• 제목/요약/키워드: Seed planting

검색결과 294건 처리시간 0.038초

재생굵은골재를 사용한 다공성 폴리머 블록의 식생 특성 (Planting Properties of Porous Polymer Block Using Recycled Coarse Aggregates)

  • 성찬용;김영익
    • 농업과학연구
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    • 제37권1호
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    • pp.87-96
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    • 2010
  • This study was performed to evaluate the planting properties of herbaceous plant and cool-season grass in porous polymer blocks that were manufactured by using recycled coarse aggregates and unsaturated polyester resin to develop environmentally friendly planting blocks. Unsaturated polyester resin, natural and recycled coarse aggregates and $CaCO_3$ were used. The mix proportions were determined to satisfy the requirement for the workability and slump according to aggregate sizes(5-10 and 5-20mm). Tests for the void ratio and compressive strength of porous polymer concrete were performed at curing age 7 days. Also, porous polymer block using recycled coarse aggregates were applied to kinds of plants such as tall fescue, Perennial ryegrass, Lesedeza and Alfalfa. After seed, initial germination, germination ratio, cover view and growth length for planting blocks were estimated by various methods.

대두의 모형에 따른 재식밀도가 종실수량 및 수량구성형질에 미치는 영향 (Influence of Spacing on Seed Yield and Yield Component Characters in Three Different Types of Soybean Canopy)

  • 권신한;안용태;김광래;은종선
    • 한국작물학회지
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    • 제14권
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    • pp.91-96
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    • 1973
  • 우리나라 대두의 단위면적당 생산량은 제외국에 비해 낮은 편이며 그 원인은 여러 가지로 생각할 수 있으나 단시일내에 기존품종으로서 생산량을 높이는데 대두 초형에 따르는 재식방법의 개선이 중요하다고 여겨져 중부지방에서의 밀식적응대두형과 밀식정도의 구명을 위해 본 시험이 수행되었다. 본 시험에서는 모형과 각종 형질이 서로 상이한 품종인 장단백목, 충북백, Clark 등 3개 품종이 공시되었으며 휴폭을 세구로 그리고 주간거리를 세세구로 한 3반복으로서 시험하였다. 주당 분지수와 협수는 밀식에 따라 감소되었으나 동일한 밀도에서는 Clark에서 보다 충북백과 장단백목에서 더 많은 분지수를 가지고 있었으며, 협수에 관해서는 휴폭과 주간거리에 유의한 수준의 상호작용이 있었다. 절수는 품종간에 차이가 현저하였으며 휴폭에 의해서는 전혀 변화가 없었으며 주간거리가 커짐에 따라 Clark에서 약간 증가하였다. 간장도 주간거리에 관해서만 유의차가 현저하였으나 절수의 증가와는 관계없이 도장에 기인하였다. 도복성에는 Clark가 가장 강했으며 이는 이 품종 주경의 탄력성 때문인 것으로 여겨졌다. 밀식조건하에서는 다지성이고 광엽성인 재래품종들보다 절수가 많고 초장이 큰 도입품종 Clark가 공시된 3개 품종중 가장 수량이 많았으며 밀식재배용으로의 가장 알맞은 초형임이 명확하였고 파종은 재래식 점파보다는 조파로 밀식함이 노력이 절약되고 단위면적당 수량도 현저히 증가될 것이다.

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Production Practices for North American Ginseng: Challenges and Opportunities

  • Proctor John T.A.
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2002년도 학술대회지
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    • pp.212-226
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    • 2002
  • North American ginseng production may have been maximized in the traditional growing areas in the last decade and further increases may be in woods grown root, for niche markets. The marketplace demands high quality roots. Most problems leading to low quality roots start with the grower and can be avoided. These include poor site selection, inadequate soil drainage, untimely and poorly applied pesticides, and neglect of good sanitary practices. Selection of low lying sites increased the plant damage from frost in Ontario in May 2002. Seeding is still the major method of propagation of ginseng in spite of some success in culturing different parts of the plant. Opportunities exist for shortening the stratification period of North American ginseng seed to allow spring planting. This may reduce disease incidence. Since only one-third of ginseng seed sown ultimately produces plants harvested after 3 years any approach that reduces disease incidence and improves seed germination, seedling emergence and crop stand must be pursued. Disease is the major problem in ginseng cutivation from seed stratification, soil preparation prior to planting, right through to drying of the roots. Replant disease remains as an unresolved problem and needs full characterization and new approaches for control. Much progress has been made in research and related extension activities in disease control although challenges will arise such as with Quintozene and its replacement with Quadris for control of diseases caused by Rhizoctonia. Decreased labor populations and increased associated costs for ginseng production are causing rapid mechanization in every aspect of the ginseng industry. Engineers, machinery dealers, and fabricators, and growers are being challenged to increase efficiency by mechanization.

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유채의 $F_1$ 종자 생산시 종자친과 화분친의 재식비 및 등숙시기별 종자의 지방산 분석 (Effect of Planting Ratio of Male Sterility (MS) and Restorer Line (RL) on Fatty Acid Content and Composition during Seed Filling Period in $F_1$ Seed of Brassica napus L.)

  • 구양규;양선영;정용수;김현성;서미정;안성주
    • 한국작물학회지
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    • 제55권3호
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    • pp.226-231
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    • 2010
  • 이 실험의 목적은 유채 $F_1$ 종자 생산시 종자친과 화분친의 재식비 및 수확시기별 종자의 지방산 함량에 영향을 미치는지 알아보고자 실험을 수행하였다. 안정적인 종자 생산을 위해, 두 가지의 실험을 노지에서 수행하였다. 실험 1은 $F_1$ 종자 생산을 위한 종자친과 화분친의 재식 비별(4:2, 10:2, 10:1)로 정식하였고 유채 개화 후 40, 45, 50, 55, 60에 지방산 함량을 조사하였다. 실험 2는 $F_2$ 종자의 개화 후 등숙시기별로 종자를 수확하여 지방산을 분석하였다. 실험의 결과, 종자친과 화분친 재식비에 따른 등숙시기별 유채 종자의 지방산 조성 및 함량은 차이를 보여 주었으나 지방산의 오염 정도 척도인 erucic acid는 재식비에 따라 영향을 미치지 않았다. 종자친과 화분친의 비에서 얻어진 $F_1$$F_2$ 종자 비에서 palmitic acid, stearic acid과 linoleic acid은 등숙 시기에 따라 감소하였다. 그러나 oleic acid는 두 실험 모두에서 개화 후 55일까지 상대적으로 증가하였지만, 개화후 60일째 영향을 미치지 않았다. 지방산 생합성 관련 유전자인 SAD, FAD1 및 FAD2의 발현양상도 등숙 시기별 지방산 조성 및 함량과 일치하였다. 이런 결과는 종자친과 화분친의 비에 따른 재식비과 $F_2$종자의 비에 따른 지방산 조성이 큰 문제가 되지 않음을 보여주므로 $F_1$ 종자의 안정적인 생산을 위해 종자친의 파종비는 늘리고 화분친비를 줄이면 유채 종자 생산량이 높아질 것으로 사료가 된다.

파종기가 잎들깨의 생육 및 종실수량에 미치는 영향 (Effect of Planting Date on Growth and Grain Yield of Vegetable Perilla)

  • 김성택;강영길;고미라;문정수
    • 한국작물학회지
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    • 제46권6호
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    • pp.434-438
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    • 2001
  • 제주지역에서 잎들깨 품종의 채종을 위한 적정파종기를 구명하고자 잎들깨 1호와 만백들깨를 5월 15일부터 7월 15일까지 15일 간격으로 5회 파종하여 생육 및 종실수량을 조사한 결과는 다음과 같다. 1. 품종과 파종기간 상호작용은 생육일수에서만 유의하였다. 개화일수만이 품종간 유의한 차이가 있었는데, 잎들깨 1호가 만백들깨보다 약 2일 일찍 개화되었으나 성숙기는 약 1일 늦었다. 2. 파종이 5월 15일에서 7월 15일로 늦어짐에 따라 두 품종의 평균 개화일수는 137일에서 77일로, 생육일수는 179일에서 121일로 짧아졌다. 3. 파종이 5월 15일에서 7월 15일로 늦어짐에 따라 경장은 150cm에서 81cm, 분지수는 17.0개에서 7.3개, 주경절수는 16.9개에서 10.3개로 감소되었다. 4. 주당 화방군수는 5월 15일 파종에서 65.6개이었던 것이 파종이 늦어짐에 따라 점차 줄어들어 7월 15일 파종에서 50.7 개이었다. 화방당 삭수는 32.1~33.4개로 파종기에 따른 유의한 차이가 없었다. 1,000 입중은 5월 15일 파종에서 3.2 g이었던 것이 파종이 늦어짐에 따라 점차 무거워져서 7월 15일 파종에서 3.9 g이었다. 5. ㏊당 종실수량은 5월 15일 파종에서 1,820 kg이었던 것이 만파할수록 감소하여 7월 15일 파종에서 1,338 kg이었는데, 5월 15일과 30일 파종간에는 유의한 수량 차이가 없었다. 본 연구 결과에 의하면 제주지방에서 잎들깨 품종의 채종을 위한 파종적기는 5월 상순-하순으로 보인다.

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Evaluation of Growth and Yield on Transplanting time and Plant Density in ItalianRyegrass

  • Yun-Ho Lee;Hyeon-Soo Jang;Jeong-Won Kim;Bo-kyeong Kim;Deauk-Kim;Jong-Tak Youn
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.101-101
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    • 2022
  • In recent years, due to climate change, the livestock industry has become more interested in the production of forage crops. In Korea, more than 74% of forage crops are cultivated in winter rice fields. In particular, Italian ryegrass (IRG) is depends on imports for more than 70% of its seeds. In generally, the IRG rapeseed cultivation method involves sowing from early October to mid-October by drill sowing seeding or spot seedling. However, the sowing period is delayed due to frequent rainfall during. And, same period require a lot of seeds. However, raising seedlings and transplanted IRG will overcome weather conditions and reduce the amount of seeds. This study was intended to be applied to the domestic IRG seed industry in the future through growth and quantity evaluation according to transplant time and planting density for the production of good quality IRG seeds in rice paddy fields. In this study, transplanting time (October 20, October 30, November 10) and planting density (50, 70, and 80) were cultivated at the National Institute of Crop Science in 2021. The amount of fertilizer applied was adjusted to (N-P2O5-K2O) 4.5-12-12 (kg/10a), and then 2.2(kg/10a) of nitrogen was added each year. For the growth survey, leaf area, canopy coverage, plant length, and seed yield were investigated. Along with the transplanting time, the plant length was higher on October 20 than on October 30 and November 10. On the other hand, leaf area index changes differed depending on the transplanting time and planting density, and were particularly high on October 20, 80 density and 70 density, but similar on October 30 and November 10. 1000 seed weight showed no difference with transplanting time and planting density. On the other hand, the seed yield was 215(kg/10a) for 80 density on October 20, 211(kg/10a) for 70 density, 118(kg/10a) for 50 density, and 80 density for October 30 and November 10. and 70 density did not differ. On the other hand, the 50 density on October 30 and November 10 were 164(kg/10a) and 147(kg/10a) respectively. As can be seen from this study, the earlier the transplant, the higher the seed yield. However, the 50 density was reduced in yield compared to the 70 density and 80 density.

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Effect of Sowing Date and Plant Density on Yield of Rapeseed in Autumn Sowing

  • Kwon Byung-Sun;Choi Seung-Sun;Lim Jung-Mook;Choi Gab-Lim;Kim Sang-Kon
    • Plant Resources
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    • 제8권3호
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    • pp.258-262
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    • 2005
  • In autumn, to determine the optimal planting date and plant density of rapeseed in southern areas of Korea, Yudal variety for autumn sowing, the highest yielding variety was grown under three different planting dates and five different plant densities. Yield components such as plant height, ear length, number of seedling stand per $m^2$, number of branches and pod length were highest at the plots with Sep. 30 of planting date and 30/20 cm drilling of plant density. Yield of seed, oil and 1,000 grains weight were highest at the Sep.30 of planting date and 30/20 cm drilling of plant density. Judging from the results reported above, at optimum planting date and plant density of rapeseed seemed to be Sep.30 of planting date and 30/20cm plant density in autumn sowing.

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Growth and Maturity in Response to Planting Times in Supernodulating Soybean Mutants

  • Park Sei Joon;Youn Jong Tag;Lee Jae Eun;Kim Wook Han;Kwon Young Up;Shin Jin Chul;Seong Rak Chun
    • 한국작물학회지
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    • 제50권1호
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    • pp.11-15
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    • 2005
  • This experiment was conducted to investigate the changes of growth and maturity and to clarify the function of supernodulating characters, excessive nodules and high biological nitrogen fixation rate (BNF), on maturity in response to different planting time in supernodulating soybean mutants. Two supernodulating soybean mutants, Sakukei4 and SS2-2, and their parent cultivars, Enrei and Shinpaldalkong2, were planted on May 24 and June 15, 2004. The degrees of the shortening of growth days by the planting time delay were 18 to 22 days in four cultivar, and there were no significant differences among the cultivars. However, four cultivars showed the different maturity properties. Sakukei4, mutated from Enrei, showed later maturity than that of Enrei, and 882-2, mutated from Shinpaldalkong2, showed earlier maturity than that of Shinpaldalkong2. The plant and nodule dry weights at R6 stage of Sakukei4 showed the smallest decrement and those of SS2-2 was showed the largest decrement by the delay of planting time. The photosynthetic rates of Sakukei4 during the late reproductive growth period were slowly decreased, however those of SS2-2 were steeply decreased in two planting time treatments. Overall, the growth of Sakukei4 was decreased slowly, however the growth of SS2-2 was decreased sharply according to the delay of planting time. The percentage of seed yield of Sakukei4 in June planting plot compared with May planting plot at R8 stage was $92\%$, which was the lowest decreasing rate of yield among the cultivars, and in the case of SS2-2, it was in $76\%$, the highest one. These results indicated that the responses of supernodulating mutants by the delay of planting time were very similar to the wild types. This means supernodulating characters in supernodulating soybean mutants might not affect to the maturity property. Additionally, the maturity property could be considered as an important characteristics to decide or to select on the developments of supernodulating soybean mutants, which have a low productivity by an excessive nodules, especially.