4.6 Review Book Chapter

Evolution in the Cycles of Life

Journal

ANNUAL REVIEW OF GENETICS, VOL 50
Volume 50, Issue -, Pages 133-154

Publisher

ANNUAL REVIEWS
DOI: 10.1146/annurev-genet-120215-035227

Keywords

multicellularity; alternation of generations; apospory; apogamy; TALE homeodomain; land plant evolution

Funding

  1. Grants-in-Aid for Scientific Research [26650143] Funding Source: KAKEN

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The life cycles of eukaryotes alternate between haploid and diploid phases, which are initiated by meiosis and gamete fusion, respectively. In both ascomycete and basidiomycete fungi and chlorophyte algae, the haploid-to-diploid transition is regulated by a pair of paralogous homeodomain protein encoding genes. That a common genetic program controls the haploid-to-diploid transition in phylogenetically disparate eukaryotic lineages suggests this may be the ancestral function for homeodomain proteins. Multicellularity has evolved independently in many eukaryotic lineages in either one or both phases of the life cycle. Organisms, such as land plants, exhibiting a life cycle whereby multicellular bodies develop in both the haploid and diploid phases are often referred to as possessing an alternation of generations. We review recent progress on understanding the genetic basis for the land plant alternation of generations and highlight the roles that homeodomain-encoding genes may have played in the evolution of complex multicellularity in this lineage.

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