Browsing by Author Sack, Lawren

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Showing results 1 to 9 of 9
Issue DateTitleAuthor(s)Citation
2017The anatomical and compositional basis of leaf mass per areaBuckley, Thomas; John, Grace; Poorter, Hendrik; Sack, Lawren; Scoffoni, Christine; Villar, R; Plant Breeding InstituteThe anatomical and compositional basis of leaf mass per area, Ecology Letters, vol.20, 4, 2017,pp 412-425
2016The Developmental Basis of Stomatal Density and FluxBuckley, Thomas; Sack, Lawren; Plant Breeding InstituteThe Developmental Basis of Stomatal Density and Flux, Plant Physiology, vol.171, 4, 2016,pp 2358-2363
2015How does biomass distribution change with size and differ among species? An analysis for 1200 plant species from five continentsBuckley, Thomas; JagodziƄski, Andrzej; Kuyah, Shem; Luo, Yunjian; Oleksyn, Jacek; Poorter, Hendrik; Reich, Peter B; Ruiz-Peinado, Ricardo; Sack, Lawren; Usoltsev, Vladimir; Plant Breeding InstituteHow does biomass distribution change with size and differ among species? An analysis for 1200 plant species from five continents, New Phytologist, vol.208, 3, 2015,pp 736-749
2015How Does Leaf Anatomy Influence Water Transport outside the Xylem?Buckley, Thomas; John, Grace; Sack, Lawren; Scoffoni, Christine; Plant Breeding InstituteHow Does Leaf Anatomy Influence Water Transport outside the Xylem?, Plant Physiology, vol.168, 4, 2015,pp 1616-1635
2017Leaf vein xylem conduit diameter influences susceptibility to embolism and hydraulic declineBuckley, Thomas; Albuquerque, Caetano; Brodersen, Craig Robert; Cochard, Herve; John, Grace; McElrone, Andrew Joseph; Sack, Lawren; Scoffoni, Christine; Townes, Shatara V.; Plant Breeding InstituteLeaf vein xylem conduit diameter influences susceptibility to embolism and hydraulic decline, New Phytologist, vol.213, 3, 2017,pp 1076-1092
2017Optimal plant water economyBuckley, Thomas; Farquhar, Graham D.; Sack, Lawren; Plant Breeding InstituteOptimal plant water economy, Plant, Cell and Environment, vol.40, 6, 2017,pp 881-896
2017Outside-xylem vulnerability, not Xylem embolism, controls leaf hydraulic decline during dehydrationBuckley, Thomas; Albuquerque, Caetano; Bartlett, M; Brodersen, Craig Robert; John, Grace; McElrone, Andrew Joseph; Sack, Lawren; Scoffoni, Christine; Townes, Shatara V.; Plant Breeding InstituteOutside-xylem vulnerability, not Xylem embolism, controls leaf hydraulic decline during dehydration, Plant Physiology, vol.173, 2, 2017,pp 1197-1210
2017The sites of evaporation within leavesBuckley, Thomas; John, Grace; Sack, Lawren; Scoffoni, Christine; Plant Breeding InstituteThe sites of evaporation within leaves, Plant Physiology, vol.173, 3, 2017,pp 1763-1782
2016Why are leaves hydraulically vulnerable?Buckley, Thomas; Sack, Lawren; Scoffoni, Christine; Plant Breeding InstituteWhy are leaves hydraulically vulnerable?, Journal of Experimental Botany, vol.67, 17, 2016,pp 4917-4919