Impact of the fungus Balansia henningsiana on Panicum agrostoides: frequency of infection, plant growth and reproduction, and resistance to pests
Author:
Publisher
Springer Science and Business Media LLC
Subject
Ecology, Evolution, Behavior and Systematics
Link
http://link.springer.com/content/pdf/10.1007/BF00379039.pdf
Reference29 articles.
1. Alexander HM, Antonovics J (1988) Disease spread and population dynamics of anther-smut infestation of Silene alba caused by the fungus Ustilago violacea. J Ecol 76:91?104
2. Antonovics J, Ellstand NC (1984) Experimental studies of the evolutionary significance of sexual reproduction. I. A test of the frequency-dependent hypothesis. Evolution 38:103?115
3. Augspurger CK, Kelly CK (1984) Pathogen mortality of tropical tree seedlings: experimental studies of the effects of dispersal distance, seedling density, and light conditions. Oecologia 61:211?217
4. Bradshaw AD (1959) Population differentiation in Agrostis tenuis Sibth. II. The incidence and significance of infection by Epichloe typhina. New Phytol 58:310?315
5. Burdon JJ (1987) Diseases and Plant Population Biology. Cambridge University Press, Cambridge
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