• 제목/요약/키워드: Yield of rice

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트리아콘타놀이 벼의 생장과 수량에 미치는 영향에 관한 연구 (Studies on the Effect of Triacontanol on the Growth and Yield of Rice Plants)

  • Lim, Ung-Kyu
    • The Korean Journal of Ecology
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    • 제6권1호
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    • pp.14-17
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    • 1983
  • For the purpose of rice yield, 3 rice varieties S-235 (Sam-Pung), S-287(Tai-Baik), S-294(Nam-Pung), control experiment College of Agriculture, Seoul National University garden in 1982. Method of experiment are 4 treatment, 4 replication and randomized block design. Unhilled rice were increased S-235 14.8%, S-287 of 16.2%, S-294 of 15.7%. Each varieties were each sigmificant of 1%. And the best increased, Triacon 10 and $CaCl_2$ 15mM. It think that problems were the more study. Among factor of yield, increase is panice no. of hill and the same varieties. Only S-287 of panicle of hill is significant of 5% and also 1000 seed weight is not significant. The factor of increase yield is important of no. of flower. No. of flower increase is concerned Triacon, the mechanism will study.

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Effect of Feeding Urea Treated Rice and Wheat Straw on Intake and Milk Yield of Lactating Buffaloes under Farmers Conditions

  • Khanal, R.C.;Gurung, D.B.;Kadariya, R.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권8호
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    • pp.1200-1204
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    • 1999
  • Two experiments were conducted to study the effect of urea treatment of rice and wheat straw on feed intake, dry matter (DM) digestibility and milk yield of lactation buffaloes in their late lactation under farmers' management conditions in the western hills of Nepal during 1995 and 1997. Dry matter intake (DMI) from urea treated rice and wheat straw was not improved significantly (p<0.05) nor the total DMI of the lactating buffaloes was improved significantly. However, feeding urea treated rice straw increased straw DMI by 14.2% and total DMI by 10.63% units over the untreated rice straw. Similarly, the increase in straw and total DMI were 20.18 and 17.40% units over the untreated wheat straw fed animals. Although there was no significant effect of urea treatment of both straw on DM digestibility, it was higher for treated than untreated straw at all locations. An overall increment of 18.1% units for rice straw and 13.3% units for wheat straw was observed. There was a significant effect (p<0.01) of feeding urea treated rice and wheat straw on the milk yield of lactating buffaloes during late lactation under farmers conditions. Post experiment milk yield was also significantly (p<0.05) higher for the animals fed treated straw in both the experiments. Buffalo milk yield was also significantly affected by breed (p<0.01), location (p<0.01) and parity (p<0.01) of the animals. General response of the farmers about the technology and their observed effect on animal performance was also very positive.

유색미 혼합 재배시 수량 및 현미 품질 (Rice Yield and Quality in Mixed Cropping of Several Colored Rice Cultivars)

  • 신종희;한채민;권중배;원종건
    • 한국작물학회지
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    • 제67권2호
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    • pp.85-94
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    • 2022
  • 혼반용 유색 찰 현미 생산을 위해 품종의 혼합 재배 기술을 이용하면 노동력 절감과 더불어 수량증대로 인한 농가소득 향상에 도움이 될 것으로 기대 된다. 유색미의 경우 현미 색이나 품종별로 항산화 및 혈중 콜레스테롤 저하 등의 다양한 기능성 성분을 함유하고 있으며 본 연구에서는 혼반용으로 적합한 유색미 품종의 선발과 재배기술의 생력화를 위하여 유색미 혼합재배기술에 대한 연구를 수행 하였다. 유색미에 함유되어 있는 페놀화합물의 정성 및 정량분석 결과 황갈색 계열의 품종 및 자원은 Ferulic acid와 Salicylic acid 함량이 높았으며, 적미 계열의 품종 및 자원은 Ferulic acid, Gentisic acid, Catechin 함량이 높았다. 흑미 계열의 경우 Ferulic acid, Caffeic acid, Cinnamic acid 함량이 높았고 적미, 녹미 등 다른 계열의 유색미에 비해 Quercetin 함량이 높은 경향이었다. 녹색계열의 녹원찰벼의 경우 Ferulic acid, Coumaric acid 함량이 높았으며 특히 Coumaric acid 함량이 다른 계열의 유색미에 비해 높았다. 블랜딩 유색미 생산을 위해 품종을 혼합하여 재배할 경우 주당수수, 등숙율 증가로 단일품종으로 재배하는 것보다 수량이 18~20% 증수 되었으며, 혼합재배 유형 중 1품종 1열 재배에서는 녹원찰, 종자혼합 재배에서는 청풍흑향찰, 한강찰과 아랑향찰은 혼합재배 유형 모두에서 생산성이 높아지는 경향이었다.

Effects of Soil Moisture Stress at Different Growth Stage on Growth, Yield and Quality in Rice

  • Park, Hong-Kyu;Choi, Weon-Young;Kang, Si-Yong;Kim, Young-Doo;Choi, Won-Yul
    • 한국작물학회지
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    • 제44권2호
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    • pp.143-148
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    • 1999
  • Soil moisture condition is an important limiting factor in growth and yield in rice culture. The purpose of this study was to compare the influence on the growth, yield and Quality of rice subjected to soil moisture stress (SMS) at different growth stages. Ajaponica rice cultivar, Dongjinbyeo, was cultured under flooded conditions in a plastic container filled with silty loam soil. The container was subjected to SMS until the initial wilting point (IWP) coincided with about 10% in soil moisture content and about-200 kPa in soil matric potential, and was then irrigated again, at 6 and 5 of main growth stage in 1996 and 1997, respectively. At maturity, the plant height, tiller number, leaf area and top dry weight were decreased more in SMS treatments at the early stage than the late stage. The averaged yield index of SMS to control in both years was lowest at meiosis (62.5%), which primarily resulted from lower percent ripened grain and 1,000 grain weight, and second' reduced the spikelet number per panicle and panicle number per hill, and followed at tillering stage (68.5%) which resulted from the lower production in tiller number and top dry matter during and after SMS treatment. The percent-age of read rice in SMS plants varied with the treatment stage as order of lower at meiosis (44.0%), heading (53.9%), panicle initiation (70.1%), tillering (72.1%), ripening (75.8%) and 5 days after transplanting (DAT) (79.0%). Protein content in brown rice was slightly larger in SMS at late growth stage than the control, while the contents of fat and ash differed very little between SMS and control. Contents of Mg and K and Mg/K in brown rice with SMS were lower at some treatment stages such as at ripening or panicle initiation.

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벼에 대한 돈분뇨 액비의 시용량 및 시용시기 구명 (Effect of Application Time and Amount of Liquid Pig Manure on Growth of Rice and Infiltration Water Quality)

  • 박백균;이종식;조남준;정광용
    • 한국토양비료학회지
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    • 제34권3호
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    • pp.147-152
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    • 2001
  • This study was carried out to investigate the effect of application time and amount of liquid pig manure on growth and yield of rice plant and infiltration water quality. Liquid manure treatment with higher application rate and closer application time to transplanting time showed higher plant height and number of tiller at panicle formation stage, but it caused the plant disease and pest and lodging. In liquid manure treatment with higher application rate, number of panicles per hill and number of spikelets per panicle were higher but yield of rice was less than chemical fertilizer treatment due to low rate of ripeness and 1,000 grain weight. $NO_3-N$ concentration in infiltration water sample was increased with increasing application amount of liquid manure and closer application time to transplanting of rice plant. With consideration yield of rice and environment such as groundwater quality, the proper application amount were 150% and 100% of recommending N fertilizer level (11kg) at before winter and April or May treatment, respectively.

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수확시기가 사료용 벼의 초장, 건물수량 및 사료성분에 미치는 영향 (Plant Height, Dry Matter Yield and Forge Quality at Different Maturity of Whole Crop Rice)

  • 성경일;홍석만;김병완
    • 한국초지조사료학회지
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    • 제24권1호
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    • pp.53-60
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    • 2004
  • Recently, there has been a growing tendency to use whole crop rice for feeds as there is an increased rice supply and a decrease in the demand for rice in Korea. Little information, however, is available about the management and utilization of whole crop rice for feeds. This study was conducted to decide the optimum harvest date through examining the plant height, dry matter(DM) yield and feed composition of whole crop rice harvested at different maturity. Field study was established early in May until October 7th on a rice field at Yupori, Sinbuk-yeup, Chunchon, Kangwon-Do. "Ilpum" mutant rice was sown at 52 kg/ha, and N, P and K were applied at 209, 113 and 81 kg/ha, respectively. The rice was harvested at six different mature stages for analysis; booting stage; 17 Aug., milk-ripe stage; 27 Aug., dough stage; 7 Sep., yellow ripe stage; 17 Sep., dead ripe stage; 27 Sep. and full ripe stage; 7 Oct. Plant height was 77 cm in booting stage (P<0.05) which was lower when compared to the other stages among which the heights did not differ with average range of 93∼97 cm. The highest dry matter yield was observed in yellow ripe stage (22.8 T/ha), which was followed by dead ripe stage (19.3 T/ha), full ripe stage (19.3 T/ha), and dough stage (15.1 T/ha). Crude protein (CP) and Neutral detergent fiber (NDF) concentrations consistently decreased with maturity. The highest concentrations of CP and NDF were obtained in booting stage with 9 and 73.6%, respectively (P<0.05), and lowest in full ripe stage with 5.8 and 64.6%, respectively (P<0.05). The concentration of total digestible nutrient (TDN) was highest in booting stage (59.7%); however no significant difference was found among other stages. The concentrations of Ca and P were not different among mature stages. According to these results, the yellow ripe period is appropriate to harvest the whole crop rice for forage considering dry matter yields, feed compositions and TDN concentrations.

Profiling of genes related with grain yield in rice germplasms

  • Jo, Su-Min;Kim, Tae-Heon;Shin, Dongjin;Lee, Ji-Youn;Han, Sang-Ik;Cho, Jun-Hyun;Song, You-Chun;Park, Dong-Soo;Oh, Myung-Gyu
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.96-96
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    • 2017
  • Rice is a staple food for nearly half of the world's population, with more than 10,000 rice varieties providing almost one-quarter of the global per capita dietary energy supply. Grain size, panicle size and branch number, grain number in a panicle are directly associated with rice productivity. Recently several genes which increase grain yield were identified through map-based cloning. Gn1a, Cytokinin oxidase, is a major grain number QTL and regulates grain number per panicle. Dep1 increases panicle branching and reduced rachis length. SCM2 (APO1) was identified by a QTL for culm strength and increased spikelet number. OsSPL16 (GW8) controls grain size and shape and then increases 1000-weight of seed. In here, to identify genotype of genes related to yield in 400 of rice germplasms possessed in National Institute of Crop Science, we had first chosen 4 of well-known genes related to yield; Gn1a, Dep1, SCM2, and OsSPL16. Among these germplasms, 195, 382, 165, and 353 of germplasms harbored the dominant type of Gn1a, Dep1, SCM2, and OsSPL16, respectively. We grouped these germplasms into a total of 10 groups using genotypes of Gn1a, Dep1, SCM2 and OsSPL16. Most rice germplasms belong to group 1, harbored Gn1a, dep1, gw8 and APO1, and group 10, harbored gn1a, Dep1, GW8 and apo1. Hanareum2 is the highest productive cultivar in Korea but do not have dominant type OsSPL16, so belong to group 1. On the other hand, in the case of Unkwang, belongs to group 10, which has dominant type of OsSPL16 but do not have the remaining genes. We can grasp the differences in rice germplasms through the Profiling of genes related to these grain yield, which will be useful for cross-breeding to integrate grain yield genes. We are continuously observing the genotype and phenotype of rice that possesses grain yield genes.

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Effects of Stubble Height, Irrigation and Nitrogen Fertilization on Rice Ratooning in Korea

  • Shin, Jong-Hee;Kim, Sang-Kuk;Park, Sang-Gu
    • 한국작물학회지
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    • 제60권4호
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    • pp.431-435
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    • 2015
  • Rice (Oryza sativa L.) ratooning is the production of a second rice crop from the stubble left behind after the main crop harvest. The objectives of this study were to evaluate the effects of main-crop stubble height, irrigation and fertilization on ratoon grain yield. Main crop 'Jinbuol' rice cultivar was harvested to leave with 10, 20, 30, or 40 cm stubble height. When the main crop stubble was harvested with 10 cm height, ratoon rice grain yield was increased by 2,810 kg/ha. Irrigation on stubbles after main crop harvest did not affect the ratoon crop yield and rice quality. The results showed a large variation in the ratoon performance by fertilizer application methods. Top-dressed nitrogen fertilizer on the stubble after harvest caused increase in panicle production and higher maturity rate. However, there was no significant difference in protein content, amylose content of milled rice and cooked rice characters between plots managed with and without nitrogen fertilizer.

논벼 NPP 지수를 이용한 우리나라 벼 수량 추정 - MODIS 영상과 CASA 모형의 적용 - (Prediction of Rice Yield in Korea using Paddy Rice NPP index - Application of MODIS data and CASA Model -)

  • 나상일;홍석영;김이현;이경도;장소영
    • 대한원격탐사학회지
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    • 제29권5호
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    • pp.461-476
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    • 2013
  • CASA 모델은 작물의 순 일차생산량(NPP)을 추정하는 가장 빠르고 정확한 모델 중 하나이다. 본 연구의 목적은 (1) 2002년 ~ 2012년 동안 한국의 논지역을 대상으로 작물 NPP의 시공간적 변화 패턴을 분석하고, (2) 연간 NPP와 쌀 생산성 간의 관계를 파악하여, (3) MODIS Product와 태양 복사량을 CASA 모형에 적용하여 2012년 한국의 쌀 수량을 추정하는 것이다. 또한, (4) 통계청이 발표한 최종 수량과 비교를 통해 적용을 검토하였다. 이를 위해, 월별 또는 누적 NPP와 수량과의 상관분석을 실시하였다. 그 결과, 총 누적 NPP와 9월의 NPP가 쌀 수량과 높은 상관성을 나타내었으며, 이를 이용하여 추정한 2012년 예측 수량은 누적 NPP 적용시 526.93 kg/10a, 9월의 NPP 적용시 520.32 kg/10a로 추정되었다. 통계청의 최종 수량과의 RMSE는 각각 9.46 kg/10a, 12.93 kg/10a를 나타내었으나, 전반적으로 두 모형 모두 1:1선에 근접한 결과를 보이고 있어 NPP를 이용한 벼 수량 추정 모형이 논벼 수량의 변화특성을 잘 반영하고 있는 것으로 판단된다.

Growth and yield responses of rice varieties to various soil water deficit conditions under different soil types

  • Kikuta, Mayumi;Samejima, Hiroaki;Magoti, Rahab;Kimani, John M.;Yamauchi, Akira;Makihara, Daigo
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.322-322
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    • 2017
  • To avoid drought stress under rainfed upland conditions, it is important for rice to efficiently utilize water at shallow soil layers supplied by rainfall, and access to water retained in deer soil layers. The root developmental characteristics of rice, which play important role in the adaptability to drought conditions, vary depending on the variety. Moreover, water availability for plant differs depending on the soil types that have different physical properties such as water holding capacity, permeability, capillary force, penetration resistance, etc. In this study, we evaluated growth and yield responses of rice varieties to various soil water deficit conditions under three different soil types. The experiment was conducted in a plastic greenhouse at the Kenya Agricultural and Livestock Research Organization-Mwea from October 2016 to January 2017. Two upland varieties (NERICA 1 and 4) and one lowland variety (Komboka) were grown in handmade PVC pots (15.2 cm diameter and 85.0 cm height) filled with three different types of soil collected from major rice-growing areas of the country, namely black cotton (BC), red clay (RC), and sandy clay (SC). Three watering methods, 1) supplying water only from the soil surface (W1), 2) supplying water only from the bottom of the pots (W2), and 3) supplying water both from the soil surface and the bottom of pots (W3), were imposed from 40 days after sowing to maturity. Soil water content (SWC) at 20, 40, and 60 cm depths was measured regularly. At the harvesting stage, aboveground and root samples were collected to determine total dry weight (TDW), grain yield, and root length at 0-20, 20-40, 40-60, and 60-80 cm soil layers. Irrespective of the watering methods, the greatest root development was obtained in RC, while that in BC was less than other two soils. In BC, the degree of yield reduction under W1 was less than that in RC and SC, which could be attributed to the higher water holding capacity of BC. In RC, the growth and yield reduction observed in all varieties under W1 was attributed to the severe drought stress. On the other hand, under W2, SWC at the shallow soil depth in RC was maintained because of its higher capillary force compared with BC and SC. As the result, growths and yields in RC were not suppressed under W2. In SC, deep root development was not promoted by W2 irrespective of the varieties, which resulted in significant yield losses. Under W1, the rice growth and yield in SC was decreased although shallow root development was enhanced, and the stomatal conductance was maintained higher than RC. It was suspected that W1 caused nutrients leaching in SC because of its higher permeability. Under rainfed conditions, growth and yield of rice can be strongly affected by soil types because dynamics of soil water conditions change according to soil physical properties.

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