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Preview | Issue Date | Title | Author(s) |
| 2010 | A GRASP-based approach for the Pure Parsimony Haplotype Inference problem | Suchecki, R.; Chardaire, P.; Huber, K.; 2nd Computer Science and Electronic Engineering Conference (8 Sep 2014 - 9 Sep 2014 : Colchester, UK) |
| 2011 | A practical algorithm for reconstructing level-1 phylogenetic networks | Huber, K.T.; van Iersel, L.; Kelk, S.; Suchecki, R. |
| 2007 | Actinobacterial endophytes for improved crop performance | Franco, C.; Michelsen, P.; Percy, N.; Conn, V.; Listiana, E.; Moll, S.; Loria, R.; Coombs, J. |
| 2003 | Al-induced efflux of organic acid anions is poorly associated with internal organic acid metabolism in triticale roots | Hayes, J.; Ma, J. |
| 2006 | An atlas of gene expression from seed to seed through barley development | Druka, A.; Muehlbauer, G.; Druka, I.; Caldo, R.; Baumann, U.; Rostoks, N.; Schreiber, A.; Wise, R.; Close, T.; Kleinhofs, A.; Graner, A.; Schulman, A.; Langridge, P.; Sato, K.; Hayes, P.; McNicol, J.; Marshall, D.; Waugh, R. |
| 2004 | Analysis of the endophytic actinobacterial population in the roots of wheat (Triticum aestivum L.) by Terminal Restriction Fragment Length Polymorphism (T-RFLP) and sequencing of 16S rRNA clones | Conn, V.; Franco, C. |
| 2004 | Boron tolerance in barley is mediated by efflux of boron from the roots | Hayes, J.; Reid, R. |
| 2007 | Boron toxicity tolerance in barley arising from efflux transporter amplification | Sutton, T.; Baumann, U.; Hayes, J.; Collins, N.; Shi, B.; Schnurbusch, T.; Hay, A.; Mayo, G.; Pallotta, M.; Tester, M.; Langridge, P. |
| 2012 | Building gene co-expression networks using transcriptomics data for systems biology investigations: comparison of methods using microarray data | Kadarmideen, H.; Watson-Haigh, N. |
| 2011 | Cell wall modifications in maize pulvini in response to gravitational stress | Zhang, Q.; Pettolino, F.; Dhugga, K.; Rafalski, J.; Tingey, S.; Taylor, J.; Shirley, N.; Hayes, K.; Beatty, M.; Abrams, S.; Zaharia, L.; Burton, R.; Bacic, A.; Fincher, G. |
| 2012 | Characterization of the wheat gene encoding a grain-specific lipid transfer protein TdPR61, and promoter activity in wheat, barley and rice | Kovalchuk, N.; Gilson, J.; Bazanova, N.; Pyvovarenko, T.; Singh, R.; Shirley, N.; Ismagul, A.; Johnson, A.; Milligan, A.; Hrmova, M.; Langridge, P.; Lopato, S. |
| 2012 | Computing a consensus of multilabeled trees | Huber, K.; Moulton, V.; Spillner, A.; Suchecki, R.; Bader, D.A.; Mutzel, P.; 14th Meeting on Algorithm Engineering and Experiments 2012 (ALENEX12) (16 Jan 2012 - 16 Jan 2012 : Kyoto, Japan) |
| 2007 | Cytological investigations of the Arabidopsis thaliana elo1 mutant give new insights into leaf lateral growth and Elongator function | Falcone, A.; Nelissen, H.; Fleury, D.; Van Lijsebettens, M.; Bitoni, M. |
| 2013 | Dispersion and domestication shaped the genome of bread wheat | Berkman, P.; Visendi, P.; Lee, H.; Stiller, J.; Manoli, S.; Lorenc, M.; Lai, K.; Batley, J.; Fleury, D.; Simkova, H.; Kubalakova, M.; Weining, S.; Dolezel, J.; Edwards, D. |
| 2012 | Endo-(1,4)-β-Glucanase gene families in the grasses: temporal and spatial Co-transcription of orthologous genes | Buchanan, M.; Burton, R.; Dhugga, K.; Rafalski, A.; Tingey, S.; Shirley, N.; Fincher, G. |
| 2008 | Endophytic Actinobacteria Induce Defense Pathways in Arabidopsis thaliana | Conn, V.; Walker, A.; Franco, C. |
| 2001 | Expression of phytase in plants as a method of modifying plant productivity | Richardson, A.; Hayes, J.; Simpson, R.; Australian Centre for Plant Functional Genomics (ACPFG) |
| 2001 | Extracellular secretion of Aspergillus phytase from Arabidopsis roots enables plants to obtain phosphorus from phytate | Richardson, A.; Hadobas, P.; Hayes, J. |
| 2013 | Functional genomics of seed development in cereals | Li, M.; Lopato, S.; Kovalchuk, N.; Langridge, P.; Gupta, P.; Varshney, R. |
| 2002 | Genetic and molecular characterization of the maize rp3 rust resistance locus | Webb, C.; Richter, T.; Collins, N.; Nicolas, M.; Trick,, H.; Pryor, A.; Hulbert, S. |