• Title/Summary/Keyword: Spring-sowing

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Studies on the Physiological Chemistry of Spring Habits in Naked Barley III. Variation of Free Amino acids during the Differentiation and Development of Young Spkie with Different Spring Habits (과맥의 파성에 대한 생리화학적 연구 III. 파성심도에 따른 유수분화 및 발육과정에 있어서의 유이아미노산의 소장)

  • 최선영
    • Journal of Plant Biology
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    • v.20 no.3
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    • pp.127-134
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    • 1977
  • In order to investigate the changes of free amino acids during the differentiation and development of young spike in naked barley, a typical spring grain, Wanju, and two winter grains, Sedohadaka and Nonsankwa No. 1-6 differing in their spring habits, were analyzed at different growth stages by thin layer chromatography. In all the varieties 22 ninhydrin positive components were detected at the sowing time of March 5 and 20 components in the sowing plots of March 30. In case of the latter plot, β-alanine was identified only in both Wanju and Sedohadaka, whereas pipecolic acid was detected only in Nonsankwa No. 1-6. Particularly, it is interesting that β-alanine was observed only in the case showing the normal heading independent of the varieties and sowing times. Whether these components are directly related to the physiology of spring habits in barley or not is also a question to be answered. Of the major amino acids, alanine and γ-aminobutyric acid were always detected in appreciably large spots, and serine, leucine, aspartic acid, valine and asparagine were somewhat larger. In the plot of march 30, glutamic acid was also detected in very large spot in both Wanju and Sedohadaka at the stage of spikelet differentiation and in Nonsankwa No. 1-6 at the stage of bract differentiation. Histidine, which showed the only qualitative difference among the varieties during seed germination, cannot be observed at all. Proline observed considerably large spot during seed germination was always detected but very small except that it was observed in large spot at the stage of floret differentiation in Nonsankwa No. 1-6 in the plot of March 5.

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Studies on the grassland Development in the Forest IV. Possibility of the grassland improvement by spring sowing and microenvironmental conditions in the forest (임간초지 개발에 관한 연구 IV. 임간지에서 춘파초지개량 가능성과 주요 미기상 조사)

  • Park, M.S.;Han, Y.C.;Seo, S.;Lee, B.S.
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.6 no.1
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    • pp.31-37
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    • 1986
  • In order to study the possibility of grassland improvement by spring sowing in the forest, microenvironmental conditions, emergence, percentage of grasses and weeds, root weight and dry matter yield of grasses were investigated. Two field sites (forest grassland and full-sunlight grassland) and two sowing times (March 20 and April 10) were assigned. The condition of the forest grassland was area of pine trees with 50% shading, and the experiment was performed at the Livestock Experiment Station in Suweon, 1984. The results obtained are summarized as follows: 1. For germination and early growth of grasses, full-sunlight grassland was more advantageous than forest grassland. Growth after that stage, on the other hand, forest grassland was more suitable. Especially, during dry and high temperature season, temperature of soil surface and underground in the forest grassland were decreased by $6-7^{\circ}C$ and $3-4^{\circ}C$ each other, compared with those of the full-sunlight grassland. Also soil moisture content was continuously higher in the forest grassland. 2. At March 20 sowing the emergence time in the full-sunlight grassland was shortened by 8 days, compared with that of the forest grassland. In case of sowing on April 10, however, there was no difference between two grassland sites. 3. Grasses grown in the forest was more prostrate and leaves from them decayed more, compared with those of the full-sunlight grassland. 4. The percentage of grasses in the forest grassland was 80 to 85 %, on the other hand, that of the full-sunlight grassland was only 15 to 20 %. And the percentage of grasses tended to be high in the plot of early sowing time. 5. Dry root weight and root length of grasses grown in the forest were inferior to those of the full-sunlight grassland (P<0.05), but there was no significant difference between two sowing times. 6. Dry matter yield of grasses was significantly higher (P<0.05) in the forest grassland than in the full-sunlight grassland, and yield was influenced by sowing time. Higher yield (4,011 kg/ha) was produced in the plot of the forest grassland with early spring sowing. 7. From above results, it is suggested that grassland improvement by spring sowing in the forest is possible, and it is desirable to sow in early spring.

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Drills for New Irrigation Methods in Xinjiang

  • Ba, Huizhen;Yang, Zhijun
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 1993.10a
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    • pp.239-245
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    • 1993
  • Xinjiang locates on the Middle Eurasia. Droaght features Xinjiang's climate , especially during the spring sowing season. Therefore, efficiency irrigation system is indispensable to Xinjiang farming. Furrow orborder irrigation system has replaced flooding irrigation. In farmland , new irrigation methods have been developed and introduced to more fields. This article introduce tow sowing machines for new irrigation methods. (1) Furrow or border grain drill : (2) On-firm irrigation drill.

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Effect of Mixed Sowing of Hairy Vetch and Rye on Green Manure Yield in Mountainous Highland (고랭지에서 녹비 생산성 증진을 위한 헤어리베치와 호밀 혼파 재배 효과)

  • Kim, Se-Won;Seo, Young-Ho;Choi, Yong-Bum;Ahn, Moon-Sub;Kang, An-Seok
    • Korean Journal of Soil Science and Fertilizer
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    • v.44 no.3
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    • pp.442-447
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    • 2011
  • Co-incorporation of Leguminosae with Gramineae could reduce the risk of nitrogen starvation phenomena caused by appling green manure of Gramineae alone. The objective of the study was to examine the effect of mixed sowing of hairy vetch and rye seeds on soil quality in mountainous highland. Mixed sowing of hairy vetch and rye increased the yield of green manure and nutrients compared with those for sowing of hairy vetch or rye alone. The yield of green manure from row seeding was $5.3Mg\;ha^{-1}$ compared with $4.8Mg\;ha^{-1}$ for broadcast seeding. Incorporation of the two green manure crops increased yield of red-bean by 58~92% as compared with yield for incorporation of rye alone. The results obtained in the study imply that mixed sowing of hairy vetch and rye can solve the problem of low emergence of hairy vetch in spring and high C/N ratio and rough incorporation of rye, in addition to increase in yield of green manure.

Effects of Sowing and Harvesting Time on Feed Value and Quality of Triticale (X Triticosecale Wittmack)

  • Jisuk Kim;Kyungyoon Rha;Myoung Ryoul Park;Yul-Ho Kim
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2022.10a
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    • pp.144-144
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    • 2022
  • The amount of required forage is increasing by 20% every year in South Korea, but the cultivation area for forage production is limited. The yield ability of triticale forage is the highest among the winter forage crops including rye and the crop has cold tolerance within the average low temperature of -10℃ in January. Therefore, this study analyzed effects of sowing and harvesting times on feed value and quality for efficiently using and supplying triticale as livestock feed. Seed of the triticales, 'Joseong' was sown in 2021 fall (October) and 2022 spring (March). The triticales were harvested according to growth stages: seedling stage, booting stage, heading stage, 10 days after heading, and 20 days after heading. Moisture contents of each harvested triticales were adjusted to about 60%, and then the triticales were fermented for 40 days at room temperature under anaerobic conditions as silage. We have analyzed pH and organic acid to determine the feed value and quality of each silage. The contents of lactic acid in silage ofthe triticale harvested at the seedling stage of both fall and spring-sown (1.61%, 1.63%) were the highest among all of the silages; the booting stage (0.75%, 1.33%), the heading stage (0.50%, 0.69%), 10 days after the heading stage (0.31%, 0.42%), and 20 days after heading stage (0.22%, 0.40%). Such as the contents of lactic acid in the silages, and the pH value of the silages The pH value in both the fall- and spring-sown became lower as the triticale was grown up: seedling stage (7.05, 6.85), booting stage (6.21, 6.75), heading stage (6.18, 6.28), 10 days after heading stage (6.22, 6.17), and 20 days after heading stage (6.15, 5.81). Taken together, the results showed that the feed value and quality of triticale silage were more affected by harvesting time than sowing time.

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Effects of Fall Sowing Dates on Winter Survival and Dry Matter Yields of Alfalfa in the Central Area of South Korea

  • Seung Min Jung;Bae Hun Lee;Ki Won Lee;Mirae Oh ;Hyung Soo Park
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.43 no.3
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    • pp.156-161
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    • 2023
  • This study was conducted to determine the appropriate seeding dates by verifying the difference in winter survival and productivity of alfalfa according to fall sowing dates in the central area of South Korea. The experiment was conducted for 2 years (2020 and 2021) at the field in the Department of Animal Resources Development, NIAS located in Cheonan. Sowing dates started from September 18 to November 8 with 10 days of intervals during 2020 and 2021; SO1 (September 18), SO2 (September 28), SO3 (October 8), SO4 (October 18), SO5 (October 28), and SO6 (November 8). After sowing, the winter survival rate was measured in the spring of the following year, and the dry matter yield was measured by harvesting at 10% flowering and harvesting five times a year. SO6 failed to winter survival, and SO5 also had a lower winter survival rate than SO1~4 (p<0.05). The average annual dry matter yield of alfalfa linearly decreased with delaying sowing dates (p<0.05). The feed value did not differ in the same year by delaying the sowing date in the same year. These results suggest that sowing date should be started before October 18 to increase winter survival and productivity of alfalfa in the central area of South Korea.

Agronomic Practces on Intensive Pasture Establishment (집약초지의 조성기술)

  • 김동암;조무환
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.2 no.2
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    • pp.1-15
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    • 1981
  • In reviewing of the literature concerning agronomic practices on intensive pasture establishment the following suggestions were made : (1) The seedbed preparation should be involved physical manipulation of the soil tilth and consolidation of the soil by harrows and heavy roller. (2) In terms of methods of sowing, drilling favours the first and broadcasting the second however, the apparent superiority of band sowing over the above conventional methods is to reduce the direct toxic chemical effects from fertilizers to germinating seeds. (3) The most satisfactory seeding depth for grasses and legumes is commonly agreed to be approximately 1.3cm and seeding depth greater than 2.5cm seems to be generally detrimental. (4) Autumn and spring are most common sowing periods for grasses and legumes, however, early autumn being the most generally favoured, particularly in areas not subject to severe winter kill. (5) Select nurse crop species or cultivars which make Bess demands on light, nutrients and water, and lower seed rates should be used. (6) Seeding mixtures should be simple rather than complex and aggressive species should be included to a minor extent.

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Diaspore, seed dispersion and seed germination characteristics of two myrmecochrous spring ephemerals -Jeffersonia dubia and Corydalis remota- (개미가 종자를 산포하는 춘계단명식물 깽깽이풀과 현호색의 전파체, 종자산포 및 발아 특성)

  • Kim, Hoi-Jin;Kim, Gab-Tae
    • Korean Journal of Environment and Ecology
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    • v.31 no.6
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    • pp.485-491
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    • 2017
  • This study examined the germination characteristics by collecting fruits and pretreatment of the diaspore from April 2014 to June 2015 to investigate the diaspore characteristics, seed dispersion, and seed germination characteristics of two myrmecochorous spring ephemerals (MCSE): -Jeffersonia dubia (Jb) and Corydalis remota (Cr)-. The diaspore of Jb was about 5mm-long yellow-dark brown, oblong seeds with the attached amorphous white elaiosome. The mean weights of diaspore, seed, and elaiosome were 15.86mg, 13.46mg, and 2.40mg, respectively, and the elaiosome ratio was 15.13%. The diaspore of Cr was about 1.2mm diameter and glossy black ovoid seeds with the attached white spatula-shaped elaiosome. The mean weights of diaspore, seed, and elaisome were 2.58mg, 2.05mg, and 0.53mg, respectively, and the elaiosome ratio was 20.54%. Camponotus niponensis and Formica japonica transported the diaspore of Jb while Formica japonica and Lasius japonicus transported the diaspore of Cr. The germination percentage of Jb seeds was statistically significant and had the significance level of 1% with the pretreatment and date of sowing. However, it was independent of attachment of elaiosome. The mean germination percentages of Jb seeds was 65.0% during sowing on June 20, 17.5% during sowing on August 19, and 0% during sowing on October 20. The germination percentage of Cr was statistically significant and had the significance level of 5% and 1% with the attachment of elaisome and date of sowing, respectively. The mean germination rates were 54.17% and 35.0% in the non-treatment section and the treatment section with elaisome detached, respectively. The mean germination percentages of Cr seeds was 75.0% during sowing on June 20, 53.75% during sowing on August 19, and 5.0% during sowing on October 20. Considering the fact that the ants transported the diaspores to the ant house when the fruits of MCSE were ripened and dropped the seeds, the direct seeding right after collecting may be most suitable to the characteristics of the evolution of these plant species and may be the best method to obtain the highest germination percentages. Since the ants distribute their seeds, the MCSE produces and attaches the elaiosome to the seed to maintain the symbiotic relationship with ants. The ants then transport the seed to the ant house where the environment is controlled for suitable temperature and humidity, and then the MCSE succeeds in germination after the embryo grows sufficiently in the next spring.