• Title/Summary/Keyword: scarification

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Effects of Scarification and Soaking Treatment on Germination of Sword Bean Seed (작두콩 종자의 종피파상과 침지처리가 발아에 미치는 영향)

  • Hong Soo Doo;Won Jae Ba다;Jeom-Ho Ryu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.46 no.3
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    • pp.165-169
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    • 2001
  • Seed coat of sword bean (Canavalia gladiata) is very thick and hard, it is difficult to absorb water during germination and it requires much time that cotyledon come out from seed coat since seminal root appearanced. Therefore this experiment was carried out to increase the germination rate by easing water absorption through mechanical scarification on seed coat. Non-scarification seed did not germinated at 7 days after treatment but scarification seed showed germination rate of 98%. Therefore mechanical scarification of seed coat was increased germination rate. Non-scarification seed absorbed less than 10% water of dry weight at 8 hours after treatment but scarification seed absorbed about 90% water at 7 hours after treatment and more than 150% water at 8 hours and swelled about 1.4-1.5 times in length and width of seed. Germination rate of scarification seed was high under high temperature and it was 96% and 93% at $25^{\circ}C$ and 3$0^{\circ}C$, respectively. The rate of cotyledon emergence on clay loam soil was the highest among bed soils. Soaked seed after mechanical scarification in distilled water was germinated faster than non-soaked seed on early in bed soil. The rate of cotyledon emergence was more than 92% at 9 days after sowing but non-scarification and soaked seed was germinated late and showed very low germination rate as 67%.

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Assessment of different pretreatments to breakage dormancy and improve the seed germination in Elaeocarpus serratus L. - an underutilized multipurpose fruit tree from South India

  • Raji, R.;Siril, E.A.
    • Forest Science and Technology
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    • v.14 no.4
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    • pp.160-168
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    • 2018
  • The seeds of Elaeocarpus serratus, a tropical underutilized fruit tree are characterized by hard seed coat and consequent poor water uptake and low germination. To improve the regeneration through seeds, various parameters such as viability of seeds, water uptake, and effect of seed mass on germination and pretreatments were performed using a completely randomized design (CRD). Tetrazolium (TZ) test was conducted using fresh, mature seeds revealed $50{\pm}2.56%$ mean viability. Seeds of different weight classes showed similar pattern of water uptake and the saturation level was achieved at 60 hrs of soaking. Seeds belong to weight class 2.6-3.5g were germinated ($12.5{\pm}1.26%$) with $175{\pm}1.75days$ (d) of mean time taken for germination (MTG). Germination capacity of seeds varied significantly among different populations and Varkala population gave $12.5{\pm}1.1%$ germination with $174.6{\pm}2.5d$ MTG. Among various seed treatments, mechanical scarification was superior in germination and significant reduction in MTG ($p{\leq}0.05$). The mechanical scarification by complete removal of seed coat resulted in $49.2{\pm}1.52%$ germination within a short period of time ($9.52{\pm}0.89d$ MTG). However, the complete removal of seed coat without damaging to embryo is a difficult task. An alternate treatment (Mechanical scarification II) by making cracks on nut faces vertically followed by soaking in distilled water for 24 hrs gave $48.4{\pm}1.73%$ germination with significantly reduced MTG ($12.14{\pm}0.56d$) over unsoaked, untreated control ($6.5{\pm}1.84%$ germination and $197.18{\pm}1.79d$ MTG; $p{\leq}0.05$). This treatment (Mechanical scarification II) is therefore recommended for E. serratus seeds as it can adopt easily and can achieve 7 fold increases in germination over control. The recorded germination through mechanical scarification is in tune with realized viability percentage of the seeds.

The Effect of Seed Coat Scarification with Sodium Hypochiorite on Germination of Zoysiagrass Seed (Zoysiagrass 종자 발아에 미치는 Sodiym Hypochlorite의 종피처리 효과)

  • 구자형;김태일;원동찬
    • Asian Journal of Turfgrass Science
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    • v.3 no.2
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    • pp.89-94
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    • 1989
  • Research was conducted to obtain t he optimum treatment Of sodium hypochlorite(NaOC I) at various temperatures in t he seed scarification for stimulating germination of zoysiagrass (Zocysia Japonica Steud ) seed. Morphological changes of seed coat were also examined by scanning electron micros cop(SEM). l. Differences in temperature of scarification with 2 .4% NaOCI showed little influence on promoting germination of seeds but seeds treated with 1% solution at l5˚C germinated less than that of higher temperatures. The promotion effect of 4% solution on germination was diminished when seeds were treated for 8 hours of more. The most favorable seed scarification unaffected hy temperature for enhancing germination was 4-6hours treatment at 4% solution in fresh seeds. 2. $GA_3$, treatment did not enhance germination of water-pretreated control seeds hut germination of seeds pretreated with NaOCI l was increased additional 10% or more hy$ GA_3$, Water pretreated control seeds treated with 50 mM hydrogen peroxide(H'O )germinated about 44%. In NaOCI treated seeds. $H_2$$O_2$ treatment increased germination additional l 0% or more. 3. NaOCI l and KOH treatment softened the seed coat and formed the pores hy removing the scab-like thikenings attached to the seed surface. These results suggest that the modes of action of NaOCl in the promotion of seed germination reside in it increase of the permeability of the seed coat, and in the provision of additional oxygen to the seed.

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Effects of Water-soaking and Mechanical and Chemical Scarifications on Seed germination of Hairy Vetch (Vicia villosa Roth) (헤어리베치 종자의 침지처리와 종피 파상 및 황산처리가 발아에 미치는 영향)

  • Kim, Min-Tae;Lee, Yong-Hwan;Jeon, Weon-Tai;Kim, Sook Jin;Yun, Da-Hae;Ku, Ja-Hwan;Song, Hana;Lee, Hyeon Bok;Seo, Myung Chul;Kang, Hang-Won
    • Korean Journal of Soil Science and Fertilizer
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    • v.46 no.1
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    • pp.49-52
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    • 2013
  • Seed coat of hairy vetch is very thick and hard, and difficult to absorb water during germination. It requires much time that cotyledon comes out from seed coat. Therefore this experiment was carried out to increase the germination rate by enhancing water absorption through water-soaking of seed, chemical scarification by sulfuric acid, and mechanical scarification on seed coat. Water-soaking for 5 hours seemed to be highly effective in enhancing germination rate. Although not significant, water-soaking resulted in increase of germination rate by 9%. Effect of soaking temperature was not significant, but early germination rate was increased to be 5.0%, 31.7% and 48.3% at $10^{\circ}C$, $20^{\circ}C$ and $30^{\circ}C$, respectively. Mechanical scarification of seed coat led to a germination rate of 97% whereas intact seed showed that of 65%. Chemical scarification by sulfuric acid for 10min, 20min and 30min resulted in a germination rate of 76.7%, 74.7% and 96.0% respectively. It is clear that scarification increased germination rate.

Effect of Storage Conditions and Scarification on in vitro Seed Germination in Lorathus tanakae Hosok

  • Ghimeray, Amal Kumar;Lee, Hyun Woo;Lee, Bo-Duk;Sharma, Pankaja;Shim, Ie Sung;Park, Cheol Ho
    • Korean Journal of Plant Resources
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    • v.27 no.3
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    • pp.263-270
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    • 2014
  • Loranthus tanakae (Franch. & Sav.) is an endangered species of mistletoe, distributed in Korean peninsula. The objective of our research is to determine the effect of storage duration and conditions [air flow (AF) and air tight (AT)] at different temperatures for survivability and germination of mistletoe seeds, and also to monitor the effect of seed scarification on germination in vitro. The result revealed that the seeds stored in natural conditions (no stratification) showed highest survival rate of 100% and retained up to 93.3% even after two months of storage in natural conditions and showed higher germination percentage (90%) compare to after ripened seeds. However, the seed stored at $0^{\circ}C$ decreased the germination percentage (ranged from 63 to 73%). Therefore, it can be confirmed that mistletoe does not need after ripened treatment to promote germination. Our research also showed that the storage of L. tanaka seeds in freezing temperatures of $-20^{\circ}C$ and in room temperature for long time either in AT or AF conditions caused the loss of survival and germination rate. On the other hand, the chemical scarification (0.01N HCl incubation for 12 hrs. at $38^{\circ}C$) method was proven more effective to enhance germination percentage of L. tanakae. Regarding the temperature regime, $22^{\circ}C$ showed early germination of mistletoe seeds in vitro.

Stimulation of Seed Germination of Korean Lawn grass (Zoysia japonica Steud.) by Sodium Hypochlorite Treatment (Sodium Hypochlorite 처리(處理)에 의한 한국잔디 종자(種子)의 발아촉진(發芽促進))

  • Ku, Ja Hyeong;Lee, Jong Suk;Lee, Young Bok
    • Korean Journal of Agricultural Science
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    • v.11 no.2
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    • pp.201-206
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    • 1984
  • In order to obtain an easy and effective scarification method for stimulating the seed germination of Korean lawn grass (Zoysia japonica Steud.), sodium hypochlorite (SH), which is used as a commercial bleach and a seed disinfestant, was tested as a chemical scarifier instead of potassium hydroxide (KOH). 1. Scarification with 4% SH for 2 hours followed by 8-hour water-rinse stimulated seed germination more effectively compared to generalized scarification method by KOH treatment. 2. The degree of stimulating seed gemination was different by the various water-rinsing time after SH treatment, but the optimum rinsing time was about 4 to 8 hours. 3. GA treatment after SH scarification stimulated seed germination. However, the stimulation effect of GA was not showed in non-scarified control. 4. SH treatment significantly decreased the percentage of the infection of microflora in seed samples compared to KOH treatment. 5. Under practical seed scarification conditions for stimulating germination of Korean lawn grass seed. SH may have advantages over KOH with respect to ease of preparing, securing and handling.

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Comparison of Germination Characteristics and Various Pre-treatment Methods for Enhancing Germination on Zoysiagrass (한국잔디 종자의 발아특성과 발아율 향상을 위한 다양한 전처리 방법의 비교)

  • Han, Jeong-Ji;Lee, Kwang-Soo;Park, Yong-Bae;Yang, Geun-Mo;Bae, Eun-Ji
    • Weed & Turfgrass Science
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    • v.3 no.3
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    • pp.232-239
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    • 2014
  • Zoysiagrass seeds had low germination or lack of germination uniformity under natural condition. To improve the final germination percentage of zoysiagrass seeds, we investigated the methods of proper pre-treatment to enhance germination rate of zoysiagrass. Seeds were subjected to the testa scarification and four types of seed priming methods, namely, hydro priming (distilled water), osmotic priming (polyethylene glycol -0.5 MPa, -1.0MPa, -2.0 MPa), halo priming (Potassium nitrate 100 mM, 200 mM, 400 mM), and solid matrix priming (seed : microcel-E : distilled water = 4:1:8) with and without 25% KOH treatment in the testa. The scarification improved the germination rate and reduced the germination time. Osmotic priming (PEG -0.5 MPa) with scarification were significantly increased the seed germination rate and decreased MGT, and $T_{50}$. Seed germination rate obtained by osmotic priming (PEG -0.5MPa) with scarification increased above 60% in comparison with natural condition. Conclusively, scarified and primed zoysiagrass seed germinated more rapidly and uniformly in the study. The present results suggested that PEG priming treatment with KOH treatment prior to sowing could improve germination percentage, and this method makes us establish the early zoysiagrasses in the field.

Several factors affecting on seed germination of Dracocephalum argunense Fischer ex Link

  • Chang, Young-Deug;Lee, Cheol-Hee;Song, Jeong-Seob;Hwang, Ju-Kwang
    • Korean Journal of Plant Resources
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    • v.22 no.3
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    • pp.236-241
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    • 2009
  • Dracocephalum argunense Fischer ex Link (Labiatae) is a perennial herbaceous plant used as valuable materials for ornamentals, honey production, and pharmaceutics. Since seed germination of this species was quite difficult, present studies were conducted to improve the germination rate by subjecting the seeds to various environmental conditions (temperature and light) and treatments (scarification, priming and seed coating). Optimum temperature for adequate germination was 20$^{\circ}C$ though it ranged from 15$^{\circ}C$ to 25$^{\circ}C$, and low temperature treatment improved germination rate. Light was required for higher germination rate in this species. The scarification of seeds resulted in much higher germination, especially by the physical treatment with sandpaper or chemical treatment with sulfuric acid for 30 seconds. Various primers with different concentrations were treated on the seeds and it was demonstrated that low temperature enhanced germination rate, regardless of kinds and concentrations of the primers. Three treatment combinations of the primers, 0.5 mM $GA_{3}$ treated for 48 hours, 0.5 mM IAA for 24 hours, and 1.0 mM IAA for 24 hours, increased the seed germination rate profoundly. Soaking treatment of inorganic salts, $KNO_{3}$ and $KH_{3}PO_{4}$, promoted germination when seeds were subjected to low temperature. Water soluble primers such as sucrose at 0.5 and 3% concentration and solid primer talc powder were effective in enhancing germination rate.

Effect of Storage, Temperature and Pre-treatment on Germination of Melia azedarach L. Seed (저장방법, 온도 및 전처리가 멀구슬나무 종자의 발아에 미치는 영향)

  • Park, Chong-Min;Choi, Han-Soo;Choi, Chung-Ho
    • Korean Journal of Plant Resources
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    • v.25 no.1
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    • pp.14-23
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    • 2012
  • This study was performed to investigate the effects of storage, temperature, and pre-treatments on the germination of Melia azedarach seeds collected from Buan, Jeonju, and Jeju provenance. M. azedarach seeds stored with or without pericarp in the ground, which collected from Buan provenance evidenced the highest germination percentage (PG, %) and the shortest time to first germination (days). The seeds collected from Jeonju and Jeju provenance were placed at both six continuous temperatures (15, 20, 25, 30, 35, and $40^{\circ}C$) and two alternating temperatures ($20{\leftrightarrow}30^{\circ}C$ and $25{\leftrightarrow}35^{\circ}C$) for seed incubation. The results showed a significant effect for temperature of seed incubation. The seeds incubated at $35^{\circ}C$ had the highest PG among the continuous temperatures and germinated significantly more at the two alternating temperatures than at $35^{\circ}C$. Concerning mean germination time (MGT), the seeds incubated at $35^{\circ}C$ evidenced the shortest germinations among the continuous temperatures while those at the alternating temperatures germinated for a shorter period than those at $35^{\circ}C$. The germination rate (GR) and germination performance index (GPI) were similar to PG. The seeds collected from Jeonju provenance were treated using five pre-sowing treatments (scarification, scarifcation+$GA_3$, scarification+$KNO_3$, $GA_3$, and $KNO_3$) prior to the germination experiments. Compared with the intact seeds (control), most of the pre-treatments were significantly (especially scarification+$GA_3$ 100 ppm and scarification+$KNO_3$ 1.0%) higher in PG, GR, and GPI, as well as shorter in MGT.

Effects of Scarification, Temperature and Sulfuric Acid Treatments on Seed Germination of White Lotus (Nelumbo nucifera) (백련(Nelumbo nucifera) 종자의 발아에 미치는 종피의 파상, 온도 및 황산처리 효과)

  • Im, Myung-Hee;Kim, Byoung-Woon;Park, Yong-Seo;Yang, Seung-Yul;Song, Chyae-Eun;Heo, Buk-Gu
    • Korean Journal of Plant Resources
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    • v.25 no.1
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    • pp.7-13
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    • 2012
  • This study was conducted to determine the effects of scarification temperature, and sulfuric acid treatments on seed germination of white lotus collected from the Muan districts, Jeonnam in Korea. Without scarification, white lotus seeds were not germinated at all at 15 days after seeding. However, seeds sacrificed at basal parts showed 100% germination rate at $25^{\circ}C$ 6 days after seeding. All the seeds floated (0.90 g) and soaked (1.18 g) in the water were completely germinated. Especially, the lotus seeds soaked in the water at $25^{\circ}C$ showed high germination rate. Seeds treated with 80% sulfuric acid for 40-160 hours were germinated completely within 6 days after seeding. No difference in seed germination rate of white lotus stored up to 0, 12 and 24 months after harvest was observed. Overall results would be useful means for propagation and production of white lotus.