Farre Lab: Difference between revisions
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*[[Farre_Lab:Linsey Newton|Linsey Newton]] | *[[Farre_Lab:Linsey Newton|Linsey Newton]] | ||
*[[Farre_Lab:Tiffany Liu|Tiffany Liu]] | *[[Farre_Lab:Tiffany Liu|Tiffany Liu]] | ||
*[[USer:Eric R Poliner|Eric Poliner]] | *[[USer:Eric R Poliner|Eric Poliner]] | ||
*[[USer:Tyler Messenger|Tyler Messenger]] | *[[USer:Tyler Messenger|Tyler Messenger]] | ||
*[[Farre_Lab:Elyse Horak|Elyse Horak]] | |||
*[[Farre_Lab:Open_positions|Open Positions: | *[[Farre_Lab:Open_positions|Open Positions: | ||
Undergraduate assistant]] | Undergraduate assistant]] | ||
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[[Farre_Lab:Publications |<h3><font style="color:#F8B603;">Publications</font></h3>]] | [[Farre_Lab:Publications |<h3><font style="color:#F8B603;">Publications</font></h3>]] | ||
*Braun R, Farré EM, Schurr U, Matsubara S (in press) Effects of light and circadian clock on growth and chlorophyll accumulation of Nannochloropsis gaditana. Journal of Phycology [http://onlinelibrary.wiley.com/doi/10.1111/jpy.12177/abstract] | *Takeuchi T, Newton L, Burkhardt A, Mason S, Farre EM. Light and the circadian clock mediate time specific changes in sensitivity to UV-B stress under light/dark cycles. Journal of Experimental Botany (in press). | ||
*Braun R, Farré EM, Schurr U, Matsubara S (in press) Effects of light and circadian clock on growth and chlorophyll accumulation of Nannochloropsis gaditana. Journal of Phycology 50(1):515–525 [http://onlinelibrary.wiley.com/doi/10.1111/jpy.12177/abstract] | |||
*Liu T, Carlsson J, Takeuchi T, Newton L (2013) Direct regulation of abiotic responses by the Arabidopsis circadian clock component PRR7. Plant Journal.Plant J 76(1):101-14[http://www.ncbi.nlm.nih.gov/pubmed/23808423 PubMed] | *Liu T, Carlsson J, Takeuchi T, Newton L (2013) Direct regulation of abiotic responses by the Arabidopsis circadian clock component PRR7. Plant Journal.Plant J 76(1):101-14[http://www.ncbi.nlm.nih.gov/pubmed/23808423 PubMed] | ||
*Farré EM, Liu T (2013) The PRR family of transcriptional regulators reflects the complexity and evolution of plant circadian clocks. Curr Opin Plant Biol 16(5):621-9[http://www.ncbi.nlm.nih.gov/pubmed/23856081 PubMed] | *Farré EM, Liu T (2013) The PRR family of transcriptional regulators reflects the complexity and evolution of plant circadian clocks. Curr Opin Plant Biol 16(5):621-9[http://www.ncbi.nlm.nih.gov/pubmed/23856081 PubMed] | ||
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[[Farre_Lab:Research |<h3><font style="color:#F8B603;">Announcements</font></h3>]] | [[Farre_Lab:Research |<h3><font style="color:#F8B603;">Announcements</font></h3>]] | ||
* Andrew Lapinsky has been awarded the Bessey Award for Outstanding Senior in Plant Biology. Congratulations! | |||
*[[Farre_Lab:Announcements | Group meeting, journal clubs, and seminars]]<br> | *[[Farre_Lab:Announcements | Group meeting, journal clubs, and seminars]]<br> | ||
*[ | *[[Media:201404330-Map-MPSB.jpg| Our Lab has moved to the new Plant Molecular Science Building]] | ||
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Revision as of 09:53, 23 July 2014
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ResearchOur goal is to understand how circadian clocks work and why they play such a key role in growth and development. We study the regulation and role of circadian rhythms in plants and alga. Circadian rhythms are necessary for optimal growth and survival in several photosynthetic species, including Chlamydomonas rheinhardtii, Synechocystes sp. and Arabidopsis thaliana. Although circadian clocks share a basic architecture, they differ in their molecular components and appear to not to be conserved between different taxa. We work on the model plant Arabidopsis thaliana and have recently started analyzing rhythms in the heterokont alga Nannochloropsis oceanica. |
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