4.6 Article

Distribution of the anther-smut pathogen Microbotryum on species of the Caryophyllaceae

期刊

NEW PHYTOLOGIST
卷 187, 期 1, 页码 217-229

出版社

WILEY
DOI: 10.1111/j.1469-8137.2010.03268.x

关键词

anther smut; Caryophyllaceae; disease risk; herbarium; life history evolution; Microbotryum; Silene; Ustilago violacea

资金

  1. John Simon Guggenheim Memorial Foundation
  2. National Science Foundation [DEB-0747222, DBI-0706721]
  3. University of Chile [PFB-23, ICM P05-002]
  4. Swedish Research Council for Environment
  5. Agricultural Sciences and Spatial Planning (FORMAS)
  6. Royal Society

向作者/读者索取更多资源

P>Understanding disease distributions is of fundamental and applied importance, yet few studies benefit from integrating broad sampling with ecological and phylogenetic data. Here, anther-smut disease, caused by the fungus Microbotryum, was assessed using herbarium specimens of Silene and allied genera of the Caryophyllaceae. A total of 42 000 herbarium specimens were examined, and plant geographical distributions and morphological and life history characteristics were tested as correlates of disease occurrence. Phylogenetic comparative methods were used to determine the association between disease and plant life-span. Disease was found on 391 herbarium specimens from 114 species and all continents with native Silene. Anther smut occurred exclusively on perennial plants, consistent with the pathogen requiring living hosts to overwinter. The disease was estimated to occur in 80% of perennial species of Silene and allied genera. The correlation between plant life-span and disease was highly significant while controlling for the plant phylogeny, but the disease was not correlated with differences in floral morphology. Using resources available in natural history collections, this study illustrates how disease distribution can be determined, not by restriction to a clade of susceptible hosts or to a limited geographical region, but by association with host life-span, a trait that has undergone frequent evolutionary transitions.

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