• Title/Summary/Keyword: planting density

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Analytical Studies on the Rice Yield Components and Yield in South Region of Korea III. Variation in the Rice Yield Component and Yield under the Different Planting Density (남부지방에 있어서 수도수량구성요소 및 수량해석 제 3 보 재식밀도에 따른 주요형질 및 수량의 변이)

  • 김용재
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.31 no.1
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    • pp.104-111
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    • 1986
  • This study was conducted to establish the fundamental of cultivation system in southern warm region of Korea by investigation of variation of yield component and yield under the different planting density, and that was 50, 70, 90 and 110 hills per 3.3㎡. In variations of thickness of culm under the different planting densities there were more thick as decrease in density, and there were fine culm in May 20 transplanting. In Seokwang, the optimum planting density was 90 hills/3.3㎡ in May 20 and June 5 transplanting, but in June 20 and July 5, it was 110 hills/3.3㎡, then in Dongjin, the maximum grain yield was obtained on 90 hills/303㎡ in May 20, June 5, June 20 transplanting, but in July 5 transplanting the highest yield was obtained in the plot of density 110 hills/303㎡. The rate of ripened grains was higher in the high density than that of low density on the late season culture. The degeneration of primary, secondary branches and spikelets was decreased with increase in planting density, and there was more significant tendency in Seokwang than in Dongjin. The no. of panicles per m2 was increased linearly with increase in planting density, and the variation of no. of panicles per m2 according to transplanting periods was greater in Seokwang than in Dongjin.

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Response of Flax Varieties to Planting Density (아마품종의 재식밀도 반응)

  • Kwon, Byung-Sun;Park, Hi-Jin;Lee, Jung-Il;Son, Eung-Ryong;Hwang, Jeong-Kyu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.34 no.3
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    • pp.225-228
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    • 1989
  • Under the different conditions of planting density, maturation dates, stem length, oil contents, stem yield and seed yield of flax were investigated in 1984. The results were as followed: Wiera and Storment Goss were earlier in the maturation dates with increasing plant density, However Taijungsung #1 was delayed. Though there is a difference between the varieties stem length was getting longer with increasing plant density., Oil contents were getting higher with increasing plant density, stem yield and seed yield were increased with increasing plant density, on the contrary those were decreased by the growth of ciliary flax in the case of 1200 plants per 1.2m$^2$. Therefore optimum planting density of flax culture was 12cm x 6cm.

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Early Growth Performance of Zelkova serrata Trees According to Seedling Age and Planting Density (묘령 및 식재밀도에 따른 느티나무 조림목의 초기 생육 특성)

  • Noh, Nam Jin;Cho, Min Seok
    • Journal of Korean Society of Forest Science
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    • v.109 no.4
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    • pp.390-399
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    • 2020
  • We investigated the effect of seedling age and planting density on early growth performance of Zelkova serrata trees. Containerized Z. serrata seedlings, 1-year-old and 2-year-old, were planted according to two different planting densities (3,000 and 5,000 trees ha-1) at the end of March, 2017. Three plots were established for each treatment (2 seedling ages × 2 planting densities). We calculated the survival rate (%) of out-planted seedlings as well as the stem volume based on the root collar diameter (RCD) and height (H) in September of each year, from 2017 to 2019. Seedling age and planting density did not affect survival rate of the out-planted trees. Planting density did not affect height of the trees, whereas the treatment significantly affected RCD and the H/D ratio for 2-year-old seedlings in 2019. The stem volume per tree was highest in the plot of 2-year-old seedlings at 5,000 trees ha-1 and lowest in the 1-year-old seedlings at 3,000 trees ha-1. In addition, the tree height in both 1-year-old and 2-year-old Z. serrata trees was greater in the 5,000 trees ha-1 plot than in the 3,000 trees ha-1 plot. There was no interactive effect between seedling age and planting density on stem volume; however, as seedling age and planting density increased, stem volume of Z. serrata trees increased. The values for stem volume per hectare are 85%, 68%, and 300% higher in 1-year-old 5,000 trees ha-1, 2-year-old 3,000 trees ha-1, and 2-year-old 5,000 trees ha-1 plots, respectively, compared to the values in 1-year-old 3,000 trees ha-1. This result shows that high planting density (close planting) affects tree growth differently based on seedling age, and suggests that the planting density of 5,000 trees ha-1 is suitable for 2-year-old seedlings to improve early growth field performance.

Effect of Nitrogen Fertilizer Level and Planting Density on the Occurrence of Bacterial Leaf Blight of Rice (질소시비량 및 재식밀도가 수도 백엽고병 발병에 미치는 영향)

  • Choi Y. C.;Yun M. S.;Uhm K. B.
    • Korean journal of applied entomology
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    • v.19 no.4 s.45
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    • pp.199-202
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    • 1980
  • In order to investigate the relationship among the occurrence of bacterial leaf blight, amount of nitrogen application and planting density, a field experiment was carried out with factorial combinations of N levels (7.5, 15, 30kg/10a) and planting densities (10\times20,\;15\times30,\;20\times40cm). The results obtained in this study were; (1) The incidence of bacterial leaf blight was increased with increase of nitrogen application; (2) In double amount of nitrogen application (30kg/10a), the incidence of bacterial leaf blight was higher, regardless of planting density; (3) The incidence of bacterial leaf blight in Standard nitrogen application was significantly higher $(R=0.94^{**})$ than at $15\times30cm$ density and $20\times40cm$ planting density.

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Effect of Planting Density and Fertilizer Application Level on Yield and Agronomic Characters in a Semi-dwarf Soybean Cultivar (재식밀도와 시비량이 단경종 콩의 주요 생육형질과 수량에 미치는 영향)

  • 박춘봉;정진욱;황창주;소재돈;박노풍
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.35 no.1
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    • pp.73-82
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    • 1990
  • The experiment was carried out to study the influence of planting space and fertilizer application levels on some agronomic characters and yield in newly released semi-dwarf soybeans, Paldalbong and Dankyungkong. The number of branches per plant was not reduced by planting space from 60${\times}$10cm 30${\times}$15cm. These Semi-dwarf soybeans had good adaptability on high planting density. The number of pods per node on the main stem was different according to the planting space in Dankyungkong, but it was similar in Paldalkong except planting space 20${\times}$10cm. Regardless of planting densities and varieties, the number of grains per pod on upper node of the main stem was large. Coefficient of variation of pods and grains per node in the middle part of the main stem was small. The number of grains per plant was decreased in high planting density compared to low planting density, but the number of harvested plant per unit area was increased. Optimum planting space was 25${\times}$10cm in both varieties. The ability of nodulation was bigger in Dankyungkong than in Paldalkong.

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A Study on Improvements of Local Governments' Planting Regulations in Korea (우리 나라 지방자치단체 식재 조례 기준의 현황 및 개선방향)

  • 최일홍;황경희;이규목
    • Journal of the Korean Institute of Landscape Architecture
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    • v.26 no.2
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    • pp.194-206
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    • 1998
  • In 1977, Local governments' planting regulations for the development projects were established in accordance with the revised building law in Korea. A landscaped area, planting densities of trees and shrubs, a percentage of evergreen plants, minimum tree size and species were prescribed in the planting regulations. But the clauses for an excessive planting density and a high ratio of evergreen trees that the regulations includes, have been gradually in the way to a creative planting design, and raise a problem of poor growth of trees an a disordered planting landscape. Therefore, in this study the present planting regulations of 124 local governments throughout the country were analyzed and compared with 13 foreign local governments' of 4 countries ; Japan, the United States of America, Canada and Singapore. And the linitations and characteristics of the regulations are drawn as follows ; 1. The regulations focus on controlling the green spaces and plantings by quantitative methods such as controlling the number of trees and the landscaped area, which are inadequate for estimating the crown coverage of mature trees, and which areinadequate for estimating the crown coverage of mature trees, and implementing the function of polantings and the use of green spaces. 2. Minimums of tree densities are higher than those of foreign countries, especially higher about 10 times to 100 times than those of the United States of America. 3.Excessive number of evergreen trees and fruit trees should be planted under the present planting regulations, that results in constricting the creativity in planting design. 4. An article for using specific tree size, 2.0ms over in height makes it difficult to use a wide variety of different sizes of trees. And there is no incentive measures when larger trees are planted. To enhance the quality of green spaces and plantings, it is needed that the function and locating of green spaces and plantings have to be emphasized, and the planting density should be concerned about the mature tree size. The incentive measure to use various sizes of trees is also needed, and the regulations to use excessive number of evergreen trees or fruit trees should be loosened.

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Characteristic of Soil and Cambial Electrical Resistance for Investigation on Defect Cause of Planting Tree in Apartment

  • Cho, Chi-Woung;Yoo, Sun-Ah;Kim, Jeong-Ho
    • Journal of Environmental Science International
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    • v.21 no.11
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    • pp.1307-1320
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    • 2012
  • The purpose of this paper is to provide information on planting construction for healthy plant growth. To achieve this purpose, this study analyzed the planting type, planting density, withering rate, soil characteristics, and cambium electrical resistance (CER) of withered trees in an apartment complex with a high withering rate. The major plant groups examined consisted of native broad-leaved tree species (39.3%), native narrow-leaved tree species (24.2%), and native broad-leaved - exotic narrow-leaved tree species (16.4%). The planting density of the green area, where trees were planted from 0.0 to 0.3 trees per unit area, was measured as 98.4%. Withered trees were found in 19 of the 20 planted species, and the withering rate was 41.8% (610 withered/1,461 planted). Withering rates for tree species were measured as follows: Sophora japonica and Salix babylonica (100.0%), Magmolia denudata (84.3%), Lindera obtusiloba (74.7%), cornus kousa (69.3%), acer triflorum (69.2%), diospyros kaki (66.7%), Prunus yedoensis (62.8%), Acer palmatum (52.6%), Prunus armeniaca (51.1%), Chaenomeles sinensis (43.7%), Ginkgo biloba (40.9%), Zelkova serrata (31.0%), Cornus officinalis (28.6%), Taxus cuspidata (25.6%), Pinus densiflora (21.4%), Pinus parviflora (15.2%), Pinus strobus (14.6%), and Abies holophylla (10.3%). Soil chemical analyses for 18 samples revealed that as the withering rate increased, the following occurred: (a) the ratio of silt and clay in soil increased; (b) the soil pH, organic matter rate, nitrogen, available phosphorus, and cation exchange capacity (CEC) in samples were graded as "inadequate," based on the plant grading evaluation; and (c) the NaCl and cation exchange capacity were evaluated as "somewhat satisfactory." The measurement of CER for withering rate shows electrical resistance for higher withering rate are higher, which could predict that a tree will not grow well.

Effects of Planting Density on Yields of Aralia elata Seem (재식거리가 나무두릅의 수량에 미치는 영향)

  • Yun Jong-Sun;Kim Ik-Hwan;Yun Tae;Kim Tae-Su;Hong Eui-Yon
    • Korean Journal of Plant Resources
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    • v.18 no.1
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    • pp.148-153
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    • 2005
  • With the increase in the level of national income, the interest and demand of the wild edible plants have been increased. Aralia elata Seem is highlighted as a new income source for farmers in Korea. This study was conducted to determine the optimum planting density enhancing the commercial yield and quality in Aralia elata Seem. Yield of new shoots per 10a was increased in the dense planting of $1m\times30cm$ by three years of planting, but it was decreased after four years of planting, which was mainly caused by the factors such as high mortality rate. The income per 10a in the planting density of $1m\times50cm$(2,000 plants/10a) was higher by $27\%$ than that in the planting density of $1m\times30cm$(3,300 plants/10a) which was 968,00won per 10a.

Effect of Seeding Time and Planting Density on the its Component of Soybean Intercropped with Barley or Aftercropped (맥간후작 대두의 파종기와 재식밀도가 수량구성요소 및 수량에 미치는 영향)

  • Young-Hun Cha;Joo-Yeol Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.24 no.3
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    • pp.43-50
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    • 1979
  • The effect of planting time and density of soybean on the yield component and yield when intercropped within barley rows or seeded after harvest was evaluated. Early maturing barley variety 'Olbori' was seeded at 2 levels of planting density 40 ${\times}$ 18 and 60 ${\times}$ 18 (row-hill space in em), and the soybean, variety "Dongbuktae", was seeded on June 1 as a inter-crop, June 15 and 30 as a afterharvest crop, all 2 levels of row space (40, 60 cm) and 3 levels of hill space (10, 15, 20 em). Soybean yield was increased in the following conditions: early seeding of soybeans within rows at 60 ${\times}$ 20 em density and soybean seeding after barley harvest at 40 ${\times}$ 20 em density./TEX> 20 em density.

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Effect of Planting Density on the Grown and Yiel Apium graveolens L. (시설 하우스내 재식밀도가 양미나리의 생육과 수량에 미치는 영향)

  • 이종일
    • Korean Journal of Plant Resources
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    • v.2 no.2
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    • pp.252-258
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    • 1989
  • This study was investigated to find out the optimum planting densities of Aptum graveolns L. about growth characters, yield components and yi-eld at 9 planting densities by transplanting cultureThe results obtained are summarized as follows ;1 . Studying the correlationship, the highly negative significances we-re found between planting densities and petiole weight , planting d-ensities and plant weight , respectively .2. Plant hight was longest in spacious planting, and was short in dense3 . Petiole yield was thinkest in planting densities(50$\times$35n), and wasthin in planting densities(40$\times$25n) .4. Yield of Petiole was increased in PLanting densities(50$\times$25cn) ,quality and yield of petiole were highest by optimum plantting densi-ties (50$\times$35cn ) .

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