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Results 61-70 of 123 (Search time: 0.004 seconds).
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PreviewIssue DateTitleAuthor(s)
2012Investigation of self-assembling proline- and glycine-rich recombinant proteins and peptides inspired by proteins from a symbiotic fungus using atomic force microscopy and circular dichroism spectroscopyCreasey, R.; Voelcker, N.; Schultz, C.
2011Structural and functional analyses of PpENA1 provide insights into cation binding by type IID P-type ATPases in lower plants and fungiDrew, D.; Hrmova, M.; Lunde, C.; Jacobs, A.; Tester, M.; Fincher, G.
2007Dissecting the catalytic mechanism of a plant beta-D-glucan glucohydrolase through structural biology using inhibitors and substrate analoguesHrmova, M.; Fincher, G.
2013Transposon-mediated alteration of TaMATE1B expression in wheat confers constitutive citrate efflux from root apicesTovkach, A.; Ryan, P.; Richardson, A.; Lewis, D.; Rathjen, T.; Ramesh, S.; Tyerman, S.; Delhaize, E.
2010The multivesicular body-localized GTPase ARFA1b/1c is important for callose deposition and ROR2 syntaxin-dependent preinvasive basal defense in barleyBohlenius, H.; Morch, S.; Godfrey, D.; Nielsen, M.; Thordal-Christensen, H.
2005A NAC domain protein interacts with tomato leaf curl virus replication accessory protein and enhances viral replicationSelth, L.; Dogra, S.; Rasheed, M.; Healy, H.; Randles, J.; Rezaian, M.
1998Crystallization and preliminary X-ray analysis of β-glucan exohydrolase isoenzyme Exol from barley (Hordeum vulgare)Hrmova, M.; Varghese, J.; Hoj, P.; Fincher, G.
2010A customized gene expression microarray reveals that the brittle stem phenotype fs2 of barley is attributable to a retroelement in the HvCesA4 cellulose synthase geneBurton, R.; Ma, G.; Baumann, U.; Harvey, A.; Shirley, N.; Taylor, J.; Pettolino, F.; Bacic, A.; Beatty, M.; Simmons, C.; Dhugga, K.; Rafalski, J.; Tingey, S.; Fincher, G.
2010Channel-like characteristics of the low affinity barley phosphate transporter Pht1;6 when expressed in Xenopus Oocytes1,[W],[OA]Preuss, C.; Huang, C.; Gilliham, M.; Tyerman, S.
2010The genetics, transcriptional profiles, and catalytic properties of UDP-α-D-xylose 4-epimerases from barleyZhang, Q.; Shirley, N.; Burton, R.; Lahnstein, J.; Hrmova, M.; Fincher, G.