• Title/Summary/Keyword: Planting Conditions

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Technology of Good Quality Seed Production in Snap-bean (Phaseolus vulgaris L.) (협채용 강낭콩의 채종기술 확립)

  • Kwon, Cheol-Sang;Hwang, Young-Hyun
    • Current Research on Agriculture and Life Sciences
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    • v.22
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    • pp.1-12
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    • 2004
  • Pod-edible bean or snap bean is a fairly new crop to domestic farmers but the national demand is steadily increasing in recent years along with the development of western food business and change in dietary patterns. At the same time, much efforts are being made to export it to foreign country, mainly to Japan. The amount of seeds introduced from outside is also continuously increasing along with the enlargement of area planted for the crop. Hybridization breeding for the crop has already been started to supply the cheaper and better seeds which will reduce the seed costs and foster the higher income to the farmers. In this experiment, several technologies related with the production of quality seeds are preliminary investigated. Some of the results obtained are summarized as follows; 1. Highly significant interaction was recognized between planting dates and no. of pods per plant and no. of branches but no interaction between planting dates and plant height and no. of nodes on main stem. Days to maturity was proportionally reduced to later planting dates. 2. Rate of viviparous pods and seeds was gradually increased in later planting dates but rate of germination was increased in earlier planting dates with lower germination rate in white seed coat grains than in colored seed ones. 3. Seed yield was higher in the earlier planting dates with a great deal of varietal difference. Early to mid April was considered to he the optimum planting dates for snap bean in Kyungbuk area. High correlation was recognized between seed yield and no. of pods per plant, no. of seeds per plant, and 100 seed weight. 4. Days to flowering was three and seven days longer in Cheongsong, high mountainous area than in Kunwi, somewhat prairie lowland. One hundred seed weight was also higher in Cheongsong than in Kunwi. Rate of viviparous grains, pods, and decayed seeds was higher in Cheongsong but, at the same time, the rate of germination and seed yield was also higher in Cheongsong. 5. One hundred seed weight of KLG5007 increased continuously up to 35days after flowering and decreased thereafter but that of KLG50027 increased to 40days after flowering and slowly reduced thereafter. The content of crude oil reached to maximum at 40 days after flowering and reduced thereafter. The rate of germination in Gangnangkong 1 was the highest, 89.3%, at 35 days after flowering and reduced thereafter while that in KLG50027 reached to maximum, 70.7%. at 40days after flowering and reduced thereafter. Thus, the optimum harvesting time for snap bean was considered to be 35~40days after flowering. 6. The snap bean pods at yellow bean stage easily became viviparous ones under saturated moisture conditions for 24 hours at $25{\sim}30^{\circ}C$. Therefore, it is recommended to harvest pods somewhat earlier than yellow-bean stage and let them do post maturing, especially when it is to be rained.

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Ecological Studies on Rice Sheath Blight Caused by Rhizoctonia solani III. Cultural Method and Disease Development (벼잎집무늬마름병(病)의 생태학적연구(生態學的硏究) III. 경종적방법(耕種的方法)과 발병(發病))

  • Kim, Chang-Kyu;Ra, Dong-Soo;Min, Hong-Sik
    • Korean journal of applied entomology
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    • v.24 no.1 s.62
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    • pp.7-10
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    • 1985
  • Transplanting date, planting space and nitrogen level were evaluated for disease development of rice sheath blight using two rice cultivars, Jinheung and Yushin. Sheath blight disease was more severe in early transplanting plot (May 16), narrow planting space($27{\times}12cm$) and high nitrogen level (220kg/ha for Jinheung and 300kg/ha for Yushin) conditions than in May 26 transplanting plot, wide planting space ($27{\times}15cm$) and standard nitrogen level (110kg/ha and l50kg/ha). At the same time, cultural conditions favorable for disease development during growth stage resulted in greater damage at maturing stage.

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Selection of Tree History Management System Items for Analyzing the Causes of Landscape Tree Defects in an Apartment Complex

  • Park, Sang Wook
    • Journal of People, Plants, and Environment
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    • v.23 no.3
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    • pp.347-362
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    • 2020
  • Background and objective: It is difficult to conclusively determine the exact cause of tree defects since multiple causes are involved such as climate change, plantation, tree quality and planting time, construction, planting base, drainage, sunshine conditions, maintenance, and microclimate. The data related to landscaping construction defects are scattered or fragmented by companies and years, but not managed systematically by the defect information management system. Most of the earlier studies associated with tree defects in apartment complexes suggested defect rates after examining tree defects in the completed construction site and proposed fragmentary and subjective conclusions about the causes of defects observed in trees with high defect rates. It is proposed to continue to conduct studies on the establishment and analysis of systematic databases to identify the exact causes of tree defects and measures to improve, and the need to accumulate systematic data in the construction process where many defects arises. This study was conducted to reduce the defects of trees planted in apartment complexes. Methods: Main factors related to tree defects were subdivided based on the results of literature review and a defect investigation at the completion site, and tree history management items were selected and subdivided during the construction stage. Results: The criteria for the preparation of subdivided items were obtained, and the tree history management checklist was written for the site under actual construction and a systematic database was established. Items that are categorized based to the causes of defects include the location of nurseries, date, tree quality, site conditions, planting techniques, microclimates, and maintenance. Conclusion: This study suggested tree history management items based on the tree defects that can be identified at the construction stage and applied them to the selected study site, which differentiates this study from earlier studies. It will be necessary to conduct a comprehensive and objective time series analysis on tree defects that occur over time by continuously monitoring and collecting data after construction.

Optimum Culture Conditions of Sweetpotato Stem Cut for Shoot-transplant Production during Winter (고구마 줄기묘의 원동육묘 적정조건)

  • 안영섭;정병춘;정미남;오용비;송연상;민경수;강윤규
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.45 no.6
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    • pp.382-386
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    • 2000
  • This study was conducted to know the optimum conditions for overwinter culture of sweetpotato stems in PE film house. The stems will be used as transplant shoots in the next year instead of sprouts produced from storage roots. Sweetpotato stems were cut at field on harvest season and planted in PE film house under three different conditions of PE film mulching, tunnel, or mulching plus tunnel in comparison with the non-treatment of PE film on October 10 and November 10. The survival rate of sweetpotato stems, which was evaluated on April 10 after overwinter, was higher in the treatment planted on October 10 than that on November 10, and with PE film treatments, it was higher in tunnel or mulching plus tunnel than that of the non-treatment of PE film. The survival rate of sweetpotato stems to planting densities was 95-96% in 10$\times$2cm (333 stems/$m^2$) or in 10$\times$4cm (250 stems/$m^2$) when compared with 10$\times$2cm (500 stems/$m^2$). The survival rate under low temperature showed 95% until 20 days at 5$\pm$1$^{\circ}C$, and 0% within 5 days at 2$\pm$1$^{\circ}C$. From these results, it was concluded that there were optimum conditions that cutting time is middle October, planting density is 10$\times$3cm, and minimum maintenance temperature is 5$^{\circ}C$ in growing conditions of sweetpotato stems. Root yield produced by trans-planting shoots using the stems was similar to yield by shoots produced from roots, and the survival rate was not different among varieties.

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Suppression Effect of Clubroot Disease by Reduced Irrigation Times after Planting in Chinese Cabbage (정식 후 초기 관수횟수 감소에 따른 배추 뿌리혹병 발생 억제효과)

  • Chang, Seog-Won;Kim, Hee-Dong;Kim, Sung-Kee;Yi, Eun-Seob;Rho, Yong-Taek
    • Research in Plant Disease
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    • v.14 no.2
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    • pp.85-89
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    • 2008
  • Clubroot of Chinese cabbage, caused by Plasmodiophora brassicae, is one of the most serious plant diseases in the world. The objectives of this study were to investigate the effect of the irrigation times on the development of club root after planting and to evaluate the effect of clubroot disease on yield of chinese cabbage in pot and field. The clubroot disease gradually increased with increasing irrigation frequency after planting. The growth characters and yield of chinese cabbage by irrigation times varied according to soil moisture and clubroot disease severity. Based on marketable yield and control value, an ideal irrigation point was at the soil matric potential of 0.06 MPa. These results suggest that the suppression on clubroot disease development could be achieved by initially reduced irrigation times after planting. Future studies on irrigation times using fungicide treatment and resistant cultivar under natural field conditions are required to improve the control effect of clubroot.

Effects of Shading Net Treatment and Planting Density on Growth and Fresh Leaf Yield of Aster glehni (섬쑥부쟁이의 차광망 처리에 재식거리에 따른 생육 및 수량변화)

  • 민기군
    • Korean Journal of Plant Resources
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    • v.9 no.3
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    • pp.254-260
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    • 1996
  • The study was conducted to find out the ways of increasing fresh leaf yield under conditions of the optimum shading net treatment and planting densities of Aster glehni. Although the most effective shading net treatment to acclimatize the plant was 75% shading in 1993, as growing years were prolonged, effects of shading net treatment was not recognized. Ca contents in 75% shading net treatment was much higher than other shading net treatments. Shading effect tend to promote their growth and fresh leaf yield in 1993 even though 75% shading net treatment did not increase fresh leaf yield in 1994 and 1995. Planting density. $30\times20cm$. showed the effectiveness fresh leaf yield for 1994 and 1995 except for 1993.

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Effect of Soil Temperature and Planting Depth on Emergence and Growth of Perennial Paddy Weeds (토양온도(土壤溫度) 및 파종심도(播種深度)가 다년생(多年生) 답잡초(畓雜草)의 출아(出芽) 및 초기생장(初期生長)에 미치는 영향(影響))

  • Pyon, J.Y.;Kang, T.G.;Park, C.W.;Kang, K.S.
    • Korean Journal of Weed Science
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    • v.10 no.3
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    • pp.197-201
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    • 1990
  • Emergence and growth of Potamogeton distinctus, Eleocharis kuroguwai, and Sagittaria pygmaea were examined at soil temperatures of 12, 15, 18, 22, 26, and $30^{\circ}C$ and 3 planting depth conditions. Optimum soil temperatures for emergence were 15-$22^{\circ}C$ 22-$26^{\circ}C$, and 18-$26^{\circ}C$ for P. distinctus, E. kurogueai, and S. pygmaea, respectively. Emergence was delayed and growth became poor in three species as planting depths were increased and this trend was more significant in E. kuroguwai.

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Improvement of the Planting Method to Increase the Carbon Reduction Capacity of Urban Street Trees

  • Kim, Jin-Young;Jo, Hyun-Kil;Park, Hye-Mi
    • Journal of People, Plants, and Environment
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    • v.24 no.2
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    • pp.219-227
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    • 2021
  • Background and objective: Urban street trees play an important role in carbon reduction in cities where greenspace is scarce. There are ongoing studies on carbon reduction by street trees. However, information on the carbon reduction capacity of street trees based on field surveys is still limited. This study aimed to quantify carbon uptake and storage by urban street trees and suggest a method to improve planting of trees in order to increase their carbon reduction capacity. Methods: The cities selected were Sejong, Chungju, and Jeonju among cities without research on carbon reduction, considering the regional distribution in Korea. In the cities, 155 sample sites were selected using systematic sampling to conduct a field survey on street environments and planting structures. The surveyed data included tree species, diameter at breast height (DBH), diameter at root collar (DRC), height, crown width, and vertical structures. The carbon uptake and storage per tree were calculated using the quantification models developed for the urban trees of each species. Results: The average carbon uptake and storage of street trees were approximately 7.2 ± 0.6 kg/tree/yr and 87.1 ± 10.2 kg/tree, respectively. The key factors determining carbon uptake and storage were tree size, vertical structure, the composition of tree species, and growth conditions. The annual total carbon uptake and storage were approximately 1,135.8 tons and 22,737.8 tons, respectively. The total carbon uptake was about the same amount as carbon emitted by 2,272 vehicles a year. Conclusion: This study has significance in providing the basic unit to quantify carbon uptake and storage of street trees based on field surveys. To improve the carbon reduction capacity of street trees, it is necessary to consider planning strategies such as securing and extending available grounds and spaces for high-density street trees with a multi-layered structure.

Current Cultivation Status of Lycium chinense Mill in Jindo-Gun, Korea (진도지역의 구기자 재배실태)

  • 신종섭;권병선;김학진
    • Korean Journal of Plant Resources
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    • v.14 no.2
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    • pp.129-132
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    • 2001
  • According to the research of the cultivation result on the spot farmers for 5 years in order to investigate its cultivation conditions and problems of Lycium chinetrse Mill, the development of the variety with early mature, pest tolerance, and high yielding is urgent and it is call for the development of rooted cutting cultivation by testing of bed soil, growth regulator and cutting times. The development of cultivation method with planting year, planting density, supplementary period and amounts of supplementary of Lycium chinense Mill planted in growing field are required and for the disease and the effective control of disease and insect pest resistance is needed by auxotrophic fertilizing and organic agricultural method, met by agricultural chemicals.

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Influences of Cultural Practices on Chemical Composition in Flue - cured Tobacco Leaves. (황색종 담배의 재배방법이 엽중 화학성분에 미치는 영향)

  • 반유선;이중호
    • Journal of the Korean Society of Tobacco Science
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    • v.13 no.1
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    • pp.27-35
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    • 1991
  • These studies were conducted to investigate the changes of starch, sugar and nicotine content in relation to maturity and cultural conditions and correlation between growth characteristics and chemical components in order to improve the leaf quality. The results were summarized as follows; 1. Nicotine content, total nitrogen content and the ratio of total nitrogen to nicotine of the green leaf were increased with heavier fertilizer, wider planting space and lower topping, whereas starch, total sugar and the ratio of sugar to nicotine were decreased. 2. Starch content, sugar content and the ratio of total sugar to nicotine(T-S/Nic) in the cured leaf were decreased with milder planting space, less application of MH and delaying harvesting date. 3. It was estimated that 58.1% of starch of the harvested leaf was converted into sugar of the cured leaf, and also they were significantly correlated each other.

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