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Genome-wide investigation of light and carbon signaling interactions in Arabidopsis.
Thum KE, Shin MJ, Palenchar PM, Kouranov A, Coruzzi GM
Genome Biol
2004,
5
:R10
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PubMed Central articles that cite the above article:
1.
Global transcription profiling reveals multiple sugar signal transduction mechanisms in Arabidopsis.
Price J, Laxmi A, St Martin SK, Jang JC
Plant Cell
2004 Aug,
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Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis.
Bläsing OE, Gibon Y, Günther M, Höhne M, Morcuende R, Osuna D, Thimm O, Usadel B, Scheible WR, Stitt M
Plant Cell
2005 Dec,
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Establishing glucose- and ABA-regulated transcription networks in Arabidopsis by microarray analysis and promoter classification using a Relevance Vector Machine.
Li Y, Lee KK, Walsh S, Smith C, Hadingham S, Sorefan K, Cawley G, Bevan MW
Genome Res
2006 Mar,
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A Golgi-localized hexose transporter is involved in heterotrimeric G protein-mediated early development in Arabidopsis.
Wang HX, Weerasinghe RR, Perdue TD, Cakmakci NG, Taylor JP, Marzluff WF, Jones AM
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2006 Oct,
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Genome-wide analysis of the Arabidopsis leaf transcriptome reveals interaction of phosphate and sugar metabolism.
Müller R, Morant M, Jarmer H, Nilsson L, Nielsen TH
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2007 Jan,
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Arabidopsis NAD-malic enzyme functions as a homodimer and heterodimer and has a major impact on nocturnal metabolism.
Tronconi MA, Fahnenstich H, Gerrard Weehler MC, Andreo CS, Flügge UI, Drincovich MF, Maurino VG
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Global transcript levels respond to small changes of the carbon status during progressive exhaustion of carbohydrates in Arabidopsis rosettes.
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A systems approach uncovers restrictions for signal interactions regulating genome-wide responses to nutritional cues in Arabidopsis.
Krouk G, Tranchina D, Lejay L, Cruikshank AA, Shasha D, Coruzzi GM, Gutiérrez RA
PLoS Comput Biol
2009 Mar,
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