Abstract
Salivary glands were fixed in cold 1 per cent osmium tetroxide in veronal-acetate buffer containing sucrose and embedded in methacrylate mixture or Araldite. The salivary gland nuclei of sciarids show a continuous production of nucleoli, which remain multiple and not consolidated into a single structure. The earliest recognizable nucleoli, which we call "elementary nucleoli," are aggregations of a few paired 40 A fibrils and a few 150 A particles, at many points within chromosome bands. Further development consists of the detachment of the elementary nucleoli from their points of origin and their subsequent mutual coalescence. As a result, dense patches of nucleolar material are formed which become large nucleoli at the surface of chromosomes, either attached to the band or free. The fully formed nucleoli have a characteristic dual structure with a narrow dense periphery and a broader less dense internum. Fibrils and particles are present in both regions, and the difference in density reflects differences in the packing of the two structural elements. The duality in structure is lost in later stages. The nucleolar fibrils appear to be similar to the chromosomal fibrils. The 150 A particles in nucleoli, chromosomes, and nuclear sap seem identical. The significance of these observations is discussed for nucleologenesis in general.
Keywords
CELL NUCLEUS
SALIVARY GLANDS
MeSH Terms
Cell Nucleolus
Cell Nucleus
Chromatin
Chromosomes
Electrons
Microscopy
Salivary Glands
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
JACOB J
SIRLIN J L
References (18)
18 references, click to expand
-
Further observations on isolated polytene nuclei.
Exp Cell Res. 1962 Aug;27:363-6
PMID: 13913439
-
Interpretation of nucleolar inclusions.
Nature. 1958 May 31;181(4622):1544-5
PMID: 13566066
-
Ultrastructure and molecular organization of genetic systems.
Can J Genet Cytol. 1961 Jun;3:95-120
PMID: 13741828
-
Studies on nuclear fine structure.
Brookhaven Symp Biol. 1959 Nov;12:134-52
PMID: 13836127
-
Structure and mode of formation of the nucleolus in meristematic cells of Vicia faba and Allium cepa.
J Biophys Biochem Cytol. 1958 Nov 25;4(6):777-84
PMID: 13610944
-
Effects of varying the vehicle for OsO4 in tissue fixation.
J Biophys Biochem Cytol. 1957 Sep 25;3(5):827-30
PMID: 13475399
-
Function, development and evolution of the nucleolus.
Nature. 1962 Jul 14;195:114-7
PMID: 13913438
-
Electron microscope researches on the ultrastructure of nucleoli in animal tissues.
Z Zellforsch Mikrosk Anat. 1958;48(1):10-23
PMID: 13604846
-
Amphibian oocyte nuclei.
J Morphol. 1959 May;104:377-414
PMID: 13804886
-
A study of fixation for electron microscopy.
J Exp Med. 1952 Mar;95(3):285-98
PMID: 14927794
-
Structure of the nucleolus as revealed by the electron microscope; a preliminary report.
Bull Johns Hopkins Hosp. 1951 Dec;89(6):468-73
PMID: 14879212
-
Organizational patterns within chromosomes.
Int Rev Cytol. 1960;9:77-127
PMID: 14404880
-
METABOLISM AND MORPHOLOGY OF RIBONUCLEOPROTEIN PARTICLES FROM THE CELL NUCLEUS OF LYMPHOCYTES.
Proc Natl Acad Sci U S A. 1960 Apr;46(4):432-44
PMID: 16590624
-
Differentiation of nucleoproteins by inactivation of protein-bound amino groups and staining with toluidine blue and ammonium molybdate.
J Histochem Cytochem. 1959 May;7(3):164-81
PMID: 13664960
-
[The ultrastructure of the nucleolus of some animal cells as revealed by the electron microscope].
Experientia. 1952 Feb 15;8(2):58-9
PMID: 14945402
-
Electron microscopy of basophilic components of cytoplasm.
J Histochem Cytochem. 1954 Sep;2(5):346-75
PMID: 13192325
-
The submicroscopic structure of Balbiani-ring.
Exp Cell Res. 1954 Feb;6(1):195-201
PMID: 13141997
-
Electron-microscope studies of Drosophila salivary-gland chromosomes.
Chromosoma. 1956;8(1):30-52
PMID: 13343490