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Genome Dynamics Explain the Evolution of Flowering Time CCT Domain Gene Families in the Poaceae
Authors:James Cockram  Thomas Thiel  Burkhard Steuernagel  Nils Stein  Stefan Taudien  Paul C Bailey  Donal M O'Sullivan
Institution:1. John Bingham Laboratory, National Institute of Agricultural Botany, Huntington Road, Cambridge, United Kingdom.; 2. Leibniz Institute for Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.; 3. Leibniz Institute for Age Research, Fritz Lipmann Institute (FLI), Jena, Germany.; 4. Department of Computational and Systems Biology, John Innes Centre, Norwich, United Kingdom.; Instituto de Biología Molecular y Celular de Plantas, Spain,
Abstract:Numerous CCT domain genes are known to control flowering in plants. They belong to the CONSTANS-like (COL) and PREUDORESPONSE REGULATOR (PRR) gene families, which in addition to a CCT domain possess B-box or response-regulator domains, respectively. Ghd7 is the most recently identified COL gene to have a proven role in the control of flowering time in the Poaceae. However, as it lacks B-box domains, its inclusion within the COL gene family, technically, is incorrect. Here, we show Ghd7 belongs to a larger family of previously uncharacterized Poaceae genes which possess just a single CCT domain, termed here CCT MOTIF FAMILY (CMF) genes. We molecularly describe the CMF (and related COL and PRR) gene families in four sequenced Poaceae species, as well as in the draft genome assembly of barley (Hordeum vulgare). Genetic mapping of the ten barley CMF genes identified, as well as twelve previously unmapped HvCOL and HvPRR genes, finds the majority map to colinear positions relative to their Poaceae orthologues. Combined inter-/intra-species comparative and phylogenetic analysis of CMF, COL and PRR gene families indicates they evolved prior to the monocot/dicot divergence ∼200 mya, with Poaceae CMF evolution described as the interplay between whole genome duplication in the ancestral cereal, and subsequent clade-specific mutation, deletion and duplication events. Given the proven role of CMF genes in the modulation of cereals flowering, the molecular, phylogenetic and comparative analysis of the Poaceae CMF, COL and PRR gene families presented here provides the foundation from which functional investigation can be undertaken.
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