• Title/Summary/Keyword: 감수분열상

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The embryological studies on the interspecific hybrid of ginseng plant (Panax ginseng x P. Quiuquefolium) with special references to the seed abortion (인삼의 종간잡종 Panax ginseng x P Quinquefoilium의 발생학적 연구 특히 결실불능의 원인에 관하여)

  • Jong-Kyu Hwang
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.5 no.1
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    • pp.69-86
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    • 1969
  • On the growing of the interspecific hybrid ginseng plant, the phenomena of hybrid vigoures are observed in the root, stem, and leaf, but it can not produce seeds favorably since the ovary is abortive in most cases in interspecific hybrid plants. The present investigation was undertaken in an attempt to elucidate the embryological dses of the seed failure in the interspecific hybrid of ginseng (Panax Ginseng ${\times}$ P. Quinque folium). And the results obtained may be summarized as follows. 1). The vegetative growth of the interspecific hybrid ginseng plant is normal or rather vigorous, but the generative growth is extremely obstructed. 2). Even though the generative growth is interrupted the normal development of ovary tissue of flower can be shown until the stage prior to meiosis. 3). The division of the male gameto-genetic cell and the female gameto-genetic cell are exceedingly irregular and some of them are constricted prior to meiosis. 4). At meiosis in the microspore mother cell of the interspecific hybrid, abnormal division is observed in that the univalent chromosome and chromosome bridge occure. And in most cases, metaphasic configuration is principally presented as 23 II+2I, though rarely 22II+4I is also found. 5). Through the process of microspore and pollen formation of F1, the various developmental phases occur even in an anther loclus. 6). Macro, micro and empty pollen grains occur and the functional pollen is very rare. 7). After the megaspore mother cell stage, the rate of ovule development is, on the whole, delayed but the ovary wall enlargement is nearly normal. 8). Degenerating phenomena of ovules occur from the megaspore mother cell stage to 8-nucleate embryo sac stage, and their beginning time of constricting shape is variously different. 9). The megaspore arrangement in the parent is principally of the linear type, though rarely the intermediate type is also observed, whereas various types, viz, linear, intermediate, Tshape, and I shape can be observed in hybrid. 10). After meiosis, three or five megaspore are some times counted. 11). Charazal end megaspore is generally functional in the parents, whereas, in F1, very rarely one of the center megaspores (the second of the third megaspore) grows as an embryo sac mother cell. 12). In accordance with the extent of irregularity or abnormality in meiosis, division of embryo sac nuclei and embryo sac formation cause more nucellus tissue to remain within th, embryo sac. 13). Even if one reached the stage of embryo sac formation, the embryo sac nuclei are always precarious and they can not be disposed to theil proper, respective position. 14). Within the embryo sac, which is lacking the endospermcell, the 4-celled proembryo, linear arrangement, is observed. 15). Through the above respects, the cause of sterile or seed failure of interspecific hybrid would be presumably as follows, By interspecific crossing gene reassortments takes place and the gene system influences the metabolism by the interference of certain enzyme as media. In the F1 plant, the quantity and quality of chemicals produced by the enzyme system and reaction system are entirely different from the case of the parents. Generally, in order to grow, form, and develop naw parts it is necessary to change the materials and energy with reasonable balance, whereas in the F1 plant the metabolic process becomes abnormal or irregular because of the breakdown of the balancing. Thus the changing of the gene-reaction system causes the alteration of the environmental condition of the gameto-genetic cells in the anther and ovule; the produced chemicals cause changes of oxidatio-reduction potential, PH value, protein denaturation and the polarity, etc. Then, the abnormal tissue growing in the ovule and emdryo sac, inhibition of normal development and storage of some chemicals, especially inhibitor, finally lead to sterility or seed failure. Inconclusion, we may presume that the first cause of sterile or seed abortion in interspecific hybrids is the gene reassortment, and the second is the irregularity of the metabolic system, storage of chemicals, especially inhibitor, the growth of abnormal tissue and the change of the polarity etc, and they finally lead to sexual defect, sterility and seed failure.

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A Cytogenetic Study on Induction of Diploid Spermatozoa in Poultry (가금류 정자 세포의 배수성 유기를 위한 세포 유전학적 연구)

  • 김철욱;손시환;전익수
    • Korean Journal of Poultry Science
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    • v.23 no.1
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    • pp.1-7
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    • 1996
  • In order to produce polyploid quail, the patterns of spermatogenesis and induction of diploid spermatozoa were analyzed by administration of spindle fiber inhibitor agent. Colcemid at the dose level of 37 $\mu\textrm{g}$ /100 g BW was Injected intraperitoneally to 50 Japanese quail males for 3 consecutive days. Five to 20 days after the first colcemid injection, the metaphase spreads from mitotic spermatogonia, primary spermatocyte and secondary spermatocyte were observed. By cytogenetic analysis, 9.4% of spermatogonia and spermatocyte cells in germ cells from the treated males was found to be polyploid cells. As compared with colcemld treated, the males with non-treated colcemid had only 2.3% polyploid cells in germ cells. The induction of diploid germ cells was highest in 10 days after the first colcemid injection and was lowest in 5 days after the first colcemid injection. These results suggested that between 10 to 15 days before maturation of the spermatozoa, the male germ cells were most sensitive to colcemid treatment. Spindle fiber inhibitor agent was also more sensitive to mitotic division of spermatogonia than meiotic division of primary and secondary spermatocyte.

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Histological Study of the Early Gonadal Development and Sexual Differentiation in Rhynchocypris oxycephalus (버들치, Rhynchocypris oxycephalus 초기 생식소 발달과 성분화에 관한 조직학적 연구)

  • 박인석
    • Development and Reproduction
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    • v.2 no.1
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    • pp.69-74
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    • 1998
  • The early gonadal development and sexual differentiation of Rhynchocypris oxycephalus are described from the stage of hatching to 150 days after hatching. During this peroid, the average length of the body grew from 0.64 cm to 5.96 cm. the primordial germ cells (PGCs), which could be recognized at the time of hatching, began to protrude into peritoneal cavity at a standard total length of 1.91 cm. At a standard total length of 2.29cm, initial ovarian differentiation wasidentified by the transformation of PGCs to meiotic oocytes. Finally, at the standard total length of 5.96 cm, the female gonads gradually developed towards migratory nucleus oocytes, characterisiing the maturation. Oocytes proliferated rapidly after sex differentiation while the testis entered a period of quiescence, as they continued to multiply but did not undergo growth until the standard total length of 4.00 cm. At a standard total length of 4.00 cm, spermatocytes arrested in thephase of interkinesis, Sertoli-like cells and sperm duct formation, with signs of meiotic activity, were observed. Therefore it may be concluded that R. oxycephalus belongs to the differentiated type of gonochoristic teleosts.

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Effects of Hormone and Na-Pyruvate on the In Vitro Maturation of Canine Oocytes (개 난자의 체외성숙에 미치는 호르몬과 Na-Pyruvate의 영향)

  • Kim Cheon-Ho
    • Reproductive and Developmental Biology
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    • v.30 no.1
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    • pp.7-11
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    • 2006
  • This study was conducted to examine the effects of hormone and sodium pyruvate on in vitro maturation of canine oocytes. Canine oocytes were collected from the ovaries of dogs and cultured in NCSU-37 medium with hormones and sodium pyruvate for 72 hr. Oocytes matured to the metaphase II (MII) stage were observed only from estradiol $17{\beta}\;(E_2)$, and the presence of gonadotropin did not improve the nuclear maturation. No oocytes were developed to the MII stage when $E_2$ was added to medium during the first 6 and 24 hrs of culture period. The presence of $E_2$ during the whole culture period enhanced the nuclear maturation to the MII stage (6.0%, P<0.05). High concentration of sodium pyruvate (2.5 mM) slightly enhanced the nuclear maturation to the metapahse I (HMI) stage, but not the MII stage. the result of the present study shows that the presence of $ E_2$ during the whole culture period of 72 hr enhances the maturation of canine oocytes to the M stage, but sodium pyruvate does not affect the nuclear maturation of the canine oocytes.

Microtubule and Microfilament Dynamics in Porcine Oocytes during Meiotic Maturation, Fertilization and Parthenogenesis (돼지 난자의 성숙, 수정 및 단위발생시 Microtubule과 Microfilament의 움직임)

  • 김남형;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.19 no.3
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    • pp.205-216
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    • 1995
  • Microtubules와 micrfilaments는 포유동물 난자이 주요한 세포 구조물들로, 이들은 난자의 성숙, 수정 및 배발달시 핵질의 이동과 세포질 분열에 직접 관여하는 것으로 알려져 왔다. 난자내 세포구조물의 정확한 움직임은 정상적인 배 발달을 위해 필수적이다. Microtubules는 $\alpha$, $\beta$- bubulin이 서로 연결되어 이루어져 있으며, 수정시 웅성.자성전핵 움직임과 세포분열시, 유사 및 감수분열시 그 역할을 한다. 생쥐를 제외한 대부분의 동물에서 microbubules의 역할은 수정시 정자가 centrosome을 난자내로 이전하여 sperm aster를 형성함으로써 시작된다고 보고되고 있다. 따라서 정자의 도움없이 배발달이 일어나는 단위발생시 microbubules의 형성은 연구들 사이에 흥미로운 연구대상이 되고 있다. 한편 microfilaments는 세포분열시 세포질을 분할하는 기계적인 역할을 하는 것으로 알려져 있으며, 최근 생쥐 난자에서는 정자의 난자내 융합과 웅성 및 자성 전핵의 이동에 관여한다고 보고되고 있다. 포유동물 난자의 체외성숙, 체외수정을 유도할 때 여러 가지 비정상적인 핵움직임과 세포분열이 관찰되어지고, 낮은 배발달율이 보고되고 있는데, 최근 연구자들은 세포구조물, 즉 microtubules와 microfilaments의 비정상적인 역할에서 기인한다고 보고 있다. 따라서 포유동물 난자의 성숙.수정 및 단위발생시 세포구조물의 움직임과 역할 및 상호관계에 대한 정확한 이해는 체외수정율 및 배발달 향상에 중요한 기초자료로 이용되리라고 본다.

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Cytogenetic Analysis Using Mitosis, Meiosis Chromosomes and bicolor Fluorescence in situ Hybridization of Bupleurum latissimum Nakai (체세포분열과 감수분열 및 bicolor FISH를 이용한 섬시호의 세포유전학적 분석)

  • Kim, Soo-Young;Bang, Jae-Wook;Lee, Joong-Ku
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.6
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    • pp.354-359
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    • 2006
  • Chromosome analysis using mitosis, meiosis and bicolor FISH were carried out in Bupleurum latissimum Nakai, which is one of the endemic plants in Ulleung island of korea. The somatic methaphase chromosomes number of this plant was 2n = 2x = 16 and the chromosome complements consisted of six pairs of metacentrics and two pairs of submetacentrics. The size of chromosomes ranged 2.40${\sim}$4.20 ${\mu}$m and NOR (nucleolus organizer region) chromosome did not observed using conventional staining. In meiosis chromosomes, metaphase-I and anaphase-I were observed. Metaphase-I anaphase-I showed 8 bivalents and chromosomes migration to make two daughter cells. Using bicolor FISH, one pair of 5S and 45S rDNA signals were detected on the centromeric region of chromosome 3 and the end of short of chromosome 2,respectively. We also observed the NOR using 45S rDNA probe.

Analysis of Complex Cell Cycle Occurring in the Rodent Testis by Laser Scanning Cytometer

  • 박미령;주학진;천영신;이미숙;김진회
    • Proceedings of the KSAR Conference
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    • 2001.03a
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    • pp.37-37
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    • 2001
  • 포유동물의 정자형성과정 (spermatogenesis) 은 유사분열과 감수분열이 동시에 일어나는 매우 복잡하지만, 효율적으로 생식세포를 증식, 분화시키는 시스템이다 정상적인 spermatogenesis가 일어나는 testis에서는 haploid (IN), diploid (2N), 그리고 tetraploid(4N)과 같은 핵형을 갖는 세포들이 일정한 비율로 존재한다. DNA flow cytometry(DNA FCM) 는 세포의 핵형(ploidy)을 신속·정확하게 측정하여, 1N, 2N 그리고 4N에 대한 비율을 예측할 수 있어서, 생식세포를 포함한 다양한 유형의 세포주기를 분석하는데 적용되어져 왔다. 세포주기 분석법 중 이와 같은 FCM이외에, flow cytometer와 static image cytometer를 결합시켜 새롭게 고안된 laser scanning cytometer (LSC)가 있다. 그리고, 이제까지 LSC를 사용한 spermatogenesis에 관한 연구에 대해서는 보고된 바가 없다. 본 실험은 설치류에 있어 각기 다른 발달단계에 있는 정상적인 정소세포를 분리하여 PI (propidium iodide) 로 DNA를 염색한 후, DNA함량을 LSC로 분석하였다. 이것을 FCM에 의한 정소세포의 DNA분석과 비교·검토하였으며, 이 방법을 정상적인 spermatogenesis 가 일어나지 않는 동물시스템에 적용시켰다. 생식세포를 소멸시키기 위해 항암제인 busulfan과 비타민 A를 결핍시켜 이것이 세포주기의 어떤 시점에서 어떻게 작용하여, 생식세포를 소멸시키는지 알아보았다. 위의 실험·분석결과로부터 LSC를 사용한 DNA함량과 핵형의 결정은 FCM과 동일한 수준의 정확성을 제시하였다. busulfan 또는 비타민 A의 결손은 살아있는 세포의 80% 이상이 2N의 핵형에 해당하는 G0/G1 기에 있는 것으로 나타났다. 그리고 1N:2N 및 4N:2N의 핵형비율의 변화를 가져왔다. 이러한 자극은 생식세포주기제어에 관여하며, 생식세포가 증폭하고 분화로 들어가는 단계를 차단, G0/G1 기에서 정체(arrest)되는 것으로 시사된다.

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The Gonadal Development and Sex Differentiation in the Spotted Sea Bass, Lateolabrax maculatus (점농어, Lateolabrax maculatus의 생식소 발달과 성분화)

  • 이원교;곽은주;양석우;김정우
    • Development and Reproduction
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    • v.4 no.2
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    • pp.195-201
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    • 2000
  • Sex differentiation process of the spotted sea bass, Lateolabrax maculatus, was investigated by histological method. The fish samples were collected from just after hatching to 365 days later. The primordial germ cells and genital ridge were appeared separately hanging under air bladder in 30-day larva (total length: 11.7~13.2 mm), and were unified into the undifferentiated gonads in 40-day larva (12.5~14.0 mm). The ovarian differentiation was started in 60-day juvenile (23.6~27.0 mm). The somatic tissues were elongated in tip of both ends of undifferentiated gonad and were fused each other. The complete ovarian cavity was appeared in 80-days juvenile(33.1~42.5 mm). The testicular differentiation was initiated in 70-day juvenile (24.8~31.6 mm). The rudiment of sperm duct was appeared in the center of the undifferentiated gonad. The meiosis of germ cells in the ovary was started in 168-day juvenile (88.0~115.4 mm). In 287-day juvenile (175.1~233.6 mm), the ovary was filled with both of chromatin stage and perinucleolus stage oocytes. The meiosis of male germ cells was started in 245-day juvenile (124.4~168.3 mm). However, the seminiferous tubules of testis were filled with numerous sperm in 365-day juvenile (162.5~253.8 mm). The sex ratio of male and female was 1:1.38. Considering these results, the spotted sea bass was showed differentiated type in sex differentiation and gonochorism in sexuality.

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Effect of Temperature at Flower Blooming Time on the Fertilization and Development of Embryo in the Cultivars of Tongil Line Rice (통일형품종의 개화기 온도가 수정 및 조발육에 미치는 영향)

  • Man-Sang Lee;Nou-Poung Park;Toe-O Kwon;Seok-Hong Park
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.24 no.1
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    • pp.30-36
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    • 1979
  • The fertilizations of cv Palkweng, Noupoung, and TN 1 which were crossed artificially at 2$0^{\circ}C$ and 3$0^{\circ}C$ were examined. The meiosis and the rate of maturity of the above 3 cultivars, Iri #326, Milyang #29, Suwon #264, and 3 others which were transplated at different times in paddy field were examined, and the results of which were as follows. 1. Palkweng at 3$0^{\circ}C$ was fertilized within 1.5~4.0 hours ,after pollination and at 20\circ C was done within 2.8~4.5 hours after pollination. 2. Noupoung and TNI at 3$0^{\circ}C$ were fertilized within 2.0~5.5 hours after pollination and at 2$0^{\circ}C$ were done within 3.0~6.0 hours after pollination. 3. The rates of fertilization of the cultivated rice plants at 2$0^{\circ}C$ were dropped in general. TN 1 at 2$0^{\circ}C$ was often fertilized abnormally. 4. In the development of embryo, Palkweng was the earliest at 3$0^{\circ}C$ and TN 1 was the earliest at 2$0^{\circ}C$. 5. Although the time of transplant was late, the pollens of Palkweng was normal because the meiosis of that was normal. but the pollens of TNI was sterile in general because of the abnormal meiosis.

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