Changes in hardwood forest understory plant communities in response to European earthworm invasions.
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[1] G. González,et al. Policy and management responses to earthworm invasions in North America , 2006, Biological Invasions.
[2] P. Reich,et al. Effects of European Earthworm Invasion on Soil Characteristics in Northern Hardwood Forests of Minnesota, USA , 2005, Ecosystems.
[3] P. Reich,et al. EXOTIC EUROPEAN EARTHWORM INVASION DYNAMICS IN NORTHERN HARDWOOD FORESTS OF MINNESOTA, USA , 2005 .
[4] S. Dugravot,et al. How a specialist and a non‐specialist insect cope with dimethyl disulfide produced by Allium porrum , 2004 .
[5] D. Read,et al. The contributions of mycorrhizal fungi to the determination of plant community structure , 1994, Plant and Soil.
[6] N. Hendriksen,et al. Leaf litter selection by detritivore and geophagous earthworms , 1990, Biology and Fertility of Soils.
[7] A. Thesis,et al. Ecological consequences of exotic invaders: interactions involving European earthworms and native plant communities in hardwood forests , 2004 .
[8] P. Reich,et al. Allometric Equations for Estimation of Ash-free Dry Mass from Length Measurements for Selected European Earthworm Species (Lumbricidae) in the Western Great Lakes Region , 2004 .
[9] Derek M. Pelletier,et al. Influence of Earthworm Invasion on Redistribution and Retention of Soil Carbon and Nitrogen in Northern Temperate Forests , 2004, Ecosystems.
[10] Derek M. Pelletier,et al. Ecosystem Consequences of Exotic Earthworm Invasion of North Temperate Forests , 2004, Ecosystems.
[11] P. Groffman,et al. Exotic Earthworm Invasion and Microbial Biomass in Temperate Forest Soils , 2004, Ecosystems.
[12] Derek M. Pelletier,et al. Effects of Exotic Earthworms on Soil Phosphorus Cycling in Two Broadleaf Temperate Forests , 2004, Ecosystems.
[13] S. Jammalamadaka. Permutation Methods: A Distance Function Approach , 2003 .
[14] T. Fahey,et al. Influence of nonnative earthworms on mycorrhizal colonization of sugar maple (Acer saccharum). , 2003, The New phytologist.
[15] E. Zaborski. Allyl isothiocyanate: an alternative chemical expellant for sampling earthworms , 2003 .
[16] M. Gundale. Influence of Exotic Earthworms on the Soil Organic Horizon and the Rare Fern Botrychium mormo , 2002 .
[17] B. McCune,et al. Analysis of Ecological Communities , 2002 .
[18] J. Reynolds,et al. The earthworms of Minnesota (Oligochaeta: Acanthodrilidae Lumbricidae and Megascolecidae) , 2002 .
[19] Y. Cohen,et al. Generation of Spatial Patterns in Boreal Forest Landscapes , 1999, Ecosystems.
[20] David J. Augustine,et al. EVIDENCE FOR TWO ALTERNATE STABLE STATES IN AN UNGULATE GRAZING SYSTEM , 1998 .
[21] E. M. Calvey,et al. Allium chemistry: identification of organosulfur compounds in ramp (Allium tricoccum) homogenates. , 1998, Phytochemistry.
[22] Ian R. Sanders,et al. DIFFERENT ARBUSCULAR MYCORRHIZAL FUNGAL SPECIES ARE POTENTIAL DETERMINANTS OF PLANT COMMUNITY STRUCTURE , 1998 .
[23] Nicolas Bernier,et al. The Forest Regeneration Puzzle Biological mechanisms in humus layer and forest vegetation dynamics , 1998 .
[24] C. Baskin,et al. Seeds: Ecology, Biogeography, and, Evolution of Dormancy and Germination , 1998 .
[25] A. Watkinson. The role of the soil community in plant population dynamics. , 1998, Trends in ecology & evolution.
[26] W. Verstraete,et al. Microorganisms and soil physico-chemical conditions in the drilosphere of Lumbricus terrestris , 1997 .
[27] James D. Bever,et al. INCORPORATING THE SOIL COMMUNITY INTO PLANT POPULATION DYNAMICS : THE UTILITY OF THE FEEDBACK APPROACH , 1997 .
[28] D. Parkinson,et al. Changes in structure, organic matter and microbial activity in pine forest soil following the introduction of Dendrobaena octaedra (Oligochaeta, Lumbricidae) , 1997 .
[29] S. Scheu,et al. Density and distribution of Dendrobaena octaedra (Lumbricidae) in aspen and pine forests in the Canadian Rocky Mountains (Alberta) , 1997 .
[30] P. Lavelle. Faunal Activities and Soil Processes: Adaptive Strategies That Determine Ecosystem Function , 1997 .
[31] H. Erickson,et al. Species-Area Curves and Diversity-Productivity Relationships in Beaver Meadows of Voyageurs National Park, Minnesota, USA , 1996 .
[32] F. Kostel-Hughes. The role of soil seed banks and leaf litter in the regeneration of native and exotic tree species in urban forests , 1996 .
[33] W. Edwards,et al. Earthworms and their influence on soil structure and infiltration. , 1995 .
[34] E. C. Berry,et al. Effects of earthworm invasion on morphology, carbon, and nitrogen of a forest soil , 1994 .
[35] S. Scheu,et al. Effects of earthworms on nutrient dynamics, carbon turnover and microorganisms in soils from cool temperate forests of the Canadian Rocky Mountains — laboratory studies , 1994 .
[36] D. Tilman,et al. Plant and Soil Controls on Mycorrhizal Fungal Communities , 1992 .
[37] George E. Host,et al. Ecological species groups for upland forest ecosystems of northwestern Lower Michigan , 1991 .
[38] Jerry M. Melillo,et al. Predicting long-term patterns of mass loss, nitrogen dynamics, and soil organic matter formation from initial fine litter chemistry in temperate forest ecosystems , 1990 .
[39] Peter M. Vitousek,et al. Biological invasions and ecosystem processes : towards an integration of population biology and ecosystem studies , 1990 .
[40] V. T. Parker,et al. Ecology of Soil Seed Banks , 1989 .
[41] S. James,et al. Feeding Ecology of Some Earthworms in Kansas Tallgrass Prairie , 1989 .
[42] V. Brown,et al. Herbivory by soil-dwelling insects depresses plant species richness , 1989 .
[43] A. Magurran. Ecological Diversity and Its Measurement , 1988, Springer Netherlands.
[44] Mark C. Brundrett,et al. The mycorrhizal status, root anatomy, and phenology of plants in a sugar maple forest , 1988 .
[45] A. Rożen. The annual cycle in populations of earthworms (Lumbricidae Oligochaeta) in three types of oak-hornbeam of the Niepołomicka forest. II: Dynamics of population numbers, biomass and age structure , 1988 .
[46] P. Reddell,et al. Relationship between Mycorrhizal Infection and Diversity in Vegetation: Evidence from the Great Smoky Mountains , 1988 .
[47] P. Vitousek. Biological Invasions and Ecosystem Properties: Can Species Make a Difference? , 1986 .
[48] J. Aber,et al. Forest Litter Decomposition in Relation to Soil Nitrogen Dynamics and Litter Quality , 1985 .
[49] J. Springett. EFFECT OF FIVE SPECIES OF EARTHWORM ON SOME SOIL PROPERTIES , 1983 .
[50] A. Macfadyen. Soil organisms as components of ecosystems: Lohm, U. and Persson, T. (Editors), Proc. VI. International Soil Zoology Colloquium, Uppsala, June 1976. Ecological Bulletins Vol. 25, 614 pp. 1977. Price: 140 SwCr (ca. [pound sign]20[middle dot]00 incl. air mail postage) , 1980 .
[51] J. P. Grime,et al. Plant Strategies and Vegetation Processes. , 1980 .
[52] G. Likens,et al. Pattern and process in a forested ecosystem. , 1979 .
[53] R. Whittaker. Evolution and measurement of species diversity , 1972 .
[54] S. Goldhor. Ecology , 1964, The Yale Journal of Biology and Medicine.
[55] G. A. Nielsen,et al. A study of the natural processes of incorporation of organic matter into soil in the University of Wisconsin arboretum , 1963 .
[56] Claude E. Shannon,et al. The mathematical theory of communication , 1950 .
[57] E. F. Woodcock. OBSERVATIONS ON THE POISONOUS PLANTS OF MICHIGAN , 1925 .
[58] H. Gleason. Species and Area , 1925 .
[59] O. Arrhenius,et al. Species and Area , 1921 .
[60] O. Black. Calcium oxalate in the Dasheen , 1918 .