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Biomass allocation to leaves, stems and roots: meta-analyses of interspecific variation and environmental control

, , , , , and . New Phytol, 193 (1): 30-50 (January 2012)
DOI: 10.1111/j.1469-8137.2011.03952.x

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Growth and carbon economy of a fast-growing and a slow-growing grass species as dependent on ontogeny, and . New phytologist, (1992)Carbon dioxide, populations and communities, , and . chapter Interspecific variation in the growth response of plants to elvated CO2: A search for functional types, page 375--412. Academic Press, (1996)Assessing the generality of global leaf trait relationships, , , , , , , , , and 4 other author(s). New Phytologist, (2005)Photosynthetic acclimation of plants to growth irradiance: the relative importance of specific leaf area and nitrogen partitioning in maximizing carbon gain, and . Plant, Cell & Environment, 24 (8): 755--767 (Aug 1, 2001)Leaf area ratio and net assimilation rate of 24 wild species differing in relative growth rate, and . Oecologia, (1990)Chemical composition of 24 wild species differing in relative growth rate, and . Plant, Cell and Environment, (1992)A handbook of protocols for standardised and easy measurement of plant functional traits worldwide, , , , , , , , , and 2 other author(s). Australian Journal of Botany, (2003)TRY – a global database of plant traits, , , , , , , , , and 125 other author(s). Global Change Biology, 17 (9): 2905--2935 (Sep 1, 2011)Biomass allocation to leaves, stems and roots: meta-analyses of interspecific variation and environmental control, , , , , and . New Phytol, 193 (1): 30-50 (January 2012)The effect of elevated CO2 on the chemical composition and construction costs of leaves of 27 C3 species, , , , , , , , , and . Plant, Cell & Environment, 20 (4): 472--482 (Apr 1, 1997)