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PreviewIssue DateTitleAuthor(s)
2023Glycoside hydrolase family 16-Xyloglucan:xyloglucosyl transferases and their roles in plant cell wall structure and mechanicsStratilová, B.; Kozmon, S.; Stratilová, E.; Hrmova, M.; Goyal A,; Sharma K,
2000Regulation of Genes Encoding b-Glucan Exohydrolases in Barley (Hordeum vulgare L.)Harvey, A.; Hrmova, M.; Fincher, G.; Logue, D.S.J.; 8th International Barley Genetics Symposium (22 Oct 2000 : Adelaide, Australia)
2011Molecular modelling of RNases from almond involved in self-incompatibilityMarti, A.; Alonso, J.; Company, R.; Wirthensohn, M.; Hrmova, M.; Ak, B.E.; Wirthensohn, M.; Gradziel, T.
2020Variation among S-locus haplotypes and among stylar RNases in almondGoonetilleke, S.N.; Croxford, A.E.; March, T.J.; Wirthensohn, M.G.; Hrmova, M.; Mather, D.E.
2017Structural basis of the permeation function of plant aquaporinsLuang, S.; Hrmova, M.; Chaumont, F.; Tyerman, S.
2001Structure-function relationships of β- D-glucan endo- and exohydrolases from higher plantsHrmova, M.; Fincher, G.
2020A single nucleotide substitution in TaHKT1;5-D controls shoot Na⁺ accumulation in bread wheatBorjigin, C.; Schilling, R.K.; Bose, J.; Hrmova, M.; Qiu, J.; Wege, S.; Situmorang, A.; Byrt, C.; Brien, C.; Berger, B.; Gilliham, M.; Pearson, A.S.; Roy, S.J.
2014Expression patterns and protein structure of a lipid transfer protein END1 from ArabidopsisLi, M.; Lopato, S.; Hrmova, M.; Pickering, M.; Shirley, N.; Koltunow, A.; Langridge, P.
2009Functional genomics and structural biology in the definition of gene functionHrmova, M.; Fincher, G.; Somers, D.; Langridge, P.; Gustafson, J.
2018Plants fighting back: to transport or not to transport, this is a structural questionHrmova, M.; Gilliham, M.