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The evolution and regulation of major transitions in sexual systems: new insights from the brown algae

Project description

Studying sex in brown algae

Brown algae are remarkably interesting. Having evolved independently of animals and plants for more than a billion years, their exceptionally rich sexual features make them ideal samples for the study of sex chromosome evolution. The EU-funded TETHYS project will investigate them in order to gain novel insights into the functional bases and ultimate forces associated with transitions between sexual systems and their impact on the evolution of this important group of eukaryotes. Specifically, it will exploit the amenability of model brown algae to genetic and genomic approaches to uncover the mechanisms and evolutionary forces driving switches between sexual systems across this group. The findings will help answer some of the evolutionary questions about the diversity and turnover of sex determining systems in eukaryotes.

Objective

Sexual reproduction is a pervasive phenomenon that produces new genetic combinations in nearly all eukaryotic lineages. Whilst the core processes that define meiotic sex (meiosis and syngamy) are universal, sex determination systems are not evolutionary conserved but are bewilderingly diverse and have had rapid turnover rates during evolution. Transitions among sex determination systems have profound evolutionary and ecological consequences, but our understanding of the mechanisms, ultimate causes, and the consequences of transitions is still surprisingly incomplete. The goal of the Tethys project is to exploit the exceptional richness of sexual features of the brown algae to gain novel insights into the functional bases and ultimate forces associated with transitions between sexual systems, and their impact on the evolution of this important group of eukaryotes. First, we will exploit the amenability of model brown algae to genetic and genomic approaches to uncover the mechanisms and evolutionary forces driving switches between sexual systems across this group. Secondly, we will investigate the regulation and evolution of the genes involved in sexual reproduction in the context of sexual system transitions, by delineating a comprehensive transcriptional and chromatin state roadmap across key brown algal species. Finally, we will examine patterns of correlated evolution between sexual, functional and genomic traits and incorporate ecological information in order to link ecological factors to reproductive transitions and evaluate their consequences on genome structure and species diversification. Collectively, these multilevel analyses will help answer long-standing evolutionary questions about the diversity and turnover of sex determining systems in eukaryotes, but will also provide unprecedented insights into the biology of an important but virtually unexplored eukaryotic supergroup.

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Keywords

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Programme(s)

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Topic(s)

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Funding Scheme

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ERC-COG - Consolidator Grant

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Call for proposal

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(opens in new window) ERC-2019-COG

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Host institution

MAX-PLANCK-GESELLSCHAFT ZUR FORDERUNG DER WISSENSCHAFTEN EV
Net EU contribution

Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.

€ 1 835 517,50
Address
HOFGARTENSTRASSE 8
80539 MUNCHEN
Germany

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Region
Bayern Oberbayern München, Kreisfreie Stadt
Activity type
Research Organisations
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Total cost

The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.

€ 1 835 517,50

Beneficiaries (2)

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