• Title/Summary/Keyword: Embryo dormancy

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Dynamic Studies on Physiology and Biochemistry in American Seng Seed During Stratification - Part I. Embryo Ratio, Dry Weight Ratio and respiration Rate (충적과정 중 미국삼 종자의 생리 및 생화학적 지표에 관한 동태학적 연구 I. 배아율, 건조중량비 및 호흡강도)

  • Huang, Yao-Ge;Li, Xiang-Gao;Yang, Ji-Xiang;Kuang, Ya-Lan;Yan, Jie-Kun;Cui, Shu-Yu;Liu, Ren-Song;Kim, Hack-Seang
    • Journal of Ginseng Research
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    • v.20 no.3
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    • pp.325-330
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    • 1996
  • Dynamic parameters of physiology including embryo ratio (ER), embryo length to endosperm length, dry weight ratio between embryo and endosperm (DWR) and respiration rate (RR) in American send (Panax quinquefolium L.) seed were investigated. According to the changes of ER during seed stratification, the duration of embryo afterripening could be divided into three stages as \circled1 embryo slow growth stage (ESGS), ER increased from 7.31% to 20.48% (0.16% day-1): \circled2 embryo rapid growth stage (ERGS), ER increased to 80.98% (0.61% day-1) (75G5+ ERGS=morphological afterripening stage (MP,5)) and \circled3pysiological afterripening stage (PAS), ER Increased to 88.50% (0.094 day-1) only. DWR Increased slowly from 0.20% to 2.76clp (0.016% day-1) in MAS and rapidly to 8.81% (0.061% day-1) in PAS. The RR correlated significantly with ER as well (r=0.8934 > rot, 0.6610). The steep increment of both DWR and RR in PAS indicated that the PAS was not a static stage although the ER was not changed too much. All of these may provide some information for understanding the dormancy mechanisms of American sting seed.

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Stratification of American Ginseng Seed: Embryo Growth and Temperature (미국삼 종자의 매장처리 : 배 성장과 온도)

  • John, T.A.Proctor;Dean, Louttit
    • Journal of Ginseng Research
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    • v.19 no.2
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    • pp.171-174
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    • 1995
  • Freshly harvested American ginseng (Panax quinquefolium L.) seeds were stratified at two locations over each of three years. Seed development and temperature in the stratification boxes were investigated until the seed was removed 12 months later and direct-seeded in the field. During stratification and seeding (14 months) three embryo stages were identified. In Stage I of 250 days (Sept. to mid-May) embryo length increased from about 0.5 to 1.0 mm: in Stage II of 100 days (mid-May to late Aug. when seeded) length increased to 2.0 mm and in Stage III (late Aug. to late Nov.) length increased to 5.3 mm. Excerpt split width could also be placed in three stages. Changes in embryo length correlated with embryo endosperm length ratio. Insertion compression tests showed that the excerpt softened rapidly in late Stage II and throughout Stage III. The stratification box temperatures at all depths (10, 25 and 50 cm) never exceeded -2$^{\circ}C$ even when the air temperatures dropped to -13$^{\circ}C$ and were, therefore not damaging to the seeds.

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Seed Morphological Characteristics and Dormancy type of Eranthis stellata Maxim., Korea Rare Plant. (희귀식물 너도바람꽃(Eranthis stellata Maxim.) 종자의 형태특성 및 휴면유형 분석)

  • Inhwan Chae;Geon Hui Ryu;Se-kyu Song;Jin-Woo Kim;Gi Ho Kang;Hayan Lee
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.08a
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    • pp.20-20
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    • 2020
  • Eranthis stellata Maxim. is a perennial plant that grows around the valley. E. stellata is concerned about the decline in natural habitats due to climate change in KOREA, continues to be observed and protected as an endangered species (Least Concrned, LC). Nevertheless, studies on the characteristics of the seeds of E. stellata are insufficient. So, this study analyzed the morphological characteristics and dormancy types of seeds. Seeds of E. stellata was collected in April at Gyeongsangbuk-do Arboretum and kept at 5 ℃ until using. To investigate the morphology of seeds, an optical microscope and a scanning electron microscope (SEM) were used. GA3 treated or untreated seeds (4 replicates of 25 seeds each) were observed germination and embryo growth for 1 month at 5 ℃ and 25/15 ℃ (12h day/12h night). The seed surface of E. stellata, light brown, was observed as a common characteristic of Eranthis genus, reticulate. The short axis of seeds was 1.11~1.77mm (average 1.44mm), and the long axis was 1.27~1.91mm (average 1.63mm), which was investigated in a slightly round shape (subglose). While no germination was observed at all conditions, Embryo growth was observed at 5 ℃ both in the control group and with GA3treated groups. Thus, seeds of E. stellata are classified as morphological physiological dormancy (MDP), which requires embryonic development and dormant break at the same time. These results can be useful information for determining morphological physiological seed dormancy and germination, and will be an important basic data for seed propagation of E. stellata as a resource.

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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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Effect of Cold Stratification and Gibberellin Treatment on Androsace septentrionalis L. Seed Germination

  • Dong-Hak Kim;Seungju Jo;Jung-Won Sung;Jung-Won Yoon
    • Korean Journal of Plant Resources
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    • v.36 no.6
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    • pp.580-587
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    • 2023
  • Androsace septentrionalis is a grass species restricted to North Korea; however, it is at the brink of extinction due to habitat loss and environmental changes caused by natural disasters and anthropogenic activities. This study was conducted to characterize the dormancy conditions of A. septentrionalis in an effort to conserve this North Korean plant resource. For this purpose, the morphological characteristics and vigor of A. septentrionalis seeds were examined, and its germination characteristics under different temperature conditions (15/6℃ and 25/15℃ ), low-temperature stratification, and gibberellin (GA3) treatment were determined. The results revealed that A. septentrionalis exhibits non-deep type morpho-physiological dormancy, and low-temperature stratification treatment was not effective in breaking the dormancy of A. septentrionalis seeds. Meanwhile, GA3 treatment significantly increased the mean germination time, rate, and speed of the seeds. The optimal conditions for the germination of A. septentrionalis seeds were 25/15℃ fluctuating temperature and 500 mg·L1 GA3 treatment. The results of this study are useful for the mass propagation of A. septentrionalis.

Dynamic Studies on Physiology and Biochemistry in American Ginseng Seed During Stratification Part III. POD Activity, Contents of DNA and RNA, Isozymes of POD and ES - (충적과정중 미국인삼 종자의 생리 및 생화하적 지표에 관한 동태학적 연구 III)

  • Huang, Yao-Ge;Li, Xiang-Gao;Kuang, Ya-Lan;Yan, Jie-Kun;Cui, Shu-Yu;Yu, Wen-Bo;Yang, Ji-Xiang;Liu, Ren-Song;Kim, Hack-Seang
    • Journal of Ginseng Research
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    • v.21 no.1
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    • pp.43-48
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    • 1997
  • Dynamic parameters of biochemistry including the POD (peroxidase) activity, contents of DNA and RNA, isozymes of POD and ES (esterase) in American send (Panax quinquefolium L.) seed are reported in the present paper. The dynamic changes of POD activity proved that the PAS (physiological afterripening stage) is a stage in which some substances are prepared for seed germination. The POD activity correlated with ER (embryo ratio) significantly DNA content changed little only within 0.0036∼0.013 mg/ml, which did not correlate with ER. RNA content changed from 0.1539 to 1.0313 mg/ml and correlated significantly with RE during all of the embryo afterripening. None of the POD isozyme band was obtained in ESGS (embryo slowly growth stage), but five bands in ERGS (embryo rapidly growth stage) and six bands in PAS. Four bands of ES isozymes were obtained in ESGS, but six bands in ERGS, particularly, the content of ES isozymes increased in PAS. All of these may provide some information for understanding the dormancy mechanisms of American song seed.

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Dynamic Studies on Physiology and Biochemistry in American Ginseng Seed During Stratification - Part II. Contents of Soluble Carbohydrate, Crude Fat, Fatty Acid and Soluble Protein - (충적과정중 미국인삼 종자의 생리 및 생화학적 지표에 관한 동태학적 연구 I)

  • Huang, Yao-Ge;Li, Xiang-Gao;Cui, Shu-Yu;Yu, Wen-Bo;Kuang, Ya-Lan;Yan, Jie-kun;Yang, Ji-Xiang;Liu, Ren-Song;Kim, Hack-Seang
    • Journal of Ginseng Research
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    • v.21 no.1
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    • pp.39-42
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    • 1997
  • Dynamic parameters of biochemistry including the contents of soluble carbohydrate (SC) , crude fat (CF) , fatty arid (FA) and soluble protein (SP) in American send (Panax qufnquelolium L.) seed are reported in the present paper. When embryo ratio (ER) increased from 7.31 to 20.48%, the SC content decreased from 4.08 to 1.16%. After that, SC content changed little. The CF content decreased successively from 34.50 to 14.40% from the beginning to the end during the embryo afterripening. The changes of FA content did not correlate with that of ER and the changing range of SP content was not large during the seed stratification. All of these may provide some information for understanding the dormancy mechanisms of American seng seed.

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Effect of Gibberellin and Light on Germination of Seeds in Codonopsis lanceolata Benth

  • Ghimire, Bimal Kumar;Shin, Chul-Min;Li, Cheng-Hao;Chung, Ill-Min;Lee, Dong-Wook;Kim, Hee-Young;Kim, Na-Young;Lim, Jung-Dae;Kim, Jae-Kwang;Kim, Myong-Jo;Cho, Dong-Ha;Lee, Sun-Joo;Yu, Chang-Yeon
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.5
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    • pp.303-306
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    • 2006
  • Seed of Codonopsis lanceolata exhibits low germination due to impermeable seed coat. Prolonged seed dormancy can be overcome by the application of gibberellins, as it promotes growth of the embryo and weakens the structures surrounding of embryo. The effects of photoperiod, sugar and gibberellin concentration were investigated at constant temperature for 12 days and 22 days in vitro and invivo conditions respectively. The rate of germination of seeds of Codonopsis lanceolata in wet filter paper in both complete dark and light treatments was significantly lower than that of seed treated with $GA_3$. It clearly indicates that there is significant coat imposed dormancy in the seed of Codonopsis lanceolata. The rate of germination in vivo condition was lower than that of the in vitro condition supplemented with $GA_3$ Thus, the physical dormancy due to impermeable seed coat and low level of endogenous gibberellins in the seed was the cause of poor germination rate in Codonopsis lanceolata.

Effects of Temperature and Gibberellin Treatment on Embryo Development and Germination of Sambucus racemosa subsp. pendula Seeds (온도 및 지베렐린 처리가 말오줌나무 종자의 배발달 및 발아에 미치는 영향)

  • Kim, Hyun Jin;Lee, Ki Cheol;Suh, Gang-Uk
    • Journal of Korean Society of Forest Science
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    • v.102 no.2
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    • pp.204-209
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    • 2013
  • This study was conducted to determine types of seed dormancy in Sambucus racemosa subsp. pendula (Nakai) H.I. Lim & C.S. Chang, an endemic tree species of Korea, whose seeds have been considered difficult to germinate. Seeds of S. racemosa subsp. pendula were stratified at 25/15 or $5^{\circ}C$ for 0, 6, or 12 weeks (wks) and incubated at 15/6, 20/10, 25/15, or $30/20^{\circ}C$ (12/12 h) under 14 h photoperiod. To determine the effect of $GA_3$ on seed germination of S. racemosa subsp. pendula, seeds were treated with 0, 500, or 1000 ppm $GA_3$ and then germinated at 25/15 or $5^{\circ}C$. The change in embryo length was investigated at 25/15 or $5^{\circ}C$. Seeds given 12 wks of cold stratification germinated to 33.4% at $15/6^{\circ}C$ and to 25.4% for seeds given 6 wks of warm stratification + 12 wks of cold stratification at $20/10^{\circ}C$. At $25/15^{\circ}C$, seeds given 12 wks of warm stratification + 6 wks of cold stratification germinated to 26.0%, and to 28.2% for seeds given 12 wks of warm stratification + 12 wks of cold stratification at $30/20^{\circ}C$. Warm stratification alone did not germinate seeds throughout the experiment, regardless of the thermoperiod. Linear embryos began to grow after 60 days of incubation at 25/15 or $5^{\circ}C$. The embryo length at day 69 increased from 1.4 mm to 1.50 or 1.62 mm at 25/15 or $5^{\circ}C$, respectively. Embryos of S. racemosa subsp. pendula seeds grew better at $5^{\circ}C$ than at $25/15^{\circ}C$. Gibberellin was effective to break seed dormancy of S. racemosa subsp. pendula. Seeds treated with 500 ppm $GA_3$ germinated up to 40.0% at $25/15^{\circ}C$ and to 62.7% for those treated with 100 ppm $GA_3$ at $5^{\circ}C$. With these results, seeds of S. racemosa subsp. pendula have both nondeep complex and intermediate complex morphophysiological dormancy.

Study on Dormancy Mechanisms of American Ginseng Seed II - Germination Inhibition of Seed Coat

  • Huang, Yao-Ge;Li, Xiang-Gao;Cui, Shu-Yu;Yang, Ji-Xiang;Liu, Ren-Song;Kim, Hack-Seang
    • Natural Product Sciences
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    • v.2 no.2
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    • pp.137-142
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    • 1996
  • This paper gives a description about the germination inhibition of American ginseng (Panax quinquefolium L.) seed coat. The existence of seed coat is one of the inhibitory factors which inhibit the embryo growth, particularly during the morphological after-ripening stage. The seed coat can obstruct the water absorption at the beginning of seed stratification, but it can not threaten seed germination. The inhibition of seed coat is not caused by the mechanical fetter neither. However, before splitting the seed coat, the inhibition of seed coat comes from both air-tight character and inhibitors, and after splitting the seed coat, the inhibition may come mainly from the inhibitors.

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