How does pedogenesis drive plant diversity?
Tài liệu tham khảo
Hillebrand, 2004, On the generality of the latitudinal diversity gradient, Am. Nat., 163, 192, 10.1086/381004
Huston, 2012, Precipitation, soils, NPP, and biodiversity: resurrection of Albrecht's curve, Ecol. Monogr., 82, 277, 10.1890/11-1927.1
Sánchez, 1976
Crews, 1995, Changes in soil phosphorus fractions and ecosystem dynamics across a long chronosequence in Hawaii, Ecology, 76, 1407, 10.2307/1938144
Wardle, 2008, The response of plant diversity to ecosystem retrogression: evidence from contrasting long-term chronosequences, Oikos, 117, 93, 10.1111/j.2007.0030-1299.16130.x
Grace, 2010, On the specification of structural equation models for ecological systems, Ecol. Monogr., 80, 67, 10.1890/09-0464.1
Elser, 2007, Global analysis of nitrogen and phosphorus limitation of primary producers in freshwater, marine and terrestrial ecosystems, Ecol. Lett., 10, 1135, 10.1111/j.1461-0248.2007.01113.x
Walker, 1976, The fate of phosphorus during pedogenesis, Geoderma, 15, 1, 10.1016/0016-7061(76)90066-5
Peltzer, 2010, Understanding ecosystem retrogression, Ecol. Monogr., 80, 509, 10.1890/09-1552.1
Laliberté, 2012, Experimental assessment of nutrient limitation along a 2-million year dune chronosequence in the south-western Australia biodiversity hotspot, J. Ecol., 100, 631, 10.1111/j.1365-2745.2012.01962.x
Huston, 1994
Tilman, 1982
Grime, 1973, Competitive exclusion in herbaceous vegetation, Nature, 242, 344, 10.1038/242344a0
Harpole, 2007, Grassland species loss resulting from reduced niche dimension, Nature, 446, 791, 10.1038/nature05684
Braakhekke, 1999, The resource balance hypothesis of plant species diversity in grassland, J. Veg. Sci., 10, 187, 10.2307/3237140
Wright, 2011, Potassium, phosphorus, or nitrogen limit root allocation, tree growth, or litter production in a lowland tropical forest, Ecology, 92, 1616, 10.1890/10-1558.1
Chesson, 2000, Mechanisms of maintenance of species diversity, Annu. Rev. Ecol. Syst., 31, 343, 10.1146/annurev.ecolsys.31.1.343
Hill, 2011, Vascular plant success in a warming Antarctic may be due to efficient nitrogen acquisition, Nat. Clim. Change, 1, 50, 10.1038/nclimate1060
Lambers, 2008, Plant nutrient-acquisition strategies change with soil age, Trends Ecol. Evol., 23, 95, 10.1016/j.tree.2007.10.008
Turner, 2008, Resource partitioning for soil phosphorus: a hypothesis, J. Ecol., 96, 698, 10.1111/j.1365-2745.2008.01384.x
McKane, 2002, Resource-based niches provide a basis for plant species diversity and dominance in arctic tundra, Nature, 415, 68, 10.1038/415068a
Vitousek, 1983, Soil development and nitrogen turnover in montane rainforest soils on Hawai’i, Biotropica, 15, 268, 10.2307/2387651
Northup, 1995, Polyphenol control of nitrogen release from pine litter, Nature, 377, 227, 10.1038/377227a0
Wardle, 2012, Linking vegetation change, carbon sequestration and biodiversity: insights from island ecosystems in a long-term natural experiment, J. Ecol., 100, 16, 10.1111/j.1365-2745.2011.01907.x
Vitousek, 1997, Nutrient limitation and soil development: experimental test of a biogeochemical theory, Biogeochemistry, 37, 63, 10.1023/A:1005757218475
Turner, 2007, Soil organic phosphorus transformations during pedogenesis, Ecosystems, 10, 1166, 10.1007/s10021-007-9086-z
Holdaway, 2011, Species- and community-level patterns in fine root traits along a 120 000-year soil chronosequence in temperate rain forest, J. Ecol., 99, 954, 10.1111/j.1365-2745.2011.01821.x
Tilman, 1993, The maintenance of species richness in plant communities, 13
Gundale, 2011, Resource heterogeneity does not explain the diversity–productivity relationship across a boreal island fertility gradient, Ecography, 34, 887, 10.1111/j.1600-0587.2011.06853.x
Wardle, 2004, Ecosystem properties and forest decline in contrasting long-term chronosequences, Science, 305, 509, 10.1126/science.1098778
Hillebrand, 2007, Consumer versus resource control of producer diversity depends on ecosystem type and producer community structure, Proc. Natl. Acad. Sci. U.S.A., 104, 10904, 10.1073/pnas.0701918104
McNaughton, 1989, Ecosystem-level patterns of primary productivity and herbivory in terrestrial habitats, Nature, 341, 142, 10.1038/341142a0
Gruner, 2007, Geological age, ecosystem development, and local resource constraints on arthropod community structure in the Hawaiian Islands, Biol. J. Linn. Soc., 90, 551, 10.1111/j.1095-8312.2007.00748.x
Crutsinger, 2008, Ecosystem retrogression leads to increased insect abundance and herbivory across an island chronosequence, Funct. Ecol., 22, 816, 10.1111/j.1365-2435.2008.01435.x
Laliberté, 2012, Cascading effects of long-term land-use changes on plant traits and ecosystem functioning, Ecology, 93, 145, 10.1890/11-0338.1
McNaughton, 1996, How can net primary productivity be measured in grazing ecosystems?, Ecology, 77, 974, 10.2307/2265518
Williamson, 2005, Changes in soil microbial and nematode communities during ecosystem decline across a long-term chronosequence, Soil Biol. Biochem., 37, 1289, 10.1016/j.soilbio.2004.11.025
Bever, 2010, Rooting theories of plant community ecology in microbial interactions, Trends Ecol. Evol., 25, 468, 10.1016/j.tree.2010.05.004
Simard, 2012, Mycorrhizal networks: mechanisms, ecology and modelling, Fungal Biol. Rev., 26, 39, 10.1016/j.fbr.2012.01.001
Van der Heijden, 2008, The unseen majority: soil microbes as drivers of plant diversity and productivity in terrestrial ecosystems, Ecol. Lett., 11, 296, 10.1111/j.1461-0248.2007.01139.x
Mangan, 2010, Negative plant-soil feedback predicts tree-species relative abundance in a tropical forest, Nature, 466, 752, 10.1038/nature09273
Bever, 2003, Soil community feedback and the coexistence of competitors: conceptual frameworks and empirical tests, New Phytol., 157, 465, 10.1046/j.1469-8137.2003.00714.x
Kardol, 2006, Temporal variation in plant–soil feedback controls succession, Ecol. Lett., 9, 1080, 10.1111/j.1461-0248.2006.00953.x
Manning, 2008, Nitrogen enrichment modifies plant community structure via changes to plant–soil feedback, Oecologia, 157, 661, 10.1007/s00442-008-1104-0
Kulmatiski, 2008, Getting plant–soil feedbacks out of the greenhouse: experimental and conceptual approaches, Prog. Bot., 69, 449, 10.1007/978-3-540-72954-9_18
Zobel, 1997, The relative role of species pools in determining plant species richness: an alternative explanation of species coexistence?, Trends Ecol. Evol., 12, 266, 10.1016/S0169-5347(97)01096-3
Gotelli, 2001, Quantifying biodiversity: procedures and pitfalls in the measurement and comparison of species richness, Ecol. Lett., 4, 379, 10.1046/j.1461-0248.2001.00230.x
Grace, 2011, Local richness along gradients in the Siskiyou herb flora: R.H. Whittaker revisited, Ecology, 92, 108, 10.1890/09-2137.1
Zobel, 2011, The formation of species pools: historical habitat abundance affects current local diversity, Global Ecol. Biogeogr., 20, 251, 10.1111/j.1466-8238.2010.00593.x
Walker, 2010, The use of chronosequences in studies of ecological succession and soil development, J. Ecol., 98, 725, 10.1111/j.1365-2745.2010.01664.x
Vitousek, 2004
Johnson, 2008, Testing the assumptions of chronosequences in succession, Ecol. Lett., 11, 419, 10.1111/j.1461-0248.2008.01173.x
Grace, 1999, The factors controlling species density in herbaceous plant communities: an assessment, Perspect. Plant Ecol. Evol. Syst., 2, 1, 10.1078/1433-8319-00063
Adler, 2011, Productivity is a poor predictor of plant species richness, Science, 333, 1750, 10.1126/science.1204498
Pearl, 2011, The causal foundations of structural equation modeling, 1
Sterner, 2002
Jenny, 1941
Valencia, 2004, Yasuní forest dynamics plot, Ecuador, 609
Korning, 1994, Characters of three Udults and their relevance to the composition and structure of virgin rain forest of Amazonian Ecuador, Geoderma, 63, 145, 10.1016/0016-7061(94)90003-5
Lee, 2002, Floristic and structural diversity of mixed dipterocarp forest in Lambir Hill National Park, Sarawak, Malaysia, J. Trop. Forest Sci., 14, 379
Ratter, 1997, The Brazilian cerrado vegetation and threats to its biodiversity, Ann. Bot., 80, 223, 10.1006/anbo.1997.0469
Furley, 1988, Soil resources and plant communities of the Central Brazilian Cerrado and their development, J. Biogeogr., 15, 97, 10.2307/2845050
Cowling, 1990, Diversity components in a species-rich area of the Cape Floristic Region, J. Veg. Sci., 1, 699, 10.2307/3235578
Hnatiuk, 1981, An ecological analysis of kwongan vegetation south of Eneabba, Western Australia, Aust. J. Ecol., 6, 423, 10.1111/j.1442-9993.1981.tb01496.x
Lambers, 2010, Plant mineral nutrition in ancient landscapes: high plant species diversity on infertile soils is linked to functional diversity for nutritional strategies, Plant Soil, 334, 11, 10.1007/s11104-010-0444-9
Turner, 2012, Soil nutrient dynamics during podzol development under lowland temperate rain forest in New Zealand, Catena, 97, 50, 10.1016/j.catena.2012.05.007
Grace, 2012, Guidelines for a graph-theoretic implementation of structural equation modeling, Ecosphere, 3, 1, 10.1890/ES12-00048.1
Hedley, 1982, Method to measure microbial phosphate in soils, Soil Biol. Biogeochem., 14, 377, 10.1016/0038-0717(82)90009-8
Cardinale, 2009, Separating the influence of resource ‘availability’ from resource ‘imbalance’ on productivity–diversity relationships, Ecol. Lett., 12, 475, 10.1111/j.1461-0248.2009.01317.x
Anderson, 2006, Multivariate dispersion as a measure of beta diversity, Ecol. Lett., 9, 683, 10.1111/j.1461-0248.2006.00926.x