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Caroline Dean
Researcher at John Innes Centre
Publications - 239
Citations - 34351
Caroline Dean is an academic researcher from John Innes Centre. The author has contributed to research in topics: Arabidopsis & Flowering Locus C. The author has an hindex of 90, co-authored 223 publications receiving 31556 citations. Previous affiliations of Caroline Dean include University of California, San Diego & DuPont Pioneer.
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Arabidopsis thaliana: A Model Plant for Genome Analysis
TL;DR: The entire genome of Arabidopsis thaliana is scheduled to be sequenced by the end of the year 2000, and reaching this milestone should enhance the value ofArabidopsis as a model for plant biology and the analysis of complex organisms in general.
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Recombinant inbred lines for mapping RFLP and phenotypic markers in Arabidopsis thaliana
Clare Lister,Caroline Dean +1 more
TL;DR: Recombinant inbred lines of Arabidopsis thaliana (Arabidopsis) have been generated from a cross between the ecotypes Landsberg erecta and Columbia, providing the material to map new probes or phenotypic traits polymorphic between Landsberg erection and Columbia.
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The VERNALIZATION 2 Gene Mediates the Epigenetic Regulation of Vernalization in Arabidopsis
TL;DR: Vernalization induces a developmental state that is mitotically stable, suggesting that it may have an epigenetic basis, and VRN2 function stably maintains FLC repression after a cold treatment, serving as a mechanism for the cellular memory of vernalization.
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The timing of developmental transitions in plants.
Isabel Bäurle,Caroline Dean +1 more
TL;DR: How RNA silencing mechanisms may influence the juvenile-to-adult vegetative switch is discussed and the discovery and regulation of a component of "florigen," the mobile flowering promotion signal that is involved in the transition to flowering is described.
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FCA, a Gene Controlling Flowering Time in Arabidopsis, Encodes a Protein Containing RNA-Binding Domains
Richard Macknight,Ian Bancroft,Tania Page,Clare Lister,Renate Schmidt,Karina Love,Lore Westphal,George Murphy,Sarah Sherson,Christopher S. Cobbett,Caroline Dean +10 more
TL;DR: FCA appears to be a component of a posttranscriptional cascade involved in the control of flowering time and the ratio and abundance of the different FCA transcripts were altered.