Plant Phenotypic Plasticity Belowground: A Phylogenetic Perspective on Root Foraging Trade‐Offs
暂无分享,去创建一个
[1] Flora of Alberta. , 1960 .
[2] Growth and Phosphorus Uptake by Corn as Influenced by Phosphorus Placement1 , 1967 .
[3] Roderick Hunt,et al. Relative growth-rate: its range and adaptive significance in a local flora. , 1975 .
[4] Phosphorus Application Rate and Distribution in the Soil and Phosphorus Uptake by Corn1 , 1980 .
[5] John Kartesz,et al. A Synonymized Checklist of the Vascular Flora of the United States, Canada and Greenland , 1980 .
[6] T. Barkley,et al. A Synonymized Checklist of the Vascular Flora of the United States, Canada and Greenland. Volume II, The Biota of North America , 1980 .
[7] S. A. Barber,et al. Predicting the Most Efficient Phosphorus Placement for Corn1 , 1980 .
[8] S. A. Barber,et al. Soybean Shoot and Root Growth and Phosphorus Concentration as Affected by Phosphorus Placement , 1985 .
[9] J. Felsenstein. Phylogenies and the Comparative Method , 1985, The American Naturalist.
[10] S. A. Barber,et al. Effect of one phosphorus rate placed in different soil volumes on p uptake and growth of wheat , 1986 .
[11] J. P. Grime,et al. Comparative Plant Ecology , 1988, Springer Netherlands.
[12] A. Cronquist. The evolution and classification of flowering plants , 1989 .
[13] J. H. Manwaring,et al. Rapid physiological adjustment of roots to localized soil enrichment , 1990, Nature.
[14] T. Garland,et al. Procedures for the Analysis of Comparative Data Using Phylogenetically Independent Contrasts , 1992 .
[15] David Tilman,et al. The maintenance of species richness in plant communities , 1993 .
[16] R. B. Jackson,et al. The Scale of Nutrient Heterogeneity Around Individual Plants and Its Quantification with Geostatistics , 1993 .
[17] James F. Reynolds,et al. The Effect of Neighbors on Root Distribution in a Creosotebush (Larrea Tridentata) Population , 1994 .
[18] D. Robinson. Resource Capture by Localized Root Proliferation: Why Do Plants Bother? , 1996 .
[19] Ramón Díaz-Uriarte,et al. TESTING HYPOTHESES OF CORRELATED EVOLUTION USING PHYLOGENETICALLY INDEPENDENT CONTRASTS: SENSITIVITY TO DEVIATIONS FROM BROWNIAN MOTION , 1996 .
[20] R. B. Jackson,et al. Integrating Resource Heterogeneity and Plant Plasticity: Modelling Nitrate and Phosphate Uptake in a Patchy Soil Environment , 1996 .
[21] H. Marschner,et al. Responses of Picea, Pinus and Pseudotsuga roots to heterogeneous nutrient distribution in soil. , 1997, Tree physiology.
[22] B. Forde,et al. An Arabidopsis MADS box gene that controls nutrient-induced changes in root architecture. , 1998, Science.
[23] J. C. Einsmann. Nutrient Foraging in Ten Southeast Coastal Plain Plant Species , 1998 .
[24] Andy Purvis,et al. Phylogenetic supertrees: Assembling the trees of life. , 1998, Trends in ecology & evolution.
[25] B. Griffiths,et al. Root proliferation, soil fauna and plant nitrogen capture from nutrient‐rich patches in soil , 1998 .
[26] Jacob Weiner,et al. Mechanisms determining the degree of size asymmetry in competition among plants , 1998, Oecologia.
[27] H. de Kroon,et al. Root morphological plasticity and nutrient acquisition of perennial grass species from habitats of different nutrient availability , 1998, Oecologia.
[28] G. Wein,et al. Soil resource heterogeneity effects on early succession , 1998 .
[29] M. Donoghue,et al. Leaf Size, Sapling Allometry, and Corner's Rules: Phylogeny and Correlated Evolution in Maples (Acer) , 1998, The American Naturalist.
[30] Pigliucci,et al. Evolution of phenotypic plasticity a comparative approach in the phylogenetic neighbourhood of Arabidopsis thaliana , 1999 .
[31] J. Cahill,et al. Growth Consequences of Soil Nutrient Heterogeneity for two Old-field Herbs,Ambrosia artemisiifoliaandPhytolacca americana, Grown Individually and in Combination , 1999 .
[32] H. Kroon,et al. Disentangling the Effects of Root Foraging and Inherent Growth Rate on Plant Biomass Accumulation in Heterogeneous Environments: A Modelling Study , 1999 .
[33] A. Fitter,et al. The responses of seven co‐occurring woodland herbaceous perennials to localized nutrient‐rich patches , 1999 .
[34] Robert H. Jones,et al. Nutrient foraging traits in 10 co‐occurring plant species of contrasting life forms , 1999 .
[35] B. Griffiths,et al. Plant root proliferation in nitrogen–rich patches confers competitive advantage , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[36] P. B. Tinker,et al. Solute Movement in the Rhizosphere , 2000 .
[37] Alan J. A. Stewart,et al. The Ecological Consequences of Environmental Heterogeneity , 2000 .
[38] D. Ackerly. TAXON SAMPLING, CORRELATED EVOLUTION, AND INDEPENDENT CONTRASTS , 2000, Evolution; international journal of organic evolution.
[39] A. Prinzing. The niche of higher plants: evidence for phylogenetic conservatism , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[40] M. Hutchings,et al. Root system size and precision in nutrient foraging: responses to spatial pattern of nutrient supply in six herbaceous species , 2001 .
[41] Mark W. Chase,et al. Evolution of the angiosperms: calibrating the family tree , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[42] M. Biondini,et al. Root morphological plasticity and nitrogen uptake of 59 plant species from the Great Plains grasslands, U.S.A. , 2001 .
[43] H. de Kroon,et al. Long‐term disadvantages of selective root placement: root proliferation and shoot biomass of two perennial grass species in a 2‐year experiment , 2001 .
[44] David D. Ackerly,et al. Flammability and serotiny as strategies: correlated evolution in pines , 2001 .
[45] H. Kroon,et al. Soil nutrient heterogeneity alters competition between two perennial grass species , 2001 .
[46] G. Holloway,et al. Phenotypic Plasticity: Beyond Nature and Nurture , 2002, Heredity.
[47] Michael F. Allen,et al. FINE ROOT ARCHITECTURE OF NINE NORTH AMERICAN TREES , 2002 .
[48] B. Forde. Local and long-range signaling pathways regulating plant responses to nitrate. , 2002, Annual review of plant biology.
[49] R. Mitchell,et al. Are competitive interactions influenced by spatial nutrient heterogeneity and root foraging behavior? , 2002, The New phytologist.
[50] Peter B Reich,et al. Variation in growth rate and ecophysiology among 34 grassland and savanna species under contrasting N supply: a test of functional group differences. , 2003, The New phytologist.
[51] T. Rajaniemi. Evidence for size asymmetry of belowground competition , 2003 .
[52] L. Herrera-Estrella,et al. The role of nutrient availability in regulating root architecture. , 2003, Current opinion in plant biology.
[53] Robert B. Jackson,et al. DEFINING A PLANT'S BELOWGROUND ZONE OF INFLUENCE , 2003 .
[54] J. Lundberg,et al. An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants : APG II THE ANGIOSPERM PHYLOGENY GROUP * , 2003 .
[55] K. J. Day,et al. The effects of spatially heterogeneous nutrient supply on yield, intensity of competition and root placement patterns in Briza media and Festuca ovina , 2003 .
[56] K. J. Day,et al. The effects of spatial pattern of nutrient supply on yield, structure and mortality in plant populations , 2003 .
[57] C. Bledsoe,et al. Contribution of relative growth rate to root foraging by annual and perennial grasses from California oak woodlands , 2003, Oecologia.
[58] Stuart A. Casson,et al. Genes and signalling in root development , 2003 .
[59] J. P. Grime,et al. A trade-off between scale and precision in resource foraging , 1991, Oecologia.
[60] M. Biondini,et al. Growth rate, root development and nutrient uptake of 55 plant species from the Great Plains Grasslands, USA , 2003, Plant Ecology.
[61] Hendrik Poorter,et al. Leaf area ratio and net assimilation rate of 24 wild species differing in relative growth rate , 1990, Oecologia.
[62] Angela Hodge,et al. The plastic plant: root responses to heterogeneous supplies of nutrients , 2004 .
[63] J. Cahill,et al. Patch–background contrast and patch density have limited effects on root proliferation and plant performance in Abutilon theophrasti , 2004 .
[64] A. Larigauderie,et al. Root proliferation characteristics of seven perennial arid-land grasses in nutrient-enriched microsites , 1994, Oecologia.
[65] J. P. Grime,et al. The role of plasticity in resource capture by plants , 2002, Evolutionary Ecology.
[66] H. de Kroon,et al. Root morphological and physiological plasticity of perennial grass species and the exploitation of spatial and temporal heterogeneous nutrient patches , 1999, Plant and Soil.
[67] L. A. Mackie-Dawson. Nitrogen uptake and root morphological responses of defoliated Lolium perenne (L.) to a heterogeneous nitrogen supply , 1999, Plant and Soil.
[68] Stephen J. Tonsor,et al. Gene function beyond the single trait: natural variation, gene effects, and evolutionary ecology in Arabidopsis thaliana , 2005 .
[69] M. Hutchings,et al. Does pattern of soil resource heterogeneity determine plant community structure? An experimental investigation , 2005 .
[70] J. Malamy,et al. Intrinsic and environmental response pathways that regulate root system architecture. , 2005, Plant, cell & environment.