Browsing "Agriculture, Food and Wine publications" by Author Bacic, A.

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PreviewIssue DateTitleAuthor(s)
2000Cell Wall Metabolism in Barley ColeoptilesGibeaut, D.; Burton, R.; Lahnstein, J.; Shirley, N.; Bacic, A.; Fincher, G.; Logue, D.; 8th International Barley Genetics Symposium (22 Oct 2000 : Adelaide, Australia)
2016Cell-type-specific H⁺-ATPase activity in root tissues enables K⁺ retention and mediates acclimation of barley (Hordeum vulgare) to salinity stressShabala, L.; Zhang, J.; Pottosin, I.; Bose, J.; Zhu, M.; Fuglsang, A.; Velarde-Buendia, A.; Massart, A.; Hill, C.; Roessner, U.; Bacic, A.; Wu, H.; Azzarello, E.; Pandolfi, C.; Zhou, M.; Poschenrieder, C.; Mancuso, S.; Shabala, S.
2006Cellulose synthase-like CslF genes mediate the synthesis of cell wall (1,3;1,4)-beta-D-glucansBurton, R.; Wilson, S.; Hrmova, M.; Harvey, A.; Shirley, N.; Medhurst, A.; Stone, B.; Newbigin, E.; Bacic, A.; Fincher, G.
2005Changes in cell wall polysaccharides in developing barley (Hordeum vulgare) coleoptilesGibeaut, D.; Pauly, M.; Bacic, A.; Fincher, G.
2004Characterization of the Arabidopsis lysine-rich arabinogalactan-protein AtAGP17 mutant (rat1) that results in a decreased efficiency of agrobacterium transformationGaspar, Y.; Nam, J.; Schultz, C.; Lee, L.; Gilson, P.; Gelvin, S.; Bacic, A.
2009Chemistry, Biochemistry, and Biology of 1-3 Beta Glucans and Related PolysaccharidesBacic, A.; Fincher, G.; Stone, B.
2016Comparative "Golgi" proteome study of Lolium multiflorum and Populus trichocarpaFord, K.; Chin, T.; Srivastava, V.; Zeng, W.; Doblin, M.; Bulone, V.; Bacic, A.
2015Detection of QTL for metabolic and agronomic traits in wheat with adjustments for variation at genetic loci that affect plant phenologyHill, C.; Taylor, J.; Edwards, J.; Mather, D.; Langridge, P.; Bacic, A.; Roessner, U.
2012Determining the polysaccharide composition of plant cell wallsPettolino, F.; Walsh, C.; Fincher, G.; Bacic, A.
2016Differences in glycosyltransferase family 61 accompany variation in seed coat mucilage composition in Plantago spp.Phan, J.; Tucker, M.; Khor, S.; Shirley, N.; Lahnstein, J.; Beahan, C.; Bacic, A.; Burton, R.
2009Distribution, Fine Structure and Function of (1,3;1,4)-β-Glucans in the Grasses and Other TaxaHarris, P.; Fincher, G.; Bacic, A.; Fincher, G.; Stone, B.
2012Drought responses of leaf tissues from wheat cultivars of differing drought tolerance at the metabolite levelBowne, J.; Erwin, T.; Juttner, J.; Schnurbusch, T.; Langridge, P.; Bacic, A.; Roessner, U.
2003Fractionation and proteomics of the syncyital endospermLopato, S.; Willars, K.; Lahnstein, J.; Ferguson, K.; Li, M.; Bazanova, N.; Bacic, A.; Langridge, P.; Black, C.; Panozzo, J.; Cereals 2003 (53rd : 2003 : Glenelg, South Australia)
2018Functional characterization of a glycosyltransferase from the moss Physcomitrella patens involved in the biosynthesis of a novel cell wall arabinoglucanRoberts, A.; Lahnstein, J.; Hsieh, Y.; Xing, X.; Yap, K.; Chaves, A.; Scavuzzo-Duggan, T.; Dimitroff, G.; Lonsdale, A.; Roberts, E.; Bulone, V.; Fincher, G.; Doblin, M.; Bacic, A.; Burton, R.
2004Functional Genomics in the Productivity and End-Use Quality of BarleyNewbigin, E.; Bacic, A.; Langridge, P.; Fincher, G.; International Barley Genetics Symposium (20 Jun 2004 : Brno, Czech Republic)
2009Hyphal cell walls from the plant pathogen Rhynchosporium secalis contain (1,3/1,6)-β-D-glucans, galacto- and rhamnomannans, (1,3;1,4)-β-D-glucans and chitinPettolino, F.; Sasaki, I.; Turbic, A.; Wilson, S.; Bacic, A.; Hrmova, M.; Fincher, G.
2008Identification of a novel group of putative Arabidopsis thaliana β-(1,3)-galactosyltransferasesQu, Y.; Egelund, J.; Gilson, P.; Houghton, F.; Gleeson, P.; Schultz, C.; Bacic, A.
2017Insights into the evolution of hydroxyproline-rich glycoproteins from 1000 plant transcriptomesJohnson, K.; Cassin, A.; Lonsdale, A.; Wong, G.-S.; Soltis, D.; Miles, N.; Melkonian, M.; Melkonian, B.; Deyholos, M.; Leebens-Mack, J.; Rothfels, C.; Stevenson, D.; Graham, S.; Wang, X.; Wu, S.; Pires, J.; Edger, P.; Carpenter, E.; Bacic, A.; Doblin, M.; et al.
2020Integrative Multi-omics Analyses of Barley Rootzones under Salinity Stress Reveal Two Distinctive Salt Tolerance MechanismsHo, W.W.H.; Hill, C.B.; Doblin, M.S.; Shelden, M.C.; van de Meene, A.; Rupasinghe, T.; Bacic, A.; Roessner, U.
2009Metabolic responses to salt stress of barley (Hordeum vulgare L.) cultivars, Sahara and Clipper, which differ in salinity toleranceWidodo, W.; Patterson, J.; Newbigin, E.; Tester, M.; Bacic, A.; Roessner, U.