4.4 Article

Flowering Life-History Strategies Differ between the Native and Introduced Ranges of a Monocarpic Perennial

期刊

AMERICAN NATURALIST
卷 174, 期 5, 页码 660-672

出版社

UNIV CHICAGO PRESS
DOI: 10.1086/605999

关键词

demography; exotic plant; integral projection model; iteroparity; life-history evolution; semelparity

资金

  1. National Science Foundation (NSF) Graduate Research Fellowship [EF-0553768]
  2. NSF Doctoral Dissertation Improvement [DEB 05-08102]
  3. Sigma Xi Grant-in-Aid of Research
  4. University of Montana Graduate Council Award
  5. Besancon and Bertha Morton Fellowships
  6. National Center for Ecological Analysis and Synthesis
  7. University of California
  8. Santa Barbara
  9. State of California

向作者/读者索取更多资源

Life-history theory makes several key predictions about reproductive strategies on the basis of demographic vital rates, particularly the relationship between juvenile and adult survival. Two such predictions concern the optimal time to begin reproducing and whether semelparity or iteroparity is favored. I tested these life-history predictions and explored how they might differ between the native and introduced ranges of the monocarpic perennial Cynoglossum officinale. I first compared vital rates between ranges. I then used these vital rates to parameterize integral projection models to calculate the population growth rate (lambda) and net reproductive rate (R-0) as surrogates for fitness to compare strategies within and between ranges. I found that both survival and growth were higher in the introduced range, where size at flowering was larger and iteroparity was much more common than in the native range. The observed and predicted strategies for size at flowering were similar in the native range. In the introduced range, however, even though plants flowered at a larger size, the observed size was not as large as the optimum predicted by lambda or the higher optimum predicted by R-0. Iteroparity conferred higher fitness in both ranges, as measured by both fitness metrics, suggesting that severe constraints, potentially specialist herbivores, prevent this strategy from becoming more common in the native range.

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