• 제목/요약/키워드: time of transplanting

검색결과 412건 처리시간 0.023초

벼의 품종별 이앙시기가 미질 특성에 미치는 영향 II. 미립의 외관특성과 화학적 성분의 변화 (Characteristics of Grain Qualtiy at Different Transplanting Times among Rice Cultivars)

  • 고재권
    • 한국자원식물학회지
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    • 제11권1호
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    • pp.64-69
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    • 1998
  • This experiment was conducted to investigatd the variation of some apearance chemical components at National Honam Agricultural Experiment Station in Korea. the treatements consisted of five transplating times, form May 5 to July 5 at 15-day interval , and six cultivars ; two early-maturing, two mid-maturing and two latematuring cultivars. The results showed that the variatio of grain appearance such as length-wide ratio was not significantly different in early -maturing cultivars, but mid-and late-maturing cultivars made slightly a round shape of grain in case of early transplanting. Percentage of complete grain was found to be high at transplanting of MAy 20 inearly-maturing cultivars and on June 5 in mid-and late-maturing ones. PERcentage of existed embryo after milling showed high at early transplanting of May 5 for early -maturing cultivars, and at the late transplanting of June 5 in early and late maturing one. The chemical components of rice grain showed high in protein , lipid,ash and amylose content inthe earlier transplanting, and also revealed high in carbohydrates, magnesium and potassium in the later transplanting of all cultivars.

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Effect of different seedling ages and transplanting times on growth and yield of Indica × Japonica rice for noodle processing

  • Kim, Sang Yeol;Oh, Seong Hwan;Seo, Jong Ho;Yi, Hwi Jong;Hwang, Chung Dong;Bae, Hyun Kyung;Choi, Won Yeong;Oh, Myung Kyu
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.327-327
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    • 2017
  • The effect of different seedling ages and transplanting times on the growth and yield of Indica ${\times}$ Japonica rice for noodle processing was evaluated to develop a high yielding cultivation technology for increasing the competition against the imported foreign rice. Four seedling ages (10-, 20-, 30- and 33-day old) of two Indica ${\times}$ Japonica rice cultivars (cvs. Saemimyeon and Palbangmi) and three transplanting dates (May 20, May 30 and June 9) were used in the study. Our results showed that the growth and rice yield of the two cultivars were significantly affected by the different seedling ages and transplanting times. Dry matter production at the panicle heading of the two rice cultivars were generally higher in the 30-day old seedling than the other seedling age treatments and then gradually decreased as the transplanting time was delayed from May 20 to June 9. Similar high panicle number per square meter were recorded at the 30-day old seedling between May 20-May 30 transplanting times. In contrast, other yield parameters that includes spikelet number per panicle, 1,000-brown rice weight, and ripened grain ratio (except for the June 9 transplanting time of Palbangmi) were not significantly affected. The milled rice yield of Saemimyeon was higher than that of the Palbangmi regardless of seedling ages and it was also the highest at the 30-day old seedling with four seedling ages. The milled rice yield of Saemimyeon was only slightly decreased as the transplanting time was delayed from the May 20 to June 9 but Palbangmi had a significantly lower milled rice yield at June 9 transplanting due to the low ripened grain ratio. The result indicates that the most suitable seedling age for the cultivars tested was at 30-day old seedling for noodle processing rice and recommended transplanting times were between May 20 and May 30 for the high rice yield in the Yeongnam plain area.

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강활 노두의 정식적기 (Optimum Transplanting Time of Ostericum koreanum Kitakawa)

  • 허봉구;심용구;김영효;김수용;최경배
    • 한국약용작물학회지
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    • 제14권1호
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    • pp.41-44
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    • 2006
  • 강활의 재배면적 136 ha 중에서 재배면적이 70%에 달하는 북강활의 노두번식 재배시 묘종의 정식적기를 구명하기 위하여 정식기를 3월 20일부터 10일 간격으로 5월 1일까지 정식하여 생육 및 수량을 조사한 결과는 다음과 같다. 1. 시험전 토양의 화학성은 비옥도가 중간정도인 보통밭이었다. 2. 재배 기간중의 3년간 평균기온은 3월 하순을 제외하고 평년에 비해 낮은 편이었으나 4월 중순 이후의 강우량은 많았다. 3. 정식시기가 빠를수록 출현율, 추대율이 높았으며 초장과 경장이 길고, 분지수가 많았으며 생육도 양호하였으나 경직경은 일정한 경향이 없었다. 4. 수량구성 요소들은 4월 1일 정식한 구에서 가장 좋았으며 수량도 251 kg/10g으로 3월 20일 정식한 구보다 13% 증수되어 정식적기는 4월 1일 전후가 적당할 것으로 생각된다.

Effect of different transplanting and harvest times on yield and quality of pigmented rice cultivars in the Yeongnam plain area

  • Kim, Sang-Yeol;Han, Sang-Ik;Oh, Seong-Hwan;Seo, Jong-Ho;Yi, Hwi-Jong;Hwang, Jung-Dong;Choi, Won-Yeong;Oh, Myung-Kyu
    • 농업과학연구
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    • 제43권3호
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    • pp.330-339
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    • 2016
  • The effect of transplanting and harvest timing was evaluated for the production of high quality pigmented rice in the Yeongnam plain area. Rice was transplanted on June $2^{nd}$ and $14^{th}$ and harvested between 35 - 55 days after panicle heading at 5 - day intervals. Three black- and 3 red-pigmented rice cultivars (such as early cultivar : Josengheugchal, Jeogjinju; medium cultivar : Heugseol, Hongjinju; and mid-late cultivar : Sintoheugmi, Geongganghongmi) were studied. Yield components like spikelet number, ripened grain ratio, and 1,000 - grain weight of the black- and red-pigmented rice cultivars were similar for both the June 2 and June 14 transplantings but panicle number per $m^2$ was higher for the June 14 transplanting than for June 2. This contributed to a higher brown rice yield for the June 14 transplanting, by 6 - 19% for black-pigmented rice, and by 10 - 21% for red-pigmented rice than the yield for the June 2 transplanting. Total anthocyanin and polyphenol productions of the pigmented rice were also higher in the June 14 transplanting than that in the June 2 transplanting due to high brown rice yield. Based on the combined pigmented brown rice yield, we concluded that the optimal harvest timing would be 40 - 45 days after panicle heading (DAH) for the black-pigmented rice and 45 - 50 DAH for the red-pigmented rice. This study suggests that optimum transplanting and harvest timings play an important role for production of high quality pigmented rice in the Yeongnam plain area.

서남부 간척지에서의 고품질 쌀 생산을 위한 적정 이앙시기 (Proper Transplanting Time for Improving the Rice Quality at Reclaimed Saline Land in the Southwestern Area)

  • 백남현;최원영;고종철;남정권;박홍규;정진일;김상수;박광근
    • 한국작물학회지
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    • 제50권spc1호
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    • pp.41-45
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    • 2005
  • 서남부 간척지에서의 고품질 쌀 생산을 위한 생태형별 적정이앙시기를 구명하고자 2002년부터 2004년까지 호남농업연구소 계화도출장소 시험포장 문포통(세사양토, 토양 염농도 $0.1\%$)에서 삼천벼, 화성벼, 남평벼를 공시하여 이앙시기별 벼생육, 수량구성요소, 수량 및 품질 관련형질을 검토한 결과를 요약하면 다음과 같다. 1. 단위면적당 영화수는 생태형에 관계없이 이앙시기가 빠를수록 많은 경향이었다. 2. 삼천벼의 등숙비율은 조기이앙에서, 화성벼는 6월 9일 이후 이앙에서 높았다. 3. 완전미 수량은 삼천벼와 화성벼는 이앙시기가 빠를수록 많았고 남평벼는 5월 30일 이앙에서 많았다. 4. 따라서 완전미 수량, 등숙비율, 미질 등을 고려한 이앙적기는 조생종은 5월 20일$\~$5월 30일, 중생종과 중만생종은 5월 30일$\~$6월 9일로 판단된다.

벼의 품종별 이앙시기가 미질 특성에 미치는 영향 I. 출수 및 수량관련형질의 변화 (Characteristics of Grain Quality at Different Transplanting Times among Rice Cultivars I. Variation of Heading and Yield Related Characteristics)

  • 고재권
    • 한국자원식물학회지
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    • 제10권4호
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    • pp.386-391
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    • 1997
  • 벼 생태형별 조만성 차이가 뚜렷한 조생종으로 오대벼와 신운봉벼, 중생종으로 청명벼와 장안벼, 만생종으로 동진벼와 만금벼 등 6개 품종을 공시하여 호남노업시험장 수도포장에서 1993년 5월 5일부터 15일 간격으로 5회에 걸쳐 작기이동을 시켜 이들의 작물학적 특성을 비교, 검토하였던 바는 다음과 같다. 1. 작기이동에 따른 출수기변이는 조생종은 6월 5일 이앙 이후에는 파종에서 출수까지 일수가 89~90일에 출수되어 변이폭이 적었으며 모든 품종에서 이앙시기가 늦어질수록 출수일수는 짧아졌다. 2. 일수입수, 등숙비율 및 천립중은 조생종은 5월 5일 이앙구, 중.만생종은 6월 5일 이앙구에서 많거나 무거운 경향이었다. 3. 수량성은 조생종은 5월 20일 이앙구에서, 중.만생종은 6월 5일 이앙구에서 최대수량을 나타내었다. 그러나 이앙시기가 늦어졌을 때 조생종과 만생종의 차는 6월 20일 이앙구에서는 10a당 44~77kg, 7월 5일 이앙구에서는 10a당 26~30kg로 만생조이 더 증수됨을 알 수 있었다.

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무인비행체 영상을 활용한 고랭지배추 정식시기 추정 (Estimating of Transplanting Period of Highland Kimchi Cabbage Using UAV Imagery)

  • 이경도;박찬원;소규호;김기덕;나상일
    • 한국농공학회논문집
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    • 제59권6호
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    • pp.39-50
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    • 2017
  • Growth monitoring of highland Kimchi cabbage is very important to respond the fluctuations in supply and demand from middle of August to early September in Korea. For evaluating Kimchi cabbage growth, it needs to classify the transplanting period of Kimchi cabbage, preferentially. This study was conducted to estimate the transplanting period of highland Kimchi cabbage from 2015 to 2016 in the main production area of highland Kimchi cabbage, Anbandegi, Maebongsan, and Gwinemi. Correlation between NDVI (Normalized Difference Vegetation Index) from UAV images and days after transplanting of Kimchi cabbage was high in early transplanting period. But because the growth curve of Kimchi cabbage showed S-type, joint use of multi-temporal linear regression equation for estimation of transplanting period was more suitable. Using application of these equations at Anbandegi, Maebongsan, and Gwinemi, we made the map of transplanting periods of highland Kimchi cabbage. Generally, highland Kimchi cabbage is harvested in sixty days later since transplanting. As a result, we could estimate the harvest time and area of highland Kimchi cabbage.

Changes of Anthocyanidin Content and Brown Rice Yield in Three Pigmented Rice Varieties Among Different Transplanting and Harvesting Times

  • Kim, Sang-Kuk;Shin, Jong-Hee;Kang, Dong-Kyoon;Kim, Su-Yong;Park, Shin-Young
    • 한국작물학회지
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    • 제58권1호
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    • pp.28-35
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    • 2013
  • Anthocyanin pigments from three pigmented rice varieties, Hongjinju, Sintoheugmi and Josaengheugchal pigmented by black color, were quantified to evaluate effects of transplanting and harvesting time during seed development. Hongjinju, a rice variety of grains pigmented by red color, contains only two kinds of anthocyanins, delphinidin and cyanidin. Meanwhile, delphinidin, cyanidin, and pelargonidin were identified in Sintoheugmi and Josaengheugchal. Anthocyanidin contents in pigmented rice variety Hongjinju under different planting times were decreased with prolonged harvesting times. The Sintoheukmi showed that cyanidin content was the highest among analyzed pigments during seed development. Two anthocyanins (cyanidin and pelargonidin) in Josaengheugchal recorded highest contents at 20 days after heading in three transplanting times. Cyanidin content was also slightly increased with prolonged transplanting time. Total anthocyanidin contents in Hongjinju were always lower than that of Sintoheukmi and Josaengheukchal. In two rice varieties, Sintoheugmi and Josaengheugchal, $a^*$ values were commonly slightly decreased by late transplanting and harvesting times. Changes of $a^*$ and $b^*$ values in waxy rice varieties, Sintoheugmi and Josaengheugchal varied more than those in Hongjinju. In Josaengheugchal, early harvesting before maturity showed lower brown rice yield and late harvesting in the each transplanting times resulted in highest brown rice yield.

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.

한발로 인한 벼의 이앙지연 및 수분결핍장애가 생육 및 수량에 미치는 영향 (Effect of Delayed Transplanting plus Water Stress on the Growth and Yield of the Rice Plants)

  • 권용운;소창호;권순국
    • 한국농공학회지
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    • 제28권3호
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    • pp.79-88
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    • 1986
  • Drought occurs most frequently and severely around transplanting season of the rice plants in Korea. Shortage of water due to drought for the paddy fields often delays transplanting, and less often the rice plants are subjected to water stress after delayed transplanting. The present study aimed at quantification of the rice crop loss due to delayed transplanting, different inten3ity of water stress, and the combined effect of delay in transplanting followed by water stress for better use of limited water for irrigation under drought. The rice variety Chucheong, a japonica, and Nampung, an indica x japonica, were grown, transplanted to 1/200 a plastic pots, and subjected to different timing of transplanting and degree of water stress under a rainfall autosersing, sliding clear plastic roof facility with completely randomized arrangement of 5 replications. The results obtained are summarized as follows: 1.Twelve days or 22 days delay in transplanting without water stress reduced rice yield by 25% and 43% in the japonica variety, and by 15% and 60% in the indica x japonica variety. 2.The 10 days or 20 days water stress developed without irrigation after drainage in the rice plants transplanted at proper time lowered the water potential at the paddy soil 10cm deep to -4 bar, and -12 bar and caused rice yield reduction by 14%, and 45% in the japonica variety and by 8%, and 50% in the indica X japonica variety. 3.The 12 days delay in transplanting and 10 days or 20 days water stress reduced rice yield by 39% and 59% in the japonica variety, and by 38% and 52% in the indica x japonica variety. The 22 days delay in transplanting plus 10 days water stress caused yield reduction by 76%, i.e. meaningless yield, in both varieties. 4.The intermittent irrigation just to wet the soil body for 10 days after 10 days water stress without irrigation increased rece yield by 12 to 16% compared to the rice plants water stessed without irrigation continuously for 20 days in both varieties respectively. 5.The above results suggest strongly 1) to transplant the rice plants at proper .time even with some water stress rather than delay for sufficient water from later rainfall, and 2) to distribute insufficient irrigation water to broader area of transplanted rice with limited irrigation for better use of limited irrigation water. A greater sensitivity of japonica variety to a moderate water stress than the indica X japonica variety during initial rooting and tillering stage was noticed. To cope with frequent drought in rice culture, firstly the lasting time of transplanting without yield reduction should be clarified by region and variety, and secondly a scheme of rational distribution of limited water should be developed by region with better knowledge on the varietal distribution of limited water should be developed by region with better knowledge on the varietal responses to varying intensity of water stress.

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