Exponential pattern of cell age distribution in dividing cells of plant meristems
- 1 March 1989
- journal article
- research article
- Published by Wiley in Cell Biology International Reports
- Vol. 13 (3) , 283-289
- https://doi.org/10.1016/0309-1651(89)90151-3
Abstract
In order to determine the pattern of cell age distribution in proliferating cells of Allium cepa roots we have measured by cytophotometry two cell size parameters, protein content and surface area projection, in cells that correspond to the entire proliferating population or only to the ana-telophase subpopulation. The size values of ana-telophase cells have been employed to construct theoretical size distributions for the entire proliferating cell population of the root meristem by assuming either a uniform or an exponential cell age distribution. Statistical comparison of theoretical distributions with the experimental one rules out a uniform cell age distribution and strongly favours an exponential age distribution similar to that found in bacteria.This publication has 11 references indexed in Scilit:
- Regulation of G 2 by cell size contributes to maintaining cell size variability within certain limits in higher plantsJournal of Cell Science, 1987
- Analysis of growth components in Allium rootsPlanta, 1986
- Regulation of G and G by cell size in higher plantsCell Biology International Reports, 1986
- The effect of partial protein synthesis inhibition on cell proliferation in higher plantsJournal of Cell Science, 1985
- Partial elimination of G1 and G2 periods in higher plant cells by increasing the S periodExperimental Cell Research, 1983
- Cell proliferation in file meristems: A general theory and its analysis by computer simulationEnvironmental and Experimental Botany, 1983
- Analysis of cell cycle in root meristemsJournal of Theoretical Biology, 1982
- Characteristics of root apical meristem cell population kinetics: A review of analyses and conceptsEnvironmental and Experimental Botany, 1980
- Cell population kinetics in the intestinal epithelium of the mouseExperimental Cell Research, 1959
- Growth Rate and Generation Time of Bacteria, with Special Reference to Continuous CultureJournal of General Microbiology, 1956