• Title/Summary/Keyword: 종자 발아

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Leakage of Seed Reserve Nutrient in Artificially Aged Pepper Seeds and Enhancement of Seed Vigor by Priming (노화처리된 고추종자의 저장성분 누출과 priming 처리가 종자활력 증진에 미치는 영향)

  • Kang Jum-Soon;Choi In-Soo
    • Journal of Life Science
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    • v.16 no.2 s.75
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    • pp.352-356
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    • 2006
  • Quantity of protein, amino acid, and sugar leaked from seeds was greater as the viability of seeds was dropped by the time elapsed of seed aging treatment. In the seeds with the artificial aging treatment for 20 days, 35.8 mg of protein was leaked on the 4th day after soaking, which was 6.9 times higher than that of control. Leakage of amino acid was also higher from low quality seeds treated with the aging treatment. In the seeds with the aging treatment for 20 days, $36.5{\mu}g$ fig of sugar was leaked on the 4th day after soaking, which was 2.8 times higher than that of control. The leakage of inorganic compound was higher from the low quality seeds, and leakage of total protein, amino acid, and sugar. According to .the quantity of leakage, water soluble compounds, which can be used for the assessment of seed quality without any destruction, were protein and potassium. Germination rate and percentage of seeds were dropped with the seed aging treatment, and the seed viability could be recovered by priming treatment. This phenomenon was very clear when the low quality seeds were germinated at low temperature.

Influence of Storage Condition on Germination Ability of Rice Seed (저장조건이 수도종자의 발아력에 미치는 영향)

  • 오용비;장영선;박희생;김동수
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.30 no.2
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    • pp.201-206
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    • 1985
  • This experiment was carried out to get the basic information about long term storage (Temp.: -10${\pm}$1$^{\circ}C$ and -l${\pm}$1$^{\circ}C$, RH; 30${\pm}$6) of rice germplasm by using three Japonica and one Indica x Japonica cultivars based on the storage periods (96, 86, 58 and 20 months). The germination ability, based on the storing periods, was tested under the conditions of 30-32$^{\circ}C$ and 15-17$^{\circ}C$ air temperature. The results obtained are summarized as follows: 1. There were no significant differences between the short and long term storage conditions in the percentage of germination, average germination period, germination coefficient of the four varieties tested under both 15-17$^{\circ}C$ of low and 30-32$^{\circ}C$ of optimum temperature conditions. 2. Eventhough there were no significant differences in germination depending on the storage periods under optimum temperature condition (30-32$^{\circ}C$). Longer storage duration resulted in lower germination percentage, longer average germination period and lower germination coefficient under low temperature condition (15-17$^{\circ}C$). Comparing the varieties, the germination percentage of a Indica/Japonica cultivar "Tongil" was lower than that of Japonica cultivars under the low temperature condition (15-17$^{\circ}C$). 3. The longer period of storage, the more abnormal plants had appeared. 4. The germination ability was lost earlier under the condition of high moisture content in the seed and non-ventilation container.

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Effects of Hot Water and Specific Gravity Treatment on Germination of Legumes and Green Manure Crops (열탕처리와 염수선 처리가 콩과 녹비작물 발아에 미치는 영향)

  • Seong Won Lee;Yeon Bok Kim
    • Journal of Practical Agriculture & Fisheries Research
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    • v.26 no.1
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    • pp.16-21
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    • 2024
  • Green manure crops have a variety of benefits, including improving soil fertility, removing soil salinity, enhancing soil aeration and moisture regulation, reducing the use of chemical fertilizers, reducing nitrous oxide emissions, reducing herbicide use through weed-suppressive effects, promoting agricultural ecosystem protection and carbon dioxide absorption capacity. To find ways to increase the germination rate of legumes and green manure crop seeds, which are imported in large quantities every year. It was carried out that two seed priming methods, osmotic priming and heat treatment, and compared their effects. Heat treatment was treated for 10 minutes at 40℃ or 60℃, followed by rinsing with water. Osmotic priming was applied for 30 seconds in a saline solution with a specific gravity of 1.13. Overall, there was no significant difference in the final germination rate, but it was found that osmotic priming and heat treatment affected the germination speed. However, applying heat treatment and osmotic priming simultaneously did not affect the germination characteristics. Therefore, it is suggested that heat treatment and osmotic priming can increase the germination speed of soybean and green manure crops.

Effects of Light Quality, Temperature or Vermiculite Depth on Germination for the Veronica L. (광질, 온도 및 복토 깊이가 꼬리풀 (Veronica L.) 종자의 발아에 미치는 영향)

  • Cheon Young Song;Ja Young Moon;Jung Won Sung;Byeong Seon Park;Jae Ik Nam;Jeong Min Kim
    • Journal of Practical Agriculture & Fisheries Research
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    • v.25 no.1
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    • pp.36-47
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    • 2023
  • This study was conducted to develop a mass production for a commercial use by germination of 4 kinds of Veronica glabrifolia Kitag., V. pusanensis Y.N.Lee, V. glabrifolia Kitag. × V. Spicata 'Alba' and V. spicata 'Ulster Blue Dwarf × V. longifolia. Veronica L. Effects of dipping time to a disinfecting fluid, light quality, temperature or vermiculite depth on the germination of Veronica L. were examined. Germination percentage in a disinfecting fluid for 120 minutes dipping was the 75.1% for V. pusanensis Y.N.Lee, and was some higher in 60 minutes dipping for all the species, but there was no significant difference according to the dipping time. The germination of the light quality was the best in complex light (red light + blue light) as the germination 92.8%, uniformity 2.3 in Veronica glabrifolia Kitag., or the germination 85.9%, uniformity 3.5 in V. pusanensis Y.N.Lee. And the germination percentage of red light was ranged from 79.1% to 95,5%, the blue light was 83.1% to 100% in the all species. However the germination in the dark condition significantly lowered as a 40.0% to 56.3% or uniformity from 5.2 to 6.5. Like this, the germination of blue light was better compare to the red light. The germination rate according to temperature was higher at 25℃ day/20℃ night ranged from 92.1% to 100%, or at 20℃ day/15℃ night as a 85.5% to 98.9% in the all species, compare to constant temperature 25℃ as a 80.9% in V. pusanensis Y.N.Lee. The germination rate of vermiculite depth was higher in 1 to 2mm ranged from 83.4% to 100%, however when the vermiculite was covered with 4mm, the germination rate significantly decreased from 45.2% to 72.1% and the hypocotyl length became longer above 3cm than that of others.

The Aspect of Natural Regeneration for Major Tree Species in the Natural Deciduous Forest (천연문엽수임내(天然聞葉樹林內) 주요(主要) 구성(構成) 수종(樹種)의 천연경신(天然更新) 양상(樣相))

  • Kim, Ji Hong;Yang, Hee Moon;Jin, Guang Ze;Lee, Won Sup;Kang, Sung Kee
    • Journal of Forest and Environmental Science
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    • v.17 no.1
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    • pp.1-17
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    • 2001
  • Forming a part of "Cooperative Practical Study for the Modernization of the Management of National Forest", this study was conducted to provide overall ecological information for the natural regeneration of major tree species on the basis of community structural attributes in the deciduous forest ecosystem. Followings are summarized characteristics of the natural regeneration for the selected tree species. Betula costata : Although large number of seeds are dispersed by wind, they require mineral soils to germinate. Thick litter layer could be an obstacle to germinate. After germination, the seedling requires large amount of light for successful establishment. Acer mono : Characterized by high shade tolerance and weak drought resistance, the seedling should be overcasted with more than 50% of canopy coverage. High stand density should be maintained to produce good quality of timber. The potential of coppice may be high. Ulmus laciniata : Since this species needs high rate of troll moisture and light, around 60% of canopy coverage should be maintained to retain moisture and incoming light. The competition with other vegetation should be removed for the favor of successful seedling establishment. Fraxinus mandshurica : This species requires moist mineral soils to germinate. After germination, the seedling needs large amount of light and moisture for successful establishment. Site preparation should be applied to reduce competition with weedy vegetation. Fraxinus rhynchophylla : Interval of large seed crops may be highly varied. Thick litter layer could be an obstacle to germinate. Site preparation should be applied to reduce competition with weedy vegetation so as to achieve successful seedling establishment. Quercus mongolica : Including the difficulty of seed supply by the consumption, thick litter layer and mountain bamboo cover could be the obstacle to germinate. More than 50% of relative light intensity is necessary to achieve successful seedling establishment. Kalopanax pictus : Thick litter layer could be an obstacle to germinate. The seedling needs large amount of light and moisture for successful establishment. Abies holophylla : In spite of high shade tolerance, the growth rate in sapling stage may be extremely slow. Cornus controversa : Seeds (drups) are consumed and dispersed by animals, tending to be not sufficient in seed supply. This species requires large amount of light for successful germination and seedling establishment. Tilia amurensis : The difficulty of seed supply might be expected with low seed purity and double dormancy. Since thick litter layer could be an obstacle to germinate, the species requires moist mineral soils for successful germination. The potential of coppice may be extremely high.

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Studies on Algae Control in Wetted Nursery of Rice (수도 수묘대의 조류방제에 관한 연구)

  • Kim Kyu Chin;Ham Young Soo
    • Korean journal of applied entomology
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    • v.15 no.3 s.28
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    • pp.127-132
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    • 1976
  • This experiment was conducted to several agricultural chemicals such as cuperic sulfate, lime sulfur, swep 80 wp, dithane A-40 and dichlone 50 wp for use as algaecide in wetted nursery of rice, and chemicals were applied at 5 day before and after sowing. The results are summarized as follows. 1. It was found that the effective chemicals as algaecide in wetted nursery were dichlone 50 wp and swop 80 wp, but chemical damage appeared to plant when dithane A-40 and swep 80 wp was applied. 2. Cuperic sulfate was identified to control algae, but it seems to be injurious to seed germination when applied in wetbed nursery. 3. Results were revealed that except dichlone, 50 cuperic sulfate, lime sulfate, swep 80 wp and dithance A-40 decreased the number of roots, rate of dry matter production and plant height compared when no chemical was applied. 4. Dichlone 50 wp was recognized as the most suitable algaecide in view of the plant growth and algae control in wetbed nursery.

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Dormancy of Ginseng Seed as Influenced by Temperature and Gibberellic Acid (인삼종자의 휴면기간단축에 미치는 온도 및 지베레린의 영향)

  • Jong-Chul Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.31 no.2
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    • pp.220-225
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    • 1986
  • This study was conducted to know the effects of temperature and gibberellic acid on the dormancy block-ing of ginseng seeds at different embryo growth stage. Optimum temperature for embryo growth appeared to be I soc at the beginning stage of post ripening (up to dehiscent time), 1$0^{\circ}C$ at middle stage (for 30 days after dehiscence) and 5$^{\circ}C$ at last stage (between 30 and 92 days after dehiscence). And optimum temperature for dehiscence is about 17$^{\circ}C$, also the optimum temperature for dehiscence is higher than that of embryo growth. Germination of ginseng seed with full grown embryo was accelerated at high temperature (25-3$0^{\circ}C$). Germina-tion percentage was 80% at 105th date after dehiscence under 5$^{\circ}C$, 28% at 147th date under 1$0^{\circ}C$, but no germination under the over 15$^{\circ}C$. Gibberellic acid increased the dehiscent rate, whereas the gibberellic acid treatment may not be substituted for effect of low temperature on the germination. Low temperature may be reguired to finish the embryo growth in thickness.

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Change of Germination Rate for Chili Pepper and Chinese Cabbage Seed in Relation to Packaging Materials and Storage Conditions over 10 Years (보관용기 및 저장조건에 따른 고추 및 배추종자의 10년간 발아율 추이)

  • Soh, Eun Hee;Lee, Woo Moon;Park, Kee Woong;Choi, Keun Jin;Yoon, Moo Kyoung
    • Horticultural Science & Technology
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    • v.32 no.6
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    • pp.864-871
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    • 2014
  • Seed viability is affected by storage conditions and rapid loss of viability in storage is the major cause for low germination. This study was carried out to examine the effect of packaging materials and storage temperature on seed germination rate over 10 years in two species (Capsicum annuum L. and Brassica rapa L. ssp. pekinensis) and determine effective storage conditions for maintaining seed viability. Seeds were packaged in aluminum poly pouches under vacuum, polyethylene bottles, and paper bags containing silica gel and stored under one of two controlled conditions ($15^{\circ}C$, RH 40% or $5^{\circ}C$, RH 30%) or at ambient condition. Seed germination was recorded at 6-month intervals for 10 years. The seeds of both species showed no decline in viability until 6.5 years at 15 or $5^{\circ}C$, irrespective of packaging materials. However, under ambient conditions, the seeds of chili pepper and Chinese cabbage in paper bags lost viability after 4 and 5 years, respectively. By contrast, seeds of both species in vacuum-aluminum poly pouches exhibited a 99% germination rate after 6 years under ambient conditions. Pepper seeds in the vacuum-aluminum poly pouches maintained a 93% germination rate after 10 years in ambient conditions. These results indicated that a special seed storage facility for maintaining viability of chili pepper and Chinese cabbage seed might not be essential and seed testing would not be necessary for 10 years, if chili pepper and Chinese cabbage seeds were packed in ambient/vacuum-aluminum poly pouches or $5^{\circ}C$/vacuum-aluminum poly pouches.

Effects of $GA_3$ on Seed Germination and Seedling Survival Rate of Acanthopanax senticosus Maxim. (가시오갈피의 $GA_3$처리에 따른 종자발아와 유묘생존)

  • Li, Cheng-Hao;Lim, Jung-Dae;Kim, Myong-Jo;Yu, Chang-Yeon
    • Korean Journal of Medicinal Crop Science
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    • v.11 no.3
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    • pp.207-211
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    • 2003
  • This experiment was carried out to investigate the effects of $GA_{3}$ and cold stratification as presown treatments on seed germination, seedling emergence and final survival rate of Acanthopanax senticosus Maxim. Seeds collected 145 days after-ripening period followed by 10 days of cold stratification was effective in promoting germination. Dehisced seeds treated with 500 ppm of $GA_{3}$ for 3 days was also effective in promoting germination. However, seedling emergence rate remained low in both treatment. Seedling emergence rate was higher for seeds germinated in Heungnong-Bio and Klasman-Bio than in vermiculite, perlite, vermiculite-perlite mixture, or sand. After 40 days of cold stratification, seedling emergence was significantly higher in the 500 ppm $GA_{3}$ treatment than nontreatment for both dehisced and non-dehisced seeds. However, for dehisced seeds, $GA_{3}$ treatment before sowing resulted in decreased final seedling survival rate.

Effect of Storage Conditions on the Dormancy Release and the Induction of Secondary Dormancy in Weed Seeds (저장조건이 잡초종자의 휴면타파와 이차휴면 유도에 미치는 효과)

  • Kim, J.S.;Hwang, I.T.;Cho, K.Y.
    • Korean Journal of Weed Science
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    • v.16 no.3
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    • pp.200-209
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    • 1996
  • It is assumed to be an efficient method for keeping a germinability of weed seeds as long as possible, if a secondary dormancy is not induced by transferring the seeds of which dormancy was broken in wetting condition into drying condition. To investigate its validity, two experiments were carried out on seeds of 9 weed species ; to find out the most effective storage condition in breaking the dormancy of each weed species and to know whether there is a decrease in the germinability by transferring into drying storage condition. The dormancy of Chenopodium album and Stellaria aquatica was released well under the drying condition, but that of Echinochloa crus-galli var. oryzicola by soaking in water. Other weed species were released from dormancy by storage in wetting condition. When the seeds stored in the wetting or soaking condition, are air-dried and then restored at room or low temperature, a decreasing tendency of germinability which might cause a trouble in using them practically, was not observed except on the seeds of Persicaria vulgaris. In the case of Persicaria vulgaris, the low germination since 3 month-storage seemed not to be caused by drying, because a decrease of its germinability was observed with increasing storage period in all of the storage conditions. In contrast, high germination was induced as the seeds of Echinochloa crusgalli var. oryzicola, which were not germinated during the storage in low temperature and wetting condition, were transferred into the room temperature and drying condition. These results suggest that this approach can be one of the efficient methods for keeping a good germinability as long as possible in most weed seeds.

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