• Title/Summary/Keyword: Axolotl

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Influence of Cu[II] on the Growth of Korean Axolotl, Hynobius leechii (동이온이 도롱뇽유생의 성장에 미치는 영향)

  • Park, Jin Ho;Won Hark Park;Sang Ock Park
    • The Korean Journal of Ecology
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    • v.6 no.2
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    • pp.106-113
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    • 1983
  • The growth of Korean axolotl., Hynobius leechii, was analyzed in natural water as control group and in six copper ion groups contaminated by 0.1, 0.2, 0.3, 0.4, 0.5, 0.6 ppm of copper ion. The copper ion checks the growth of the axolotl. The axolotl was not survived during 30 days in the copper ion of 0.3ppm, and, in the 0.4ppm the axolotl was not survived during 10 days after hatch. The growth of head width and body length show a convexing increase pattern, while that of hind leg shows a concaving increase pattern. The copper ion checks the development of hind leg. In the growth quantity of head width, body length and hid leg, that of natural water show the most rapid increase pattern, and copper ion groups of 0.1, 0.2, 0.3ppm follow in that order. The coefficient of relative growth($\alpha$) of control group is the greater value, and the copper ion groups of 0.1, 0.2, 0.3ppm follow in that order. The contaminated groups show the negative allometry in the relative growth of the containated groups to the natural water. Body length shows positive allometry, while hind leg shows negative allometry in the relative growth to head width.

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Detailed morphological analysis of axolotl sperm

  • Keskin, Ilknur;Gurgen, Duygu Gursoy;Avinca, Didem;Ozdemir, Ekrem Musa;Keskin, Suat Utku;Karabulut, Seda
    • Korean Journal of Veterinary Research
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    • v.61 no.3
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    • pp.25.1-25.7
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    • 2021
  • The axolotl has extraordinary regeneration capacity compared to other vertebrates. This remarkable potential has been attributed to its life-long neoteny, characterized by the exhibition of embryonic characteristics at the adult stage. A recent study provided a detailed morphological analysis of the sperm morphology of the Ambystoma mexicanum using routine and detailed histological techniques. The primary purpose of the present study is to describe a simple and inexpensive method for evaluating the morphology of axolotl sperm. In this study, spermatophore structures were collected and spread on slides and air-dried. The slides were stained with periodic acid Schiff, toluidine blue, Masson's trichrome, Giemsa, Spermac, and Diff-Quik dye for a morphological examination. The slides were coated with gold/palladium for a scanning electron microscopy examination. The sperm of the axolotl consisted of an elongated head, a neck, and a flagellum covered with an undulating membrane. The lengths of the midpiece, tail, and head were 8.575 ㎛, 356.544 ㎛, and 103.661 ㎛, respectively. In the flagellum part, the wavy membrane structure, whose function has not been explained, surrounds the tail. The data obtained from this study will constitute an important step in designing future research on the reproductive and regeneration capacity of the axolotl.

The expression and function of FGF-8 in limb development and regeneration of mexican axolotl, Ambystoma mexicanum

  • Han, Man-Jong;Kim, Won-Sun
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 1998.07a
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    • pp.57-58
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    • 1998
  • From the present study, following conclusions can be drawn: 1. lide in other species, axolotl FGF-8 is proposed to play a similar role in the early phase of limb development. However, the mechanism of its expression might be somewhat different from amniotes considering its characteristic mesenchymal expression. 2. In the regenerating axolotl limbs, Fgf-8 expression profile suggests that it is involved in wound gealing, dedifferentiation, and blastema formation. 3. Exoggenously supplied FGF-8 can accelerate blastema formation and concomitantly increase the Msx-1 expression level at the early stage of limb regeneration. Furthermore, it can partially substitute for nerve factor(s) as has been indicated by the induction of blastema formation in the denervated regenerates after FGF-8 application. 4. The unique expression feature of Fgf-8 in hte mesenechymal tissue of the regenerating axolotl limb might be casually related to its remarkable regeneration capacity of urodele.

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The Mexican Axolotl (Ambystoma mexicanum) as An Experimental Material for Studies in Embryology: II. Developmental Genetics

  • George M. Malacinski;Chung, Hae-Moon
    • The Korean Journal of Zoology
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    • v.20 no.3
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    • pp.149-157
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    • 1977
  • At present over 3 dozen mutant genes have been recognized in the Mexican axolotl. These genes, all recessives, are categorized in 5 groups according to the nature of their effects and the developmental stage at which their phenotype is predominately expressed. They are genes affecting the oogenesis (maternal-effect genes), genes affecting the size of the nucleolus, genes affecting the development of specific tissues and organs, genes exert lethal effects on all cells or tissues (autonomous lethals), and genes affecting pigment cells. This report describes briefly the phenotypes and some of the current research applications of those genes.

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Effect of Retinoic Acid on Fgf-8 Expression in Regenerating Urodele Amphibian limbs

  • Han, Man-Jong;Kim, Won-Sun
    • Animal cells and systems
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    • v.6 no.4
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    • pp.301-304
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    • 2002
  • In our previous study, we have shown that Fgf-8 is expressed in the basal layer of the apical epithelial cap (AEC) and in the underlying thin layer of mesenchymal tissue of the regenerating limbs of Mexican axolotl, Amby-stoma mexicanum. Our present RT-PCR data also demonstrate that Fgf-8 transcript is localized both in the mesenchymal and epidermal tissues. To understand the effect of retinoic acid (RA) on the expression of Fgf-8 in the regenerating axolotl limbs, RA was injected intraperitoneally at the dediffer-entiation stage of limb regeneration. The RA treatment caused 8 change in the Fgf-8 expression profile of the regenerating limbs. In RA-treated limbs, duration of Fgf-8 expression was prolonged and a high level of expression was maintained during dedifferentiation and blastema formation stages. These results suggest that Fgf-8 is an important molecule in the process of pattern duplication of regenerating salamander limbs evoked by RA treatment.

Dedifferentiation Correlates with the Expression of Lysosomal Acid Phosphatase in the Limb Regenerates of Mexican Axolotl (멕시코산 엑소로틀 다리 재생조직의 탈분화와 리소솜 산성탈인산화효소의 발현)

  • Seo, Kwang-Seok;Park, Sook-Kyung;Ju, Bong-Gun;Jeon, Sang-Hak;Kim, Won-Sun
    • Development and Reproduction
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    • v.2 no.1
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    • pp.53-62
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    • 1998
  • The lysosomal acid hydrolases including lysosomal acid phosphatase (LAP) are believed to play an important role in intracellular and extracellular degradation. LAP was reported to increase its activity in dedifferentiation stage during urodele limb regeneration. In the paresent study, LAP localization in the Mexican axolotl (Ambystoma mexicanum) limb regenerates was investigated by immunohistochemistry. LAP immunoreactivity with monoclonal antibody against Korean salamander (Hynobius leehii) LAP was observed mainly in the wound epidermis, blastema cells, muscle, and cartilage which were under dedifferentiation process in axolotl limb regenerates. Moreover, LAP immunoreactivity increased gradually during the early phase of lib regeneration and reached the peak level at dedifferentiation stage. However, as redifferentiation begans, LAP immunoreactivity decreased slowly to the basal level. Retinoic acid (RA) which is known to induce skeleton pattern duplication in regenerating urodele limb appears to enhance LAP immunoreactivity. In the RA-treate limg regenerates, LAP immunoreactivity was higher than in the normal regenerates. In addition, the LAP expression period was more extended in the RA treated regenerates than in the normal regenerates. These results suggest that RA is involved in the extension of dedifferentiation state in RA-treated limb regenerate.

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The Mexican Axolotl (Ambystoma mexicanum) as Experimental Material for Studies in Embryology: I. General Introduction

  • Chung, Hae-Moon;George M. Malacinski
    • The Korean Journal of Zoology
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    • v.20 no.1
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    • pp.49-56
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    • 1977
  • Mexican axolotl(Ambystoma mexicanum)의 생활사, 기원, 실험실내에서의 유지 및 교배방법 등을 소개한다. 이 종은 난자형성과 발생의 연구면에서 몇가지 대단히 유리한 점을 가지고 있다. 즉 큰 염색체를 가진 대형의 난자를 보유하고 있는 점, 난자가 수란관을 통과하는 동안 총배설강내에서 수정하는 점, 초기 배아의 실험발생학, 세포학 및 생화학적 연구에 쉽사리 이용할 수 있다는 점과, 무엇보다도 난자형성과 배발생동안의 여러 가지 중요한 기능에 영향을 미치는 30여개 이상의 유전자를 이용하여 유전자조절현상을 밝혀낼 수 있다는 점이다.

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Forskolin Effect on the Lineage Specification of Trunk Neural Crest Cells in vitro

  • Jin, Eun-Jung
    • Animal cells and systems
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    • v.6 no.1
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    • pp.69-74
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    • 2002
  • Recent evidence has suggested that trunk neural crest cell generally assumed to have equivalent differentiation potentials, demonstrate differentiation bias along the anterior/posterior axis. In amphibian and fish, neural crest cells give rise to three chromatophore types, melanophores, xantho-phores, and iridophores. Each pigment cell type has distinct characteristics but there is speculation about the cellular plasticity that exists among them. Neural crest cells migrate along specific routes, ventromedially and dorsolaterally. Neural crest cells that travel dorsolaterally are the first cells to begin migration in the axolotl and are the major contributors to the visible pigment pattern. Many factors and mechanisms that are responsible for guiding migratory neural crest cells along potential pathways or determining their fate remain unknown. A single lineage of the crest, which becomes restricted to one of the three pigment cell types, gives us the opportunity to examine the existence of neural crest stem cell populations and cellular plasticity. Study presented here showed results from recent in vitro studies designed to identify parameters influencing differentiation events of individual neural crest-derived pigment cell lineages. Melanophore production from neural crest explants originating from different levels along the anterior/posterior axis of wild type-axolotl embryos were compared and demonstrate that the differentiation of melanophores is enhanced in subpopulation of neural crest treated with forskolin. Forskolin (an adenylate cyclase activator) increases intracellular CAMP concentration and eventually activates the protein kinase-A signaling pathway. Melanophore number, melanin content, and tyrosinase activity in explants taken from the anterior-most region of the crest increased significantly in response to forskolin treatment. This study suggests implications of region specific influences and developmental regulation in the development of pigment pattern.

Comparative Studies on the Developmental Capacity by Interspecific Nuclear Transplantation (이종간의 핵치환에 의한 발생수행능력의 비교 연구)

  • 이자경;정해문
    • The Korean Journal of Zoology
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    • v.31 no.1
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    • pp.29-34
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    • 1988
  • In order to investigate the role of nuclei and cytoplasm in early embryogenesis, interspecific nuclear transplantation was carried out Nuclei of one species of amphibian was transplanted into enucleated egg of another species. In interspecific hybrids between Rana species, development was arrested before or right after the dorsal lip formation. In intergenetic hybrids between Rana, Xenopus and axolod, developmental arrest took place at late blastula stage. Comparing the developmental capacity of each nudeocytoplasmic hybrid, the more distantly related the species, the earlier does development arrest. The general rule is that nuclear transfers between any amphibian species will form a regulary cleaved late blastula. Two plausible factors relate to limitation of tite developmental capacity of nudeocytaplasmic hybrids. One is an irreversible change in grafted nuclei and another is tunctional incompatibility between the recipient cytoplasm and transplanted nucleus. The later is postulated a more possible cause of the arrestrnent.

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Lysosomal Acid Phosphatase in Regenerating Salamander Limbs Studied with Monoclonal Antibodies (리소솜 Acid Phosphatase에 대한 단일 항체를 이용한 도롱뇽 다리 재생 연구)

  • 주봉건;박상렬;최의열;김원선
    • The Korean Journal of Zoology
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    • v.39 no.4
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    • pp.426-436
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    • 1996
  • In previous studies, we have shown that lysosomal add phosphatase (LAP) activity increases at the dedifferentiation stage in the regenerating larval limbs of salamander, Hynobius leechii. Monoclonal antibodies against LAP were generated to determIne the spatial and temporal distribution of the protein In the regenerates.A total of 22 monoclonal antihodies recognizIng different epftopes of the protein were obtained, of which five strongly stained the regenerating limb by imunohistochemistry. in LAP immunohistochemical examination, LAP showed distribution coincident with the state of dedifferentiation, both spatially and temporally, in the limb regenerates. When unfractioned protein of regenerating salamander limbs were separated by gel electrophoresis and immunoblotted, the antibodies recognized a single protein band of 53 kl)a, which comigrates with a monomerlc subunit of IAR Using the anti-IAP antibodIes as probe, we investigated the cross-reactivities of LAPs from other sources. The immunoreadive bands on Western blots appeared to be the same In molecular mass-53 kl)a in axoloti and Xenopus, but no protein band was detected in mouse, Drosophila, or C. elegans.These results show that the antibodies generated in this study spedfically recognize Hynoblus leeclili IAp and that IAPs may be highiy conserved among amphibians. Furthermore, the distdbution of the protein is consistent with a role for LAP in the dedifferentiation process of limb regeneration.

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