• 제목/요약/키워드: Replanting

검색결과 39건 처리시간 0.028초

인삼 육성계통의 Fusarium sozani에 의한 근부병 저항성 비교 (Comparison of Resistance of Root Rot Caused by Fusarium solani in Ginseng Breeding Lines)

  • 천성룡;김홍진
    • Journal of Ginseng Research
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    • 제14권1호
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    • pp.50-56
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    • 1990
  • Root-rot of ginseng caused by Fusarium solani is one of the most obstacles to ginseng cultivation. We evaluated some inoculating techniques of ginseng with Fusarium solani, for selection of disease resistant breeding lines. The most effective inoculating techniques evaluated were inserting toothpicks colonized by F. solani into the seedling roots in laboratory test and dusting seedlings with vermiculite after dipping in conidial sllspension and then replanting method in field test. The resistance to diseased by F. solani was lines of 82022 and 82066 in laboratory test. 82920-1 and 78093 in field test.

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부산물 비료의 시비량이 잎들깨의 엽 특성.채엽수 및 연작에 미치는 효과 (Effect of Fertilizer Level of Organic Compost on Leaf Characteristics, Leaf Number and Replanting in Perilla frutescens)

  • 하상영;정대수;박선일;여수진
    • 생명과학회지
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    • 제9권5호
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    • pp.628-637
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    • 1999
  • This study was conducted to elucidate the leaf characteristics, leaf number and fertilizing level in perilla, Perilla frutescens, which was cultivated using five types organic compost with three level. Number of the harvested leaves was effective in Heulgnara with 800 kg/10 and Poongjag with 1200 kg/10 at 70 days and organic compost were the highest in Sarang followed by Heulgnara and Poongjag in order. Number of leaf harvested during the fifth times was the highest Poongjag followed by Heulgnara and Sarang in order. Leaf length and leaf width were the highest in Poongjag with 1200 kg/10 a at 70 days. Simple method for calculation of fertilizer level was N 6.09 kg and slaked lime 36.56 kg in Heulgnara 100 kg per 10 a. Recommendation level of chemical fertilizer in Heulgnara due to fertilizer method was N 275.10 kg, P 4.3 kg and K 10 kg per 10 a.

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인삼 논재배 연작지에서 윤작물 재배가 토양화학성, 토양 미생물상 및 2년생 인삼의 생육에 미치는 영향 (Crop Rotation in Paddy Soil Exhibiting Crop Failure Following Replanting: Effect on Soil Chemical Properties, Soil Microbial Community and Growth Characteristics of 2-Year-Old Ginseng)

  • 이성우;박경훈;이승호;장인복
    • 한국약용작물학회지
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    • 제24권4호
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    • pp.294-302
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    • 2016
  • Background: Crop rotation plays an important role in improving soil chemical properties, minimizing the presence of disease pathogens, and assists in neutralizing autotoxic effects associated with allelochemicals. Methods and Results: Five rotation crops of sudan grass, soybean, peanut, sweet potato, and perilla were cultivated for one year with an aim to reduce yield losses caused by repeated cropping of ginseng. In 2-year-old ginseng grown in the same soil as a previous ginseng crop, stem length and leaf area were reduced by 30%, and root weight per plant was reduced by 56%. Crop rotation resulted in a significant decrease in electrical conductivity, $NO_3$, and $P_2O_5$ content of the soil, whereas organic matter, Ca, Mg, Fe, Cu, and Zn content remained-unchanged. Soil K content was increased following crop rotation with sudan grass and peanut only. Rotation with all alternate crops increased subsequent ginseng aerial plant biomass, whereas root weight per plant significantly increased following crop rotation with perilla only. A significant positive correlation was observed between root rot ration and soil K content, and a significant negative correlation was observed between ginseng root yield and the abundance of actinomycetes. Crop rotation affected the soil microbial community by increasing gram negative microbes, the ratio of aerobic microbes, and total microbial biomass whereas decreases were observed in actinomycetes and the ration of saturated fatty acids. Conclusions: In soil exhibiting crop failure following replanting, crop rotation for one year promoted both soil microbial activity and subsequent ginseng aerial plant biomass, but did not ameliorate the occurrence of root rot disease.

고려인삼(高麗人蔘)의 답전윤환재배(畓田輪換栽培) 효과(效果) (Crop Rotation of the Korean ginseng (Panax ginseng C.A.Meyer) and the Rice in Paddy Field)

  • 조재성;김충수;원준연
    • 한국약용작물학회지
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    • 제4권1호
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    • pp.19-26
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    • 1996
  • 인삼의 답전윤환재배에 있어서의 문제점을 파악하는 한편 답전윤환 재배지 토양의 이화학적 특성과 인삼의 생육 및 수량을 조사하며 논에서의 인삼연작재배의 안전성 기작을 구명하여 인삼의 답전윤환재배를 위한 기초를 확립하고자 본 실험을 수행하였던 바 그 결과를 요약하면 다음과 같다. 1. 금산지방에서의 답전윤환 인삼재배시 가장 심각한 문제점은 벼의 재배후에 토양에 잔류하는 무기염류의 과다였다. 2. 밭재배지에 비하여 답전윤환 인삼재배지에서 유기물함량과 CEC 그리고 가리를 위시한 각종 양이온의 함량이 높은 경향이었다. 3. 답전윤환 초작지와 재작지에서의 3년생 및 4년생 인삼의 경엽생육은 밭초작지 인삼의 생육과 뚜렷한 차이가 없었으나 이들에 비해 밭재작지 인삼의 경엽생육은 현저하게 떨어졌다. 또한 답전윤환 재배지에서는 황병의 발생이 많았으며 땅강아지가 우점해충이었다. 4. 답전윤환 초작지와 재작지에서의 4년생 인삼근의 생육 및 간당 근수량은 밭초작지 인삼의 생육 및 수확량과는 뚜렷한 차이가 없었으나 이들에 비해 밭재작지 인삼근의 수량은 현저한 감소를 나타내었다. 5. 답전윤환재배시 인삼의 재배후에 4년정도 벼를 재배한 다음 다시 인삼을 재배하여도 인삼에 연각장해현상이 뚜렷하게 나타나지 않았으며 또한 근부병의 발생도 심하지 않아 비교적 안전한 재작이 가능하였다. 6. 답전윤환지에서 재배된 4년생 인삼의 조-Saponin 및 개별 Saponin함량은 관행의 방법으로 재배된 인삼과 전혀 차이가 없었다. 7. 정상답에 비하여 인삼재배답 토양의 비옥도가 대체로 약간 저조한 경향이었으나 수도의 생육 및 수량에는 전혀 영향을 미치지 않았다.

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Vegetative Compatibility Groups and Pathogenicity Variation among Isolates of Fusarium oxysporum f.sp. melonis

  • Ahn, Il-Pyung;Lee, Yong-Hwan
    • The Plant Pathology Journal
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    • 제16권4호
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    • pp.227-230
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    • 2000
  • A total of 90 isolates of Fusarium oxysporum f.sp. melonis, the causal agent of oriental melon (Cucumis melo var. makuwa) wilt, was isolated from symptomatic tissues of oriental melon from 4 provinces in Korea. These isolates were grouped into vegetative compatibility groups (VCGs) by demonstrating heterokaryosis through complementation using nitrate nonutilizing (nit) mutants. No self-incompatibility was observed in any of isolates. All isolates were grouped into 3 VCGs ; A, B, and C. iSOLATES BELONGING TO VCG A and VCG B accounted for 87% and 91% of the fungal population collected in 1991 and 1993, respectively. As the increment of cultivation period in the same field, the proportion of isolates belonging to VCG B increased whereas that of isolates belonging to VCG A decreased. Mean virulence of a total population increased as the increment of cultivation period in the same field. Isolates belonging to VCG B showed the highest increment of virulence. These data suggest that replanting of a host plant in the same field may cause increase of virulence in the pathogens. Furthermore, virulence of F. oxysporum f.sp. melonis isolates is related to the VCGs.

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외상 후 오랜 시간 지체된 탈락 치아 재식술 시행 시 근관 통한 배농: 증례보고 (Endodontic Drainage in Delayed Replantation after Prolonged Extra-alveolar Period of the Avulsed Teeth: Report of a Case)

  • 유재하;김종배;손정석
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제34권4호
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    • pp.280-285
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    • 2012
  • From the standpoint of general guidelines of a dentist, the following conditions should be considered before replanting a permanent tooth. The avulsed tooth should be without advanced periodontal disease. The alveolar socket should be reasonably intact in order to provide a seat for the avulsed tooth. The extra-alveolar period should be considered, i.e. periods exceeding. 2 hours are usually associated with marked root resorption. But, the above mentioned regulations are often difficult to keep in the actual situation of the medical emergency room, owing it to the delay of primary medical care in multiple trauma patients. The successful cases have been reported with minimal root resorption in the long-term periods, in spite of extra-alveolar periods of several hours and combined alveolar bone fracture. This is a case report regarding the effect of endodontic drainage in delayed replantation after a prolonged extra-alveolar period of the avulsed teeth with alveolar bone fracture.

바다 매립지 곰솔 이식후 생장특성(I) - 세근 공간적 분포를 중심으로 - (Growth Characteristics of Pinus thunbergii Parl. after Replanting in Reclaimed from the Sea( I ) - On the Spatial Distribution of Fine Root Phytomass -)

  • 김도균;곽영세
    • 한국조경학회지
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    • 제31권6호
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    • pp.77-84
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    • 2004
  • This study was carried out to analyze the vertical and horizontal distribution of fine root biomass of Pinus thunbergii transplanted in reclaimed land from the sea near Gwangyang Bay. The fine-root biomass according to 6 planting ground types were as follows: 98.5 g DM/$m^2$ for P2, 51.1 g DM/$m^2$ for P6, 47.8 g DM$m^2$ for P5, 44.6 g DM/$m^2$ for P3, 38.2 g DM/$m^2$ for P4, 31.8 g DM/$m^2$ for Pl, respectively. The vertical distribution of fine root biomass decreased at descending soil depths of the 6 mounding types. Fine root biomass was 31∼55% in the topsoil of 20cm depth. Fine root biomass that were related to the Spatial distance from the nearest tree were unevenly distributed horizontally in 6 stands. distribution patterns of fine root biomass were closely related to soil hardness and alkalic cation (Ca++, Mg++, Na+, K+) concentrations. Therefore, in order to have good condition for the growth of landscaping plants, we suggest that there is a need for the construction of planting grounds as well as a need for soil improvement in bad soil environments.

경북지역의 사과 생산변동과 여타지역과의 생산비교 (A Study on the Apple Production of Kyungpook Region and Regional Comparison between other regions of Korea)

  • 류진춘;신영범
    • Current Research on Agriculture and Life Sciences
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    • 제13권
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    • pp.55-64
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    • 1995
  • Apple is most favorable fruit in Korea, and apple farmland has been increased before and after the agreements of Uruguay Round and apple is considered as one of strategic agricultural goods. Especially expansion of apple farmland is concentrated in Kyungpook region because of the suitable climate and its market share is about 70 percents in 1992. But in tree age of apple, although newly and replanting area is increasing, the rate of old orchards is higher than that of other regions. In varieties of apple, it is concentrated in Fuji and is forecasted to increase in the future. The amount of apple production of Kyungpook region is 480 thousand tons, that is concentrated in Wui-sung, Young-ju and An-dong. The quantity of apple production per 10a. is 1,315kg, that is low level compared with that of America and Japan, and the gap of technology among farmers is heavily. The difficulties of apple farming in Kyungpook region are summarized as follows. first, the lack of mechanization and facilities due to the small scale of farmland, second, lack of rural labor force, third, concentration on Fuji apple varieties, fourth, low productivity of apple farming.

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