• Title/Summary/Keyword: Glycophytes

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Physiological Response on Saline Tolerance between Halophytes and Glycophytes (내염성에 대한 염생식물과 비염생식물의 생리반응)

  • Lee, Byung-Mo;Shim, Sang-In;Lee, Sang-Gak;Kang, Byeong-Hoa;Chung, Il-Min;Kim, Kwang-Ho
    • Korean Journal of Environmental Agriculture
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    • v.18 no.1
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    • pp.61-65
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    • 1999
  • This study was conducted to obtain the basic information on saline tolerance of plants. Fourteen plant species were grown under different salinity adjusted with NaCl. After 14 days treatment, physiological changes were investigated. Proline contents of tested plants were increased as salinity was increased. Acalvpha australis, Bidens bipinnata, Erechitites hieracifolia, Erigeron canadensis, Punicum dichotomiflorum, and Solanum nigrum showed drastic increase of proline contents in 200mM NaCl treatment. But Atriplex gmelini, Suaeda asparagoldes did not show drastic increase. As the NaCl concentration increased to 200mM in media, both contents of $Na^+$ and $Cl^-$ were increased. Acalypha australis, Digitaria sanguinalis, Erechitites hieracifolia, and Solanum nigrum showed drastic increase in $Na^+$ and $Cl^-$ contents under 200mM NaCl. But Suaeda asparagoides. Atriplex gmelini, and Spergularia marina were slightly increased. As salinity increased, the $K^+/Na^+$ ratio of halophytes, such as Suaeda asparagoides, Atriplex gmelini, and Spergularia marina were more slightly decreased than glycophytes.

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Vegetation Distribution and Soil Salinity on Daeho Reclaimed Tidal Land of Kyonggi-Bay in the Mid-West Coast of Korea (우리나라 중서부 서해안 대호 간척지의 식생 분포와 토양 염농도)

  • Kim, Eun-Kyu;Jung, Yeong-Sang;Joo, Young K.;Jung, Hyeung-Gun;Chun, Soul;Lee, Sung-Hun
    • Korean Journal of Soil Science and Fertilizer
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    • v.42 no.6
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    • pp.447-453
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    • 2009
  • Vegetation distribution and soil salinity were surveyed on the conservation plot in the Daeho reclaimed tidal land, in where the plants species distribution was more various than a periodically inundated tidal flat and the early stage of reclamation. According to the soil salinity where the vegetation patches were occurred, the mono patches of Salicornia europaea, Suaeda maritima, and Suaeda glauca were distributed in the average range of 31.05 dS/m in soil salinity, the mixed patches of them were distributed in the average range of 42.75 dS/m. Therefore, Salicornia europaea, Suaeda maritima, and Suaeda glauca showed strong salt tolerance. The mono patches of Aster tripolium, Sonchus brachyotus, and Scirpus planiculm were distributed in the range of 11.73 dS/m in soil salinity, and the mixed patches were distributed in the average range of 9.43 dS/m. Therefore Aster tripolium, Sonchus brachyotus, and Scirpus planiculmis showed moderate salt tolerance. The mono patches of Imperata cylindrica, Trifolium pratense, Miscanthus sinensis, Setaria viridis, and Trisetum bifidum were distributed in the range of 2.42 dS/m in soil salinity. These species showed characteristics of glycophytes with weak salt tolerance. The distribution of vegetation patches was influenced by the soil salinity as pioneer halophytes patches occurred at higher soil salinity zone than facultative halophytes patches, glycophytes patches occurred at lower soil salinity zone than facultative halophytes. These results suggested that occurrence of plant species and plant distribution type might be useful index to evaluate the soil salinity and desalinization in the reclaimed land of the midwest coastal area of Korea.

Studies on the population biology of some clonal plants in a coastal reclaimed land

  • Choung, Yeon-Sook;Joon-Ho Kim
    • The Korean Journal of Ecology
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    • v.14 no.3
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    • pp.327-343
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    • 1991
  • Clonal growth and rhizome architecture of calmagrostis epigeios, were studied in a 15-year old coastal reclamed land. As c. epigeios patch grew from center to margin radially over time, concentric annuli were added. the radial increases of the mature patch were 80~130cm/yr. the patch ages of c. epigeios estimated by relationships between the diameter and is radial increament, were 1~6year old. There were the marked variations of density, phytomass, shoot height and inflorecence frequency with increasing age of rhizome system within the patch. the maximum performance occurred at 2-year-old concentric annuli of the patch. The growth phasic continuum with aging was divided into 5 grwth phases ; pioneer, building, matyre, senile and degenerate. The rhizome aging had a more significant effect on the inflorescence frequency than on the other attributes. new rhizomes tended to diverge from the direction of the parent ramet by sympodial growth. in a 1-year-old patch, average length of rhizome segment was 7cm, average number of internode was 6, and the tillering frequency was 27%. The tillering in the early stage resultd in the increase of shoot density and the producation of multibranching rhizome. as the result of that, circular patchwas formed in a year. The branching structure based on such facts was represented graphically in branching degree of 60 and 100. therefore, c. epigeios with clonal growth may establish and grow vigorously earlier than other glycophytes in high salt conditions such as the coastal reclaimed land.

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Screening of saline tolerant plants and development of biological monitoring technique for saline stress . 1. Survey of vegetation in saline region and determination of saline tolerance of the plant species of the region. (내염성 식물의 탐색 및 생물학적 염해 모니터링 기술의 개발 1. 염해지 식생분석 및 식물종의 내염성 평가)

  • Kang, Byeung-Hoa;Shim, Sang-In
    • Korean Journal of Environmental Agriculture
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    • v.17 no.1
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    • pp.26-33
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    • 1998
  • This experiment was conducted to classify the plant species occurring in the saline reclaimed land by saline tolerance. The vegetation of reclaimed land was composed of various plant species from halophyte to glycophyte showing different saline tolerances. In the investigated saline region, reclaimed land of Youngjong island, Inchun city, 175 species belonging to 32 families were found. Our survey was carried out in two region, having different salinity due to different desalinization. The electricalconductivity (EC) of more saline region showed 48.0mS/cm nd the other region showed 13.0mS/cm. It is assumed that intensity of precipitation and runoff of rainfall may cause salinity gradient in the investigated region. The plant species occurred in the experimental region were classified as 72 species of annual, 42 species of biennial, and 61 species of perennial according to life cycle. For knowing relationship between vegetation of saline region and saline tolerance of occurring species, we tested the saline susceptibility of plant species collected at the saline regions. Testing plants were cultured by nutrient solution containing 200 mM NaCl, the critical concentration of survival in glycophytes. The saline tolerance was graded by the growing capacity in the sand-culture system. The more saline-tolerant species screened by sand culture were Atriplex gmelini, Suaeda asparagoides, Aster tripolium, Suaeda maritima, Salicornia herbacea, and Suaeda japonica. The most saline tolerant family was Chenopodiaceae. Poaceae, Cyperaceae, and Brassicaceae showed relatively high tolerance to saline stress. In the course of growth under the high saline condition, the most noticeable change was the darkening of leaves by increasing of chlorophyll content. The chlorophyll contents were increased with saline stress in most species.

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Changes in Flora Dynamics on the Reclaimed Tidal Flats of Kyonggi-Bay in the Mid-west Coast of Korea (우리나라 중서부 해안 경기만 간척지에서 식생변화)

  • Kim, Eun-Kyu;Jung, Yeong-Sang;Chun, Soul;Joo, Young-K.;Jeong, Hyeung-Geun
    • Korean Journal of Soil Science and Fertilizer
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    • v.42 no.4
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    • pp.289-300
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    • 2009
  • Flora distribution was surveyed in the newly reclaimed tidal flats in the west coastal area in Korea to understand changes in flora dynamics after reclamation. The surveyed reclaimed tidal flats were the newly reclaimed tidal flat in Hangdam, the mid Kyonggi Bay in 2002, and three reclaimed lands in Seukmun and Daeho, Chungnam, and Hangdam in Kyonggi Bay, of which reclamation years based on embankment were 7, 9 and 18 years, respectively. In the newly reclaimed tidal flat, the dominant flora was Suaeda japonica and other florae were rare, while various halophytes and glycophytes were distributed in the reclaimed lands. On the newly reclaimed tidal flat, four species of halophytic pioneer florae, Salicornia europaea, Suaeda glauca, Suaeda japonica, and Suaeda maritime occurred, and along with age facultative halophyte and glycophyte occurred sequently. On the reclaimed lands, the florae were more complex with various facultative halophyte and glycophyte, so these were predominated rather than pioneer halophyte, while one of pioneer halophyte that Suaeda japonica was not occurred. Increasing of various facultative halophyte and glycophyte, and decreasing of pioneer halophyte indicated that flora changed toward to increase of facultative halophyte and glycophyte by aged after reclamation. On the newly reclaimed tidal flat the ratio of flora species changed rapidly with the invasion of plant. This implied that the flora had begun to change in the early stage of reclamation. Facultative halophyte and glycophyte started to increase on the early stage of reclamation but relative density and frequency of pioneer halophyte was higher than facultative halophyte and glycophyte. According to the investigation up to 3 years after reclamation, pioneer halophyte predominated on it. Although flora changed, there were common representative halophytes among the reclaimed tidal flats: Salicornia europaea, Suaeda maritima, and Suaeda glauca as pioneer halophyte, Aster tripolium, Sonchus brachyotus, and Phragmites communis as facultative halophytes.