Genetics and Epigenetics of Mating Type Determination in Paramecium and Tetrahymena

Author:

Orias Eduardo1,Singh Deepankar Pratap23,Meyer Eric2

Affiliation:

1. Department of Molecular, Cellular, and Developmental Biology, University of California, Santa Barbara, California 93105;

2. Institut de Biologie de l'Ecole Normale Supérieure (IBENS), CNRS, Inserm, PSL Research University, F-75005 Paris, France;

3. Friedrich Miescher Institute for Biomedical Research, 4058 Basel, Switzerland;

Abstract

While sex is an ancient and highly conserved eukaryotic invention, self-incompatibility systems such as mating types or sexes appear to be derived limitations that show considerable evolutionary plasticity. Within a single class of ciliates, Paramecium and Tetrahymena species have long been known to present a wide variety of mating type numbers and modes of inheritance, but only recently have the genes involved been identified. Although similar transmembrane proteins mediate self/nonself recognition in both ciliates, the mechanisms of mating type determination differ widely, ranging from Mendelian systems to developmental nuclear differentiation, either stochastic or maternally inherited. The non-Mendelian systems rely on programmed editing of the germline genome that occurs during differentiation of the somatic nucleus, and they have co-opted different DNA recombination mechanisms—some previously unknown. Here we review the recent molecular advances and some remaining unsolved questions and discuss the possible implications of these diverse mechanisms for inbreeding/outbreeding balance regulation.

Publisher

Annual Reviews

Subject

Microbiology

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