• Title/Summary/Keyword: transplanting time

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Changes of Fresh Leaf Yield and Colorant Level with Different Transplanting and Harvest Time in Persicaria tinctoria H. Gross (이식 및 수확시기에 따른 쪽의 생엽수량 및 색소함량의 변화)

  • Ko, Jae-Hyung;Kim, Seong-Ju;Lee, Hoo-Kwan;Kim, Kwan-Su
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.58 no.2
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    • pp.177-184
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    • 2013
  • This study was conducted to determinate the optimum times of transplanting and harvest for enhancing the fresh leaf yield and colorant level of an indigo crop, Persicaria tinctoria H. Gross, containing the blue dye indigo. Two cultivars, Naju Local and a new cultivar, NaramBlue, were transplanted 5 times from May 30 to July 10 at an interval of 10 days, and all of experiment plots harvested on Aug. 23 in Muan, the south area of Korea. As transplanting time was delayed, fresh leaf yield were maximum at earliest transplanting (May 30) and then decreased, while Niram (blue dye extract) and indigo content of fresh leaf remained almost constant though showed a small variation. Also, two cultivars transplanted on May 23 were harvested 5 times from Jul. 20 to Sept. 20 at an interval of 15 days. As harvest time was delayed, plant height, No. of first branches, and fresh leaf yield changed increasingly, while Niram content was increased to Aug. 20 and then decreased slightly. Indigo level increased largely to Aug. 5, and then continuously decreased with more delayed harvest. These tendencies of changes in fresh leaf yield and colorant level with different transplanting and harvest times were shown similarly in both cultivars. The results indicate that early transplanting before May 30 and harvest in early August will be appropriate for improving fresh leaf yield and colorant level.

Effect of Transplanting Times on the Content of Aromatic Substances in Tobacco Cultivar, Hyangcho (이식시기(移植時期)가 향초(香草)(Nicotiana tabacum L.)의 향끽미(香喫味) 물질(物質) 발현(發現)에 미치는 영향(影響))

  • Jeong, Hyung Jin;Kim, Kil Ung
    • Current Research on Agriculture and Life Sciences
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    • v.6
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    • pp.7-12
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    • 1988
  • This study was conducted to establish the most appropriate transplanting time which can attribute to increase of aromatic substances in tobacco variety, Hyangcho, maintaining its original aroma. The highest content of total alkaloid, total nicotine and total nitrogenous compounds were observed in the late transplanting time such as July 5, showing 4.16%, 3.83% and 3.68%, respectively. However, the petroleum ether extract was highest in the early transplanted one such as April 5, showing 5.77% and total sugar content, 12% in April 20. The content of petroleum ether extract decreased as the transplanting time delayed. The early transplanting of Hyangcho on April 20 under vinyl mulching showed the increase of fatty acid content, but the decrease of non-volatile organic acids such as malic and citric acids than those of the conventional transplanting time on March 5. The earlier transplanting time also increased the content of volatile acids such as 2,3-methylbutanoic acid and 3-methyl-pentanoic acid, which seem to be related to tobacco aroma.

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Variation of Panicle Differentiation Stage by Leaf Growth According to Rice Cultivars and Transplanting Time (품종과 이앙시기별 엽 생장속도에 의한 벼의 유수분화시기 변화)

  • Ku, Bon-Il;Kang, Shin-Ku;Sang, Wan-Gyu;Choi, Min-Kyu;Lee, Kyu-Jone;Park, Hong-Kyu;Kim, Young-Doo;Kim, Bo-Kyong;Lee, Jeom-Ho
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.58 no.4
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    • pp.353-361
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    • 2013
  • The time of panicle initiation change by transplanting date, and this change is affected by heading ecotype and seedling age. So we assessed the variations of panicle initiation, spikelet differentiation and heading date affected by transplanting dates, rice cultivars and seedling ages. And we compared the growth durations and meterological factors between chief growth stages. The differences of growth duration from transplanting date to spikelet differentiation by seedling age were 1~3 days in all transplanting of Unkwang, but it increased to 4 days in Hwayeong transplanting on May 1 and June 30, and Nampyeong transplanting on June 30. The growth durations from panicle initiation to heading of Unkwang and Hwayeong increased until transplanting time by May 31, and decreased thereafter. The growth durations of Nampyeong increased in transplanting on May 16 and May 31. In each transplanting, mean temperature of 30 days after heading was highest in early transplanting, but sunshine hours in the period were highest in transplanting on June 30 in Unkwang, in transplanting on June 15 in Hwayeong, and higher in transplanting on May 31 and June 15 in Nampyeong. The growth duration between spikelet differentiation and heading showed variation according to rice cultivars and transplanting date, Those were 22~26 days in Unkwang, 21~27 days in Hwayeong and 21~28 days in Nampyeong.

Growth and Flowering of Orostachys japonicus A. Berger as Affected by Transplanting Time (정식시기에 따른 바위솔의 생장과 개화)

  • Lee, Chang-Woo;Jeon, Seung-Ho;Kim, Hong-Young;Shin, Sung-Cheol;Kang, Jin-Ho
    • Korean Journal of Medicinal Crop Science
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    • v.16 no.1
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    • pp.16-19
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    • 2008
  • Shoot parts of a monocarpic and short day plant Orostachys japonicus have been used as a herbal medicine. The study was carried out to examine the effect of transplanting time (May 30, June 30, July 30) of its seedlings on its growth, morphological characters, and flowering. Two hours night-break treatment at midnight was done since Aug. 25 when samples were taken afterward every 4 weeks. Growth, morphological and flowering related characters were measured from each sample. Plant height and inflorescence length became longer with delayed transplanting time. Number of leaves including bracts and stem diameter were more and thicker when transplanted on June 30 than two other treatments. Leaves and bracts, stem, root, shoot and total dry weights showed nearly the same result to the number of leaves although floret dry weight were increased as transplanting time was delayed. Although florets were most formed when transplanted on June 30, they were not flowered because of the night-break treatment, meaning that the transplanting time had little effect on its growth and anthesis of the florets.

Effect of Transplant and Harvest Time on Grain Quality of Rice in Reclaimed Paddy Field (간척지에서 이앙기 및 수확시기가 쌀의 품질 특성에 미치는 영향)

  • Je-Cheon Chae
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.48 no.6
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    • pp.534-539
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    • 2003
  • The yield and quality characteristics of three rice varieties(Seojinbyeo, Ilpumbyeo, and Chuchungbyeo) in reclaimed saline paddy field were investigated under different cultural practices, three transplanting times (May 15, May 30 and June 15) and four harvest times (40, 50, 60 and 70days after heading) in order to obtain basic information for the production of high quality rice. Brown rice yield of three rice varieties were significantly higher in early and medium than late season cultivation. The protein content of milled rice showed high interaction effect between transplanting time and harvest time. Palatability values of Seojinbyeo and Ilpumbyeo were significantly higher in late than medium season cultivation, but Chucheongbyeo did not show any difference in its palatability value by different transplanting time. The palatability values of three rice variety was the highest in the harvest at 40 days after heading. The grain yield of three rice varieties were higher in early and medium than late season cultivation, whereas palatability values of three rice varieties were significantly higher in the early and late season cultivation than medium season cultivation. The palatability value measured by rice taster showed a highly negative correlation(r=$0.43^{**}$) with cumulative air temperature during ripening period.

Proper Transplanting Time for Improving the Rice Quality in the Southern Alpine Area (남부산간고랭지에서 쌀 품질 향상을 위한 적정 이앙시기)

  • Lee Jun-Hee;Choi Weon-Young;Nam Jeong-Kwon;Kim Sang-Su;Park Hong-Kyu;Back Nam-Hyun;Choi Min-Gyu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.50 no.spc1
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    • pp.51-55
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    • 2005
  • The characters associated with the quality of rice and the factors involved in the production of high quality rice as the proper transplanting time was examined at Unbong the southern alpine area from 2002 to 2004. The rice cultivars tested were Samcheonbyeo (Early maturing one), Sangmibyeo (Sub-early maturing one). The number of spikelets were increased as earlier the transplanting date in all cultivar, The ripened grain rates were highest transplanted on May 21 for Samcheonbyeo, and May 1 for Sangmibyeo. The highest head rice yield was obtained when transplanted on May 21 and May 1 for Samcheonbyeo and Sangmibyeo, respectively. The optimum transplanting dates according to maturing types with respect to the yield of head rice, ripened grain rates and rice quality were May 21 for early maturing type and May 1 for sub-early maturing type.

Occurrence of Major Insect Pests in Machine Transplanted and Direct Seeded Rice Paddy Field (벼 기계이앙 및 직파재배에 따른 수도 주요해충의 발생.피해)

  • 이승찬;마경철
    • Korean journal of applied entomology
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    • v.36 no.2
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    • pp.141-144
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    • 1997
  • Studies were conducted to investigate the incidense of insect pests in transplanted and direct seeded paddy fields in southern region of Korea. Population dencities of the rice green leafhopper (RGLH: Nephotettix cincticeps Uhler) and rice leaffolder (RLF: Cnaphalocroch medinalh Guenee) were higher in machine transplanted than in direct seeded, but the brown planthopper (BPH: Nilaparvata lugens Stal) and smaller brown planthopper (SBPH: Laodelphax striatellus Fallen) were abundant in direct seeded. However, no significant difference was found between machine transplanted and direct seeded fields in the incidense of rice stem borer (RSB: Chilo suppressalis Walker), whiteback planthopper (WBPH: Sogatella furcifera Horvath), and rice stem magot (RSM: C'hlorops oryzae Matsumura). Occurrence of rice key pests were affected more by transplanting time than other cultural practices. Later transplanting induced higher populations of BPH, WBPH, SBPH, RGLH. However, RSB and RLF caused higher damage in earlier transplanted paddy field.

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Development of a Transplanting Robot System for Tissue Culture Pants (II) - Machine Vision System - (조직배양체 이식로봇 시스템의 개발 (II) - 기계시각 시스템 -)

  • Lee, H. D.;Kim, K. D.;Kim, C. S.;Kim, J. P.;Jung, H.
    • Journal of Biosystems Engineering
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    • v.24 no.1
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    • pp.41-50
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    • 1999
  • This study aims at detecting the three dimensional gripping points for the transplanting robot system to grip in the process of developing transplanting robot system, which is one of the automation systems for transplanting tissue culture. The stereo vision system equipped with two cameras has been used to detect the gripping points of the plant stem. The method for matching the plants of the image information which came from two cameras was to measure the total numbers of pixels, leaves, and the heights of the plants. The gripping points were detected near the roots after extracting the stem parts by the standard deviation of the X axis according to the Y axis. The performance test of the developed program showed that the detecting errors of the gripping points were 0∼1mm for X axis and 1∼2mm for Y & Z axis. The mean running time of the program was about 3 seconds.

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Evaluating the agronomic characteristics and yield variations of 'Saemimyeon' by changing transplanting and harvesting time

  • Bae, Hyun Kyung;Oh, Seong Hwan;Yi, Hwi Jong;Seo, Jong Ho;Hwang, Chung Dong;Choi, Won Yeung;Kim, Sang Yeol;Oh, Myung Kyu
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.300-300
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    • 2017
  • 'Saemimyeon' a Tongil-type rice variety (Indica ${\times}$ Japonica), which contains high amylose contents is suitable for rice noodle production. Nowadays, the major parts of rice processing industry that includes products like rice flour and noodles are expected to partially replace wheat flour market. The volume of rice noodle market is getting bigger and can contribute to the rice surplus and farmer's income. This study was carried out to promote productivity and flour-making quality of 'Saemimyeon' by finding the most suitable transplanting and harvesting times. The transplanting days used were May $10^{th}$, May $17^{th}$, May $24^{th}$, May $31^{th}$, June $7^{th}$ and June $14^{th}$ and the planting distance used was 30 x 12cm. In addition, harvesting time was determined by days after heading time (40, 45, 50, 55 and 60 days). The field experiment was conducted at the experimental field in Miryang (Southern plain area of Korea) from 2015 to 2016. Our results suggest that the optimum transplanting days were from May $24^{th}$ to May $31^{th}$ which resulted to an average yield of 748~751kg/10a. Interestingly, yield was sharply decreased below 700kg/10a before May $10^{th}$ and after June $7^{th}$. The average grain filling rate before May $31^{th}$ was more than 83% but it declined to 75% after June $7^{th}$. The average temperature ranges from heading time to harvesting time was $ 21\sim25^{\circ}C$ and the estimated optimal temperature was $23.4^{\circ}C$ which is similar to May $24^{th}$ by regression equation. We found that the optimal harvest time was 45~50 days after heading time. It is hypothesized that low temperature at seed maturation time caused the lower grain filling rate therefore 'Saemimyeon' need to be transplanted before May $31^{th}$ for higher productivity. We found no statistical variation in amylose contents among experimental plots (28.2~30.4%). We conclude that the productivity of 'Saemimyeon' highly depends on temperature that is critical for grain filling stage controlled by transplanting time.

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Variation in Grain Quality and Yield of Black-colored Rice Affected by the Transplanting Time and Temperature during Ripening Stage (흑미 품종의 이앙기와 등숙기 온도 변화에 따른 품질 및 수량 변화 특성 구명)

  • Bae, Hyun Kyung;Seo, Jong Ho;Hwang, Jung Dong;Kim, Sang Yeol
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.64 no.2
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    • pp.63-69
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    • 2019
  • Black-colored rice contains anthocyanin, which has an antioxidant function on the seed coat. Anthocyanin content is greatly affected by the cultivation environment, especially the average temperature during the ripening stage. Generally, low temperatures during the ripening stage increase anthocyanin content. To control the average temperature during ripening stage in the field, transplanting time has to be regulated. In this study, anthocyanin content variation was examined in relation to the transplanting time and the average temperature during the ripening stage. For the study, fourteen black-colored rice cultivars with different maturity types (four of early-maturing, five of medium-maturing, and five of medium-late maturing) were selected. The transplanting times used were May 20, June 5, June 20, and June 30. The field experiment was conducted in the Miryang, Kyoungsangnamdo province, Korea from 2014 to 2017. The anthocyanin content in all cultivars was higher when the transplanting time was delayed, and the highest anthocyanin content was observed in the transplanting on June 30. Variation in anthocyanin content according to the change in transplanting time is the greatest in the early maturing cultivars. The least change was observed in medium maturing cultivars. Regression analysis showed a significant correlation between temperature and anthocyanin content, but the degree of correlation was very low in the medium maturing cultivar. As a result, the optimal average temperature during the grain filling stage for increasing the anthocyanin content of black colored rice was $22{\sim}23^{\circ}C$. The rice yield increased in plants transplanted until June 20 and decreased thereafter owing to low temperature during the grain filling stage. The anthocyanin content increased with delaying the transplanting time up to June 30 but the rice yield decreased after June 20. Nevertheless, the rate of increase in anthocyanin content was higher than the rate of decrease in rice yield. As a result, the optimum transplanting time and an average temperature of grain filling stage for black-colored rice variety were June 30 and $23{\sim}24^{\circ}C$ considering both anthocyanin content and rice yield.