Article
Time-Series Transcriptomics Reveals That AGAMOUS-LIKE22 Affects Primary Metabolism and Developmental Processes in Drought-Stressed Arabidopsis.
The Plant cell - 1 Feb 2016
Bechtold Ulrike, Penfold Christopher A, Jenkins Dafyd J, Legaie Roxane, Moore Jonathan D, Lawson Tracy, Matthews Jack S A, Vialet-Chabrand Silvere R M, Baxter Laura, Subramaniam Sunitha, Hickman Richard, Florance Hannah, Sambles Christine, Salmon Deborah L, Feil Regina, Bowden Laura, Hill Claire, Baker Neil R, Lunn John E, Finkenstädt Bärbel, Mead Andrew, Buchanan-Wollaston Vicky, Beynon Jim, Rand David A, Wild David L, Denby Katherine J, Ott Sascha, Smirnoff Nicholas, Mullineaux Philip M
Abstract excerpt
In Arabidopsis thaliana, changes in metabolism and gene expression drive increased drought tolerance and initiate diverse drought avoidance and escape responses. To address regulatory processes that link these responses, we set out to identify genes that govern early responses to drought. To do this, a high-resolution time series transcriptomics data set was produced, coupled with detailed physiological and...
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