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Science 10 July 1964:
Vol. 145. no. 3628, pp. 130 - 136
DOI: 10.1126/science.145.3628.130

Articles

Heterochromatic Chromosomes in the Coccids: The process of heterochromatization and the function of heterochromatin in coccid insects are reviewed

Spencer W. Brown and Uzi Nur

No abstract or summary view of this item is available. To view the full-text version, follow this link.

Article topics:

  • Oncology..Heterochromatin


THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
Epigenetic regulation of facultative heterochromatinisation in Planococcus citri via the Me(3)K9H3-HP1-Me(3)K20H4 pathway.
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J. Cell Sci. 120, 1072-1080
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Heterochromatin and tri-methylated lysine 20 of histone H4 in animals.
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Microtubule distribution during meiosis I in flea-beetle [Alagoasa (Oedionychus)] spermatocytes: evidence for direct connections between unpaired sex chromosomes.
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Facultative heterochromatization in parahaploid male mealybugs: involvement of a heterochromatin-associated protein.
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Development 128, 3809-3817
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The Relationship Between DNA Methylation and Chromosome Imprinting in the Coccid Planococcus citri.
S. Bongiorni, O. Cintio, and G. Prantera (1999)
Genetics 151, 1471-1478
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Genomic imprinting..
M Monk (1988)
Genes & Dev. 2, 921-925
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Selective silencing of eukaryotic DNA.
R Sager and R Kitchin (1975)
Science 189, 426-433
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Chromatin and Histones: Binding of Tritiated Actinomycin D to Heterochromatin in Mealy Bugs.
L. Berlowitz, D. Pallotta, and C. H. Sibley (1969)
Science 164, 1527-1529
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Histones in the Wild-Type and the Anucleolate Mutant of Xenopus laevis.
L. Berlowitz and M. L. Birnstiel (1967)
Science 156, 78-80
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Chromosomal Variation and Evolution.
G. L. Stebbins (1966)
Science 152, 1463-1469
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Heterochromatin.
S. W. Brown (1966)
Science 151, 417-425
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Science. ISSN 0036-8075 (print), 1095-9203 (online)