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- W4237546030 startingPage "143" @default.
- W4237546030 abstract "한국은 양적으로 강수량이 풍부하지만 강우현상이 편중되어 매년 일정기간의 가뭄기를 겪는다. 더구나 그 토양은 대부분 화강암에서 유래한 거친 입자의 것으로서 보수력이 낮다. 수 종의 참나무류와 소나무의 수분스트레스에 대한 반응 결과는 수분수지가 식생의 분포를 결정하는 주 요인임을 보여주었다. 뿐만 아니라 몇몇 상록식물의 월동기간 중 내한성 기작에 기인한 탈수 정도는 자연상태에서 그들의 분포와 밀접하게 관계되었다. 수분스트레스 처리 실험 결과 소나무는 건조에 대해 강한 내성을 보였지만 그 유식물은 가뭄기에 높은 고사율을 나타내었다. 그 고사율은 지소의 토양수분함량에 비례하는 경향이었다. 가뭄이 심한 6월 중 삼림토양의 수분함량과 수분스트레스 처리 실험에서 소나무 유식물이 영구위조점에 도달한 시점에서 배지토양의 수분함량을 비교한 결과는 가뭄기에 소나무 유식물의 높은 고사율이 수분부족에 기인함을 입증하였다. 대기오염물질 폭로실험 중 측정된 시료식물의 수분포텐셜은 시료식물에서 가시피해의 발생과 그 내성에 수분요인이 관계될 가능성을 보여주었다. 야외 현장 조사와 실내실험 결과 둘 다에서 심한 대기오염에 노출된 식물은 그렇지 않은 것과 비교하여 수분소실이 빠르게 일어나는데, 그것은 오염물질에 의한 잎 표면의 손상 정도와 관계되었다. 산성 토양에서 높은 함유량을 보이는 알루미늄은 식물의 뿌리생장을 억 제하거나 비정상적 분포를 가져와 수분스트레스를 유발하였다. 대기오염과 토양 산성화에 기인한 이러한 수분스트레스 효과는 한국의 기후와 토양이 가지는 기존의 수분결핍효과에 덧붙여져 삼림쇠퇴를 유발하는 주 요인으로 작용할 가능성이 있다. 토양의 유기물 함량을 높여 포장용수량 증가에 기여할 수 있는 sludge는 산성토양을 개량하는데 기존의 개량제 못지않은 효과를 보였고, 낙엽 추출물 또한 알루미늄에 의한 수분스트레스 효과를 완화시키는데 기여하였다. 이러한 결과를 종합하여 한국에서 삼림쇠퇴를 유발할 수 있는 스트레스요인들의 잠재적 상호작용을 모식화하였다. 나아가 그것을 완화할 수 있는 복원방안을 토양개량과 식생복원의 측면에서 제시하였다. Korea has plentiful precipitation but rainfall events concentrate on several months of rainy season in her weather condition. Korea, therefore, experiences drought for a given period every year. Moreover the soil has usually low water holding capacity, as it is composed coarse particles originated from the granite. Response of several oaks and the Korean red pine (Pinus densiflora) on water stress showed that water budget was significant factor determining vegetation distribution. In addition, dehydration level due to cold resistance mechanism of several evergreen plants during the winter season was closely related to their distribution in natural condition. Experimental result under water stress showed that the Korean red pine was very tolerant to desiccation but the seedlings showed high mortality during the dry season. The mortality tended to proportionate to soil moisture content of each site. A comparison between soil moisture content during June when it is severe dry season and moisture content of the culture soil when the pine seedlings reached the permanent wilting point due to water withheld proved that high mortality during the dry season was due to water deficit. Water potential of sample plants measured during the exposure experiment to the air pollutant showed a probability that water related factors would dominate the occurrence of visible damage and the tolerance level of sample plants. In both field survey and laboratory experiment, plants exposed to air pollution showed more rapid transpiration than those grown in the unpolluted condition. The result would due to injury of leaf surface by air pollutants. Aluminum (Al/sup 3+/) increased in the acid soil not only inhibits root growth but also leads to abnormal distribution of root system and thereby caused water stress. The water stresses due to air pollution and soil acidification showed a possibility that they play dominating roles in inducing forest decline additionally to the existing water deficit due to weather and soil conditions in Korea. Sludge, which can contribute to improve field capacity, as it is almost composed of organic matter, showed an effect ameliorating the retarded growth of plant in the acidified soil. The effect was not less than that of dolomite known in widely as such a soil ameliorator. Litter extract contributed also to mitigate the water stress due to toxic Al/sup 3+/. We prepared a model showing the potential interaction of multiple stresses, which can cause forest decline in Korea by synthesizing those results. Furthermore, we suggested restoration plans, which can mitigate such forest decline in terms of soil amelioration and vegetation restoration." @default.
- W4237546030 created "2022-05-12" @default.
- W4237546030 date "2003-06-01" @default.
- W4237546030 modified "2023-09-24" @default.
- W4237546030 title "Ecological Importance of Water Budget and Synergistic Effects of Water Stress of Plants due to Air Pollution and Soil Acidification in Korea" @default.
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