• Title/Summary/Keyword: mature zygotic embryo

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Effects of Growth Regulators on Somatic Embryogenesis from Ginseng Zygotic Embryos (인삼 접합자배로부터 체세포배의 발생에 미치는 생장조절제의 영향)

  • Yong Eui CHOI;Woong Young SOH
    • Korean Journal of Plant Tissue Culture
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    • v.22 no.3
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    • pp.157-164
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    • 1995
  • Intact mature zygotic embryos or their excised cotyledons of ginseng, were cultured on media containing various growth regulators such as auxin (2,4D, IAA) and cytokinin(BAP kinetin). In the culture of intact zygotic embryos, auxin inhibited germination but cytokinin did not Somatic embryogenesis occurred only from those of ungerminated embryos. In the culture of cotyledon segment, medium without growth regulators was the most appropriate to somatic embryogenesis. Somatic embryos were produced sporadically over the surfaces of zygotic embryos on medium containing auxin, while on medium without growth regulators, or media containing cytokinin, somatic embryos formed only on the proximal region of cotyledon. on medium containing 2,4-D, somatic embryos originated from multiple cells which comprised epidermal and subepidermal layers of cotyledon, which resulted in poly-somatic embryogenesis. When these somatic embryos were cultured on the same medium, the primary somatic embryos procured secondary embryos, which arose from epidermal or subepidermal single cells.

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Origin and Development of Single- and Poly-embryos formed Directly on Excised Cotyledons of Ginseng Zygotic Embryos

  • Yang Deok Chun;Choi Kwang Tae
    • Journal of Ginseng Research
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    • v.23 no.2 s.54
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    • pp.74-80
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    • 1999
  • Excised cotyledon segments of ginseng zygotic embryos cultured on MS basal medium without growth regulators produced somatic embryos near the basal excised portion at a high frequency. The frequency of somatic embryo formation on the segments declined along with advancing zygotic embryo maturity. In immature cotyledons, all the cells of the epidermis and subepidermis were smaller and more densely cytoplasmic than those in mature cotyledons, and from which multiple cells participated in embryogenic division to form somatic embryos with multiple cotyledons and fasciated radicles (poly-embryos). But in germinating cotyledons, only the epidermal cells were densely cytoplasmic and singularly competent to develop into somatic embryos resulting in single-embryos with closed radicles. This result means that the origin and development of somatic embryos is determined according to whether the cells participating in embryonic division are in a single state or a massive state relative to cotyledon maturity.

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Effects of BA and NAA on Adventitious Shoot Formation from Mature Zygotic Embryos of Stewartia koreana Nakai (노각나무 성숙 접합자 배로부터 부정아 유도에 미치는 BA 및 NAA 효과)

  • 손석규;조윤진;문흥규
    • Korean Journal of Plant Resources
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    • v.17 no.3
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    • pp.272-277
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    • 2004
  • Zygotic embryos of Stewartia korean Nakai were cultured to determine the effects both of BA and NAA on adventitious shoot induction. Multiple shoots (about 11 per explant) were formed when the embryos were treated with 1.0 mg/L BA alone. On the other hand, NAA appeared to inhibit shoot induction when treated with BA. Adventitious shoots looked differ in form and color by the combinations of BA and NAA treated. When both BA and NAA were present, the shoots became short and developed dark color. The highest rooting was observed at 0.5mg/L NAA. The results could be useful for the establishment of in vitro regeneration system for Stewartia koreana Nakai.

Improving Corsican pine somatic embryo maturation: comparison of somatic and zygotic embryo morphology and germination

  • Wtpsk, Senarath;Shaw, D.S.;Lee, Kui-Jae;Lee, Wang-Hyu
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2003.04a
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    • pp.61-62
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    • 2003
  • Clonal propagation of high-value forest trees through somatic embryogenesis (SE) has the potential to rapidly capture the benefits of breeding or genetic engineering programs and to improve raw material uniformity and quality. A major barrier to the commercialization of this technology is the low quality of the resulting embryos. Several factors limit commercialization of SE for Corsican pine, including low initiation rates, low culture survival, culture decline causing low or no embryo production, and inability of somatic embryos to fully mature, resulting in low germination and reduced vigour of somatic seedlings. The objective was to develop a Corsican pine maturation medium that would produce cotyledonary embryos capable of germination. Treatments were arranged in a completely randomized design. Data were analyzed by analysis of variance, and significant differences between treatments determined by multiple range test at P=0.05. Corsican pine (Pinus nigra var. maritima) cultures were initiated on modified !P6 medium. Modifications of the same media were used for culture multiplication and maintenance. Embryogenic cultures were maintained on the same medium semi solidified with 2.5 g/l Gelrite. A maturation medium, capable of promoting the development of Corsican pine somatic embryos that can germinate, is a combination of iP6 modified salts, 2% maltose, 13% polyethylene glycol (PEG), 5 mg!l abscisic acid (ABA), and 2.5 g/l Gelrite. After initiation and once enough tissue developed they were grown in liquid medium. Embryogenic cell suspensions were established by adding 0.951.05 g of 10- to 14-day-old semisolid-grown embryogenic tissue to 9 ml of liquid maintenance media in a 250ml Erlenmeyer flask. Cultures were then incubated in the dark at 2022$^{\circ}$C and rotated at 120 rpm. After 2.53 months on maturation medium, somatic embryos were selected that exhibited normal embryo shape. Ten embryos were placed horizontally on 20 ml of either germination medium ($\frac{2}{1}$strength Murashige and Skoog (1962) salts with 2.5 g/l activated charcoal) or same medium with copper sulphate adjusted to 0.25 mg/1 to compensate for copper adsorption by activated carbon. 2% and 4% maltose was substituted by 7.5% and 13% PEG respectively to improve the yield of the embryos. Substitution of' maltose with PEG was clearly beneficial to embryo development. When 2% of the maltose was replaced with 7.5% PEG, many embryos developed to large bullet-shaped embryos. At latter stages of development most embryos callused and stopped development. A few short, barrel-shaped cotyledonary embryos formed that were covered by callus on the sides and base. When 4% of the maltose was removed and substituted with 13% PEG, the embryos developed further, emerging from the callus and increasing yield slightly. Microscopic examination of the cultures showed differing morphologies, varying from mostly single cells or clumps to well-formed somatic embryos that resembled early zygotic embryos only liquid cultures with organized early-stag. A procedure for converting and acclimating germinants to growth in soil and greenhouse conditions is also tested. Seedling conversion and growth were highly related to the quality of the germinant at the time of planting. Germinants with larger shoots, longer, straighter hypocotyls and longer roots performed best. When mature zygotic embryos germinate the root emerges, before or coincident with the shoot. In contrast, somatic embryos germinate in reverse sequence, with the cotyledons greening first, then shoot emergence and then, much later, if at all, the appearance of the root. Somatic seedlings, produced from the maturation medium, showed 100% survival when planted in a field setting. Somatic seedlings showed normal yearly growth relative to standard seedlings from natural seed.

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Effect of Culture Medium Strength, Plant Growth Regulators and Ethylene Inhibitors for Adventitious Bud Induction from Mature Zygotic Embryo in Larix kaempferi (낙엽송 (Larix kaempferi) 성숙배로부터 부정아 유도를 위한 배지농도, 식물생장조절물질 및 에틸렌 억제제 효과)

  • Kim, Yong Wook
    • Journal of Korean Society of Forest Science
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    • v.103 no.1
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    • pp.72-79
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    • 2014
  • Adventitious buds were produced from the cultures of mature zygotic embryos of Larix kaempferi with the highest frequency in Quoirin & Lepoivre (LP) medium containing 1.0 mg/L zeatin (76.1%). The effective treatments for inducing adventitious shoots growth above 2 mm were shown in Litvay (LM) medium with 0.5 mg/L zeatin (75.2%) or LP medium with 2.0 mg/L zeatin (70.2%), respectively. In experiment with half strength salts medium for induction of the adventitious buds, the effective treatments were obtained from 1/2LP medium with 1.0 (83.3%) or 2.0 mg/L (81.7%) zeatin, respectively. However, the best adventitious shoot growth more than 2 mm appeared in 1/2LM medium with 1.0 mg/L zeatin (66.7%). In experiment with half strength salts medium for induction of the adventitious buds, the effective treatments were obtained from 1/2LP medium with 1.0 (83.3%) or 2.0 mg/L (81.7%) zeatin, respectively. However, the best adventitious shoot growth more than 2 mm appeared in 1/2LM medium with 1.0 mg/L zeatin (66.7%). In experiment of subsequent treatment with various cytokinins for induction of the adventitious buds, the best one (52.9%) was obtained from 1.0 mg/L zeatin for 2weeks, and then subcultured to the medium with 1.0 mg/L thidiazuron (TDZ). The effect of ethylene synergist or inhibitor on adventitious buds induction was examined. The highest rate (34.6%) of adventitious buds marked from the treatments of 1.0 mg/L zeatin+2.0 mg/L MGBG (methylglyoxal bis-[guanylhydrazone]). And the highest no. of adventitious buds(1.5/explant) was shown in the medium with 1.0 mg/L zeatin+2.0 mg/L $CoCl_2$.

A review of forest trees micropropagation and its current status in Korea (국내 임목류 기내증식 연구현황 및 전망)

  • Moon, Heung-Kyu;Kim, Yong-Wook;Park, So-Young;Han, Mu-Seok;Yi, Jae-Seon
    • Journal of Plant Biotechnology
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    • v.37 no.4
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    • pp.343-356
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    • 2010
  • Plant micropropagation techniques include bud cultures using apical or axillary buds, organogenesis through callus culture or adventitious bud induction, and somatic embryogenesis. In Korea Forest Research Institute (KFRI), the first tissue culture trial in woody plant was initiated from the bud culture of hybrid poplars (Populus alba x P. glandulosa) in 1978. Since then several mass propagation techniques have developed from conifer and hardwood species, resulting in allowing practical application to Poplars, Birches and some oak species. In addition, useful micropropagation and genetic resources conservation techniques were established in some rare and endangered tree species including Abeliophyllum distichum. Among various in vitro propagation techniques, somatic embryogenesis is known to be the most efficient plant regeneration system. Since the first somatic embryo induction was reported in Tilia amurensis by KFRI in 1986, various protocols for direct or indirect somatic embryogenesis systems have developed in conifer and hardwood species including Larix leptolepis, Pinus rigida x P. taeda F1, Kalopanax septemlobus and Liliodendron tulipifera, etc. However, most of these technologies have been developed using juvenile tissues, i.e. immature zygotic embryos or mature embryos. Therefore it has been difficult to directly application to tree breeding program due to their unproven genetic background. Recently remarkable progresses and new approaches have been achieved in mature tree somatic embryogenesis. In this article we reviewed several micropropagation techniques, which have been mainly developed by KFRI and recent international progresses.

Production of Somatic Embryos in Oenanthe javanica (BL.) DC. (미나리의 體細胞 胚 생산 硏究)

  • KOH, Gab Cheon;AHN, Chang Soon
    • Korean Journal of Plant Tissue Culture
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    • v.24 no.2
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    • pp.107-112
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    • 1997
  • This study was carried out to establish a mass production of normal somatic embryos of Oenanthe iavanica (BL.) DC. including examination of nitrogen and sucrose sources, and ABA concentration. Embryogenic cell clumps and embryos were formed on the MS medium devoid of growth regulators. Proliferation of embryogenic cells and clumps was enhanced by 2, 4-D. Meanwhile embryo growth and development occurred on the media containing NAA and IBA. Growth of embryos was generally good in the media containing both 20 mM $KNO_3$ and 20 mM $NH_4NO_3$. The rate of shoot forming embryos was higher on the media containing on1y 20mM $NH_4NO_3$ than on the former. Addition of sucrose at 3-6% enhanced the embryo development, and normal embryos with short hypocotyl was observed on the medium containing $10\mu\textrm{M}$ ABA. Embryogenic cell clumps or globular embryos, when transferred to MS solid media devoid of growth regulators, developed into mature embryos and then into plantlets which had entire primary leaves like zygotic seedlings.

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Dormancy of Somatic Embryos Derived from the Cotyledon of Korean Ginseng

  • Yang Deok-Chun;Yoon Eui-Soo;Choi Kwang-Tae
    • Journal of Ginseng Research
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    • v.23 no.3 s.55
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    • pp.130-134
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    • 1999
  • Somatic embryos were induced directly from cotyledon explants of Korean ginseng (Panax ginseng C.A. Meyer) on Murashige and Skoog (MS) medium with 2,4-D, BAP, kinetin or lacking growth regulators. When somatic embryos formed on all media grew to cotyledonary stage, the further development of embryos was ceased and remained in white color. By gibberellic acid (over 1.0 mg/1 $GA_3$) treatment, all the somatic embryos turned rapidly to green and germinated within 3 weeks. Chilling treatment also induced the germination of somatic embryos. The effective temperature regime was $-2^{\circ}C$ for over 8 weeks but more higher temperature than $0^{\circ}C$ did not effective for germination of somatic embryos. Ultrastructural observation revealed that the cotyledon cells of somatic embryos without chilling or $GA_3$ treatment contained numerous lipid reserves, dense cytoplasm, proplastids and non-activated mitochondria with poorly differentiated internal structure, but the cotyledon cells of germinating somatic embryos after chilling or $GA_3$ treatment highly vacuolated and contained well-developed chloroplasts and active state of mitochondria enclosing numerous cristae. The above results indicate that in vitro developed somatic embryos of Panax ginseng may be dormant after mature similar to zygotic embryos.

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