• Title/Summary/Keyword: Transplanting cultivation

검색결과 407건 처리시간 0.032초

직파와 이식재배에 따른 인삼의 부위별 생육특성 및 진세노사이드 함량 비교 (Comparison of Growth Increment and Ginsenoside Content in Different Parts of Ginseng Cultivated by Direct Seeding and Transplanting)

  • 이상국;강선주;한진수;김정선;최재을
    • 한국약용작물학회지
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    • 제18권2호
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    • pp.70-73
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    • 2010
  • This study was carried out to clarify the difference of growth characteristics and ginsenoside content in 5-year-old ginseng root grown by direct seeding and transplanting cultivation. Root weight per plant of direct seeding cultivation was lower than that of transplanting cultivation. Fresh and dry matter partitioning ratio of direct seeding cultivation was high in main root and low in lateral because direct seeding cultivation root elongated the length of main root, while it suppressed the growth of lateral root. Total amount of ginsenoside contents by direct seeding and transplanting cultivation were 362.8 and 320.3 mg in main root, 188.6 and 548.8 mg in lateral root, 170.7 and 273.8 mg in fine root. Its contents of whole root per plant were 722.1 and 1142.9 mg by direct seeding and transplanting, respectively.

Effect of Rice Transplanting Date and Optimal Transplanting Dates for Mid-Plain Area in South Korea

  • Shingu Kang;Woonho Yang;Dae-Woo Lee;Jong-Seo Choi
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.59-59
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    • 2022
  • The transplanting date of rice affects grain yield and quality, and it is changed by the environment during cultivation. Thus, it is important to provide the optimal transplanting dates for rice growers under global warming environment. In this study, transplanting date experiments with thirty-day-old seedlings of three cultivars (early, mid, and mid-late maturity) were conducted at the National Institute of Crop Science in Suwon from 2018 to 2021 to determine the optimal transplanting dates for and quantify the effect of planting dates on yield and quality. Transplanting date was strongly associated with culitvar across every year. Clear relationships between transplanting date and head rice yield in early and mid-late maturing rice varieties were observed, and the highest head rice yields were observed during transplantings in mid and late June for early maturing cultivar and mid June for mid-late maturing cultivar. It is obvious that the optimal rice transplanting dates have been shifted and are better later than the optimal transplanting dates in 2002-2004. Days to heading was also strongly associated with the transplanting date and cultivar with 89% of the variation explained. Days to heading was reduced in the later transplanting dates. Grain yield was strongly associate with biomass production during ripening(R2=0.85), however translocated biomass from leaf and stem showed little association with grain yield. The results from this study reconfirmed the importance of shifting optimal transplanting dates to maximize head rice yield for the Mid-plain area in South Korea.

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남부지역 시설하우스 벼 극조기재배의 안전작기 설정 (Optimum Transplanting Time for Extremely Early Rice Greenhouse Cultivation in the Southern Area)

  • 최장수;안덕종;원종건;이승필;윤재탁;김길웅
    • 한국농림기상학회지
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    • 제5권3호
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    • pp.191-199
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    • 2003
  • Optimum transplanting time for extremely early rice cultivation as an after-crop of fruit and vegetables under greenhouse conditions in the southern area was determined. Rice was transplanted on March 10, March 20, March 30, April 10 and April 20 far three years from 1998 to 2000. Meteorological computations for rice production were high for heading between early May and early July, but they were too low for heading between late July and early August. Especially the expected yield predicted with 35,000 spikelets, the average spikelets per $m^2$ for extremely early transplanting. Computation for heading between late July and early August was low by 106 kg/10a compared with that yield at heading during the same period in the field. As the transplanting date in extremely early rice cultivation was earlier) rice growth at early stages was more retarded by low temperature. Rice growth at heading stage recovered with high temperature, showing less difference for the transplanting date. Abnormal tillers occurred by 15.5∼22.2%. The contribution of 1,000 grain weight${\times}$ripened grain ratio to yield of the extremely early rice cultivation in the greenhouse was 50.6%, indicating 16% hi일or than the degree of panicle per $m^2$ on yield. The estimated optimum transplanting time on the basis of yield for the extremely early greenhouse rice cultivation ranged from March 19 to April 28, and the estimated critical transplanting date on the basis of accumulated effective temperature was March 12. Rice reduced the amount of NO$_3$-N by 97.1% and EC by 90.5% in greenhouse soil with continuous fruit/vegetables fer more than a 10-year period, and completely removed the root-knot nematodes.

직파와 이식재배에 따른 인삼의 생육특성 및 엑스와 조사포닌 함량 (Comparison of Growth Characteristics, and Extract and Crude Saponin Contents in 4- Year-Old Ginseng Cultured by Direct Seeding and Transplanting Cultivation)

  • 이성우;차선우;현동윤;김영창;강승원;성낙술
    • 한국약용작물학회지
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    • 제13권6호
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    • pp.241-244
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    • 2005
  • 금산 및 음성지역의 4년생 인삼재배 농가포장에서 직파재배 5개소와 이식재배 5개소를 임의로 선정하여 직파와 이식재배에 따른 생육특성 및 엑스와 조사포닌 함량을 비교한 결과는 다음과 같다. 직파재배는 4년근 생존율이 평균 48%로 이식재배의 86%보다 떨어지나 입모수가 평균 96주/3.3$m^2$순로 이식재배의 57주보다 많고 엽면적지수가 커 수량성이 높은 반면, 주당근중은 작았다. 직파재배는 이식재배에 비해 동체의 신장이 양호하나 지근의 발달이 불량하여 동체중의 비율이 높고 지근중의 비율이 낮았으며, 직파재배는 적변 발생율이 적으나 동체와 지근부위의 엑스와 조사포닌 함량이 낮았다.

Investigation on Selective Mechanization for Wet Season Rice Cultivation in Bangladesh

  • Islam, AKM Saiful;Islam, Md Tariqul;Rahman, Md Shakilur;Rahman, Md Abdur;Kim, Youngjung
    • Journal of Biosystems Engineering
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    • 제41권4호
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    • pp.294-303
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    • 2016
  • Purpose: This study aimed to evaluate the profitability of four selective mechanization systems in rice cultivation. Methods: Field experiments were conducted in the farmers' field during the wet season (June to November) of 2015 in Bangladesh. Mechanization systems were applied to evaluate four different selective levels (treatment) in eleven consequent operations. Seedlings were raised in a traditional seedbed and trays for manual and mechanical transplanting, respectively. Land preparation, irrigation, fertilizer, pesticide, carrying, and threshing and cleaning operations were performed using the same method in all the experimental plots. The mechanical options in the transplanting, weeding, and harvesting operations were changed. The mechanization systems were $S_1$ = hand transplanting + hand weeding + harvesting by sickle, $S_2$ = mechanical transplanting + Bangladesh Rice Research Institute (BRRI) weeder + reaper, $S_3$ = mechanical transplanting + BRRI power weeder + reaper, and $S_4$ = mechanical transplanting + herbicide + reaper. This experiment was performed in a randomized complete block design with four replications. Power tiller, rice transplanter, BRRI weeder, BRRI power weeder, self-propelled reaper, BRRI open drum thresher, and BRRI winnower were used in the respective operations. Accordingly, the techno-economic performances of the different technologies were calculated and compared with those of the traditional system. Results: The mechanically transplanted plot produced 6-10% more yield than the hand transplanted plot because of the use of tender-aged seedlings. Mechanical transplanting reduced 61% labor and 18% cost compared to manual transplanting. The BRRI weeder, BRRI power weeder, and herbicide application reduced 74, 91, and 98% labor, respectively. The latter also saved 72, 63, and 82% cost, respectively, compared to hand weeding. Herbicide application reduced the substantial amount of labor and cost in the weeding operation. Mechanical harvesting also saved 96% labor and 72% cost compared to the traditional method of harvesting using sickle. Selective mechanization saved 15-17% input cost compared to the traditional method of rice cultivation. Conclusions: Mechanical transplanting with the safe use of herbicide and harvesting by reaper is the most cost- and labor-saving operation. The method might be the recommended set of selective mechanization for enhancing productivity.

Effects of No-tillage Dry-seeding on Rice Growth and Soil Hardness

  • Choi, Jong-Seo;Kim, Sook-Jin;Park, Jeong Hwa;Kang, Shingu;Park, Ki-Do;Yang, Woonho
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.662-668
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    • 2016
  • No-tillage dry-seeding of rice can offer potential benefits by reducing time and labor cost compared with conventional tillage practices. This study was conducted to investigate the effects of no-tillage dry-seeding on rice growth and soil hardness in comparison with other rice cultivation methods, machine transplanting and wet-hill-seeding on puddled paddy. The seedling stand fell within optimum range for both no-till dry-seeding and wet-hill-seeding on puddled paddy. Plant height, number of tillers and SPAD values in no-tillage dry-seeding cultivation were higher than those observed in other methods. There were no significant differences in grain yield of rice among three cultivation methods. The quality characteristics of milled rice grown in no-tillage dry-seeding were similar to those grown in other cultivation methods. Soil hardness in top 10 cm depth was significantly higher in no-tillage dry-seeding than other cultivation methods, while soil hardness below 10 cm depth was highest in machine transplanting cultivation. Results indicate that no-tillage dry-seeding practice is comparable to conventional tillage system in terms of seedling establishment, growth, yield and grain quality.

종자처리 양파(Allium cepa L.)의 포장직파재래 생육 특성 (The Growth Characteristics and Yield of Treatment Onion (Allium cepa L.)Seed in Direct Sowing Cultivation)

  • 이성춘
    • 한국자원식물학회지
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    • 제14권2호
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    • pp.94-101
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    • 2001
  • 종자처리 한 종자를 실제 포장에 파종기를 달리하여 포장환경과 양파의 생육과의 관계를 구명하여 양파 직파재배의 모델을 제시하기 위해 파종기별 포장출아율, 포장출아소요시간, 생육특성, 잡초발생, 수량특성 등을 조사하였다. 1.종자처리 종자의 포장출아율은 파종기간 차이가 없었고, 출아소요시간은 파종기가 늦어질수록 지연되었다. 2. 종자처리 종자의 직파재배 파종기는 9월 10일이 적기로 출아율과 출아소요시간은 각각 87과 192시간이었으며, 늦어 도 9월 20일 전에는 파종을 마쳐야 한다. 3. 이삭재배와 직파재배의 월동 전 유묘생장은 9월20일 파종까지는 직파재배에서 양호하였으며, 뿌리수가 직파재배묘에서 월등하게 많았다. 4. 월동 후 3월 8일 조사한 유묘생장은 전체 파종기에서 직파재배가 이식재배보다 양호하였는데 이후 조사에서는 생장의 차이가 점차 감소되었으며, 5월 8일 조사에서는 9월 20일 직파묘와 이식묘의 생장이 거의 비슷하였다. 5. 결주율은 이식재배 3%에 비해 직파재배에서는 13∼18%로 훨씬 높았으며, 그 정도는 파종이 지연 될수록 심하였다. 6. 평균 구중은 직파재 배에서 파종기가 늦어 질수록 감소하였는데, 직파재배와 이식재배에서 각각 230과 217g으로 직파재배에서 무거웠다. 7. 추대율은 직파재배가 이식재배 보다 높았으며, 파종이 지연될수록 약간 감소하였다. 8. 수량은 직파재배와 이식 재배가 각각 5,134와 5,300kg으로 이식재 배가 높았는데, 직파재배에서 파종이 늦어질수록 감소가 뚜렷하였다. 9. 품종간 평균 수량은 조생종과 중만생종에서 각각 3,750과 4,908kg으로 중만생종이 훨씬 높았고, 조생종에서는 소닉 품종이, 중만생종에서는 농우대고가 가장 높았다. 10. 흑색유공비닐 직파재배에서 발생 잡초는 흑쐐기풀 외 9종으로 흑쐐기풀, 민바랭이 및 개여뀌가 우점종이었으며, 파종기가 늦어 질수록 발생잡초량은 감소하였다.

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잔디 육묘 이식재배법에 관한 연구 IV 재식거리가 잔디생장에 미치는 영향 (Study on Transplanting Cultural Methods of Turf Seedling IV. Effect of Turf Growth to Transplanting Distances)

  • 이명선
    • 한국자원식물학회지
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    • 제19권1호
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    • pp.130-132
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    • 2006
  • 본 실험은 한국잔디의 실생묘 이식재배 시 개간지에서 적정 재식거리를 구명하기 위한 기초 자료를 얻고자 수행하였다. 잔디 실생묘 이식재배시 적정거리를 구명하기 위해 생육특성인 초장, 근장, 분지수, 마디수 및 포복경 길이와 수량구성 요소인 생체중 및 근물중을 조사하였다. 재식거리($30{\times}30cm$)에서, 초장, 근장, 분지수, 마디수 및 포복경 길이가 각각 14.1cm, 22.0cm, 7.0개, 31개 및 77.5cm로, 그리고 생체중 및 건물중이 각각 16.1 and 11.0g/plant로 다른 재식거리와 비교하여 가장 높게 관측되었다. 그러므로 잔디 생육특성과 수량구성 요소를 고려하여, 잔디의 실생묘 이식재배 시 개간지에서 적정 재식거리는 $30{\times}30cm$인 것으로 판단되었다.

수도(水稻) 재배유형별(栽培類型別) 잡초발생양상(雜草發生樣相)과 경합특성(競合特性) - 제(第) 1 보(報). 잡초발생양상(雜草發生樣相)과 우점도(優占度) 변이(變異) (Weed Occurrence and Competitive Characteristic under Different Cultivation Types of Rice(Oyriza sativa L.) - 1. Distribution and Dominance of Weed and Rice)

  • 임일빈;구자옥;박근용
    • 한국잡초학회지
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    • 제13권1호
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    • pp.26-35
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    • 1993
  • 벼 재배유형(栽培類型)을 관행이앙(慣行移秧), 중묘(中苗)(30일묘(日苗)) 기계이앙(機械移秧), 어린모(10일묘(日苗)) 기계이앙(機械移秧), 최아종자(催芽種子)의 담수직파(湛水直播) 및 건종자(乾種子)의 건답직파재배(乾畓直播栽培)로 하여 잡초(雜草)의 초종별(草種別) 발생양상(發生樣相) 및 우점도(優占度)를 조사(調査)한 결과(結果)는 다음과 같다. 1. 관행이앙재배(慣行移秧栽培)에서 발생(發生)된 잡초(雜草)는 피 등(等) 7초종(草種)이었으며, 일년생(一年生) 및 다년생잡초(多年生雜草) 발생비율(發生比率)은 65 : 35% 정도(程度)이었다. 2. 중묘(中苗) 및 어린모 기계이앙재배(機械移秧栽培)에서 발생(發生)된 잡초(雜草)는 피 등(等) 10초종(草種)이었으며, 일년생(一年生) 및 다년생잡초(多年生雜草) 발생비율(發生比率)은 60 : 40% 정도(程度)이었다. 3. 담수직파(湛水直播)에서 발생(發生)된 잡초(雜草)는 월년생(越年生) 1초종(草種), 일년생(一年生) 12초종(草種), 다년생(多年生)이 2초종(草種)이었으며, 일년생(一年生) 및 다년생잡초(多年生雜草) 발생비율(發生比率)은 13 : 87% 정도(程度)이었다. 4. 건답직파(乾畓直播)에서 발생(發生)된 잡초(雜草)는 월년생(越年生) 4초종(草種), 일년생(一年生) 13초종(草種), 다년생(多年生)이 3초종(草種)이었으며 일년생(一年生) 및 다년생잡초(多年生雜草) 발생비율(發生比率)은 8 : 92% 정도(程度)이었다. 5. 각(各) 재배유형(栽培類型)에서 발생본수(發生本數)로 본 최우점초종(最優占草種)은 관행이앙(慣行移秧)은 올챙고랭이, 어린모, 중묘(中苗) 기계이앙(機械移秧) 및 담수직파(湛水直播)에서는 올방개, 건답직파(乾畓直播)에서는 피이었으며, 발생량(發生量)으로 본 최우점초종(最優占草種)은 관행이앙(慣行移秧), 중묘(中苗) 및 어린모 기계이앙(機械移秧)에서는 올방개, 담수(湛水) 및 건답직파(乾畓直播)에서는 피이었다. 6. 각(各) 재배유형(栽培類型)에 따른 잡초발생(雜草發生) 우점도(優占度)는 관행이앙(慣行移秧), 중묘(中苗), 어린모 기계이앙(機械移秧), 담수직파(湛水直播) 및 건답직파(乾畓直播)에서 각각(各各) 0.631, 0.687, 0.657, 0.791 및 0.860이었다.

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Assessment of Critical Temperature for the Growth and Development of Early Transplanted Temperate Rice

  • Wbonho Yang;Shingu Kang;Dae-Woo Lee;Jong-Seo Choi
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.171-171
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    • 2022
  • Effect of temperature during the period of 10 days from transplanting (10 DFT) on the growth and development of rice plants was investigated by transplanting semi-adult seedlings six times from 5 April to 15 May at 10-day interval in the field conditions of 2020 and 2021, with aims to investigate the critical temperature for early transplanting of temperate rice. In the two experimental years, mean temperature for 10 DFT appeared 9.1, 10.5, 11.6, 13.8, 13.9, 16.2, 16.4, 16.7, 17.1, 17.8℃ depending on the transplanting date. Mean temperature of 9.1℃ and 10.5℃ for 10 DFT appeared in the April 5 and April 15 transplants in 2020 showed negative or no effect on the increase of rice growth and acceleration of heading date when compared to those of right after transplanting treatments in the same year. Mean temperature of 11.6℃ for 10 DFT appeared in the April 5 transplant in 2021 demonstrated greater biomass from early to heading stage but the same heading date compared to April 15 transplant, indicating that 11.6℃ for 10 DFT had a positive effect on rice growth but no effect on advanced heading. Both more biomass and advanced heading stage were observed when the mean temperature for 10 DFT was 13.8℃ or higher, compared to those of right after transplanting treatments. These findings indicate that effective 10-DFT mean temperature for rice growth exists between 10.5 and 11.6℃, and that for rice development in terms of heading stage lies between 11.6 and 13.8℃ in natural condition. Further field and indoor studies are suggested to narrow down the critical temperature for early transplanting of temperate rice, which will enable to maximize the crop period in high altitude regions with low temperature.

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