• 제목/요약/키워드: upland

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충남지역 배추재배지 발생잡초 분포특성 (Occurrence and distribution characteristics of weed species on upland Chinese cabbage fields in Chungnam province)

  • 황기선;엄민용;박수혁;원옥재;서수정;이인용;박기웅
    • 농업과학연구
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    • 제41권4호
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    • pp.303-308
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    • 2014
  • This study was conducted in order to utilize the basic data for weed control by surveying the occurrence of weed species. Total 63 sites of upland Chinese cabbage fields in Chungnam Provinces were investigated. The result of survey, 71 weed species in 25 families were identified and classified to 39 annuals, 16 biennials and 16 perennials. Based on the occurrence ratio, the most weed species belonged to Compositae (20 species). 8, 6 and 5 weed species belonged to Poaceae, Cruciferae and Polygonaceae, respectively, and these 10 weed species in the most six families accounted for 50% of total weed occurrence. The most dominant weed species in upland Chinese cabbage fields were Portulaca oleracea (8.07%), followed by Digitaria ciliaris (7.54%), Rorippa palustris (6.44%), Chenopodium album (5.73%), Echinochloa crus-galli (5.02%) and Cyperus amuricus (3.95).

쌀단백질(蛋白質)에 관(關)한 연구(硏究) (제2보(第2報)) 갱나수륙도(粳?水陸稻)의 미단백질(米蛋白質) 획분정량(劃分定量) (Studies on the Rice Protein (II) Fractionation of Rice protein of upland and paddy rice with waxy and nonwaxy types)

  • 이춘영;김수일;김성곤
    • Applied Biological Chemistry
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    • 제12권
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    • pp.13-17
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    • 1969
  • 한국산(韓國産) 벼 20품종(品種)(주(主)로 도입(導入) 품종(品種)) 즉 수륙도(水陸稻) 찹쌀 및 멥쌀 각(各) 5품종(品種)씩에 대하여 그 조단백질량(粗蛋白質量)과 각획분(各劃分) 단백질의 량(量)을 분석 검토하였다. 멥쌀보다 찹쌀 그리고 수도(水稻)보다 육도(陸稻)가 평균으로 단백질함량이 많았으며 oryzenin 과 albumin의 각(各) 함량비(含量比)도 같은 경향을 보였다.

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전전환답 포장에서의 지하수위 및 토양수분 변화 특성 (Variational Characteristics of Water-Table and Soil Moisture in Paddy-Upland Rotational Fields)

  • 권순국;윤경섭
    • 한국농공학회지
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    • 제36권2호
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    • pp.123-131
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    • 1994
  • Experimental studies were conducted to make clear the soil moisture environment under the condition of paddy-upland rotational fields by investigating water-table depths and soil moisture contents during growing season of crops in two kinds of soil. The following results were obtained. 1.Although water-table depths fluctuated with the amount of rainfall in the experimental field, it seemed that the variation of vater4able depths in the paddy-upland rotational, field was strongly affected by the condition of locations on paddy fields. 2.It is recognized that the concept of sum of excess water depth(SEWxx) and sum of excess water day(SEDxx) can be used to represent the soil moisture stress index due to the fluctuation of water-table depths. 3.The results of this study clearly indicate that drainage in paddy-upland rotational field to maintain an optimum soil moisture content must be made by introducing the concept of block drainage which needs both subsurface drainage and intercept drainage around a field. 4.Soil moisture contents were affected by both the amount of rainfall and water-table depths, however, the moisture content for top soil showed higher correlation with the amount of rainfall while that for subsoil with water-table depths.

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Effect of Sesame Straw Biochar Application on Soil Physics and Nitrous Oxide Emission in Upland Soil

  • Kang, Se-Won;Cho, Ju-Sik;Kim, Hyun-Tae;Seo, Dong-Cheol;Moon, Sung-Dong
    • 한국토양비료학회지
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    • 제49권3호
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    • pp.259-264
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    • 2016
  • The effect of biochar application on soil physics and nitrous oxide ($N_2O$) emission from upland soil for broccoli cultivation was investigated. Sesame straw biochar (SB) was applied at amounts 0 (IF), 50 (SB50), 100 (SB100), 200 (SB200) kg $10a^{-1}$, respectively. SB addition to the upland soil decreased bulk density, and increased porosity and soil respiration. The $N_2O$ emission rates in all treatments were higher in the order of IF $${\geq_-}$$ SB50 > SB100 $${\geq_-}$$ SB200 treatments. Global warming potential in SB200 treatment decreased by 15.1% compared to IF treatment. Therefore, SB application in upland soil can improve soil physics and reduce $N_2O$ emission.

Culturing Simpler and Bacterial Wilt Suppressive Microbial Communities from Tomato Rhizosphere

  • Roy, Nazish;Choi, Kihyuck;Khan, Raees;Lee, Seon-Woo
    • The Plant Pathology Journal
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    • 제35권4호
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    • pp.362-371
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    • 2019
  • Plant phenotype is affected by a community of associated microorganisms which requires dissection of the functional fraction. In this study, we aimed to culture the functionally active fraction of an upland soil microbiome, which can suppress tomato bacterial wilt. The microbiome fraction (MF) from the rhizosphere of Hawaii 7996 treated with an upland soil or forest soil MF was successively cultured in a designed modified M9 (MM9) medium partially mimicking the nutrient composition of tomato root exudates. Bacterial cells were harvested to amplify V3 and V4 regions of 16S rRNA gene for QIIME based sequence analysis and were also treated to Hawaii 7996 prior to Ralstonia solanacearum inoculation. The disease progress indicated that the upland MM9 $1^{st}$ transfer suppressed the bacterial wilt. Community analysis revealed that species richness was declined by successive cultivation of the MF. The upland MM9 $1^{st}$ transfer harbored population of phylum Proteobacteria (98.12%), Bacteriodetes (0.69%), Firmicutes (0.51%), Actinobacteria (0.08%), unidentified (0.54%), Cyanobacteria (0.01%), FBP (0.001%), OD1 (0.001%), Acidobacteria (0.005%). The family Enterobacteriaceae of Proteobacteria was the dominant member (86.76%) of the total population of which genus Enterobacter composed 86.76% making it a potential candidate to suppress bacterial wilt. The results suggest that this mixed culture approach is feasible to harvest microorganisms which may function as biocontrol agents.

토양의 산성화에 관한 연구 (A Study on the Acidification of Soils)

  • 박병윤;어윤우;양소영;장상문;김정호;이동훈
    • 한국환경과학회지
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    • 제10권4호
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    • pp.305-310
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    • 2001
  • pH($H_2O$), pH(KCI), CEC(cation exchange capacity), O.M.(organic matter) and exchangeable cations(K, Na, Ca, Mg) of paddy soil, upland soil and forest soil in Kumi city were investigated for the purpose of knowing soil acidification and the correlation between soil acidification and leaching of inorganic salts. The mean pH($H_2O$) values of paddy soil were 5.23(surface soil) and 5.69(subsoil) and 4.74(subsoil). The were 6.37(surface soil) and 6.11(subsoil), and those of forest soil were 4.67(surface soil) and 4.74(subsoil). The mean pH(KCl) values of paddy soil were 4.59(surface soil) and 4.98(subsoil) were 5.48(surface soil) and 5.04(subsoil), and those of forest soil were 3.82(surface soil) and 3.89(subsoil). The acidification of forest soil was more rapid than that of paddy soil and upland soil/ The total mean amounts of exchangeable cations(K, Na, Ca, Mg) in paddy soils were 6.14me/100g(surface soil) and 5.64me/100g(subsoil), and those in upland soils were 6.86me/100g(surface soil) and 6.65me/100g(subsoil), and those in forest soils were 4.06me/100g(surface soil) and 3.34me/100g(subsoil). The contents of inorganic salts in forest soil were much less than those of paddy soil and upland soil. The correlation coefficients(r) between pH($H_2O$) values and the total amounts of exchangeable cations in soils were $0.6635^{**}$(surface soil) and $0.6946^{**}$(subsoil), and those between pH(KCl) values and exchangeable cations in soils were 0.6629(surface soil) and $0.5675^{**}$(subsoil). The correlation between soil acidification and leaching of inorganic salts in soil was positively significant at 1% level.

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고랭지밭 현황 파악을 위한 Terra MODIS 위성영상 적용 (Applying Terra MODIS Satellite Image to Analysis of Current State of Upland Field)

  • 박민지;최영순;신형진;이영준;유순주
    • 한국지리정보학회지
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    • 제20권3호
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    • pp.1-11
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    • 2017
  • 도암호 수질 오염의 주요 요인은 상류유역 고랭지밭 탁수 유출로 나타나고 있다. 유역의 고랭지밭 현황 파악은 탁수관리의 매우 중요한 요소이지만 광범위한 면적, 고도와 경사에 따른 접근성 등의 문제로 정보 수집 및 자료 갱신에 어려움이 있다. 현장조사 결과 지적도와 기존 토지피복도의 고랭지밭과 초지가 오분류된 것으로 나타났다. 본 연구에서는 토지피복도의 고랭지밭 분류 정확도 개선을 위해 2000년 5월부터 2015년 9월까지의 MODIS NDVI를 구축하여 적용성을 분석하고 탁수 관리의 기초자료로의 가능성을 제시하고자 하였다.

Duration-Related Variations in Archaeal Communities after a Change from Upland Fields to Paddy Fields

  • Jiang, Nan;Wei, Kai;Chen, Lijun;Chen, Rui
    • Journal of Microbiology and Biotechnology
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    • 제26권5호
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    • pp.867-875
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    • 2016
  • Archaea substantially contribute to global geochemical cycling and energy cycling and are impacted by land-use change. However, the response of archaeal communities to a change from upland field to paddy field has been poorly characterized. Here, soil samples were collected at two depths (0-20 cm and 20-40 cm) from one upland field and six paddy fields that were established on former upland fields at different times (1, 5, 10, 20, 30, and 40 years before the study). Barcoded pyrosequencing was employed to assess the archaeal communities from the samples at taxonomic resolutions from phylum to genus levels. The total archaeal operational taxonomic unit (OTU) richness showed a significant positive correlation with the land-use change duration. Two phyla, Euryarchaeota and Crenarchaeota, were recorded throughout the study. Both the relative abundance and OTU richness of Euryarchaeota increased at both depths but increased more steadily at the subsurface rather than at the surface. However, these data of Crenarchaeota were the opposite. Additionally, the archaeal composition exhibited a significant relationship with C/N ratios, total phosphorus, soil pH, Olsen phosphorus, and the land-use change duration at several taxonomic resolutions. Our results emphasize that after a change from upland fields to paddy fields, the archaeal diversity and composition changed, and the duration is an important factor in addition to the soil chemical properties.

한국의 경사지 밭의 토양 및 물의 보전 관리 전략 (Management Strategies to Conserve Soil and Water Qualities in the Sloping Uplands in Korea)

  • 양재이;유진희;김시주;정덕영
    • 농업과학연구
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    • 제37권3호
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    • pp.435-449
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    • 2010
  • Soils in the sloping uplands in Korea are subject to intensive land use with high input of agrochemicals and are vulnerable to soil erosion. Development of the environmentally sound land management strategy is essential for a sustainable production system in the sloping upland. This report addresses the status of upland agriculture and the best management practices for the uplands toward the sustainable agriculture. More than 60% of Korean lands are forest and only 21% are cultivating paddy and upland. Uplands are about 7% of the total lands and about 62% of the uplands are in the slopes higher than 7%. Due to the site-specificity of the upland, many managerial and environmental problems are occurring, such as severe erosion, shallow surface soils with rocky fragments, and loadings of non-point source (NPS) contaminants into the watershed. Based on the field trials, most of the sloping uplands were classified as Suitability Class III-V and the major limiting factor was slope and rock fragments. Due to this, soils were over-applied with N fertilizer, even though N rate was the recommendation. This resulted in decreases in yield, degradation of soil quality and increases in N loading to the leachate. Various case studies drew management practices toward sustainable production systems. The suggested BMP on the managerial, vegetative, and structural options were to practice buffer strips along the edges of fields and streams, winter cover crop, contour and mulching farming, detention weir, diversion drains, grassed waterway, and slope arrangement. With these options, conservation effects such as reductions in raindrop impact, flow velocity, runoff and sediment loss, and rill and gully erosion were observed. The proper management practice is a key element of the conservation of the soil and water in the sloping upland.

유기질 비료 시비가 밀의 농업형질 및 종자 아미노산 함량에 미치는 영향 (Effect of Organic Fertilizer Application on the Agronomic Traits and Amino Acid Content of Wheat)

  • 박형호;김대욱;황종진;김정태;김욱한
    • 한국유기농업학회:학술대회논문집
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    • 한국유기농학회 2009년도 하반기 학술대회
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    • pp.322-322
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    • 2009
  • 국내산 밀을 유기농 재배하여 친환경 농산물 인증을 받으려면 파종에 필요한 종자도 유기농으로 생산된 것(유기종자)을 사용해야한다. 국립식량과학원에서는 유기종자 생산용 밀 품종 선발을 위한 연구를 수행하고 있으며, 관련 시험으로서 유기질 비료 시비가 밀의 농업형질 및 종자의 아미노산 함량에 미치는 영향을 검토하였다. 무비, 화학비료 및 유기질 비료를 시비한 시험구에 금강밀 등 24개 밀 품종을 파종하여 시험 구별로 출수기 등 농업형질과 수확된 종자의 아미노산 함량을 분석하였다. 밀의 출수기는 시비 조건에 따른 영향을 받지 않았으나 성숙기는 유기질 비료 시비조건에서 화학비료 및 무비보다 1일과 2일 지연되었다. 밀의 간장, 수장, 수수, 수당립수 및 L중은 시비의 종류에 따른 차이를 나타내지 않았다. 한편, 유기질 비료 시비에 따른 밀 종실수량(368.4kg/10a)은 무비 및 화학비료보다 각각 25%와 8% 유의하게 증가하였다. 밀 종자의 전체 아미노산 함량은 무비<화학비료<유기질비료 순으로 유의하게 증가하였다. 각각의 아미노산별로 시비조건에 따른 함량차이를 조사한 결과, Glutamate 등 13종의 아미노산은 시비조건에서 5~16% 증가하였다. Alanine 함량의 경우 무비조건에 비하여 유기질 비료 시비조건에서 38% 증가하였으나 화학비료 시비조건에서는 12% 감소하였다. 한편, tyrosine, phenylalanine 및 proline은 유기질 비료 시비조건에서 11~29% 감소하였으나, 화학비료 시비조건에서 9~36% 증가하였다.

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