• Title/Summary/Keyword: G-banding

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Application of G- anad C-banding Techniques for Chromosome Analysis Using Testis of Mouse (Mouse의 정소이용 염색체 조사에 G- 및 C-banding법의 적용)

  • Choi, Yung-Hyun;Kwon, Yong-Won;Yun, Hee-Sun;Yoo, Mi-Ae;Lee, Won-Ho
    • Journal of Life Science
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    • v.8 no.1
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    • pp.60-66
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    • 1998
  • The mototic and meiotic chromosomal characteristics of ICR mice were investigated with G-and C-banding techniques. For the puposes, the chromosomal preparations were made with the modified air-drying method of Imal et al. Chromosomal analysis using testis could be observed mitotic as well as meitotic chromosomal behaviors, and the centromeric regions of all chromosomes including X chromosome were strongly stained in C-banded preparations. Nineteen autosomal bivalents and a single uniequal terminally associated X-Y bivalent in normal cells were observed during the late prophase and the metaphase of the meiosis I. The mean frequencies of previously dissociated X-Y chromosomes in the primary apermatocytes of the control group were 7.45%, but the frequencies of X-Y dissociation in the alkylating agents-treated group were about 3-4 times higher than that in the control group. Application of C-banding in meiotic stages could be certainly distinguish between vibalent type and univalents type of sex chromosomes.

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Allozyme Variation of 6-Phosphogluconate Dehydrogenase in the Freshwater Snail Genus Gyraulus (Pulmonata : Planorbidae)

  • Younghun Jung;Park, Yun-Kyu;Chung, Pyung-Rim
    • The Korean Journal of Malacology
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    • v.16 no.1_2
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    • pp.11-16
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    • 2000
  • The electrophoretic banding patterns of 6-phosphogluconate dehydrogenase (PGD) in the two different chromosomal ploidy groups of Gyraulus were compared. The monomeric or dimeric banding patterns or allelic variations in a locus of PGD were observed in four diploid populations (Osan, Sohre, Kimpo and Kangwha) of G. convexiusculus occurring in Korea, whereas the isozyme banding patterns encoded by at least 3 different loci were shown in the tetraploid populations of G. (Torquis) groups collected from Michigan, the U.S.A. Of 3 different tetraploid groups, G. (T.) circumstriatus group showed 3 monomorphic isozyme banding patterns, and the other 2 populations showed some allelic variations. Such results provided good evidence to differentiate tetraploid subgenus Torquis group from the diploid Gyraulus populations.

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Esterase Isozyme Banding Pattern in Wild Legume Plants (야생 콩과식물의 Esterase Isozyme Banding Pattern에 관한 연구)

  • 이성규
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.12 no.1
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    • pp.71-76
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    • 1992
  • Starch gel electrophoresis was used to examine the banding pattern of Esterase isozyme in the leaf, root-nodule and seedling of four wild legume species, Trifolim repense, Glycine soja, Phaseolus nipponensis and Vigna uexillata. The number of band, enzyme activity and migrating rate of esterase isozyme varies depending on the species and tissues of legume plants. The isozyme banding pattern in the cotyledon and radicle of T. repense showed same pattern, however, the number of band were varible among the cotyledon of G. soja, P. nipponensis and V. vexzllata, respectively. Est-1 in the leaf of G. soja, V, vexillata. root-nodule of G. soja and seedling of V. vexillata expreesed the highest enzyme activity. The Est-1 showed the rapidest migrating rate among the isozymes.

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G-, C-, and NOR-banding of Korean Native Pig Chromosomes (한국재래돼지의 G-, C-, 및 NOR-banding)

  • Sohn, S.H.;Kweon, O.S.;Baik, K.H.;Jung, W.;Cho, E.J.;Kang, M.Y.
    • Journal of Animal Science and Technology
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    • v.45 no.6
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    • pp.901-910
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    • 2003
  • Using the G-, C-, and NOR-banding techniques, a karyotyping for Korean Native Pig was performed. Blood samples were collected from 50 male Korean Native Pigs that had been bred at the National Livestock Research Institute and then blood cells were prepared from in vitro cultures followed by karyotyping; G-, C-, and NOR-banding patterns of metaphase chromosomes were analyzed. The karyotype of Korean Native Pig is 38, XX or XY which consists of 5 pairs of submetacentric chromosomes(Group I), 2 pairs of acrocentric chromosomes with short p-arm(Group II), 5 pairs of medium metacentric chromosomes(Group III), 6 pairs of acrocentric chromosomes(Group IV) and metacentric X and Y sex chromosomes. On GTG-banding, the Korean Native Pig exhibited a typical and identical banding pattern in each homologous chromosomes. Overall chromosomal morphology and positions of typical landmarks of the Korean Native Pig were virtually identical to those of Committee for the Standardized Karyotype of the Domestic Pig(CSKDP). However, numbers of G-bands of the Korean Native Pig chromosomes were more than those of CSKDP. In chromosomes 1, 3, 5, 6, 7, 8, 13, 14, 15, 16, 17, 18 and X, the Korean Native Pig exhibited more separated bands as compared with CSKDP. In C-banding patterns, although the quantity of heterochromatin was variable in each chromosome, most of the Korean Native Pig chromosomes had heterochromatic C-bands on centromeres. However, the heterochromatic C-band was constantly observed on the whole Y chromosome. In AgNOR staining, the NORs were located at centromeres on the chromosomes 8 and 10. The number of NORs per metaphase ranged from 2 to 4 giving a mean value of 2.13. The number of NORs were distributed on all chromosome pair 10 but not on chromosome 8. The sizes of NORs were also differed between homologous chromosomes 8. Numbers of NORs of Korean Native Pig were significantly higher than those of Yorkshire. The pattern of pig NORs was polymorphic in breeds, individuals and cells, especially on chromosome 8.

Study on chromosomes survey of Korea native dogs (국내 토종개의 염색체 조사에 관한 연구)

  • Park, Chang-Eun
    • Korean Journal of Veterinary Service
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    • v.34 no.3
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    • pp.291-296
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    • 2011
  • The karyotype of the domestic dog is widely accepted as one of the difficult mammalian karyotypes to work. In contrast to many other animals, knowledge about the canine karyotype is quite sparse. The dog has a total of 78 chromosomes; all 76 autosomes are acrocentric in morphology and show only a gradual decrease in length. But appear to be quite small and difficult to identify unambiguously. To purchased standardization of chromosome in Korea native dog, there were analyzed by conventional trypsin/Giemsa staining (GTG-banding techniques), and were compared with 4, 6, 8, 11, 13, 17 chromosome. There were no variations in karyotypes which were analyzed by conventional GTG-banding techniques, but differences were observed in G-banding patterns with Sapsaree, Jindo, Gyeongju DongGyeong dogs, Welshi-Corgi. It is not clear that these disagreements in G-banding patterns between strains of dog were caused by chromosome polymorphism or a difference in interpretation. Comparative analysis of the distribution patterns of conserved segments defined by dog paints in the genomes of the Korea native dogs demonstrates that their differences in the karyotypes of these three species could have resulted from acrocentric banding patterns.

Identification of Chromosomal Band Markers of the Korean Native Chicken (한국재래계의 염색체 분염 표지 분석)

  • Baik, K. H.;Lee, C. Y.;Sang, B. D.;Choi, C. H.;Kim, H. K.;Sohn, S. H.
    • Journal of Animal Science and Technology
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    • v.45 no.1
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    • pp.1-12
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    • 2003
  • The present study was carried out to establish the standard karyotype of the Korean Native Chicken and to find their chromosomal band markers using high-resolution banding technique. Chromosome analysis was performed on early chick embryos following in vitro culture of fertilized eggs of the yellow-brown and the red-brown lines of the Korean Native Chicken which had been established at National Livestock Research Institute. The high-resolution banding of the chromosome was achieved by treating the embryos with ethidium bromide and colchicine during culture. On GTG-banding, the Korean Native Chicken exhibited a typical chick banding pattern in all the macrochromosomes. Overall chromosomal morphology and positions of typical landmarks of the Korean Native Chicken were virtually identical to those of White Leghorn and International System for Standardized Avian Karyotypes(ISSAK). However, the lengths and G-band numbers of the Korean Native Chicken macrochromosomes were greater than those of White Leghorn and ISSAK. Especially in chromosomes 1 and Z, the Korean Native Chicken exhibited more separated bands in compared with ISSAK. In C-banding patterns, although a lot of observed cells had C-band polymorphic patterns, almost the Korean Native Chicken macrochromosomes had heterochromatic C-band on centromeres and/or near terminal part. However, the heterochromatic C-band was constantly observed at the end of q-arm of Z chromosomes and on the whole W chromosome. In addition, the Korean Native Chicken exhibited distinctive heteromorphic patterns of C-bands on the centromere of chromosome 3 and at the end of q-arm of Z chromosome between homologous chromosomes.

The Study of G- Banding Chromosome in Silkie (오골계의 염색체 분염법 (G-banding)에 따른 핵형분석에 관한 연구)

  • 강태석;오봉국;손시환
    • Korean Journal of Poultry Science
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    • v.12 no.2
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    • pp.83-87
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    • 1985
  • This experiment was carried out to identify the chromosomes of silkie. It was many difference from other breeds in morphology and characteristics. In this experiment, chromosomal analysis was used early embryos. In aspect of morphological chromosomes, chromosomal size and shape are similar to other breeds. The chromosomes of silkie were shown to morphlogy as follows. They were identified that chromosome #l and #2 were grouped as submentacentric, #3, #5 and #6 were telocentric #4 and #7 were acrocentric and #8 was metacentric chromosome. Zㆍsex chromosome was shown 5th, W-sex chromosome was 8th to 9th and they were metacentric chromosome, respectively. Each chromosome through the G-banding was shown the 3 dark bands in 1 p2, distinct light band in 1p1, dark band in 2p2, broad light band in 3pl, dark band from centromere and distal part in 4th chromosome and dark band in 5pl. Z-sex chromosome was shown dark at p-arm distal part.

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Chromosomal band pattern of black-striped field mouse (Apodemus agrarius) (한국 야생 등줄쥐의 고해상도 염색체분염상)

  • Oh, Seung-hyun;Yoon, Yeo-sung;Jin, Hee-Kyung;Seong, Je-kyung
    • Korean Journal of Veterinary Research
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    • v.44 no.2
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    • pp.159-162
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    • 2004
  • We investigated the cytogenetic characteristics of male black-striped field mouse (Apodemus agrarium) in Korea. Chromosome slides were obtained from blood cell cultures which were synchronized with thymidine blocking or not. In the chromosome slide which synchronization with thymidine blocking was employed on, the GTG(G bands by trypsin using Giemsa)-bands of high resolution were observed. The male black-striped field mouse has 48 chromosomes composed 46 autosomes and XY sex chromosomes. The centromeric regions of autosomes were positive to GTG-banding. According to this investigation, thymidine blocking in cell culture process was useful to get lengthened chromosomes. It may be necessary to employ RBG-banding technique to investigate complementary band patterns between R- and G-banding in black-striped field mouse.

Partial Mitotic Synchronization and Giemsa G-banding in Allium wakegi

  • Bong Bo Seo
    • Journal of Plant Biology
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    • v.38 no.1
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    • pp.33-38
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    • 1995
  • Hydroxyurea (HU), a DNA synthesis inhibitor, was tested as synchronizing agent in root-tip meristem of Allium wakegi. Roots were treated with 2.5mM HU for 14 h to accumulate meristem root-tip cells at the G1/S interface. After release from HU block, the cells re-entered the cell cycle with a high degree of synchrony. Synchronized mitotic frequency of A. wakegi was 22.7%, which was about 3.9 times as high as that of the control. The highest metaphase index(23.0%) was obtained when, 6 h after release from the HU block, the roots were treated with 0.05% colchicine for 2 h. Modifying various Giemsa staining protocols defined for animals and a few plant species, G-bands were visualized at prometaphase and metaphase chromosomes of A. wakegi. The higher degree of chromosome condensation, the less differential bands could be resolved. This is the first demonstration introduced partial mitotic synchronization into G-banding in plant.

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C-banded karyotypes of Allium (Alliaceae) sect. Sacculiferum in Korea (C-banding pattern에 의한 한국산 부추속 산부추절의 핵형 연구)

  • Ko, Eun-Mi;Choi, Hyeok-Jae;Oh, Byoung-Un
    • Korean Journal of Plant Taxonomy
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    • v.39 no.3
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    • pp.220-228
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    • 2009
  • C-banded karyotypes of eight taxa of Korean Allium sect. Sacculiferum were examined by means of Giemsa techniques. Each of the taxa had their own characteristic bands. Most of the bands on the somatic metaphase chromosomes were mainly located on the short arm, intercalary region and medium sized chromosomes. In addition, the heterochromatic bands were usually facultative, recognized as two spots, and all investigated taxa had a pair of satellites of heterochromatin. The similarities of total length and number of bands revealed that three varieties of A. thunbergii G. Don have a closer cytological relationship than the others. The C-banding patterns of A. longistylum and A. linearifolium were examined for the first time in this study, and the former was clearly distinguished from the others by the distribution and number of its bands. The proportion of heterochromatic bands suggested that A. thunbergii var. thunbergii is the most primitive, and A. sacculiferum the most advonced, within the section.