• 제목/요약/키워드: shoot accumulator

검색결과 3건 처리시간 0.014초

박달나무의 반형매 가계간 Cd Phytoremediation과 축적 특성 (Characteristics of Cd Accumulation and Phytoremediation among Three Half-sib Families of Betula schmidtii)

  • 오창영;이재천;한심희;김판기
    • 한국농림기상학회지
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    • 제6권3호
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    • pp.204-209
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    • 2004
  • Cd 처리에 대한 박달나무의 반형매 차대간의 Cd 흡수 및 이동 패턴을 알아보고자 수행한 결과, 잎의 주간내 위치에 따른 Cd농도는 지제부에서 높게 나타나고 정단부로 올라 갈수록 농도가 낮아지는 경향을 보였다. 대체로 식물체내에서 Cd의 농도 분포는 뿌리>줄기>잎의 순으로 나타났지만, 가계별, 처리별로 상이한 결과가 나타나 가계간 유전적인 요인이 크게 작용한 것으로 판단된다. 모든 가계의 처리구에서 지상부와 지하부의 Cd 농도 비율이 1.26으로 나타나 박달나무는 Cd을 흡수하여 지상부로 보내는 축적종의 경향을 갖고 있는 것으로 판단된다. 또한 토양 중금속 농도와 식물체내 중금속 농도의 비도 가계간 차이는 있지만, Cd을 능동적으로 흡수하여 지상부로 이동시키는 Cd 정화 수종으로 판단된다. 하지만 박달나무는 Cd에 대한 반응이 가계간 다양하므로 토양 중 Cd정화를 위해 이용할 경우, 정화 능력이 우수한 수종을 선발하는 것뿐만 아니라, 같은 수종 내에서도 내성 능력과 정화능력이 차이가 있으므로 가계 선발이 필요할 것이다.

Pb처리에 따른 전동싸리 유식물의 생장적응과 증금속의 조절 (Regulation of heavy metal and Growth Adaptation of Meliotus suaveolens Seedlings Treated with Pb)

  • 박태규;송승달
    • The Korean Journal of Ecology
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    • 제21권3호
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    • pp.179-186
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    • 1998
  • Effects of lead(Pb) and calcium(Ca) on growth responses, accumulation of heavy metals and nitrogen fixation activities of Melilotus suaveolens seedlings were quantitatively analyzed during growing period. Pb contents of the root treated with 30, 100 ppm Pb and 100 ppm Pb added 100 ppm Ca were 54.1, 90.9 and 26.1 folds higher than that of the control, respectively, at pH 4.2 in 28th days, and heavy metal content of plant increased with increasing of pH and Pb concentration. The melilot plant was classified as a Pb accumulator by higher accumulation of Pb in shoot than that of root. Pb treatments resulted in inhibiton of height and chlorophyll contet, and Ca treatment increased height and chlorophyll content insignificantly at pH 4.2 in 28 days. The plant biomass reduced 49, 60 and 54% at pH 4.2 and 47,53 and 50% at pH 6.5, respectively, by 30, 100 ppm Pb and 100 ppm Pb added 100 ppm Ca treatment. Specific nitrogen fixation of nodules reduced 68.4% and 46.6% by 100 ppm Pb treatment and 3.7% and 24.9% by 100 ppm Pb added 100 ppm Ca at pH 4.2 and pH 6.5, respectively, so Ca inhibited significantly Pb activity and toxicity in acdic pH. Nodule formation were reduced to 33, 33 and 50% at pH 4.2 and 50, 33 and 38% at pH 6.5 by 30, 100 ppm Pb and 100 ppm Pb added 100 ppm Ca, respectively.

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식물정화공법에서 다양한 중금속의 식물체로의 흡수 및 축적 특성 비교: 식물체 종류, 중금속 종류, 토양 내 중금속 농도를 중심으로 (Characteristics of Heavy Metals Uptake by Plants: Based on Plant Species, Types of Heavy Metals, and Initial Metal Concentration in Soil)

  • 정슬기;김태성;문희선
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권3호
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    • pp.61-68
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    • 2010
  • Phytoextraction, one type of phytoremediation processes, has been widely used in the removal of heavy metals from polluted soil. This paper reviewed literature on metal uptake by plants and characterized the metal uptake by types of metals (Zn, Cu, Pb, Cd, and As), plant species, initial metal concentrations in soil and the distribution of metals in different parts of plants. The potential of metal accumulation and transport by plants was closely related to plants species, types of metals, and initial metal concentrations in soil. The plants belonging to Brassicaceae, Solanaceae, Poaceae, and Convolvulaceae families have shown the high potential capacity of Cd accumulation. The Gentianaceae, Euphorbiaceae, and Polygonaceae families have exhibited relatively high Pb uptake potential while the Pteridaceae and Cyperaceae families have shown relatively high Zn uptake potential. The Pteridaceae family could uptake a remarkably high amount of As compared with other plant families. The potential metal accumulation per plant biomass has increased with increasing initial metal concentration in soil up to a certain level and then decreased for Cd and Zn. For As, only Pteris vittata had a linear relationship between initial concentration in soil and potential of metal uptake. However, a meaningful relationship for Pb was not found in this study. Generally, the plants having high metal uptake potential for Cd or Pb mainly accumulated the metal in their roots. However, the Euphorbiaceae family has accumulated more than 80% of Pb in shoot. Zn has evenly accumulated in roots and stems except for the plants belonging to the Polygonaceae and Rosaceae families which accumulated Zn in their leaves. The Pteridaceae family has accumulated a higher amount of As in leaves than roots. The types of metals, plant species, and initial metal concentration in soil influence the metal uptake by plants. It is important to select site-specific plant species for effective removal of metals in soil. Therefore, this study may provide useful and beneficial information on metal accumulation by plants for the in situ phytoremediation.