• Title/Summary/Keyword: Transplanting dates

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Agronomic Studies on Regional Difference in Growth and Yield of Rice in the Honam Area III. The Effect of Transplanting Dates and Methods of Fertilization Application on Dry Matter Production and Yield in Rice Plant (호남지방에서 수도생육 및 수량의 지역간 차이에 관한 재배학적 연구 III. 재배시기 및 시비방법의 차이에 의한 수도의 건물 생산 및 수량의 변이)

  • Kim C. K.;Lee Y. S.;Lee S. Y.;Kim C. H.;Bae S. H.
    • Proceedings of the Korean Society of Crop Science Conference
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    • 1989.05a
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    • pp.38-39
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    • 1989
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Effect of Transplanting Dates on the Occurrence of Rice Stripe and Black-Streaked Dwarf Virus Diseases in Yeongnam District (영남지방에서 벼 이앙시기가 줄무늬잎마름병과 검은줄무늬오갈병의 발병에 미치는 영향)

  • Kim Dong Kil
    • Korean Journal Plant Pathology
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    • v.1 no.2
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    • pp.109-114
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    • 1985
  • The experiments were conducted to clarify the influence of transplanting date on the occurrence of rice virus in field condition of 1984. The rate of RBSDV (rice black-slreaked dwarf virus) viruliferous vector, smaller brown planthopper (Laodelphax striatellus Fallen), was shown to be $13.6\%$ at the 2nd adult and that of rice stripe virus (RSV) viruliferous was $6.7\%$ at the 2nd adult. The vector in the field was begun to come from May 29, the maximum densities were 19.6 insects per hill on June 13 in cultivar Chucheongbyeo, 19.3 in Nagdongbyeo, 7.4 in Cheongcheongbyeo and 4.9 in Samgangoyes. The number of vectors per hill was inclined to increase by early transplanting. Although the infection of rice virus in nursery bed was not recognized until May 30 transplanting, the nursery infection could be seen from June 10 transplanting. The highest rate of nursery infection with RSV was $4.1\%$ at June 10 transplanting plot, and that of RBSDV was $14.2\%$at June 20 trans planting plot. The infection of rice virus in paddy field was the highest at May 20 transplanting plot, the lowest at July 10 plot. The earlier transplanting, the more severe occurrence of rice viruses. Occurrence of infected plants with RBSDV was shown to increase more rapidly at May 20 and May 30 planting plot than May 10 plots. However, the occurrence of infected plant with RSV was more rapid at May 10 transplanting plot than May 20 and 30.

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Polyphenol Content and Yield Variation of Red-colored Cultivars Depends on Transplanting Date in Southern Plain Region of Korea (남부평야지에서 적미 품종의 이앙시기에 따른 폴리페놀 함량 및 수량변이)

  • Bae, Hyun Kyung;Oh, Seong Hwan;Hwang, Jung Dong;Seo, Jong Ho;Kim, Sang Yeol;Oh, Myung Kyu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.62 no.3
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    • pp.166-171
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    • 2017
  • For high-quality colored rice production, the cultivation environment is a critical factor. The major environmental factor is temperature, which includes the accumulated and average temperature during vegetative and reproductive stages. Generally, during the cultivation period, the temperature can be controlled by shifting the transplanting date. This study was carried out to determine the optimum transplanting date for high-quality red-colored rice production. Four red-colored rice varieties (Jeokjinju, Jeokjinjuchal, Hongjinju, and Gunganghongmi) were used as test materials. The transplanting dates were May 20 and June 5, 20, and 30 in 2015~2016. The most variable factor controlled by the transplanting date was the grain filling rate. The varieties transplanted on June 30 showed low yields owing to the decrease in the grain filling rate. In contrast, the polyphenol content increased with increasing delay in the transplanting date. Collectively, these two results indicate that the optimum transplanting date was June 20. The average temperature for 30 days after the heading date (30DAH) highly affected the polyphenol content. A lower temperature during the 30DAH induced higher polyphenol contents but also caused low yield. The optimum 30DAH temperature for obtaining a higher yield and polyphenol content was $22{\sim}23^{\circ}C$. Using the average 30DAH and accumulated temperatures, the optimum transplanting date was calculated as June 18 to 24 in Miryang region. The optimum transplanting date of Kyeungsangnamdo region was approximately mid-June to early July, and that of Kyeungsangbukdo region was approximately early to mid-June.

Studies on the Differences of the Rice Tillering System and Yield Characteristics under the Different Cultivation Methods in Southern region of Korea I. Seedling Characteristics and Growth under the Different Nursing Methods and Time (남부지방에서 벼 재배형태별 분얼체계 및 수량구성형질의 차이에 관한 연구 I. 묘종류와 육묘시기에 따른 묘소질 및 본답 생육의 변화)

  • Kim, Yong-Jae;Shin-Hae-Ryong;Chang, Gang-Yeon
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.37 no.3
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    • pp.230-236
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    • 1992
  • To study the effects of different nursing methods and transplanting on the growth of the rice plant(Oriza sativa L.hn southern region of Korea, Kumo-byeo, Palgong-byeo and Dong-jinbyeo were transplanted from April 20 to July 20 with 15 days intervals as 8 days seedling (infant rice), 25 days box seedling for machine transplanting and 45 days conventional seedling, respectively. No. of leaves at transplanting were in order of 45 days seedling>25 days seedling>8 days seedling. In 25 days seedling, they were increased as transplanting dates were later from April 20 to June 5, and in 45 days seedling, it showed same tendency until June 5 with Dongjinbyeo, June 20 with Palgong-byeo and Kumo-byeo. Root activity according to the $\alpha$-naphthylamine oxidation activity and rooting activity were higher in order of 8 days seedling>25 days seedling>45days seedling. Panicle formation initiated after maximum tillering stage as transplanting at April 20 with 8 days seedling and 25 days seedling, but it intiated before maximum tillering stage as transplanting at July 20 in Kumo-byeo. and in Palgong-byeo intiations of panicle formation were shown after maximum tillering stage as transplanting until May 20, but June 5 in Dongjin-byeo. However, there was no significant tendency with 45 days seedling. Missing hill ratio were less than 5% as transplanting with 8 days seedling and 25 days seedlingregardless of transplanting periods or varieties.

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Occurrence of Small Brown Plantopper (Laodelphax striatellus Fallen) and Incidened of Rice Viwus Disease by Different Seting Date in Dry Seeded Rice (벼 건답직파시기에 따른 애멸구 및 바이러스병 발생)

  • 배순도;김동길
    • Korean journal of applied entomology
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    • v.33 no.3
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    • pp.173-177
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    • 1994
  • his study was conducted to Investigate the occurrence of small brown planthopper (SBPH), LaodeIpahx striatellus Fallen, and the ind~cence 01 rice virus diseases by d~fferent seeding dates in dryseeded rice. The occurrerlce of SBPH was the highest an nce seeded in May 11, followed byMay 1, May 21 and May 31. However. SBPH dld not occur on the rice seeded in June 10 duelo the rice was emerged after peak occurrence of first generailon adult of SBPH. The occurrenceof the first generation adult of SBPH was May 11 and it was 3-day earlier than that of infantnce transplanting. The ~nd~cencofe rice vlrus diseases, rice stripe vilus (RSV) and rice black-streakeddwarf virus (RBSDV), was the most severe at seeding date May 11. and then followed by May1, May 21 and May 31 Thus the incidence of "ce virus diseases was closely related with thedensity of the first generat~on adult of SBPH Rice yield was decreased by later seeding dates, although rice yield from May 1 to May 21 was relatively stable and hqii compared with laterseeding dates. Accordingly, there was slgniilcant relatlonsh~p between rice yield and seeding datesice yield and seeding dates

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Medium Depths and Fixation Dates of 'Seolhyang' Strawberry Runner Plantlets in Nursery Field Influence the Seedling Quality and Early Growth after Transplanting (차근육묘를 위한 배지의 깊이 및 착근 시기가 '설향' 딸기 자묘 소질과 정식 후 초기 생장에 미치는 영향)

  • Park, Gab Soon;Choi, Jong Myung
    • Horticultural Science & Technology
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    • v.33 no.4
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    • pp.518-524
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    • 2015
  • The objective of this research was to investigate the influence of various depths of expanded rice hull (ERH) medium and fixation dates of runner plantlets of 'Seolhyang' strawberry on the growths in nursery field and in plastic house soil after transplanting. The five treatments in medium depths (30, 50, 70, 90, and 110 mm) and four treatments in fixation dates (1st and 15th July and 1st and 15th August) were tested. The growths of runner plantlets were investigated before transplanting to plastic house soil. The early growth and inflorescence rates of crops after transplant to plastic house soil were also investigated. The plant height and fresh weight of runner plantlets were the highest in the medium depths of 50, 70, and 90 mm. The medium depth of 30 mm had higher numbers of first roots, but lower root fresh weight compared to those of 70, 90, and 110 mm. The treatment of 30 mm in medium depth showed poorer growth in all indexes except root length and root weight compared to those of 70, 90, and 110 mm. The runner plantlets fixed on July 1 and July 15 showed good root growth and the weights of ERH adhered to form root balls were 18.3 g and 13.9 g, respectively. The detached amount of ERH was less than 40% in the two treatments when root balls were shaken by a vibratory sieve shaker. The plant growth at 45 days after transplanting to plastic house soil were not significantly different when the runner plantlets were fixed in the period from July 1 to Aug. 1. The inflorescence rates of the first cluster were 93 to 100% when runner plantlets were fixed in the period from July 1 to Aug. 1. By contrast the runner plantlets fixed on the Aug. 15 had a 67% in florescence rate for the first cluster. These results indicate that optimum depth of ERH medium was 7 cm and the ranges of optimum fixation dates are from July 20 to 25.

Effects of Transplanting and Direct Seeding on the Growth and Yield of Rapeseed (Brassica napus L.) during Spring Cultivation (유채 봄 재배 시 기계이식과 직파 재배시기에 따른 생육 및 수량 비교)

  • Lee, Ji-Eun;Kim, Kwang-Soo;An, Da-hee;Cha, Young-Lok
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.66 no.4
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    • pp.419-427
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    • 2021
  • In South Korea, direct seeding of rapeseed (Brassica napus L.) is difficult during spring cultivation in early March because of the low yield production associated with late flowering and poor seed quality. To compare the period of direct sowing, the present study investigated the growth characteristics of rapeseed according to planting dates. Specifically, 35 day-old seedlings were transplanted or directly sown on four different dates (late February, early March, late March, and early April) in 2020 and 2021. As the planting date was delayed, the days to flowering of rapeseed decreased. Similarly, the plant height, seed set percentage, and seed yield of rapeseed were reduced upon delay in planting. The seed yield of rapeseed through direct seeding in late February was the highest, 2.76 ton·ha-1. On all seeding dates, except for late February, the transplanted rapeseed produced a higher yields than the directly seeded rapeseed. The crude oil and oleic acid content, which is related to the quality of rapeseed, decreased with the delay in planting dates, and this decrease was greater, with the direct seeding of rapeseed depending on the sowing time. In the correlation analysis, the planting date was significantly and negatively correlated with the yield, crude oil content, and oleic acid content of the transplanted rapeseed, while the sowing date was negatively correlated with the plant height, silique size, yield, and seed quality of the directly seeded rapeseed. Finally, the effect of planting date on rapeseed growth was stronger in direct seeding than in transplanting. Therefore, during spring cultivation after late February to early March, transplanting, rather than direct seeding, in more advantageous in terms of seed quality and yield.

Rice cultivars adaptable for rice based cropping systems in a paddy field in the Yeongnam plain area of Korea

  • Kim, Sang-Yeol;Seo, Jong-Ho;Bae, Hyun-Kyung;Hwang, Chung-Dong;Ko, Jong-Min
    • Korean Journal of Agricultural Science
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    • v.45 no.3
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    • pp.355-363
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    • 2018
  • This study was conducted to investigate suitable rice cultivars for various rice based cropping systems in a paddy field in the Yeongnam plain area. Thirteen rice cultivars (5 early, 3 medium and 5 mid-late maturing cultivars) and three transplanting dates (June 5, June 25 and July 5) were evaluated in this study. The mid-late and early maturing cultivars for the July 5 and June 25 transplanting headed before August 30 which is the safe heading date in the Yeongnam plain area, ranging from Aug. 26 - 28 and Aug. 18 - 23, respectively. The safe harvest time of rice for double and triple cropping systems should be before the middle of October for the cultivation of the succeeding winter crops. The rice yield was the highest for the June 5 transplanting regardless of the rice cultivars, and it gradually decreased as the transplanting date was delayed from June 5 to July 5 due to a decrease in the spikelet numbers per panicle number and in the ripened grain rate. In contrast, the other yield parameters that include the panicle number per $m^2$, the 1,000-brown rice weight, and the ripened grain ratio were not significantly affected. The result indicates that based on the milled rice, heading time and harvest time, a medium maturing cultivar (Haiami and Samdeog) would be applicable to a winter barley/wheat, garlic/onion-summer rice double cropping, while a mid-late cultivar (Saeilmi, Saenuri and Hyunpoom) would be suitable for a spring potato/waxy corn-summer rice double cropping in the Yeongnam plain area. On the other hand, an early maturing cultivar (Unkwang, Jokwang and Haedamssal) would be preferable for a triple cropping because of the short growth period of rice.

In Vitro Rooting of Cnidium offcinale Makino through Shoot Tip Culture and It's Rhizome Growth under Different Transplanting Dates (경정배양(莖頂培養) 천궁유묘의 기내(器內)발근과 포장정식기별 근경생육(根莖生育))

  • Kim, Chang-Kil;Lee, Hyun-Suk;Chung, Jae-Dong
    • Current Research on Agriculture and Life Sciences
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    • v.15
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    • pp.109-114
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    • 1997
  • This studies were conducted to improve the root formation of plantlet derived from shoot tip culture and to evaluate the optium transplanting date of Cnidium officinale Makino in field. The rooting rate of shoot-tip derived plantlets was 81% on media containing 1.0 mg/L IBA and 0.05 mg/L BA within 30 days after culture. Upon transfer into potting soil, the seedling grown well under 75% shading. Optimal transplanting date on taking roots and rhizome growth was May 5 in field.

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