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Allelic Polymorphism Of Gigantea Is Responsible For Naturally Occurring Variation In Circadian Period In Brassica Rapa, Qiguang Xie, Ping Lou, Victor Hermand, Rashid Aman Mar 2015

Allelic Polymorphism Of Gigantea Is Responsible For Naturally Occurring Variation In Circadian Period In Brassica Rapa, Qiguang Xie, Ping Lou, Victor Hermand, Rashid Aman

Dartmouth Scholarship

GIGANTEA (GI) was originally identified by a late-flowering mutant in Arabidopsis, but subsequently has been shown to act in circadian period determination, light inhibition of hypocotyl elongation, and responses to multiple abiotic stresses, including tolerance to high salt and cold (freezing) temperature. Genetic mapping and analysis of families of heterogeneous inbred lines showed that natural variation in GI is responsible for a major quantitative trait locus in circadian period in Brassica rapa. We confirmed this conclusion by transgenic rescue of an Arabidopsis gi-201 loss of function mutant. The two B. rapa GI alleles each fully rescued the …


Histone Modifications Influence Mediator Interactions With Chromatin, Xuefeng Zhu, Yongqiang Zhang, Gudrun Bjornsdottir, Zhongle Liu, Amy Quan, Michael Costanzo, Marcela Davila Lopez, Jakub Orzechowski Westholm, Hans Ronne, Charles Boone, Claes M. Gustafsson, Lawrence C. Myers Jul 2011

Histone Modifications Influence Mediator Interactions With Chromatin, Xuefeng Zhu, Yongqiang Zhang, Gudrun Bjornsdottir, Zhongle Liu, Amy Quan, Michael Costanzo, Marcela Davila Lopez, Jakub Orzechowski Westholm, Hans Ronne, Charles Boone, Claes M. Gustafsson, Lawrence C. Myers

Dartmouth Scholarship

The Mediator complex transmits activation signals from DNA bound transcription factors to the core transcription machinery. Genome wide localization studies have demonstrated that Mediator occupancy not only correlates with high levels of transcription, but that the complex also is present at transcriptionally silenced locations. We provide evidence that Mediator localization is guided by an interaction with histone tails, and that this interaction is regulated by their post-translational modifications. A quantitative, high-density genetic interaction map revealed links between Mediator components and factors affecting chromatin structure, especially histone deacetylases. Peptide binding assays demonstrated that pure wild-type Mediator forms stable complexes with the …