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PreviewIssue DateTitleAuthor(s)
2019A novel (1,4)-β-linked glucoxylan is synthesized by members of the cellulose synthase-like F gene family in land plantsLittle, A.; Lahnstein, J.; Jeffery, D.W.; Khor, S.F.; Schwerdt, J.G.; Shirley, N.; Hooi, Y.; Xing, X.; Burton, R.; Bulone, V.
2017A Genome Wide Association Study of arabinoxylan content in 2-row spring barley grainHassan, A.; Houston, K.; Lahnstein, J.; Shirley, N.; Schwerdt, J.; Gidley, M.; Waugh, R.; Little, A.; Burton, R.; Zhang, A.
2016Water uptake in barley grain: physiology; genetics and industrial applicationsCu, S.; Collins, H.; Betts, N.; March, T.; Janusz, A.; Stewart, D.; Skadhauge, B.; Eglinton, J.; Kyriacou, B.; Little, A.; Burton, R.; Fincher, G.
2015Differential expression of the HvCslF6 gene late in grain development may explain quantitative differences in (1,3;1,4)-β-glucan concentration in barleyWong, S.; Shirley, N.; Little, A.; Khoo, K.; Schwerdt, J.; Fincher, G.; Burton, R.; Mather, D.
2016The dynamics of transcript abundance during cellularization of developing barley endospermZhang, R.; Tucker, M.; Burton, R.; Shirley, N.; Little, A.; Morris, J.; Milne, L.; Houston, K.; Hedley, P.; Waugh, R.; Fincher, G.
2014Differential accumulation of callose, arabinoxylan and cellulose in nonpenetrated versus penetrated papillae on leaves of barley infected with Blumeria graminis f. sp. hordeiChowdhury, M.; Henderson, M.; Schweizer, P.; Burton, R.; Fincher, G.; Little, A.
2016(1,3;1,4)-β-glucan biosynthesis by the CSLF6 enzyme: position and flexibility of catalytic residues influence product fine structureDimitroff, G.; Little, A.; Lahnstein, J.; Schwerdt, J.; Srivastava, V.; Bulone, V.; Burton, R.; Fincher, G.
2014The barley genome sequence assembly reveals three additional members of the CslF (1,3;1,4)-β-glucan synthase gene familySchreiber, M.; Wright, F.; MacKenzie, K.; Hedley, P.; Schwerdt, J.; Little, A.; Burton, R.; Fincher, G.; Marshall, D.; Waugh, R.; Halpin, C.; Hazen, S.
2017Altered expression of genes implicated in xylan biosynthesis affects penetration resistance against powdery mildewChowdhury, J.; Lück, S.; Rajaraman, J.; Douchkov, D.; Shirley, N.; Schwerdt, J.; Schweizer, P.; Fincher, G.; Burton, R.; Little, A.
2016The barley (Hordeum vulgare) cellulose synthase-like D2 gene (HvCslD2) mediates penetration resistance to host-adapted and nonhost isolates of the powdery mildew fungusDouchkov, D.; Lueck, S.; Hensel, G.; Kumlehn, J.; Rajaraman, J.; Johrde, A.; Doblin, M.; Beahan, C.; Kopischke, M.; Fuchs, R.; Lipka, V.; Niks, R.; Bulone, V.; Chowdhury, J.; Little, A.; Burton, R.; Bacic, A.; Fincher, G.; Schweizer, P.