Enquist B J.Universal scaling in tree and vascular plant allometry:Toward a general quantitative theory linking plant form and function from cells to ecosystems〔J〕.Tree Physiology,2002,22:1 045-1 064.
Harvey P J,Pagel M D.The Comparative Method in Evolutionary Biology〔M〕.Oxford:Oxford University Press,1991.
[17]
Warton D I,Wright I J,Falster D S,et al.Bivariate linefitting methods for allometry〔J〕.Biological Reviews,2006,81:259-291.
[18]
Niklas K J,Cobb E D,Niinemet S U,et al.“Dmiinishing returns” in the scaling of functional leaf traits across and within species groups〔J〕.Proceedings of the National Academy of Sciences,2007,104:8 891-8 896.
Cordell S,Goldstein G,Meinzer F C,et al.Regulation of leaf lifespan and nutrientuse efficiency of Metrosideros polymorpha trees at two extremes of a long chronosequence in Hawaii〔J〕.Oecologia,2001,127:198-206.
[21]
Price C A,Enquist B J.Scaling mass and morphology in leaves:An extension of the WBE model〔J〕.Ecology,2007,88:1 132-1 141.
Shipley B,Vu T T.Dry matter content as a measure of dry matter concentration in plants and their parts〔J〕.New Phytologist,2002,153:359-364.
[24]
Ackerly D,Knight C,Weiss S,et al.Leaf size,specific leaf area and microhabitat distribution of chaparral woody plants:Contrasting patterns in species level and community level analyses〔J〕.Oecologia,2002,130:449-457.
[25]
Shipley B.Tradeoffs between net assimilation rate and specific leaf area in determining relative growth rate:Relationship with daily irradiance〔J〕.Functional Ecology,2002,16:682-689.