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The molecular evolution of C4 photosynthesis.

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Stata, M., Sage, T.L., Rennie, T.D., Khoshravesh, R., Sultmanis, S. Khaikin, Y., Ludwig, M. Sage, R.F. (2014) Mesophyll cells of C4 plants have fewer chloroplasts than those of closely related C3 plants. Plant Cell Environ. DOI 10.1111/pce.12331 Bougoure, J., Ludwig, M., Brundrett, M., Cliff, J., Clode, P., Kilburn, M., Grierson, P. (2014) High resolution secondary ion mass spectrometry analysis of carbon dynamics in mycorrhizas formed by an obligately myco-heterotrophic orchid. Plant Cell Environ. DOI: 10.1111/pce.12230 Dathan, N.A., Alterio, V., Troiano, E., Vullo, D., Ludwig, M., De Simone, G., Supuran, C.T., Monti, S.M. (2014) Biochemical characterization of the chloroplastic β-carbonic anhydrase from Flaveria bidentis (L.) ‘‘Kuntze’’. J Enzyme Inhib Med Chem 29: 500-504 Ludwig, M. (2013) Evolution of the C4 photosynthetic pathway: Events at the cellular and molecular levels. Photosyn Res 117: 147-161 Monti, S.M., De Simone, G., Dathan, N.A., Ludwig, M., Vullo, D., Scozzafava, A., Capasso, C., Supuran, C.T. (2013) Kinetic and anion inhibition studies of a β-carbonic anhydrase (FbiCA 1) from the C4 plant Flaveria bidentis. Bioorg Med Chem Lett 23: 1626-1630. Rich, S.M., Pedersen, O., Ludwig, M., Colmer, T.D. (2013) Shoot atmospheric contact is of little importance to aeration of deeper portions of the wetland plant Meionectes brownii; submerged organs mainly acquire O2 from the water column or produce it endogenously in underwater photosynthesis. Plant Cell Environ 36: 213-223. Christin, PA., Wallace, M.J., Clayton, H., Edwards, E.J., Furbank, R.T., Hattersley, P.W., Sage, R.F., Macfarlane, T.D., Ludwig, M. (2012) Multiple photosynthetic transitions, polyploidy, and lateral gene transfer in the grass subtribe Neurachninae. J Exp Bot 63: 6297-6308. Rich, S.M., Ludwig, M., Colmer, T.D. (2012) Aquatic adventitious root development in partially- and completely-submerged wetland plants Cotula coronopifolia and Meionectes brownii. Ann Bot 110: 405-414. Ludwig, M. (2012) Carbonic anhydrase and the molecular evolution of C4 photosynthesis. Invited Review. Plant Cell Environ 35: 22-37. McLean, E.H., Ludwig, M., Grierson, P.F. (2011) Root hydraulic conductance and aquaporin abundance respond rapidly to partial root-zone drying events in a riparian Melaleuca species. New Phytol 192: 664-675. Ludwig, M. (2011) The molecular evolution of β-carbonic anhydrase in Flaveria. J Exp Bot 62: 3071-3081. Rich, S.M., Ludwig, M., Pedersen, O., Colmer, T.D. (2011) Aquatic adventitious roots of the wetland plant Meionectes brownii can photosynthesize: implications for root function during flooding. New Phytol 190: 311-319. Hassiotou, F., Renton, M., Ludwig, M., Evans, J.R., Veneklaas, E.J. (2010) Photosynthesis at an extreme end of the leaf trait spectrum: how does it relate to high leaf dry mass per area and associated structural parameters? J Exp Bot 61: 3015-3028. Hassiotou, F., Ludwig, M., Evans, J.R., Veneklaas, E.J. (2009) Stomatal crypts may facilitate diffusion of CO2 to adaxial mesophyll cells in thick sclerophylls. Plant Cell Environ 32: 1596-1611. Bougoure, J., Ludwig, M., Brundrett, M., Grierson, P.F. (2009) Identity and specificity of the fungi forming mycorrhizas with rare, mycoheterotrophic Rhizanthella gardneri (Orchidaceae). Mycol Res 113: 1097-1106. Tanz, S.K., Tetu, S.G., Vella, N.G.F., Ludwig, M. (2009) Loss of the transit peptide and an increase in gene expression of an ancestral chloroplastic carbonic anhydrase were instrumental in the evolution of the cytosolic C4 carbonic anhydrase in Flaveria. Plant Physiol 150: 1515-1529. Hassiotou, F., Ludwig, M.,Renton, M., Veneklaas, E.J., Evans, J.R. (2009) Influence of leaf dry mass per area, CO2 and irradiance on mesophyll conductance in sclerophylls. J Exp Bot 60: 2303-2314. Clode, P.L., Saunders, M., Maker, G., Ludwig, M. & Atkins, C.A. (2009) Uric acid deposits in symbiotic algae. Plant Cell Environ 32: 170-177. Rich, S.M., Ludwig, M. & Colmer, T.D. (2008) Photosynthesis in aquatic adventitious roots of the halophytic stem-succulent, Halosarcia pergranulata (formerly Halosarcia pergranulata. Plant Cell Environ 31: 1007-1016.

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