• 제목/요약/키워드: water flooding treatment

검색결과 50건 처리시간 0.028초

까치박달과 서어나무의 광합성과 수분관계에 미치는 토양 침수의 영향 (The Effect of Soil Flooding on Photosynthesis and Water Relations of Carpinus cordata and Carpinus laxiflora)

  • 박용목
    • The Korean Journal of Ecology
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    • 제20권3호
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    • pp.175-179
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    • 1997
  • To explanin allopatric distribution of Carpinus cordata and C. laxiflora in the field the effect of soil flooding on photosynthesis and water relations was tested with field grown saplings. Under the flooding condition stomatal conductance of C. laxiflora decreased markedly from day two after flooding treatment and remanined low throughout the experiment. In contrast, flooding had no effect on stomatal conductance of C. cordata throughout the exper iment. The rate of photosynthesis of C. laxiflora was significantly suppressed under flooding conditions, whereas that of C. cordata was not affected in the flooded condition. On day seven after flooding treatment xylem pressure potential of C. laxiflora significantly decreased. Flooding, however, did not have any effect on the xylem pressure potential of C. cordata throughout the experiment. From these findings it is concluded that there is a difference in resistance to flooding between C. cordata and C. laxiflora and that one of the the factors responsible for allopatric distribution in the two species is flooding.

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홍수터 복원을 위한 침수 내성 참나무 수종 선발 (Selection on Tolerant Oak Species to Water Flooding for Flood Plain Restoration)

  • 한승주;김혜주;유영한
    • 한국습지학회지
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    • 제11권2호
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    • pp.1-7
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    • 2009
  • 우리나라 하천변 홍수터의 복원수종을 선발하기 위하여 우리나라 낙엽성 참나무 주요 6종의 유식물을 일반 토양(대조구)과 뿌리가 잠기는 침수된 토양에서 재배하여 그 생육변화의 차이를 분석하였다. 생육분석에 사용한 항목은 잎 수, 잎 길이, 잎 폭, 잎 면적, 지상부 길이, 줄기 길이, 줄기 직경, 뿌리 길이, 식물체 길이(뿌리 길이+줄기 길이), 잎 무게, 줄기 무게, 뿌리 무게, 식물체 무게 등 13가지 형질이다. 졸참나무는 관찰한 13가지 모든 형질에서 침수처리구에서도 잘 자라 대조구와 생육 차이가 없었다. 갈참나무는 식물체 길이 만, 떡갈나무는 잎 길이 등 4개 형질에서, 굴참나무는 잎 수 등 6개 형질에서, 상수리나무는 뿌리 길이 등 7개 형질에서, 신갈나무는 잎 수를 제외한 12개의 형질에서 대조구보다 침수 처리구에서 못 자랐다(p<0.05). 전체적으로 볼 때 낙엽성 참나무류의 침수에 대한 내성의 순서는 졸참나무>갈참나무>떡갈나무>굴참나무>상수리나무>신갈나무 순으로 감소하였다. 따라서 참나무류를 하천변의 홍수터 복원 시에는 졸참나무나 갈참나무를 식재하는 것이 바람직하다.

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벼의 관수기간 및 수질이 광합성과 생육에 미치는 영향 (Effect of Overhead Flooding Stress on Photosynthesis and Growth in Rice)

  • 이상각;강병화
    • 한국작물학회지
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    • 제46권3호
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    • pp.209-214
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    • 2001
  • 본 실험은 청수, 반탁수, 탁수에 따른 탁도처리와 관수시간에 따른 광합성, 엽록소형광, 증산량 및 회복능을 분석하여 관수스트레스에 대한 벼의 생리반응을 구명하고자 실시한 결과는 다음과 같다. 1. 광합성은 탁도가 높고, 관수 시간이 경과할수록 감소하였다. 특히 관수 36시간 전까지는 약 25%, 42시간이후에는 약 50%가 감소하였다. 증산량은 탁도 및 관수시간이 증가함에 따라 증가하였으며, 청수에서는 약 30%, 반탁수에서는 약 25%, 탁수에서는 약 20%가 증가하였다. Fv/Fm은 탁도 및 관수시간 증가에 따라 감소하였으며, 청수에서는 48시간이후에, 반탁수 및 탁수에서는 36시간이후 약 20%가 감소하였다. 전질소함량은 관수스트레스에 의해 감소하였고, 탁수처리 36시간이후부터 감소량이 켰다. 2. 관수스트레스에 따른 회복력을 나타내는 건물중은 탁도 리별 차이는 작았으나, 관수시간이 경과할수록 크게 감소하였다. 피해정도는 24시간안에는 약 25%, 42시간이후에는 각 처리구 모두에서 약 50%의 생장감소가 일어났다. 관수 48시간의 반탁수 및 탁수는 고사하였다. 광합성은 탁도에 따라서는 청수에서 약 15%, 반탁수, 탁수에서는 10%가 감소하였고, 특히 42시간이후에는 30-50% 감소하였다. 증산량은 탁도 및 관수시간에 처리간의 차이 없이 약 20%증가하였다. 3. 관수 24시간처리에서 관수처리 시 및 퇴수 후 회복기간에도 광합성과 증산량의 일시적인 감소가 일어났다

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Effect of Flooding and Soil Salinity on the Growth of Yam (Dioscorea batatas) Transplanted by Seedling of Aerial Bulblet in Saemangeum Reclaimed Tidal Land

  • Sohn, Yong-Man;Song, Jae-Do;Jeon, Geon-Yeong;Kim, Doo-Hwan;Park, Moo-Eon
    • 한국토양비료학회지
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    • 제44권1호
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    • pp.8-14
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    • 2011
  • The effect of flooding and soil salinity on the growth of yam (Dioscorea batatas) were studied on the experimantal site temporally established in the south-eastern part of Saemangeum Reclaimed Tidal Land (near Gwanghwal myun, Gimjae-gun, Jellabukdo, Korea). Yam seedlings planted by using aerial bulblet as alternative of sliced tubers, were grown for 20-days and transplanted in black-vinyl mulched ridges (about 20 cm in height) at 70cm interval by $20{\times}60cm$ spacing in the $4^{th}$ of May, 2010. Soil salinity was maintained at lower than 1.2 ds $m^{-1}$ during the growing period and did not result to salt injury in all plants. However, flooding injury very seriously led to plant death and plant mortality rates at $67{\pm}21$ and $82{\pm}9%$ of yam plants in the compost and no compost treatment, respectively, died by heavy flooding during the rainy summer season. The main reasons of the flooding injury included the decreased rainfall acceptable capacity (RAC) after the rising of water table and a slowdown of water infiltration rate after the formation of an impermeable soil crust in the furrow bottom with continuous and heavy downpour during the rainy summer season. The effect of compost treatment was not statistically observed because of the severe spatial difference caused by wet injury, although yam tuber yield was higher at 30 kg $10^{-1}$ in the compost treatment than in the no-compost treatment at 20 kg $10^{-1}$. However, the size of tuber ranged at 1.23 to 1.60 cm in diameter and 3.7 to 5.0 cm in length in all both treatment, which means they are still reproducible for the next cropping season. Conclusively, proper counter-flooding measure and soil salinity control critically important for successful yam production in Saemangeum Reclaimed Tidal Land.

Waterlogging induced oxidative stress and the mortality of the Antarctic plant, Deschampsia antarctica

  • Park, Jeong Soo;Lee, Eun Ju
    • Journal of Ecology and Environment
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    • 제43권3호
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    • pp.289-296
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    • 2019
  • We investigated the mortality and the oxidative damages of Deschampsia antarctica in response to waterlogging stress. In field, we compared the changes in the density of D. antarctica tuft at the two different sites over 3 years. The soil water content at site 2 was 6-fold higher than that of site 1, and the density of D. antarctica tuft decreased significantly by 55.4% at site 2 for 3 years, but there was no significant change at site 1. Experimental results in growth chamber showed that the $H_2O_2$ and malondialdehyde content increased under root-flooding treatment (hypoxic conditions-deficiency of $O_2$), but any significant change was not perceptible under the shoot-flooding treatment (anoxic condition-absence of $O_2$). However, total chlorophyll, soluble sugar, protein content, and phenolic compound decreased under the shoot-flooding treatment. In addition, the catalase activity increased significantly on the 1st day of flooding. These results indicate that hypoxic conditions may lead to the overproduction of reactive oxygen species, and anoxic conditions can deplete primary metabolites such as sugars and protein in the leaf tissues of D. antarctica. Under present warming trend in Antarctic Peninsula, D. antarctica tuft growing near the shoreline might more frequently experience flooding due to glacier melting and inundation of seawater, which can enhance the risk of this plant mortality.

Rice Bran Application under Deep Flooding can Control Weed and Increase Grain Yield in Organic Rice Culture

  • Yan, Yong-Feng;Fu, Jin-Dong;Lee, Byun-Woo
    • Journal of Crop Science and Biotechnology
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    • 제10권2호
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    • pp.79-85
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    • 2007
  • Rice bran application just after transplanting has been increasingly practiced as an herbicide-substitute for organic rice production in Korea. However, this practice is frequently reported to be unsatisfactory in weed suppression. An experiment with five treatments that combines flooding depth, rice bran application dose, and herbicide treatment was done in the paddy field to evaluate whether rice bran application under deep flooding can lead to a successful weed control in compensation for the single practice of rice bran application. Rice bran was broadcasted on the flood water surface just after deep flooding of 8 to 10cm that was started at seven days after transplanting. In the shallow flooding plot without herbicide six weed species were recorded: Monochoria vaginalis, Echinochloa crus-galli, Ludvigia prostrate, Cyperus amuricus, Aneima keisak, and Bidens tripartite. Among the first four dominant weed species, deep flooding significantly suppressed the occurrence of Echinochloa crus-galli and Cyperus amuricus while did not suppress the occurrence of Monochoria vaginalis and Ludwigia prostrate. On the contrary, rice bran application under deep flooding suppressed significantly Monochoria vaginalis and Ludwigia prostrate while didn't exert an additional suppression of Echinochloa crus-galli and Cyperus amuricus compared to deep flooding alone. Rice bran application and deep flooding suppressed complimentarily all the six weed species to a satisfactory extent except for Monochoria vaginalis of which suppression efficacy was 31.9%. Deep flooding reduced the panicle number substantially by inhibiting the tiller production, increased the spikelet number per panicle slightly, and leaded to a lower rice grain yield compared to shallow flooding with herbicide. Rice bran application under deep flooding mitigated the panicle reduction due to deep flooding, increased the spikelets per panicle significantly, and thus produced even higher grain yield in the rice bran application of 2000kg $ha^{-1}$ as compared to the shallow flooding treatment with herbicide. In conclusion, this practice applying rice bran under deep flooding would be promising to be incorporated as an integral practice for an organic rice farming system.

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벼의 관수기간 및 수질이 단백질, 지방산조성 및 지질과산화에 미치는 영향 (Effect of Overhead Flooding Stress on Protein Profiles, Fatty Acid Composition, and Lipid Peroxidation in Rice)

  • 이상각;이병모;강병화
    • 한국작물학회지
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    • 제46권3호
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    • pp.215-220
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    • 2001
  • 본 연구는 혀의 분얼최성기의 관수스트레스 시 탁도(청수, 반탁수, 탁수) 및 관수시간에 따라 반응하는 단백질, 지방산 조성 및 지질과산화(malodialdehyde)를 정량하여 관수에 따른 생육장해 및 그 작용기작을 구명하여, 관수에 따른 생화학적 대사의 기초자료를 제공하고자 실시되었다. 관수스트레스에 의해 가용성단백질은 약 20%가 감소하였다. 특히 탁도가 높고 관수시간이 경과할수록 급격히 감소하였으며, 관수 36시간부터 감소량이 크게 나타났다. 단백질 전기영 동패턴은 관수스트레스에 따라 생성이나 소멸한 펩타이드는 없었으나 약 53Kd부위의 폴리펩타이드는 관수초기부터 함량이 증가하였고, 약 28Kd는 48시간, 54시간에서만 함량이 증가하였다. 관수스트레스에 의한 지질의 과산화정도는 약 150%가 증가하였고, 탁도처리에서 청수와 반탁수간의 차이는 작은 경향이었지만, 관수 60시간에서 약 160-180%가 증가하였다. 그러나 탁수에서는 관수초기부터 malondialdehyde함량이 높았고, 36시간이후부터는 약 190-200%로 급격히 증가하였다. Catalase는 탁도가 높고 처리시간이 경과할수록 활성은 급격히 증가하였다. 관수 48시간을 기준으로 catalase 활성변화가 크게 나타났다. 지방산조성의 변화는 포화지방산의 조성비율은 증가하고 불포화지방산은 감소하였다. 특히 불포화지방산 중 monounsaturated은 증가하였고 polyunsaturated의 상대적인 조성비율은 감소하였다. Double bond index는 탁도가 높을수록 관수기간이 경과할수록 감소폭은 커서 불포화정도가 떨어짐을 나타냈다.

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Nitrogen Uptake and Growth of Soybean Seedlings under Flooding Stress

  • Won Jun-Yeon;Ji Hee-Chung;Cho Jin-Woong
    • 한국작물학회지
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    • 제51권2호
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    • pp.118-122
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    • 2006
  • This experiment was carried out on plastic pots ($40cm{\times}25cm{\times}30cm$) filled with sand soil at greenhouse using two soybean cultivars with small seed; one was Pungsannamulkong (PSNK) recognized as a tolerant cultivar against excessive water stress and the other one was Sobaeknamulkong (SBNK) recognized as a susceptible cultivar. Seed was sown with 30 plants of 2 hills, and the amount of applied fertilizer was N; 3.0 g, P; 3.0 g, and K; 3.4 g per $m^2$ with all basal fertilizations. Plants were grown under photoperiod of natural light with day temperature of $31{\pm}5^{\circ}C$ and night temperature of $22{\pm}1^{\circ}C$. The flooding treatment was done for 3, 5, 7 and 10 days by filling pots with tap water up to 1 cm above the level of the soil surface when plants were 2 days after emerging. Nitrogen uptake by leaves of soybeans decreased significantly by the flooding after 6 days. This significant reduction of N uptake by flooding was evidently recognized from the chlorosis of leaves. The dry matter of flooded soybean seedlings significantly decreased compared to non-flooded soybean seedlings at 10 days. The dry matter of roots also showed similar result of the shoot. Shoots had more N reduction than roots under the flooding. This N reduction was more pronounce in SBNK than in PSNK. Chlorophyll content of flooded soybeans showed decreasing or non-increasing tendency, and the reduction of chlorophyll content was more in SBNK than in PSNK from the flooding stress. Nitrate content of soybean seedlings with flooding stress showed decreasing tendency in shoot and root parts. Ammonium content, however, was higher in flooding stress compared to the non-flooding. Flooding caused a remarkable change in the AA (amino acid) composition and TAA (total amino acid) concentration in the leaves of soybean seedlings.

An option to provide water and fertilization for rice production in alkaline soil: fertigation with slow release fertilizers (SRFs)

  • Young-Tae Shin;Kangho Jung;Chung-Keun Lee;Jwakyung Sung
    • 농업과학연구
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    • 제49권4호
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    • pp.871-879
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    • 2022
  • An increasing global population requires a greater food supply, and accordingly there is demand for enhanced production of rice, as a major crop plant that covers half of the world's population. Rice production in arid area is extremely difficult due to poor soil fertility, salinity, deficit of irrigation water, and weather conditions. The aim of the present study was to determine whether various fertilization recipes could provide a countermeasure to allow rice production while also providing soil amendment such as soil pH adjustment. The study was conducted at an experimental field of the United Arab-Emirates (UAE) from January to April, 2022. Rice seedlings (cv. Asemi, alkaline-resistant) were transplanted in plastic containers, and different types of water and nutrient managements were employed as follows: water management (flooding and aerobic for NPKs treatment group) and nutrient management (NPKs, slow release fertilizers [SRFs] and SRFs + NPK-1 treatment groups with flooding). Water and nutrient management did not show any effect on soil pH adjustment. Rice growth was significantly enhanced in the flooding compared to the aerobic condition, whereas the effect of nutrient management clearly differed among the treatment groups, with SRFs + NPK-1 showing the best results followed by SRFs and NPKs. Most of the fertilization groups markedly accumulated soluble sugars in the shoots and grains of rice plants, but concomitantly a decrease in the roots. Overall, the level of starch showed a tendency of relatively slight perturbation by fertilization. Taken together, the results indicate that soil physical structure should be preferentially amended to find the key for suitable rice production.

벼와 피의 침관수에 따른 생장 반응 (Growth Responses of Rice and Barnyardgrass Varieties to Flooding at Early Growing Period)

  • 김해진;오성환;박종현;조성우;우선희;이철원
    • 한국작물학회지
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    • 제59권3호
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    • pp.239-244
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    • 2014
  • 본 연구는 벼 담수직파재배에서 벼와 피 종의 관수 처리 전 후의 생장 반응과 단백질 발현 양상에 대한 기초자료를 얻고자 수행하였다. 1. 벼와 피종들의 자연 상태에서의 파종후 10일 벼와 피종들의 초장은 10 cm 정도로 차이가 없었으나 파종후 25일부터는 벼에 비하여 피 종들의 초장이 더욱 현저하게 신장하였고, 피 종에서는 식용피의 초장이 현저히 신장되었다. 2. 벼와 피를 생육 초기에 관수하였을 때 벼의 초장은 관수후 3일에서 7일까지도 신장하였으나 피 종들의 초장 신장은 큰 변화가 없었으며, 관수기간 중 벼는 관수후 3일에 1.8배, 관수후 5일에 2.5배, 관수후 7일에 2.7배 정도의 신장률을 보인데 비하여 물피와 돌피는 1.1~1.3배, 식용피는 1.4~1.7배를 나타냄으로서 관수에 대한 저항도는 피에 비하여 벼가 월등히 높은 것으로 나타났다. 3. 관수 종료후 벼와 피의 초장의 생장 속도를 보면 벼는 완만하게 생장하는데 비하여 피종들은 관수 종료후에는 벼보다 급격히 초장이 크게 신장하였고, 피 종에 따라서는 식용피>돌피>물피의 순으로 크게 신장하였다. 4. 관수에 따른 벼와 피의 단백질 spots를 비교한 결과 벼의 잎 단백질 spots은 모두 감소하거나 없어졌지만 피종들의 단백질 spots이 더 선명하게 감소하거나 없어졌다.