A unified matrix hypothesis of DNA-directed morphogenesis, protodynamism and growth control

Author:

Scherrer Klaus1

Affiliation:

1. Institut Jacques Monod, Université PARIS VII, 2 Place Jussieu, F 75251 Paris Cedex 05, France

Abstract

A theoretical concept is proposed, in order to explain some enigmatic aspects of cellular and molecular biology of eukaryotic organisms. Among these are the C-value paradox of DNA redundancy, the correlation of DNA content and cell size, the disruption of genes at DNA level, the “Chromosome field” data of Lima de Faria (Hereditas93:1, 1980), the “quantal mitosis” proposition of Holtzer et al. (Curr. Top. Dev. Biol.7:229 1972), the inheritance of morphological patterns, the relations of DNA and chromosome organisation to cellular structure and function, the molecular basis of speciation, etc. The basic proposition of the “Unified Matrix Hypothesis” is that the nuclear DNA has a direct morphogenic function, in addition to its coding function in protein synthesis. This additional genetic information is thought to be largely contained in the non-protein coding transcribed DNA, and in the untranscribed part of the genome.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry,Biophysics

Reference86 articles.

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3. Bennett, M. D. (1982) Nucleotypic basis of the spatial ordering of chromosomes in eukaryotes and the implications of the order for genome evolution and phenotypic variations. In:Genome Evolution (G. A. Dower and R. B. Flavell, Eds.), Academic Press, pp. 239.

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