Trophic strategies, animal diversity and body size
暂无分享,去创建一个
[1] C. S. Holling. The functional response of invertebrate predators to prey density , 1966 .
[2] James H. Brown,et al. Effects of Size and Temperature on Metabolic Rate , 2001, Science.
[3] Bradford A. Hawkins,et al. Theoretical Approaches to Biological Control , 2008 .
[4] A. Kuris. Trophic Interactions: Similarity of Parasitic Castrators to Parasitoids , 1974, The Quarterly Review of Biology.
[5] H. P. Hudson,et al. An application of the theory of probabilities to the study of a priori pathometry.—Part I , 1917 .
[6] H. Greene. Dietary Correlates of the Origin and Radiation of Snakes , 1983 .
[7] D. Janzen. Interactions of Seeds and their Insect Predators/Parasitoids in a Tropical Deciduous Forest , 1975 .
[8] W. O. Kermack,et al. A contribution to the mathematical theory of epidemics , 1927 .
[9] K. Lafferty,et al. The evolution of trophic transmission. , 1999, Parasitology today.
[10] P. Legendre,et al. Body size evolution of oxyurid (Nematoda) parasites: the role of hosts , 1996, Oecologia.
[11] K. Lafferty. Effects of parasitic castration on growth reproduction and population dynamics of the marine snail Cerithidea californica , 1993 .
[12] J. Antonovics,et al. Playing by Different Rules: The Evolution of Virulence in Sterilizing Pathogens , 2002, The American Naturalist.
[13] Robert M. May,et al. Simple Rules with Complex Dynamics , 2000, Science.
[14] C. Arme,et al. Infections of the three-spined stickleback, Gasterosteus aculeatus L., with the plerocercoid larvae of Schistocephalus solidus (Müller, 1776), with special reference to pathological effects , 1967, Parasitology.
[15] R. Doutt. The Biology of Parasitic Hymenoptera , 1959 .
[16] K. Lafferty. The marine snail, Cerithidea californica, matures at smaller sizes where parasitism is high , 1993 .
[17] R. Alexander,et al. Ecological morphology : integrative organismal biology , 1995 .
[18] H. Crofton,et al. A model of host–parasite relationships , 1971, Parasitology.
[19] A. Kuris,et al. Evolutionary Importance of Overspecialization: Insect Parasitoids as an Example , 1985, The American Naturalist.
[20] C. Combes,et al. Parasitism: The Ecology and Evolution of Intimate Interactions , 2001 .
[21] S. Wright,et al. Evolution in Mendelian Populations. , 1931, Genetics.
[22] A. Kuris. Biological control: implications of the analogy between the trophic interactions of insect pest-parasitoid and snail-trematode systems. , 1973, Experimental parasitology.
[23] A. Kuris,et al. Predation and control of laboratory populations of the snail Biomphalaria glabrata by the freshwater prawn Macrobrachium rosenbergii. , 1990, Annals of tropical medicine and parasitology.
[24] Eric L. Charnov,et al. Life History Invariants: Some Explorations of Symmetry in Evolutionary Ecology , 1993 .
[25] Peter Chesson,et al. Aggregation of Risk: Relationships Among Host-Parasitoid Models , 1986, The American Naturalist.
[26] W. O. Kermack,et al. Contributions to the mathematical theory of epidemics—I , 1991, Bulletin of mathematical biology.
[27] H. Godfray,et al. Parasitoids: Behavioral and Evolutionary Ecology , 1993 .
[28] R. May,et al. Population biology of infectious diseases: Part I , 1979, Nature.
[29] F. Renaud,et al. Biodiversity and evolution in host-parasite associations , 2004, Biodiversity & Conservation.
[30] R. May,et al. Population biology of infectious diseases: Part II , 1979, Nature.
[31] H. P. Hudson,et al. An Application of the Theory of Probabilities to the Study of a Priori Pathometry.--Part III , 1917 .
[32] M. Taper,et al. Evolution of Body Size: Consequences of an Energetic Definition of Fitness , 1993, The American Naturalist.
[33] R. Peters. The Ecological Implications of Body Size , 1983 .
[34] F. Renaud,et al. Parasites within the new phylogeny of eukaryotes. , 2002, Trends in parasitology.
[35] M. Baudoin. HOST CASTRATION AS A PARASITIC STRATEGY , 1975, Evolution; international journal of organic evolution.
[36] R. Belshaw,et al. Insect parasitoids an evolutionary overview , 1992 .
[37] R M May,et al. Helminth infections of humans: mathematical models, population dynamics, and control. , 1985, Advances in parasitology.
[38] J. Hugot,et al. Host–parasite coevolution: comparative evidence for covariation of life history traits in primates and oxyurid parasites , 1997, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[39] M. Blaxter,et al. Molecular analysis of nematode diversity and the evolution of parasitism. , 1999, Parasitology today.
[40] M. Hassell. The dynamics of arthropod predator-prey systems. , 1979, Monographs in population biology.
[41] C. P. Sandoval,et al. Plasticity in web design in the spider Parawixia bistriata : a response to variable prey type , 1994 .
[42] M. Siddall,et al. PHYLOGENY AND THE REVERSIBILITY OF PARASITISM , 1993, Evolution; international journal of organic evolution.
[43] R. May,et al. Population Biology of Infectious Diseases , 1982, Dahlem Workshop Reports.