• Title/Summary/Keyword: meristem

Search Result 169, Processing Time 0.02 seconds

Effects of Colchicine and EMS Dropping to Apical Meristem on Induced Mutation and Plant Protein Pattern in Wasabia japonica Matsum (Colchicine과 EMS 돌연변이 처리가 고추냉이 식물체의 단백질 Pattern에 미치는 영향)

  • Park, Kie-In;Eun, Jong-Seon;Choi, Sun-Yong;Kwon, Sung-Whan;Lee, Kang-Soo;So, Sang-Sup;Youn, Myung-Ja
    • Korean Journal of Medicinal Crop Science
    • /
    • v.5 no.1
    • /
    • pp.36-42
    • /
    • 1997
  • This study was investigated on the effects of colchicine and EMS. induced mutation, plant on the germination and polypeptide pattern and peroxidase activity monitored by two dimensional gel analysis in Wasabia japonica Matsum (wasabi). Germination rate of Muju was higher than that of Ulrung-Do and optimum concentration for germination was appeared 100 ppm GA3 containing with 10 ppm BAP in these cultivars. Survived plants rate of Muju was higher than that of Ulrung-Do after colchicine and EMS treatment. Peroxidase activity and plant height were decreased by mutagen treatments, while incresed in root and stem thickness. The number of protein spots and pattern showed difference between Muju and Ulrung-Do . The plants treated mutagen increased polypeptide spots, especially EMS treatment showed more different polypeptide pattern compared to control.

  • PDF

Effects of Cutting Methods and Soil Depth on Sod Formation of Mentha spp. (박하 속 식물의 뗏장형성에 미치는 삽목방법과 토심의 영향)

  • Lee Chung-Il;Nam Sang-Yong
    • Journal of Bio-Environment Control
    • /
    • v.15 no.2
    • /
    • pp.190-195
    • /
    • 2006
  • The purpose of this study was to figure out the best condition in growth and sod quality of Mentha spp. according to cutting methods and soil depth. Applemint (M. suaveolens), Peppermint (M. piperita), and Spearmint (M. spicata) were used. Regardless of cultivar and soil depth condition, the growth rate in top cutting was higher than layering method. The difference between layering and layering without apical meristem was not significant. Optimal condition for growth was 5cm depth of soil. However, the shallower the depth of the soil, the better quality of sod. Among three Mentha species, M suavelens showed plant height and node number and M. piperita had shoot number were higher than other variety. The best condition of sod was top cutting and 1cm depth of soil regardless of cultivar.

In Vitro Regeneration Using Leaf Segment in Gypsophila paniculata L. 'Bristol Fairy' (안개초의 잎 절편체를 이용한 기내재분화)

  • Lee, Seung Woo;Bae, Jin Joo
    • Horticultural Science & Technology
    • /
    • v.17 no.6
    • /
    • pp.765-767
    • /
    • 1999
  • Experiments were conducted to find out the optimum cultural conditions for adventitious shoot regeneration from leaf segments of Gypsophila paniculata L. Thidiazuron (TDZ) was remarkably effective for the regeneration of leaf segment in Gypsophila paniculata compared with BA and kinetin. TDZ showed the highest rate of regeneration at $3.0mg{\cdot}L^{-1}$, while kinetin did not affect the regeneration. BA in the medium increased vitrification. Shoot formation efficiency was much higher on $0.3mg{\cdot}L^{-1}$ of IAA-containing media than NAA-containing media. Regeneration of leaf segments was induced with the agar concentrations of 1.0, 1.2 and 1.6%. Dark treatment at the initial stage of the culture increased the rate of regeneration up to 75%. The leaf explants from the 3rd subcultured stock plants after meristem culture, showed the highest adventitious shoot regeneration efficiency.

  • PDF

Histological Characteristics of Somatic Embryos in Melon (Cucumis melo L.) (멜론 체세포배의 조직학적 특징)

  • Choi, Pil Son;Kwon, Suk Yoon
    • Korean Journal of Plant Resources
    • /
    • v.26 no.4
    • /
    • pp.511-515
    • /
    • 2013
  • Hypocotyls explants of melon seedling were cultured on Murashige and Skoog's (MS) medium supplemented with 1 mg/L 2,4-dichlorophenoxy acetic acid (2,4-D) and 0.5 mg/L benzyl aminopurine (BA) for 6 weeks to produce somatic embryos. In somatic embryos produced through intervening bright yellow friable (BYF) from the explants, somatic embryos with two-cotyledon (26%) and horn-type cotyledon (74%) were observed. The procambial strand of cotyledons was originated from circular procambial tissues of lower hypocotyls. The circular procambial independently divided into two procambial strand at the edge of cotyledonary-node, and then connected to each cotyledon to form somatic embryos with two-cotyledon. When cotyledon was horn-type, the circular procambial strand in lower hypocotyls would continuously remain connected to the cotyledon. However, somatic embryos with two or horn type cotyledon formed an abnormal shoot apex without the tunica-corpus structure or dome shape in the inter-cotyledonary area. These results demonstrated that the variation of cotyledon in somatic embryos was closely related to procambial tissue differentiation and shoot apical formation.

Differentiation of Reaction Tissues in the First Internode of Acer saccharinum L. Seedling Positioned Horizontally (수평으로 위치한 은단풍(Acer saccharinum L.) 유식물의 제1절간에 있어서 반응조직의 분화)

  • 강경덕
    • Journal of Plant Biology
    • /
    • v.35 no.3
    • /
    • pp.211-217
    • /
    • 1992
  • In order to elucidate the formation of reaction tissues during the transition from primary to secondary growth, the developmental anatomy was conducted in the first internode of Acer sacchan'num seedling in horizontal position. During the transition from primary to secondary growth, tension wood(gelatinous fiber) was gradually developed on the upper side only, And the tension wood formation in the upper side of the horizontal first internode proceeds acropetally from base to apical portion. Some of the anatomical features of tension wood start to be in the primary vascular tissue and a typical tension wood show during the secondary growth, Therefore, the procambium seems to respond to the gravity as well as vascular cambium. For this reason, both procambium and vascular cambium has to regard as the same meristem, On the other hand, the upper side vessels were longer than those of the lower side in the horizontal first internode. The lateral-wall pitting of vessel elements, however, showed no differences between upper and lower sides which have alternate type. The width and height of rayon the upper side of horizontal first internode was larger as compared with the lower side.r side.

  • PDF

CND41, a DNA-binding protein in chloroplast nucleoid, and its function

  • Sato, Fumihiko;Murakami, Shinya;Chatani, Hiroshi;Nakano, Takeshi
    • Proceedings of the Botanical Society of Korea Conference
    • /
    • 1999.07a
    • /
    • pp.51-56
    • /
    • 1999
  • Plastids, which are organelles unique to plant cells, bear their own genome that is organized into DNA-protein complexes (nucleoids). Regulation of gene expression in the plastid has been extensively investigated because this organelle plays an important role in photosynthesis. Few attempts, however, have been made to characterize the regulation of plastid gene expression at the chromosomal structure, using plastid nucleoids. In this report, we summarize the recent progress in the characterization of DNA-binding proteins in plastids, with special emphasis on CND41, a DNA binding protein, which we recently identified in the choloroplast nucleoids from photomixotrophically cultured tobacco cells. CND41 is a protein of 502 amino acids which consisted of a transit peptide of 120 amino acids and a mature protein of 382 amino acids. The N-terminal of the 'mature' protein has lysine-rich region which is essential for DNA-binding. CNA41 also showed significant identities to some aspartyl proteases. Protease activity of purified CND41 has been recently confirmed and characterized. On the other hand, characterization of accumulation of CND41 both in wild type and transgenic tobacco with reduced amount of CND41 suggests that CND41 is a negative regulator in chloroplast gene expression. Further investigation indicated that gene expression of CND41 is cell-specifically and developmentally regulated as well as sugar-induced expression. The reduction of CND41 expression in transgenic tobacco also brought the stunted plant growth due to the reduced cell length in stem. GA3 treatment on apical meristem reversed the dwarf phenotype in the transformants. Effects of CND41 expression on GA biosynthesis will be discussed.

  • PDF

Glyphosate Toxicity: III. Detection of QB Protein in Thylakoid Membrane of Tomato Apical Meristem Using an Antibody Raised from Hybrid Protein of psb A and lac Z Gene (Glyphosate 독성: III. psb A와 lac Z 유전자의 Hybrid 단백질로부터 만들어진 항체를 이용한 토마토 정단분열조직의 Thylakoid막 내 QB 단백질의 검정)

  • Kim, Tae-Wan;Amrhein, Nikolaus
    • Korean Journal of Weed Science
    • /
    • v.15 no.3
    • /
    • pp.206-213
    • /
    • 1995
  • Glyphosate(N-[phosphonomethyl]glycine) applied to the assimilate-exporting leaves(i.e. third old leaf) of tomato(Lycopersicon esculentum Mil var. Moneymaker). Herbicide binding protein, QB protein(D1), has been immunoblotted using the antibodies raised against the hybrid-protein expressed by a part of spinach psb A gene cloned in frame with the 3'end of lac Z gene to allow expression of the ${\beta}$-galactosidase(EC 3.21.23) in Escherichia coli. Glyphosate has an effect on a turnover of D1 within photosystem II of thylakoid membrane. The dysfunction of D1 protein within light harvesting complex(LHC-II) seems to be a pleiotropic effect of glyphosate.

  • PDF

Multiple Shoot Formation by Apical Meristem Culture in Ipomoea batatas Poir. (고구마 정단분열 조직배양에 의한 多芽體 형성)

  • 은종선;김영선
    • Korean Journal of Plant Tissue Culture
    • /
    • v.26 no.2
    • /
    • pp.85-91
    • /
    • 1999
  • In sweet potato cultivars 'Mokpo #29' and 'Sanchunza', shoots from extplants were formed 100% on the MS medium with 0.1 ㎎/L NAA and 2.0 ㎎/L BA after 30 days of culture and roots produced from the base of stem at frequencies of 66.7% ('Mokpo #29') and 69.2% ('Sanchunza'), respectively, The media with 0.5∼4.0 ㎎/L BA were produced the greatest frequency of multiple shoot and the most of shoots developed rapidly into normal plantlets with rooting within 60 days of culture. Whereas the cultivar 'Keumsi' failed to produce normal shoot multiplication on the medium with cytokinins alone because of callusing of adventitious shoots. When single shoots with 1 to 2 nodes were excised from the multiple shoot or shoots covered with callus devoid of root and transferred to MS medium with 4.0 ㎎/L BA or kinetin. Host divided shoots showed the callus induction at the stem base and it was enable to obtain regenerated plantlets with shoot and root normally.

  • PDF

Study on the Forulation of Dormancy Bud and Inflorescence in Young Ginseng Plant (저년생 인삼의 잠아 및 화서형성에 관한 연구)

  • 안상득;김요태
    • Journal of Ginseng Research
    • /
    • v.11 no.2
    • /
    • pp.111-117
    • /
    • 1987
  • The phase and times on the development of dormancy bud in seedling, and those of flower organs in 2-year-old ginseng are different to those of over 2-,3-year-old plant, respectively. The growing aspects of dormancy bud in seedling were investigated from rooting stage (April, 8) to Mid-June, and those of flower organs in 2-year-old plant had done once in two days late in April after compound leaves were unfolded. Firstly, the formation of dormancy bud in seedling was begun on Mid-late in March. This is early about one month compare with those of over 2-year-old plant. Fine bud in seedling was formed between cotyledons, at W spot under young shoot. Secondly, development of flower organs in 2-year-old plant was completed from late of April to early of May after compound leaves of transplanted plant were unfolded. In tare, this is very different characteristics because plants of any other ages form the flower organs one year ago. Thirdly, flower organs of ginseng plant, over 3-year-old plant, always develop in the rhizome formed one year ago, but those of 2-year-old plant develop in apical shoot meristem.

  • PDF

In Vitro Flowering System (In Vitro 시스템에 의한 화호형성)

  • 류장렬;이행순;이광웅
    • Proceedings of the Botanical Society of Korea Conference
    • /
    • 1987.07a
    • /
    • pp.213-237
    • /
    • 1987
  • In vitro flowering system may minimize the confounded influence of non-floral meristem parts of plants in studying the relationship of a given treatment and flowering responses. We have induced flower buds from plantlets regenerated from zygotic embryo-derived somatic embryos of ginseng, which circumvented the normal 2-year juvenile period before flowering. The result suggests that the adulthood of ginseng root explants in the experiment previously conducted by Chang and Hsing (1980; Nature 284: 341-342) is not prerequired to flowering of plantlets regenerated through somatic embryogenesis. We have also induced flower buds from elongated axillary brandches from cotyledonary nodes by culturing ginseng zygotic embryos, seedlings, and excised cotyledonary nodes. It was found that 6-benzyladenine (BA) supplemented to the medium was essential for flowering, whereas abscisic acid (ABA) was inhibitory. Gibberellic acid(GA3) was also required for flowering when ABA was present with BA in the medium. The results suggest that cytokinins, gibberellins, and inhibitors play primary, permissive, and preventive roles, respective-ly, in the induction of flowering of ginseng. Tran Thanh Van (1980; Int. Rev. Cytol., Suppl. IIA: 175-194) has developed the "thin cell layer system" in which the induction of shoots, roots, or flower buds from epidermal layer explants were controlled by culture conditions and exogenous growth regulators in the medium, Utilizing the thin cell layer system, Meeks-Wagner et al. (1989; The Plant Cell 1: 25-35) have cloned genes specifically expressed during floral evocation. However, the system is too tedious for obtaining a sufficient amount of plant materials for biochmical and molecular biological studies of flowering. We have developed a garlic callus culture system and one obvious advantaging over the thin cell layer system is that an abundant cells committed to develope into flower buds proliferate. When the above cells were compared by two-dimensional gel electrophoresis with those which have just lost the competence for developing into flower buds, a few putative proteins specific to floral evocation were detected. The garlic callus culture system can be further explored for elucidation of the molecular biological mechanism of floral evocation and morphogenesis.hogenesis.

  • PDF