• 제목/요약/키워드: deep irrigation

검색결과 73건 처리시간 0.027초

Ethylene Production and Accumulation in Leaf Sheath and Its Relation to Tillering Suppression of Deep-Irrigated Rice Plants

  • Myung Eul-Jae;Kwon Yong-Woong;Lee Byun-Woo
    • 한국작물학회지
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    • 제49권5호
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    • pp.363-367
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    • 2004
  • The deep irrigation of rice plants brings about some beneficial effects such as reduced tiller production which results in the formation of bigger panicles, prevention of chilling injury, reduced weed growth, etc. The present study was carried out to examine the involvement of ethylene in the suppression of tiller production due to deep water irrigation in rice (cv. Dongjinbyeo). The ethylene production was induced in leaf sheath within 24 hours after the deep water irrigation and has increased even until 30 days after the treatment, recording 4.5-fold increase as compared to the shallow-irrigated rice plants. In the deep water irrigated rice plants, ethylene was accumulated to a high concentration in the air space of submerged leaf sheath as the irrigated water deterred the diffusion of ethylene out of the leaf sheath and ethylene biosynthesis was accelerated by the deep irrigation as well. The ethylene concentration recorded 35-fold increase in the deep-irrigated rice plants for 35 days. The tiller production was reduced significantly by the deep irrigation with water, the tiller bud, especially tertiary tiller bud differentiation being suppressed by the deepwater irrigation treatment, whereas the rice plants deep-irrigated with solutions containing $10^{-5}$ M or $10^{-6}$ M silver thiosulfate (STS), an action inhibitor of ethylene, showed the same or even higher production of tillers than those irrigated shallowly with water. This implies that the ethylene is closely linked with the suppression of tiller production due to deep water irrigation. In conclusion, ethylene, which was induced by hypoxic stress and accumulated in the leaf sheath due to submergence, played a key role in suppressing the tiller production of the deepwater irrigated rice.

논 담수심 처리에 따른 관개용수량의 분석 (Analysis of water balance for pending depth treatment in paddy fields)

  • 박기중;정상옥;손성호
    • 한국농공학회논문집
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    • 제46권4호
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    • pp.13-21
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    • 2004
  • The purpose of this study was to investigate tile effects of pending depth treatment on water balance in paddy fields. Field experiment was performed in an experimental farm in Taegu, southern part of Korea during the rice growing season In 2001, 2002 and 2003. Experimental plots were three 8m ${\times}$ 80m rectangular plots. Three pending depth treatments, very shallow, shallow, and deep were used. Daily values of water balance components were measured in the field. The irrigation amounts measured at the experimental plots showed that the very shallow and the shallow ponded plots required smaller amount than the deep ponded plot. The shallow ponded plot saved irrigation water about 17.7% compared with the traditional deep ponded plot in 2001 The very shallow ponded plot saved irrigation water about 25.7% compared with the traditional deep ponded Plot in 2002, The shallow ponded plot saved irrigation water about 18% compared with the deep ponded plot in 2003.

개심술 후 발생한 심부 흉골 창상감염의 세척-흡입법을 이용한 치험 -4예 보고- (Irrigation-suction System for Management of Deep Sternal Wound Infection after Open Heart Surgery -Four cases-)

  • 김상익;오상준
    • Journal of Chest Surgery
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    • 제36권6호
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    • pp.431-435
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    • 2003
  • 개심술 후 발생하는 심부 흉골 창상감염(급성 종격동염)은 아주 심각한 합병증으로 높은 이환율, 사망률, 그리고 입원기간의 연장을 보인다 치료 결과는 주로 흉골 창상감염의 조기 진단과 적절한 외과적 조치에 의존한다. 개심술 후 심부 흉골 창상감염을 보였던 4예에서 광범위한 변연절제술, 항생제 용액의 높은 압력 하 세척, Robicsek방식에 의한 흉골의 재 고정, 항생제 용액을 사용한 세척-흡입법을 통해 성공적인 치료를 하였기에 문헌 고찰과 함께 보고한다.

육묘 시 해양심층수의 관수 방법이 유묘의 생장에 미치는 영향 (Effects of Irrigation Methods of Deep Sea Water on the Growth of Plug Seedlings)

  • 홍성유;윤병성;강원희
    • 생물환경조절학회지
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    • 제15권2호
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    • pp.156-161
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    • 2006
  • 토마토 초장의 경우 심층수처리는 대조구에 비해 두상관수는 50%, 저면관수는 58% 감소하였고, 표층수 처리구에서는 두상관수는 49%, 저면관수는 56% 감소하였으며, NaCl 처리구에서는 두상관수는 47%, 저면관수는 57%감소하여 저면관수 처리방법이 도장억제에 더 효과적이었다. 지상부 생체중의 경우 두상관수보다 저면관수에서 더 감소하는 경향을 보였으나 뚜렷한 차이가 나타나지 않았다. 지하부 생체중 대조구에 비하여 두상관수는 38%정도 감소한 반면 저면관수는 49% 정도 감소하여, 저면관수에 의해 생육이 현저히 억제되는 결과를 보였다. 지상부와 지하부의 건물중은 생체중과 비슷한 경향을 나타냈다. 이와 같은 결과는 염에 의한 뿌리생육의 저하 때문인 것으로 판단된다. 경경은 대조구에 비해 감소하였지만 처리 방법 간에 뚜렷한 차이를 보이지는 않았다. T/R률에 비추어 보면 두상관수 처리에서 묘소질이 더 뛰어났으나, 묘의 충실도(compactness)는 처리구간 차이는 나타나지 않았다. 토마토의 경우 초장의 억제정도나 묘의 충실도에 비춰보아 저면관수 방법이 도장억제에 더 효과적이라 사료된다. 오이의 경우 처리 농도의 증가에 따라 초장, 생체중, 건물중, 경경, 엽면적이 감소하였다. 저면관수가 두상관수에 비해 도장억제 효과와, 생육억제가 좀 더 뚜렷이 나타나기는 하였으나 두 처리간의 유의적 차이는 나타나지 않았다.

관수빈도에 따른 Kentucky Bluegrass 생육 (Irrigation Frequency for Kentucky Bluegrass (Poa pratensis) Growth)

  • 이상국
    • 아시안잔디학회지
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    • 제26권2호
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    • pp.123-128
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    • 2012
  • Kentucky bluegrass 는 경기장과 골프장의 Tee 나 Fairway 등에 가장 많이 사용이 되는 한지형잔디 초종중의 하나이다. 그러나 Kentucky bluegrass 는 뿌리층이 얕고 그늘에 약한 단점들이 있다. Kentucky bluegrass 의 가장 큰 단점중의 하나는 성장을 위해 수분이 많이 요구되는 초종이다. 올바른 수분관리는 잔디의 시각적 색감과 품질을 유지하기 위해 아주 중요한 요소중의 하나이다. 잔디의 성장을 위해 수분을 공급하는 관수 방법에는 light and frequent (LI) 적은양을 빈번하게 관수하는 방법과, deep and infrequent (DI) 많은양을 필요시에 공급하는 두가지의 방법이 있다. 본 실험은 Kentucky bluegrass 의 생육을 위한 관수빈도의 차이를 알아보기 위해 수행되었다. 실험을 위해 무관수, 매주 4회, 그리고 매주 1회의 3가지 관수방법이 사용되었다. 무관수 처리구의 경우 인위적인 관수는 수행되지 않았으며 Kentucky bluegrass 의 생육을 위해 수분공급은 강수량에 의해서만 이루어졌다. 본 실험결과 2011년 기상조건하에서 강우량에 의존한 무관수는 7,8 월에 최소수용품질을 나타내기 어렵다고 판단되며, 관수빈도에 따른 Kentucky bluegrass 생육의 차이는 나타나지 않는 것으로 나타났다.

Irrigation Frequency and Nitrogen Rates for Tall Fescue Growth

  • Lee, Sang-Kook
    • Weed & Turfgrass Science
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    • 제3권2호
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    • pp.130-136
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    • 2014
  • Tall fescue is commonly well-adapted for low maintain area because of its wear resistance, deep root system, and drought tolerances. Deep and infrequent irrigation refers to applying large amounts of irrigation, 1.3 to 2.5 cm or more, in a single irrigation event. Light and frequent irrigation is commonly used with small amounts of water, 0.3 to 0.6 cm, every day or every other day. N use for turfgrass management is often unnoticed for water management. The objective of this field study was to evaluate the effects of irrigation frequency and N rates for tall fescue growth. The three irrigation treatments were no irrigation (precipitation only), 0.5 cm applied every other day, and 1.8 cm applied once a week at one irrigation event. The nitrogen (N) treatments were the low, medium, and high N rate treatments. The low, medium, and high N treatments were applied over 2, 4, and 6 applications, respectively. If high main maintenance of tall fescue is not important and water source is limited, irrigation is not necessary and, the $9.8gNm^{-2}yr^{-1}$ of two applications can be recommended for tall fescue under the weather condition of the study.

생식생장기 냉수온이 벼의 Source와 Sink 관련형질 및 양분흡수에 관한 연구 III. 관개수온과 수심이 수의 관련제형질 및 양분흡수에 미치는 영향 (Studies on the Growth Characters and Nutrient Uptake Related to Source and Sink by Cool Water Temperature at Reproductive Growth Stage III. Influence of Growth Characters and Nutrient Uptake Related to Panicle by Different Water Temperature and Water Depth)

  • 최수일
    • 한국작물학회지
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    • 제31권2호
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    • pp.242-248
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    • 1986
  • 생식생장기 관개수온과 수심을 달리한 물관리방법이 Source와 Sink 관련형질의 생육 및 무기성분조성에 미치는 영향을 구명하였던 바 다음과 같은 몇가지 결과를 얻었다. 1. 보통관개수에 의한 심수관개는 간장, 수장, 추출도를 신장시켰으나 냉수관개는 역의 관계를 나타내었고 냉수관개수심 5 cm는 감수분열기, 20 cm 심수는 유수형성기에 신장단축이 현저하였다. 2. 보통관개수에 의한 심수관개는 지경과 영화의 착생수 증대 및 퇴화를 경감시켰으나 냉수관개는이들의 착생수 감소 및 퇴화를 조장시켰고, 그 경향은 심수관개와 유수형성기 심수관개에서 현저하였으며 불임율과 등숙비율도 유수형성기에 냉수로 심수관개 할수록 피해가 급증하였다. 3. 식물체의 무기성분조성은 보통관개수로 심수관개 할수록 체내의 전질소 및 인산, 가리, 규산함량이 높았으나 냉수관개는 전규소함양을 높이고 인산, 가리, 규산의 흡수를 억제시켰는데 그 경향은 심수관개에서 현저하였다. 4. 인질비, 가리질비, 규질비는 상수관개보다 냉수로 심수관개 할수록 현저히 낮았고 조성비로 보아 지경은 엽신, 영곡보다 인산, 가리, 규산의 요구양이 많았다. 엽신, 지경, 영곡의 규질비와 수량과는 정의 유의상관이 있었고 엽신, 영곡에 비하여 지경의 규질비가 수량과 밀접한 관계가 있었다.

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담수심과 오수처리수 관개가 벼재배에 미치는 영향 (Effects of fended-Water Depth and Reclaimed Wastewater Irrigation on Paddy Rice Culture)

  • 윤춘경;황하선;정광욱;전지홍
    • 한국농공학회지
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    • 제45권4호
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    • pp.55-65
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    • 2003
  • Pilot study was conducted to examine the effects of ponded-water depth and reclaimed wastewater irrigation on paddy rice culture. For the ponded-water depth effect, three treatments of shallow, traditional, and deep water depths were applied, and each treatment was triplicated. The irrigation water for the treatment pots was an effluent from constructed wetland system for sewage treatment, while the control pot was irrigated with tap water kept traditional ponded-water depth. Irrigation water quantity varied with ponded-water depth as expected and drainage water quantity also varied similarly, which implies that shallow irrigation might save irrigation water and also reduce environmental impacts on downstream water quality. Rice growth and production were not significantly affected by ponded-water depth within the experimental condition, instead there was an indication of increased production in shallow and deep ponded-water depths compared to the traditional practice. Raising drainage outlet to the adequate height in paddy dike might be beneficial to save water resources within the paddy field. There was no adverse effect observed in reclaimed wastewater irrigation on the rice production, and mean yield was even greater than the control pots with tap water irrigation although statistically not significant. Water-saving irrigation by shallow ponded-water depth, raising the outlet height in diked rice paddy fields, minimizing forced surface drainage by well-planned irrigation, and reclaimed wastewater irrigation are suggested to save water and protect water quality. However, deviation from traditional farming practices might affect rice growth in long term, and therefore, further investigations are recommended before full scale application.

담수심 처리가 논의 물수지에 미치는 영향 (Effects of Ponding Depth Treatment on Water Balance in Paddy Fields)

  • 손성호;정상옥
    • 한국농공학회지
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    • 제44권2호
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    • pp.67-74
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    • 2002
  • The purpose of this study was to investigate the effects of ponding depth treatment on water balance in paddy fields. Three ponding depth treatments, very shallow, shallow, and deep were used. The experimental plots were three 80m $\times$ 8m rectangular plots. Daily values of rainfall amount, ponding depth, irrigation water, drainage water, evapotranspiration, and infiltration were measured in the field. The ponding depth was continuously observed by water level logger during the growing season. The ET was measured by 1-m diameter PVC lysimeters. Irrigation water volume was measured by 75 mm pipe flowmeters and the drainage water volume by 75 mm pipe flowmeters and a recording Parshall flume. The results showed that irrigation water depths were 688.9 mm, 513.6 mm, and 624.4 mm in very shallow, shallow, and deep ponding, respectively. The effective rainfall amounts (effective ratio) were 243.7 mm(48.8%), 344.6 mm(68.9%), and 272.9 mm(54.6%) in very shallow, shallow, and deep ponding, respectively. The three treatments did not show any statistical difference in growth and yields. But the shallow depth treatment showed the largest yield.

담수심 처리가 논의 증발산량에 미치는 영향 (Effects of ponding depth treatment on evapotranspiration in paddy fields)

  • 손성호;박기중;정상옥
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.9-12
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    • 2002
  • The purpose of this study was to investigate the effects of ponding depth treatment on evapotranspiration in paddy fields. Three poding depth treatments, very sallow, shallow, and deep were used. The experimental plots were three $80m{\times}8m$ rectangular plots. Daily values of rainfall amount, ponding depth, irrigation water, drainage water, evapotranspiration, and infiltration were measured in the field. The ponding depth was continuously observed by observed nstaff during the growing season. The ET was measured by 1m diameter PVC lysimeters. Irrigation water volume was measured by 75 mm pipe flow-meters and the drainage water volume by 75 mm pipe flow-meters and a recording parshall flume. The results showed that irrigation water depths were 688.9 mm, 513.6 mm, and 624.4 mm in 2001, and 356.9 mm, 428.6 mm, and 513.2 mm in 2002 in very shallow, shallow, and deep ponding, respectively. The evapotranspiration were 465.0 mm, 484.1 mm, and 415.1 mm in 2001 and 461.3 mm, 476.3 mm, and 470.6 mm in 2002 in very shallow, shallow, and deep ponding, respectively.

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