The program for cellular differentiation in Volvox carteri as revealed by molecular analysis of development in a gonidialess/somatic regenerator mutant.
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Summary
Molecular genetic support is provided for a model which postulates that three types of genes are crucial for converting the sequential program of differentiation seen in more primitive volvocalean algae to the dichotomous program of germ-soma differentiation that occurs in wild-type V. carteri.
- Type
- article
- Published
- 1991-06-01
- Cited by
- 51
- References
- 20
- OpenAlex
- https://openalex.org/W1881137434
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12918071
Keywords
Somatic cell, Biology, Mutant, Cell biology, Gene
References
- Effects of senescence on somatic cell physiology in the green alga Volvox carteri.
- Genetic, biochemical, and molecular approaches to Volvox development and evolution.
- Identification of cell-type-specific genes of Volvox carteri and characterization of their expression during the asexual life cycle.
- A regulatory hierarchy for cell specialization in yeast
- Translational regulation of protein synthesis, in response to light, at a critical stage of Volvox development.
- A revision of the cell lineages recently reported for Volvox carteri embryos
- Protein synthetic patterns during the asexual life cycle of Volvox carteri.
- Protein synthesis in a new system for the study of senescence.
- Early and late gene expression programs in developing somatic cells of Volvox carteri.
- FLAGELLAR DEVELOPMENT AND REGENERATION IN VOLVOX CARTERI (CHLOROPHYTA) 1
- Stage-specific hypermutability of the regA locus of Volvox, a gene regulating the germ-soma dichotomy.
- Cleavage patterns, cell lineages, and development of a cytoplasmic bridge system in Volvox embryos
- The extracellular matrix of Volvox carteri: molecular structure of the cellular compartment
- Control of differentiation in Volvox.
- Changes in somatic cell structure during senescence of Volvox carteri.
- Genetic and cytological control of the asymmetric divisions that pattern the Volvox embryo.
- Genetic control of reproductive cell differentiation in Volvox
Cited by
- In search of molecular origins of cellular differentiation in Volvox and its relatives.
- A HYDRODYNAMICS APPROACH TO THE EVOLUTION OF MULTICELLULARITY: FLAGELLAR MOTILITY AND THE EVOLUTION OF GERM-SOMA DIFFERENTIATION IN VOLVOCALEAN GREEN ALGAE
- Germ cell specification in Volvox carteri.
- glsA, a Volvox gene required for asymmetric division and germ cell specification, encodes a chaperone-like protein.
- Identification of cell-type-specific genes of Volvox carteri and characterization of their expression during the asexual life cycle.
- A review on the evolution of development in Volvox ― morphological and physiological aspects
- The evolution of developmental mechanisms.
- Evolution of multicellularity in the volvocine algae.
- Volvox germline-specific genes that are putative targets of RegA repression encode chloroplast proteins
- Volvox carteri as a model for studying the genetic and cytological control of morphogenesis
- Approches génétiques de la mort cellulaire programmée : succès et questions
- Differentiation of germinal and somatic cells in Volvox carteri.
- Asymmetric division, cell size and germ-soma specification in Volvox
- Genetic control of germ-soma differentiation in Volvox carteri.
- Cloning and characterization of novel extensin-like cDNAs that are expressed during late somatic cell phase in the green alga Volvox carteri.
- Exploring germ-soma differentiation inVolvox
- The nitrate reductase-encoding gene of Volvox carteri: map location, sequence and induction kinetics.
- On the origins and early evolution of multicellularity.
- Germ-soma differentiation in volvox.
- A kinesin, invA, plays an essential role in volvox morphogenesis.
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