• Title/Summary/Keyword: somatic chromosome number

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Karyotype Analysis and Physical Mapping of rDNAs in Bupleurum longeradiatum (개시호 (Bupleurum longeradiatum)의 핵형분석과 rDNAs의 Physical Mapping)

  • Koo, Dal-Hoe;Seong, Nak-Sul;Seong, Jong-Suk;Bang, Kyong-Hwan;Bang, Jae-Wook
    • Korean Journal of Medicinal Crop Science
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    • v.11 no.5
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    • pp.402-407
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    • 2003
  • Karyotype analysis and chromosomal localization of 5S and 45S rDNAs using multi-color fluorescence in situ hybridization (McFISH) technique were carried out in Bupleurum longeradiatum. Somatic metaphase chromosome number was 2n=12. Karyotype was composed of three pairs of metacentrics (No.3, 4 and 6) and three pairs of submetacentrics (No. 1, 2 and 5). The length of somatic prometaphase chromosomes ranges from 2.55 to $5.05{\mu}m$ with total length of $18.15\;{\mu}m$. In FISH experiment, one pair of 5S rDNA signals was detected on the pericentromeric region of chromosome 4 and one pair of 45S rDNA signals was detected on the telomeric region of chromosome 2.

Heterochromatic Knob Number And Karyotype in Korean Indigenous Waxy Corn by Giemsa C-banding Pattern of Mitotic Chromosome (C-banding 패턴에 의한 한국 재래종 찰옥수수 염색체의 Heterochromatic knob 수와 핵형)

  • Lee, In-Sup
    • Journal of Life Science
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    • v.17 no.6 s.86
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    • pp.762-765
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    • 2007
  • A Giemsa C-banding method was used for the identification of somatic chromosomes and heterochromatic knob position in Korean indigenous waxy com (Zea mays L.). 5 inbred stocks were examined and their heterochromatic knob numbers ranged from 6 to 12. In comparison of homologous chromosomes of two stocks of YS-1 and MY-1, knob numbers, knob positions, arm ratios and relative length of chromosomes were different between the genotypes. The length of homologous chromosomes in YS-1 were generally larger than those of MY-1. The Giemsa method was proved to be useful for the identification of somatic chromosome and a C-banded diagram showing knob positions, arm ratios and relative length of chromosome could be used as a good tool to compare the characteristics of chromosomes of Korean indigenous waxy corn stocks.

Tumour Suppressor Mechanisms in the Control of Chromosome Stability: Insights from BRCA2

  • Venkitaraman, Ashok R.
    • Molecules and Cells
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    • v.37 no.2
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    • pp.95-99
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    • 2014
  • Cancer is unique amongst human diseases in that its cellular manifestations arise and evolve through the acquisition of somatic alterations in the genome. In particular, instability in the number and structure of chromosomes is a near-universal feature of the genomic alterations associated with epithelial cancers, and is triggered by the inactivation of tumour suppressor mechanisms that preserve chromosome integrity in normal cells. The nature of these mechanisms, and how their inactivation promotes carcinogenesis, remains enigmatic. I will review recent work from our laboratory on the tumour suppressor BRCA2 that addresses these issues, focusing on new insights into cancer pathogenesis and therapy that are emerging from improved understanding of the molecular basis of chromosomal instability in BRCA2-deficient cancer cells.

Cytotaxonomic Studies on the Umbelliferae Plants -Cytological Study and Fertility of Pollen in Umbelliferae- (산형과식물의 세포분류학적 연구 -Angelica속 및 Cnidium 속식물의 염색체수와 화분 결실도-)

  • Toh, Chung-Ae
    • Korean Journal of Pharmacognosy
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    • v.2 no.1
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    • pp.29-34
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    • 1971
  • A comparative study on Angelica and Cnidium, the two genera of Umbelliferae growing in Korea, was carried about the cytology and fertility of pollen. The somatic chromosome number of Umbelliferae was found almost to be 2N=22. Both species of Kang-whal and Chun-gung were found to be in polyploid with different chromosome numbers each other. The pollen fertility among the species of Angelica was high, but Toh-chun-gung was zero percent. The species of Angelica have been generated with pollen fertility, but species of Cnidium with only root or rootlet.

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A cytotaxonomic study of Allium (Alliaceae) sect. Sacculiferum in Korea (한국산 부추속 산부추절의 세포분류학적 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.170-180
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    • 2009
  • Somatic chromosome counts and karyotype analyses were carried out for eight taxa of Korean Allium sect. Sacculiferum. The basic chromosome number of sect. Sacculiferum was x = 8, and they could be cytologically divided into two groups, that is, a diploid group (2n = 2x = 16) containing A. thunbergii var. thunbergii, A. thunbergii var. deltoides, A. thunbergii var. teretifistulosum, A. deltoidefistulosum, A. longistylum, A. linearifolium and A. taqueti, and a tetraploid group (2n = 4x = 32) with only A. sacculiferum. All observed chromosomes were classified into metacentric, submetacentric and subtelocentric. The metacentric ones appeared in all treated taxa. One or two pairs of submetacentric chromosomes were observed in most taxa except A. sacculiferum, the unique taxon with subtelocentric chromosomes. All taxa had a pair of homologous chromosomes with satellites, and the B-chromosomes found in A. thunbergii var. thunbergii, A. deltoidefistulosum, A. sacculiferum and A. longistylum, were metacentric or telocentric. The karyotypes of A. longistylum and A. linearifolium were firstly investigated in this study. In conclusion, the somatic chromosome numbers and karyotypes for members of the sect. Sacculiferum were valuable characters in identifying taxa, investigating interspecific relationships and delimiting taxa. In addition, A. thunbergii var. teretifolium, an invalid name (homonym), was renamed as A. thunbergii var. teretifistulosum H. J. Choi & B. U. Oh.

Karyotype Analysis and Physical Mapping of rDNAs in Diploid Nicotiana plumbaginifolia (2배체 담배 Nicotiana plumbaginifolia의 핵형 분석과 rDNAs의 Physical Mapping)

  • Cho, Hye-Gyoung;Koo, Dal-Hoe;Kim, Soo-Young;Bang, Jae-Wook
    • Journal of Plant Biotechnology
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    • v.30 no.1
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    • pp.7-11
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    • 2003
  • Karyotype analysis and chromosomal localization of 5S and 45S rDNAs using FISH (fluorescence in situ hybridization) technique were carried out in Nicotiana plumbaginifolia. Somatic chromosome number of N. plumbaginifolia was 2n=20 and kyarotype was composed of three pairs of metacentric chromosomes (1,2 and 7) and seven pairs of submetacentric chromosomes (3, 4, 5, 6, 8, 9 and 10). Length of chromosomes was ranged from 2.29 to 4.50 ${\mu}{\textrm}{m}$. Chromosome 1 and 2 were identified as satellite chromosomes. In FISH experiment, one pair of 5S rDNA signals was detected on the centromeric region of chromosome 2 and one pair of 45S rDNA signals was detected on the terminal region of chromosome 1.

The Genetic Variation of Pinus densiflora and Pinus thunbergii by Giemsa C-banding (소나무 및 곰솔의 염색체(染色體) C-분염(分染)에 의한 유전변이(遺傳變異))

  • Park, Sang Jun;Son, Doo Sik
    • Journal of Korean Society of Forest Science
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    • v.80 no.4
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    • pp.383-392
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    • 1991
  • The genetic variation of Pinus densiflora and Pinus thunbergii by Giemsa C-banding was investigated and the results were as follows : 1. From Karyotype analysis of P. densiflora and P. thunbergii by Giemsa C-banding, somatic chromosome numbers of both species were 2n=24. 2. Chromosome of P. densiflora was M-type in arm ratio and they were no variation among individuals but variation in number and position of the secondary constriction and telomere banding among individuals. 3. P. thunbergii showed also M-type in arm ratio of chromosome, however, there was no variation in both number and position of the secondary constriction among individuals. 4. From chromosome C-banding, bands were appeared in the position of centromere and the secondary constriction in both P. densiflora and P. thunbergii. 5. In P. densiflora, the bands were shown on the secondary-constriction in chromosome No. 3, 4 and 7 of all individuals and the bands of the secondary constriction in chromosome No. 1, 2 and 5 showed variation among individuals. In chromosome No. 9, 10 and 11, the bands were shown in telomere and showed variation among individuals. 6. In P. thunbergii, the bands were shown on the secondary constriction in chromosome No. 2, 3, 7 and 8, and were shown no variation among individuals. There was no band on telomere. 7. The genetic variation by C-banding were shown in P. densiflora among individuals but no in P. thunbergii, and were shown on the secondary constriction in chromosome No. 4 of Pinus densiflora and in clnromosome No. 8 of Pinus thunbergii. These are the difference between the two species by C-banding.

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A karyotype analysis of Lactuca (Asteraceae) in Korea (한국산 왕고들빼기속(Lactuca)의 핵형분석)

  • Yang, Ji Young;Choi, Kyung;Pak, Jae-Hong
    • Korean Journal of Plant Taxonomy
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    • v.39 no.1
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    • pp.24-28
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    • 2009
  • The chromosome morphology of two Korean Lactuca (L. indica, L. triangulata) is reported herein. The chromosome number and karyotype of a naturalized plant, L. scariola are reported for the first time. The basic chromosome number was x = 9. Polyploid forms were not recorded. The karyotypes of L. indica, L. scariola, and L. triangulata were 2 n = 18 = 2 m+ 7 sm, 2 n = 18 = 1 m + 6 sm+ 2 st, 2 n = 18 = 2 m + 5 sm+ 2 st, respectively. Both L. indica and L. triangulata had satellites at the ends of their short arms. The haploid genome lengths of L. indica, L.scariola, and L. triangulata were $56.3{\mu}m$, $35.3{\mu}m$, and $72.5{\mu}m$ respectively. Each chromosome length of naturalized L. scariola was $2.7-5.2{\mu}m$; the smallest among Korean Lactuca. The chromosome lengths of L. indica and L. triangulata were $4.7-7.6{\mu}m$ and $2.9-7.9{\mu}m$, respectively. The karyotype of L. scariola differed from that of L.indica and L.triangulata both of which belong to sect. Tuberosae. Therefore, L. scariola is thought to belong to sect. Lactuca subsect. Lactuca.

Karyotyping Analysis and Bicolor FISH of Pimpinella hallaisanensis, an Endemic to Jeju Island (제주특산 한라참나물(Pimpinella hallaisanensis)의 핵형분석과 Bicolor FISH)

  • Kim, Soo-Young;Kim, Chan-Soo;Tho, Jae-Hwa;Lee, Joongku
    • Korean Journal of Plant Taxonomy
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    • v.38 no.2
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    • pp.151-162
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    • 2008
  • Chromosome analysis using karyotyping and bicolor FISH were carried out in Pimpinella hallaisanensis which is one of the endemic plants in Jeju island of Korea. The somatic methaphase chromosomes number of this plant was 2n=2x=22 and the size of this chromosomes ranged from 3.58 to $5.82{\mu}m$. The chromosome complements consisted of two pairs of metacentrics (chromosomes 1 and 2), four pairs of submetacentrics (chromosomes 3, 4, 6 and 8) and five pairs of subtelocentrics (chromosomes 5, 7, 9, 10 and 11). Using bicolor FISH, three pairs of 5S and four pairs of 45S rDNA loci were observed. Two pairs of 5S rDNA signals were detected on the end of the long arm of chromosome 4 and one pair of them were observed between long arm end and centromere. Another 45S rDNA signals were detected on the end of short arm of chromosome 4, 6, 10 and 11, respectively. Hence, the chromosome number reexamined using both conventional staining and FISH methods was different from previous report.

Two new records for the Korean flora: Commelina benghalensis L. and C. diffusa Burm. f. (Commelinaceae) (우리나라 미기록 식물: 고깔닭의장풀(Commelina benghalensis L.)과 큰닭의장풀(C. diffusa Burm. f.))

  • Kim, Chan-Soo;Kim, Soo-Young
    • Korean Journal of Plant Taxonomy
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    • v.41 no.1
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    • pp.58-65
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    • 2011
  • Commelina benghalensis L. and Commelina diffusa Burm. f. belonging to Commelinaceae, two species previously unrecorded as Korean flora, were collected in the lowlands of Jeju Island in Korea. Commelina benghalensis of the two species is different from others of Commelinaceae in Korea by having funnelform spathes fused at the proximal margin of involucral bracts and cleistogamous flowers. In addition, Commelina diffusa differ from others by having a three-valve capsule and lanceolate and a base cordate or rounded spathelike involucral bracts. The somatic chromosome number of Commelina benghalensis was 2n = 2x = 22 and the sizes of chromosomes were very small, ranging from 1.25 to 2.70 ${\mu}m$. However, the Commelina diffusa chromosome number exceeded 2n = ca. 100, and a precise count could not be obtained. These species are known to be distributed in tropical and subtropical regions of Asia and Africa below the latitude of Jeju Island of Korea.