Stability of forest biodiversity
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[1] D. Canfield,et al. Sources of iron for pyrite formation in marine sediments , 1998 .
[2] I. Prentice. Pollen Representation, Source Area, and Basin Size: Toward a Unified Theory of Pollen Analysis , 1985, Quaternary Research.
[3] R. Macarthur,et al. Competition among Fugitive Species in a Harlequin Environment , 1972 .
[4] A. Knoll,et al. Proterozoic Ocean Chemistry and Evolution: A Bioinorganic Bridge? , 2002, Science.
[5] T. Lyons. Sulfur isotopic trends and pathways of iron sulfide formation in upper Holocene sediments of the anoxic Black Sea , 1997 .
[6] R. Bradshaw,et al. The Selection of Sites for Paleovegetational Studies , 1981, Quaternary Research.
[7] B. Bolker,et al. Spatial Moment Equations for Plant Competition: Understanding Spatial Strategies and the Advantages of Short Dispersal , 1999, The American Naturalist.
[8] D. Tilman. Competition and Biodiversity in Spatially Structured Habitats , 1994 .
[9] G. Norris,et al. Palynology of Indian and European forest clearance and farming in lake sediment cores from Awenda Provincial Park, Ontario , 1986 .
[10] Michael C. Dietze,et al. COEXISTENCE: HOW TO IDENTIFY TROPHIC TRADE-OFFS , 2003 .
[11] J. Hayes,et al. Transport and reduction of sulfate and immobilization of sulfide in marine black shales , 1993 .
[12] Stephen J. Wright,et al. Light-Gap disturbances, recruitment limitation, and tree diversity in a neotropical forest , 1999, Science.
[13] A. J. Kaufman,et al. Sedimentary cycling and environmental change in the Late Proterozoic: Evidence from stable and radiogenic isotopes , 1992 .
[14] J. Hayes,et al. Terminal Proterozoic reorganization of biogeochemical cycles , 1995, Nature.
[15] W. Fuller,et al. Distribution of the Estimators for Autoregressive Time Series with a Unit Root , 1979 .
[16] Linda C. Kah,et al. Geochemistry of a 1.2 Ga carbonate-evaporite succession, northern Baffin and Bylot Islands: implications for Mesoproterozoic marine evolution , 2001 .
[17] T. Donnelly,et al. Depositional environment of the middle proterozoic velkerri formation in Northern Australia: Geochemical evidence , 1988 .
[18] A. J. Kaufman,et al. The sulfur isotopic composition of Neoproterozoic seawater sulfate: implications for a snowball Earth? , 2002 .
[19] S. Hubbell,et al. The unified neutral theory of biodiversity and biogeography at age ten. , 2011, Trends in ecology & evolution.
[20] D. Gautier. Cretaceous shales from the western interior of North America: sulfur/carbon ratios and sulfur-isotope composition. , 1986 .
[21] D. Canfield. A new model for Proterozoic ocean chemistry , 1998, Nature.
[22] C. Heip,et al. Sulfur and iron speciation in surface sediments along the northwestern margin of the Black Sea , 2001 .
[23] Donald E. Canfield,et al. The Archean sulfur cycle and the early history of atmospheric oxygen. , 2000, Science.
[24] H. Strauss,et al. A sulfur isotope study of pyrite genesis: the Mid-Proterozoic Newland Formation , 1990 .
[25] S. Pacala,et al. Models Suggesting Field Experiments to Test Two Hypotheses Explaining Successional Diversity , 1998, The American Naturalist.
[26] P. A. Baker,et al. Constraints on the formation of sedimentary dolomite. , 1981, Science.
[27] A. Knoll,et al. Middle Proterozoic ocean chemistry: Evidence from the McArthur Basin, northern Australia , 2002 .
[28] B. Huntley,et al. An Atlas of Past and Present Pollen Maps for Europe , 1984 .
[29] D. Canfield,et al. The evolution of the sulfur cycle , 1999 .
[30] William M. Schaffer,et al. Plant strategies and the dynamics and structure of plant communities , 1989 .
[31] K. Bennett,et al. Holocene history of forest trees in southern Ontario , 1987 .
[32] Thomas M. Smith,et al. Plant Succession: Life History and Competition , 1987, The American Naturalist.
[33] Michael A. Arthur,et al. Methane-rich Proterozoic atmosphere? , 2003 .
[34] T. Allison,et al. Pollen in Laminated Sediments Provides Evidence For a Mid‐Holocene Forest Pathogen Outbreak , 1986 .
[35] R. Wilkins,et al. Stable isotope, petrological, and fluid inclusion studies of minor mineral deposits from the McArthur Basin: Implications for the genesis of some sediment‐hosted base metal mineralization from the Northern Territory , 1985 .
[36] J. Overpeck,et al. Mapped plant macrofossil and pollen records of late Quaternary vegetation change in eastern North America , 1995 .
[37] James S. Clark,et al. FECUNDITY OF TREES AND THE COLONIZATION–COMPETITION HYPOTHESIS , 2004 .
[38] Donald E. Canfield,et al. Late Proterozoic rise in atmospheric oxygen concentration inferred from phylogenetic and sulphur-isotope studies , 1996, Nature.
[39] K. Bennett,et al. Determining the age of the mid-Holocene Tsuga cana densis (hemlock) decline, eastern North America , 2002 .
[40] Brian Dennis,et al. DENSITY DEPENDENCE IN TIME SERIES OBSERVATIONS OF NATURAL POPULATIONS: ESTIMATION AND TESTING' , 1994 .
[41] A. Hastings. Disturbance, coexistence, history, and competition for space , 1980 .
[42] M. Schreiber,et al. Sulfur geochemical constraints on mesoproterozoic restricted marine deposition: lower Belt Supergroup, northwestern United States , 2000 .
[43] S Pacala,et al. Long-Term Studies of Vegetation Dynamics , 2001, Science.
[44] S. Abbott,et al. Tectonic control on third‐order sequences in a siliciclastic ramp‐style basin: An example from the Roper Superbasin (Mesoproterozoic), northern Australia , 2000 .
[45] J. Fuller. Holocene forest dynamics in southern Ontario, Canada: fine-resolution pollen data , 1997 .
[46] P. Colinvaux,et al. Two histories of environmental change and human disturbance in eastern lowland Amazonia , 2000 .
[47] S. Pacala,et al. POPULATION REGULATION: HISTORICAL CONTEXT AND CONTEMPORARY CHALLENGES OF OPEN VS. CLOSED SYSTEMS , 2002 .
[48] P. Chesson. Mechanisms of Maintenance of Species Diversity , 2000 .
[49] R. Raiswell,et al. An Indicator of Water-Column Anoxia: Resolution of Biofacies Variations in the Kimmeridge Clay (Upper Jurassic, U.K.) , 2001 .
[50] G. MacDonald,et al. Postglacial vegetation history of oak savanna in southern Ontario , 1991 .
[51] S. Carroll,et al. Early animal evolution: emerging views from comparative biology and geology. , 1999, Science.
[52] R. Raiswell,et al. Sedimentology and carbon-sulphur geochemistry of the Velkerri Formation, a mid-Proterozoic potential oil source in northern Australia , 1991 .