• 제목/요약/키워드: somatic embryo germination

검색결과 51건 처리시간 0.031초

Factors influencing somatic embryo maturation, high frequency germination and plantlet formation in Terminalia chebula Retz.

  • Anjaneyulu, C.;Giri, C.C.
    • Plant Biotechnology Reports
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    • 제2권2호
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    • pp.153-161
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    • 2008
  • The factors influencing somatic embryo maturation, high frequency somatic embryo germination, and plantlet formation were studied in Terminalia chebula Retz. Maturation of somatic embryo were influenced by a number of factors such as in vitro culture passage, concentrations of sucrose, levels of abscisic acid (ABA), basal media and media additive combinations. Maximum frequency of somatic embryo maturation ($57.22{\pm}2.02$), was obtained on MS medium supplemented with 50 g/l sucrose. Different factors such as strengths of MS nutrients, plant growth regulators, media additives and their combinations controlling somatic embryo germination and plantlet formation were studied. High frequency of germination and plantlet formation ($58.80{\pm}1.47$) were achieved by subsequent subculture of mature somatic embryos on MS medium containing 30 g/l sucrose and 0.5 mg/l benzyl-adenine (BA). However, although duration of in vitro passage of the callus tissue was critical, contribution of the combinations of plant growth regulators and media additives showed nugatory effect on somatic embryo maturation and germination as evident from variable responses.

Somatic Embryogenesis - Apical Meristems and Embryo Conversion

  • Yeung, Edward C.;Stasolla, Claudio
    • 식물조직배양학회지
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    • 제27권4호
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    • pp.299-307
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    • 2000
  • A large amount of information is currently available for somatic embryogenesis of plants. However, one common problem related to somatic embryos is that the conversion rate can be low for some species. Apical meristems are responsible for post-embryonic growth of the embryo. The low percentage observed is most likely a result of poor apical meristem development or defects in the meristem organization during somatic embryogenesis. In flowering plants, apical meristems are well developed by the late heart stage of zygotic embryo development. In conifers, such as white spruce, apical meristems are formed at the pre-cotyledon stage. Thus, apical meristem development occurs very early, prior to the maturation stage of embryo development. Once formed, meristems are stably determined. In the somatic embryo, as exemplified by white spruce, since embryo development is not synchronous, tissue differentiation including apical meristem formation occurs throughout the“maturation”stage. Different apical meristem organizations can be found among different individuals within a population. In contrast to their zygotic counterparts, the apical meristems appear not to be stably determined as their organization, as the shoot apical meristem especially, can be easily modified or disrupted. Precocious germination seldom results in functional plantlets. All these observations suggest that the conditions for somatic embryo maturation have not been optimized or are not suitable for meristem formation and development. The following strategies could improve meristem development and hence conversion: 1. Simulate in ouuio conditions to promote meristem development prior to the“maturation”treatment.2. Prevent deterioration of apical meristem organization during somatic embryo maturation.3. Promote further meristem development during embryo germination.

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Effect of dark incubation in germination of indirect date palm somatic embryos and conversion into plantlets

  • Mansour Abohatem;Yousra Al-Qubati;Hanan Abohatem
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.267-274
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    • 2023
  • All studies on date palm somatic embryogenesis have focused on germination in the presence of light while neglecting germination in darkness, which mimics the germination process of zygotic embryos within seeds. To improve the date palm micropropagation protocol, we investigated the effects of light and darkness incubation on the germination of indirect date palm somatic embryos and their subsequent conversion into plantlets. Darkness incubation emerged as a pivotal factor in the germination of indirect date palm somatic embryos and their successful conversion into plantlets. Darkness incubation significantly decreased the time required for the conversion of indirect somatic embryos into plantlets, halving the duration from 24 weeks to only 12 weeks. The micropropagation protocol was modified, consolidating the previous two distinct stages of germination and elongation under light incubation into a single stage under darkness incubation. These findings modified the protocol and significantly reduced the overall duration of the date palm micropropagation protocol.

저온저장 음나무 배발생 캘러스로부터 체세포배 유도와 식물체 재생 (Somatic embryo induction and plant regeneration from cold-stored embryogenic callus of K. septemlobus)

  • 이나념;최용의;문흥규
    • Journal of Plant Biotechnology
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    • 제42권4호
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    • pp.388-395
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    • 2015
  • 본 연구는 약용 및 식용으로 유망한 음나무의 대량생산 및 생식질 보존을 위한 기초 자료를 제공하기 위해 배발생 조직을 재료로 저온저장 기간별 SE 유도 및 식물체 재생을 시험하였다. 배발생 캘러스는 저온저장 6개월까지 정상적인 체세포배 형성이 가능하였으나 유도 빈도는 저장 기간에 따라 감소하는 경향을 보였다. 배발생능이 가장 좋은 ZE 10 세포주은 체세포배 유도 빈도에 있어 저장 기간에 따른 감소폭이 비교적 적은 것으로 나타났다. 체세포배의 발아 및 식물체 재생은 캘러스의 저장기간에 따라 다소 감소하는 경향을 보였으나 발아율은 93% 이상, 식물체 재생율은 91% 이상으로 저온저장에 따른 큰 문제는 없었다. 조직검경 결과 저장 기간에 따라 세포의 갈변화 및 활력 저하가 나타났으며, 아세토카민과 에반스블루의 염색을 통해서도 확인되었다. 이상의 결과로 볼 때 음나무 배발샐 캘러스의 저온저장은 계대배양 없이 $4^{\circ}C$의 냉장고에서 6개월 까지 가능한 것으로 나타났으며, 저장 후 체세포배 유도효율을 위해 배발생능이 양호한 세포주의 저장이 필요한 것으로 관찰되었다.

낙엽송의 체세포배 발생 및 발아에 미치는 TIBA, PCIB 및 phloroglucinol의 효과 (Effect of TIBA, PCIB and phloroglucinol on somatic embryo maturation and germination in Japanese larch (Larix leptolepis))

  • 김용욱;문흥규
    • Journal of Plant Biotechnology
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    • 제36권3호
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    • pp.230-235
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    • 2009
  • The effect of auxin transport inhibitor (TIBA and PCIB) or auxin synergist (phloroglucinol) on somatic embryo maturation and germination in Japanese larch (Larix leptolepis) was examined. The addition of 15.8 mg/L ABA+5.0 mg/L PCIB showed most promoted the maturation of cotyledon -staged somatic embryos (177.7/90 mg ESM). In contrast, with treatment of 5.0 mg/L PCIB or 5.0 mg/L TIBA, no somatic embryos were obtained. Considering from this result, PCIB or TIBA alone could not substitute for exogenously supplied ABA for maturation of somatic embryos. In the test of below concentration of 5.0 mg/L PCIB, the highest results were recorded in 15.8 mg/L ABA+2.0 mg/L PCIB (109.3/90 mg ESM) or 15.8 mg/L ABA+5.0 mg/L PCIB (103.7/90 mg ESM). However, 5.0 mg/L phloroglucinol (0/90 mg ESM) or no ABA addition (3/90 mg ESM) had little influence on somatic embryos maturation. In germination study, the highest frequency of plantlet regeneration obtained from the somatic embryos which had matured on 15.8 mg/L ABA+5.0 mg/L PCIB (67.9%). However, either 5.0 mg/L PCIB nor 5.0 mg/L TIBA resulted in obtained from plantlets.

Development of a Protocol for Somatic Embryogenesis of Cnidium officinale M akino

  • Hui Yeong Jeong;Ji Ah Kim
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2021년도 춘계학술대회
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    • pp.51-51
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    • 2021
  • This study was conducted to develop a somatic embryogenesis protocol for the Cnidium officinale Makino difficult to seed propagation. The immature flowers were used as explants. The concentration of a 2,4-D 1.0mg/L was found to be optimal concentration for induction of embryogenic callus and somatic embryos. Addition of 0.3mg/L, 0.5mg/L and 1.0mg/L to the embryo germination medium promoted somatic embryo germination. Among four concentrations, GA3 1.0mg/L were superior to others. Shoots were transferred to hormone-free MS medium after 2 months of culture in the dark. We obtained an optimized protocol for the regeneration of C. officinale.

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쎌러리(Apium graveolens L.)의 체세포배 발생 및 인공종자 발아에 있어서 앱시스산 및 저온처리에 의한 단백질 합성 (Protein Synthesis during Somatic Embryo Development and Artificial Seed Germination of Apium graveolens L. after Abscisic Acid or Cold Treatment)

  • 소웅영;여읍동;소상섭;조덕이
    • 식물조직배양학회지
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    • 제21권1호
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    • pp.15-22
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    • 1994
  • 쎌러리(Apium graveolens L.)의 체세포배 발생 및 인공종자 발아에 있어서 분자수준의 기작을 이해하기 위하여 ABA 및 저온처리에 의한 단백질합성변화에 관한 연구를 수행하였다. 단백질함량과 질산환원효소 활성도는 ABA 및 저온처리한 체세포배 및 유식물은 처리하지 아니한 것에 비하여 특히 유식물에서보다 체세포배 발생시에 더욱 높았다. 2차원 전기영동결과 ABA 및 저온처리에 의하여 심장 형배 시기에서는 30 KD, 32 KD, 171 KD 및 205 KD의 단백질과 자엽시기배에서는 29 KD, 33 KD, 37 KD, 38 KD, 41 KD, 55 KD, 66 KD, 및 110 KD 단백질이 합성되어졌다. 또한 심장형배에서는 42 KD, 44 KD, 59 KD, 64 KD, 101 KD, 104 KD, 및 190 KD의 단백질과 자엽시기에서는 29 KD 및 116 KD의 단백질이 억제되었다. 체세포배 발생 및 인공종자 발아에 있어서 ABA및 저온처리에 의해서 단백질이 합성되어지거나 억제되는 것이 동시에 일어났으며 주로 산성단백질에서 변화가 일어났다. 이와같은 결과는 체세포배 발생과정에서 그리고 체세포배 발아와 유식물의 생장과정에서 환경변화에 적응하기 위한 대사상의 변화가 일어나는 것으로 추정된다.

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A Protocol for High Frequency Plant Conversion from Somatic Embryos of Peanut (Arachis hypogaea L. cv. DRG-12)

  • Rani A. Raja;Padmaja G.
    • Journal of Plant Biotechnology
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    • 제7권3호
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    • pp.187-193
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    • 2005
  • A protocol was developed for somatic embryogenesis with 100% induction rate from immature zygotic embryo axes of peanut (Arachis hypogaea L. cv. DRG-12) cultured on MS medium containing $18.09\;{\mu}M$ 2,4-D. The frequency of somatic embryogenesis (31.7%) as well as the number of somatic embryos induced per explant (6.6) decreased when the concentration of 2,4-D was increased to $72.4\;{\mu}M$. Morphologically abnormal somatic embryos were observed at a frequency of 43.3% on MS medium containing $72.4\;{\mu}M$ 2,4-D. Somatic embryos isolated from 30-day-old cultures of immature zygotic embryo axes exhibited precocious germination with varied responses when placed on MS basal medium with 3% sucrose. Maximum shoot induction (80.0%) was observed from somatic embryos isolated from 60-day-old cultures of immature zygotic embryo axes when placed as a clump rather than individually on MS medium supplemented with $26.63\;{\mu}M$ BA and $0.54\;{\mu}M$ NAA. Shoots developed from somatic embryos rooted with higher frequency (93.3%) on Blaydes' medium containing $5.4\;{\mu}M$ NAA.

시호(Bupleurum falcatum L) 잎절편으로부터 형성된 체세포배 발생의 형태학적 관찰 (Morphological Observation of Somatic Embryogenesis in Leaf Explant Cultures of Bupleurum falcatum L.)

  • 조덕이;소웅영
    • 식물조직배양학회지
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    • 제22권5호
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    • pp.291-298
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    • 1995
  • 시호(Bupleurum falcatum L.)의 잎절편으로부터 체세포배형성을 통한 식물체 재생과 체세포배 발생의 이상을 일으키는 2,4-D의 영향에 대하여 또한 체세포배의 자엽수와 발아와의 관계에 대하여 기술하였다. 배발생능 캘러스는 1mg/L 2,4-D가 첨가된 MS 고형기본배지에서 배양된 캘러스로부터 선발하였다. 2,4-D 첨가 MS 기본배지에서 6주간 배양후 3주간 2,4-D가 제거된 배지에서 배양하여 체세포배 발생과 비정상적인 체세포배의 자엽발생을 관찰하였다. 이상자엽의 빈도는 정상인 2개 자엽에서 65% 인데 비하여 1개의 자엽에서 7%, 3개의 자엽을 갖는 체세포배에서는 25%, 4개 자엽에서는 5%, 5개 자엽에서 2% 및 나팔형 자엽배는 3% 이었다. 2개의 정상적인 자엽을 갖는 체세포배의 발아율이 80%인 것에 비하여 1, 3 4, 5개의 자엽을 갖는 체세포배에서는 25%, 58%, 38% 및 20%로 발아율이 낮았다. 그러나 나팔형의 비정상 체세포배는 전혀 발아되지 않았다. 다자엽배의 구조는 체세포배의 뿌리 또는 배축에서 원통상전형성층을 나타내었지만 자엽절에서는 자엽수와 동일한수의 전형성층속으로 분포되었다. 체세포배의 자엽수 변이는 전형성층의 수와 밀접한 관계가 있다.

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Direct somatic embryogenesis, plant regeneration and genetic transformation of Panax ginseng

  • Park, Yong-Eui;Yang, Deok-Chun;Park, Kwang-Tae;Soh, Woong-Young;Hiroshi Sano
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1999년도 제13회 식물생명공학심포지움 New Approaches to Understand Gene Function in Plants and Application to Plant Biotechnology
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    • pp.85-89
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    • 1999
  • Somatic embryogendesis is one of good examples of the basic research for plant embryo development as well as an important technique for plant biotechnology. This paper describes the direct somatic embryogenesis from zygotic embryos of Panax ginseng is reversely related to normal axis growth of zygotic embryos by the experiment of various chemical treatments. Under the normal growth condition, the apical tips of embryo axis produced an agar-diffusible substance, which suppressed somatic embryo development from cotyledons. Although the cells of zygotic embryos were released from the restraint of embryo axis, various factors were still involved for somatic embryo development. Electron microscopic observation revealed that the ultrastructure of cells of cotyledon epidermis markedly changed before initiation of embryonic cell division, probably indicating reprogramming events into the cells embryogenically determined state. Polar accumulation of endogenous auxin or cell-cell isolation by plasmolysis pre-treatment is the strong inducer for the somatic embryo development. The cells for the process of somatic embryogenesis might be determined by the physiological conditions fo explants and medium compositions. Direct somatic embryos from cotyledons fo ginseng were originated eithrer from single or multiple cells. The different cellular origin of somatic embryos was originated either from single or multiple cell. The different cellular origin of somatic embryos was depended on various developmental stages of cotyledons. Immature meristematic cotyledons produced multiple cell-derived somatic embryos, which developed into multiple embryos. While fully mature cotyledons produced single cell-derived single embryos with independent state. Plasmolysis pretreatment of cotyledons strongly enhanced single cell-derived somatic embryogenesis. Single embryos were converted into normal plantlets with shoot and roots, while multiple embryos were converted into only multiple shoots. GA3 or a chilling treatment was prerequisite for germination and plant conversion. Low concentration of ammonium ion in medium was necessary for balanced growth of root and shoot of plantlets. Therefore, using above procedures, successful plant regeneration of ginseng was accomplished through direct single embryogenesis, which makes it possible to produce genetically transformed ginseng efficently.

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