• Title/Summary/Keyword: rape

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Grazing Utilization of Winter Rye , Sorghum-sudangrass and Oat for Dairy Cattle (호맥.Sorghum-sudangrass 및 연맥 사료작물의 젖소 방목이용에 관한 연구)

  • 김정갑;한민수;김건엽;진현주
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.15 no.3
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    • pp.192-197
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    • 1995
  • This experiment was conducted to evaluate the grazing performance of dairy cattle for winter rye, sorghum-sudangrass hybrid and oat including of rape in Hwa seong-gun, Kyeonggido, from 1993 to 1994. Each crops were utilized from the stage of 8-leaves to late blooming for sorghum-sudangrass, and from final leaves to soft dough for winter rye and oat plant. Under three different cropping system of winter rye-sorghum x sudangrass, spring oat-sorghum X sudangrass-autumn oat, and silage corn-autumn oat, a succeshl hehage production was available for grazing performance from April 26 to December 15, continuously. Annual dry matter yields for grazing allowance were 26.1 tontha in average of all cropping system. Autumn oat rnixtured with rape showed the highest herbage utilization with 91.6% grazing intensity and the lowest in sorghum-sudangrass with a value of 60.6- 69.1 %. Labor investment for herbage production were 805 hour in the cutting management and 339 hour per hectar in the grazing utilization.

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Studies on Heterosis Breeding in Rapeseed Using Cytoplasmic Male Sterility 2, Agronomic Characteristics of F_1 Seed Production Procedure in the Three-way Crossing of Cytoplasmic-genetic Male Sterile, Non-Isogenic Maintainer and Restorer on Rape (Brassica napus L.) (세포질 유전자적 웅성불임계통을 이용한 유체 Heterosis 육종 개발에 관한 연구 제2보 웅성불임계통에 Non-Isogenic Maintainer를 활용한 유체 3원교잡F_1의 형질발현과 F_1종자생육)

  • Jung-Il Lee;Jung-Il Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.25 no.2
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    • pp.49-57
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    • 1980
  • A $F_1$ hybrid out of 143 crosses of rape (Brassica napus) using cytoplasmic-genetic male sterility yielded 5.18 tons per hectare. European and native varieties used, were found out to have 78% and 58% of genes restoring fertility, respectively. The $F_1$ hybrids of three way cross using non-isogenic maintainer showed higher heteroses than those of double cross. To produce F 1 hybrids of three way cross, three stages of crossing operations are needed and seeds produced from about 60 hectares can be covered to 60, 000 hectares.

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Determination of the Optimum Time of Harvest in Winter Rape (겨울 유채의 적정수확시기 결정에 관한 연구)

  • Chae, Y.A.;Kwon, Y.W.;Kwon, B.S.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.25 no.4
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    • pp.81-85
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    • 1980
  • Field experiment was conducted to determine the optimum harvesting time in winter rape (Brassica napus L.) by investigating the percent oil, 1, 000 seed weight, seed yield, dehiscent pod ratio and oil yield at 46, 50, 54, 58, 62, 66 and 70 days after flowering. Variation of all characters with days after flowering could be explained significantly by second degree polynomial equations. Percent oil and 1, 000 seed weight increased until 62 days after flowering and thereafter these traits decreased, while seed yield increased to 58 days after flowering and thereafter this trait decreased. This controversy was due to the drastic increase in dehiscent pods beyond 58 days after flowering which brought loss in seed yield. These results suggest that optimum harvesting time is 58 days after flowering and it should not be later than 60 days after flowering.

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Clubroot Affects Both Agriculture and Tourism in Kagoshima Prefecture, Japan

  • Higuchi, Koichi;Tanaka, Yoshihiro;Matsumoto, Satoru;Omatsu, Naoshi;Inoue, Hideaki
    • 한국균학회소식:학술대회논문집
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    • 2015.05a
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    • pp.50-50
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    • 2015
  • Both agriculture and local tourism of Kagoshima prefecture where is located on the south-western region of the Japanese mainland, are the important industries. Although cabbage (Brassica oleracea) has been cultivated in recent decades in Kagoshima, clubroot disease caused by Plasmodiophora brassicae had never been observed. However, the disease in cabbage was reported in four regions last couple years. Our survey showed that one region is infested severely whereas others are slightly. In the most widely infested region, the disease was also observed in turnip rape (Brassica rapa) which is grown as ornamental plants for landscape design in early spring and important tourist attraction. Consequently, both agriculture and local tourism are damaged by clubroot. The increase of clubroot incidence in this region might be caused by significant increase of cabbage production, the expansion of cropping season throughout the year and continuous turnip rape cultivation in the same fields of cabbage for almost three decades. Therefore we are trying to estimate the risk of clubroot damage cultivation throughout the year in this region. We collected five isolates of resting spores and identified them as race 3, 4 and 9 by Williams' method, and as pathotype group 3 and 4 by classification system using clubroot resistant (CR) $F_1$ cultivars of Chinese cabbage as differential hosts as described in Hatakeyama et al.(2004). Furthermore, we found that these populations were avirulent to commercial CR cabbages. These results indicate that introduction of CR cabbage and breeding of turnip rape are the effective measures to solve our problem.

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Nondestructive Vigor Test of Seed (비파괴적 방법에 의한 종자의 활력 검정)

  • 이석순;홍승범
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.40 no.3
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    • pp.314-321
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    • 1995
  • Experiments were conducted to obtain information on separation of nonviable seeds from seed lots of rape, Chinese cabbage and radish, by nondestrutive ways. Seeds were artificially aged at 90% relative humidity(RH) and 45$^{\circ}C$ to get different seed qualities. Large amounts of amino acids, proteins and sinapine were leaked from the dead seeds into water in the course of 4~8 hours soaking, while high quality seeds did not leak in all crops. Percentage of normal seedlings from nonfluorescent cellulose coated seeds of rape, Chinese cabbage and radish under ultraviolet light was 96, 96 and 74%, while that of fluorescent seeds was 8, 9 and 1%, respectively. Cellulose coating and storage of Chinese cabbage and rape seeds at 60 and 75% RH for 3 months and 90% RH for 2 months did not deteriorate seed quality. But percentage of normal seedlings from nonfluorescent radish seeds stored at 60, 75 and 90% RHs for 3 months was 63, 64 and 2%, respectively.

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Prospect and Situation of Quality Improvement in Oilseed rape (유채 품질 평가 현황과 전망)

  • 장영석
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.47
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    • pp.175-185
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    • 2002
  • Rapeseed(Brassica napus L.) is an important oil crop as a vegetable oil, concentrated feed and industrial materials. The name "canola" was registered in 1979 by the Western Canadian Oilseed Crushers Association to describe "double-low" varieties. Double low indicates that the processed oil contains less than 2% erucic-acid and the meal less than 3mg/g of glucosinolates. Today annual worldwide production of rapeseed is approximately 35 million tons on 24 million hectares. China accounts for 33% of the world production and the European Economic Community for nearly 32%. Canola ranks 3rd in production among the world's oilseed crops following soybeans, sunflowers, peanuts and cottonseed. The recent advances in genomics and in gene function studies has allowed us to understand the detailed genetic basis of many complex traits, such as flowering time, height, and disease resistance. The manipulation of seed oil content via transgene insertion has been one of the earliest successful applications of modern biotechnology in agriculture. For example, the first transgenic crop with a modified seed composition to be approved for unrestricted commercial cultivation in the US was a lauric oil, rape-seed, grown in 1995. There were also some significant early successes, mostly notably the achievement of 40% to 60% lauric acid content in rapeseed oil, which normally accumulates little or no lauric acid. The name "$\textrm{Laurical}^{TM}$" was registered in 1995 by Calgene Inc. Nevertheless, attempts to achieve high levels of other novel fatty acids in seed oils have met with much less success and there have been several reports that the presence of novel fatty acids in transgenic plants can sometimes lead to the induction of catabolic pathways which break down the novel fatty acid, i.e. the plant recognizes the "strange" fatty acid and, far from tolerating it, may even actively eliminate it from the seed oil. It is likely that, in the future, transgenic oil crops and newly domesticated oil crops will both be developed in order to provide the increased amount and diversity of oils which will be required for both edible and industrial use. It is important that we recognize that both approaches have both positive and negative points. It will be a combination of these two strategies that is most likely to supply the increasing demands for plant oils in the 21st century and beyond.ant oils in the 21st century and beyond.

추파유채 ( Brassica napus L. ) 생육시기에 따른 비구조성 탄수화물 함량의 변화 ( Changes in the Non-Structural Carbohybrate Content during Growth Period in Forage Raps ( Brassica napus L. ) )

  • 전해열;김태환;김병호;강우성
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.14 no.4
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    • pp.331-338
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    • 1994
  • The objective of this study is to obtain the basic data for investigating the potentiality of continuous utilization (first cutting in the late fall and regrowth yield in next spring) of forage rape seeded in fall. Non-structural carbohydrates(NSC) in leaves and roots of forage rape seeded on Oct. 3 were analyzed during a growth period. The greatest change in NSC content was observed between the wintering and the early spring period. The total content of soluble sugar in leaves and roots highly increased from the late fall(Nov. 7) to the wintering period (Feb. 4), and then rapidly decreased on the early regrow^ period(Mar. 31). The contents of fructose and glucose were relatively lower, and their quantitative change also was smaller than those of other sugars through entire growth period. The highest accumulation of sucrose occured hum the late fall to wintering period, and then greatly decreased in the early regrowth period. Sucrose content in roots was 2.3 times higher than that of leaves in wintering period. Starch was the largest pool of NSC and its content in leaves and roots showed a similar pattern with that of sucrose through entire growth period. Starch contents in leaves and roots were 38mg and 189mgl gDM in the late fall(Nov. 7), 187 and 497mg/gDM(Feb. 4) in the wintering period and 69 and 79mglgDM(Mar. 28) in the early regrowth period, respectively. The results clearly showed that the main reserve forms of NSC are starch and sucrose, and that they are hlghly stored in roots in overwintering forage rape.

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Nitrogen Patitioning at Low Temperature in Fall-Sowing Species I. Uptake of exogenous N and remobilization of endogenous N (추파 청예작물의 저온 조건하에서 질소의 분배에 관한 연구 I. 외인성 질소의 흡수 및 내인성 질소의 전이)

  • Kim, Tae-Hwan;Kim, Byung-Ho
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.17 no.3
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    • pp.249-256
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    • 1997
  • A pulse-chase labeling of $^{15}N$ on winter rye (Scale cereale) and forage rape (Brassica napus) grown at $15^{\circ}C$ and $25^{\circ}C$ was carried out to determine the effects of low temperature on the uptake exogenous N and the remobilization of endogenous N. The growth rate of leaves and roots depressed at $5^{\circ}C$. AAer 9 days at $5^{\circ}C$, nitrogen content of leaves decreased to 20% on the average while that of roots increased to 12% compared with the plants grown at $25^{\circ}C$. Total content of $NO_3$- uptake 60m medium was 23.0 and 43.5 mg Nlplant, respectively, for winter rye and forage rape grown at $5^{\circ}C$ during 9 days. These values were corresponded to 59.3 and 26.1% lower uptake than those of $25^{\circ}C$. A large part of 1 5 ~ was distributed into leaves throughout time course in both of two species. The content of $^{15}N$ in leaves of winter rye at day 6 increased to 166 and 296 $\mu^{15}$N/plant compared with the initial value (day 0) in the plants grown at $5^{\circ}C$and $25^{\circ}C$ , corresponding to 90 and 163 $\mu$g N of remobilization h m roots into leaves during the fist 6 days. From 7 to 9 days, 75 and 52 $\mu$gN of outflow 6om leaves were occurred at $5^{\circ}C$ and $25^{\circ}C$. However, little remobilization of endogenous N was estimated in forage rape throughout the entire time course regardless of temperature treatment. Comparing two species studied, winter rye was much sensitively influenced by low temperature on the uptake of exogenous N and the remobilization of endogenous N.

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