Edinburgh, Scotland, United Kingdom - TAIR
Edinburgh, Scotland, United Kingdom - TAIR
Edinburgh, Scotland, United Kingdom - TAIR
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AtSDL, a putative sugar-alcohol dehydrogenase in Arabidopsis thaliana P415<br />
Patricio Mandujano, Daniel Severin, MarÌa Francisca Aguayo, Michael Handford<br />
The MUM1 gene is required for seed coat mucilage extrusion in Arabidopsis P416<br />
Jun Huang, Gillian Dean, Jonathan Griffiths, John Gotz, Shawn Mansfield, George Haughn<br />
AKR2A-mediated import of chloroplast outer membrane proteins is essential for chloroplast biogenesis P417<br />
Dae Heon Kim, Wonsil Bae, Yong Jik Lee, Yoon Jung Na, Zhengyi Xu, Inhwan Hwang<br />
Investigating the essential role of dynamin in Arabidopsis growth and development P418<br />
Neil Taylor<br />
Seed storage protein trafficking and localization in leaves of an Arabidopsis LEAFY COTYLEDON2<br />
over-expression line P419<br />
M Feeney, Y Cui, JJ Harada and R Menassa<br />
RETINOBLASTOMA-RELATED PROTEIN (RBR) integrates regulation of cell cycle and acquisition<br />
of cell polarity in A. thaliana P420<br />
Lorenzo Borghi, Ruben Gutzat, Johannes Fütterer and Wilhelm Gruissem<br />
Systems Biology<br />
Reconstructed Arabidopsis transcriptional network identified key genes in stress tolerance P421<br />
Qing Zhang, Pui-Man Yu, Dianjing Guo<br />
Trehalose-6-phosphate and sugar signalling in plants P422<br />
Umesh Yadav, Regina Feil, Mark Stitt, John Lunn<br />
A strategy for inferring gene regulatory networks from time series transcriptomics data P423<br />
Kim Kenobi, Andy Wood<br />
Using expression correlation and reaction correlation data for predicting enzyme localisation in<br />
multi-compartmental systems P424<br />
Achuthanunni Chokkathukalam, Mark Poolman, Lee Sweetlove, David Fell<br />
Network inference to identify regulators of Arabidopsis leaf senescence P425<br />
Vicky Buchanan-Wollaston, Emily Breeze, Stuart McHattie, Andrew Mead, David Wild<br />
In-depth profiling of leaf growth P426<br />
Pierre Hilson<br />
Extended computational model of the circadian clock genetic network in Arabidopsis P427<br />
Alexandra Pokhilko, Kirsten Knox, Kieron D Edwards, Adrian Thomson, Andrew J Millar<br />
What are the downstream targets of trehalose 6-phosphate signalling in plants? P428<br />
Marina C M Martins, Jörg Fettke, Regina Feil, Mark Stitt, John E Lunn<br />
The design principle of robust disease resistance P429<br />
Kenichi Tsuda, Masanao Sato, Jane Glazebrook, Fumiaki Katagiri<br />
Simple models of circadian oscillations identify signalling network architecture P430<br />
Neil Dalchau, Katharine Hubbard, Carlos Hotta, Fiona Robertson, Helen Briggs, Guy-Stan Bart,<br />
Jorge Gonçalves, Alex Webb<br />
15 N metabolic labeling as a tool to study stress-induced dynamic changes in plasma membrane<br />
protein composition in Arabidopsis P431<br />
Waltraud Schulze, Sylwia Kierszniowska, Wolfgang Engelsberger, Dirk Walther<br />
Identification of the enzymes catalysing the final reactions of purine degradation in Arabidopsis thaliana<br />
and Escherichia coli using comparative genomics P432<br />
Andrea K Werner, Claus-Peter Witte<br />
Integrative analyses of genetic variation in primary carbohydrate metabolism reveals distinct<br />
modes of regulation in Arabidopsis thaliana P433<br />
Joost JB Keurentjes, Ronan Sulpice<br />
A novel centrality framework for causal gene regulatory network reverse engineering P434<br />
Federico M Giorgi, Tony Bolger, Marek Mutwil, Zoran Nikoloski, Staffan Persson, Bjoern Usadel<br />
Using a model of the transcript response of Arabidopsis thaliana as a predictor for important factors<br />
during day-night cycles P435<br />
Federico M Giorgi, Armin Schlereth, Wolf-Ruediger Scheible, Mark Stitt, Bjoern Usadel<br />
Towards dissecting the trans golgi network using proteomics and chemical genomics P436<br />
Georgia Drakakaki, Mien van de Ven, Songqin Pan, Glenn Hicks, Natasha Raikhel<br />
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