied pharmacognostically. To clarify the botanical origin of 'Ggeong Yi Da Ri', the morphology and anatomy of leaf and stem were examined for the Korean species of Thalictrum plants, such as T. acetaefolium, T. aquilegifolium, T. filamentosum, T. minus var. hypoleucum, T. minus var. stipellatum and T. rochebrunianum. The botanical origin of 'Ggeong Yi Da Ri' was clarified as the leaf and stem from Thalictrum aquilegifolium and T. filamentosum.

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A Pharmacognostical Study on the 'Man Byung Cho' (만병초의 생약학적 연구)

  • Park, Jong-Hee;Kim, Jin-Soo;Jeong, Ae-Yeong;Namba, Tsuneo
    • Korean Journal of Pharmacognosy
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    • v.26 no.2
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    • pp.168-174
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    • 1995
  • Korean folk medicine 'Man Byung Cho' has been used to cure abdominal pain, athlete's foot and neuralgia. The botanical origin of the crude drug has never been studied pharmacognostically. To clarify the botanical origin of 'Man Byung Cho', the leaf morphology and anatomy were examined for the Korean species of Rhododendron subgenus Hymenanthes, such as R. brachycarpum G. Don, R. brachycarpum var. rosueum Koidz. and R. aureum Georgi. The study shows that 'Man Byung Cho' is the leaf of R. brachycarpum and R. brachycarpum var. roseum.

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Effect of Pot Depth on Root Development and Distribution during Seedling Growing Period in Tobacco. (육묘포트 깊이가 담배의 뿌리발달 및 분포에 미치는 영향)

  • 이상각;심상인;강병화;이학수;석영선
    • Journal of the Korean Society of Tobacco Science
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    • v.19 no.1
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    • pp.18-23
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    • 1997
  • The study was carried out to clarify reasonable production of healthy seedling, optimal Pot depth, and appropriate transplanting time, which can be deduced from understanding of seedling quality. Seedling quality results from growth of root and shoot, morphology and distribution of root system under influence of Pot depth during seedling growing period. Stem height, shoot dry weight, leaf area and leaf number were increased in proportion to depth of pots. Growth of shoot and root during seedling growing period showed the most dramatic development between 20th and 25th day after temporary planting. Root number increased as pot depth decrease and total root length and dry weight increased as pot depth increase. In 5cm pot, relative multiplication rate was higher and mean extension rate was lower than other depth of Pot. The limitation of pot volume in which rhizosphere was located enhance the development of roots of second and third order. At 20th days after temporary Planting root distribution was relatively uniform in length and development of adventitious root on stem base was poor as Pot depth decreased.

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